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Super-HRM (2 series) Super Heat Recovery Multi System Engineering Data Book

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Page 1: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

Super-HRM(2 series)

S u p e r H e a t R e c o v e r y M u l t i S y s t e m

EngineeringData Book

Page 2: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

1

1

The engineering data book details all specific data, charts

and drawings to enable you to get the best performance

from the Toshiba Super Heat Recovery Multi System (2 Se-

ries) for the various different applications.

The information is aimed to assist you with greater detail of

the system and the wider applications that the system will

cover.

It is recommended the use of the data book is used in accor-

dance with the following as references.

Design manual : File No.A04-017

Installation manual : File No.A05-018

ForewordForeword 1

Page 3: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

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2

2 ForewordContents

1 Forward....................................................................1

2 Contents .....................................................................2

3 Introduction .................................................................3

4 System overview .........................................................7

5 Capacity compensation chart .....................................17

6 Piping requirements ..................................................25

7 Refrigerant cycle diagram ..........................................31

8 Sensible capacity table ..............................................43

9 Part load performance ...............................................69

10 Wiring guideline ........................................................81

11 Wiring diagram ..........................................................89

12 Controls ..................................................................107

13 Fan characteristics ..................................................129

14 Sound characteristics (NC curve).............................139

15 Dimensional drawing ...............................................1551. Indoor units2. Outdoor units3. FS units4. Branch header/Branch joint

16 Specifications ..........................................................191

Appendix High Wall Type (2 series)

1-Way Air Discharge Cassette Type (2 series)

Slim Duct Type

Page 4: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

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Introduction

3

Page 5: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

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Page 6: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

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Suction gas

Discharge gas

Liquid

3

3 ForewordIntroduction

The World's Best Technology for Energy Saving, Heat Recovery VRFToshiba is proud to introduce the Super HRM system, 3pipe heat recovery VRF operatingon R410A. Incorporating advanced technology in all aspects of efficiency,durability, flexibility and comfort. Super HRM will meet various different site applications.

System Outline

Energy saving

Simultaneous Operation

No.1 COP in heat recovery VRF industry.DC twin rotary compressors are most congenial with R410Aand are used within the outdoor units. All compressors aredriven by a High-speed Calculation Vector Control Inverter.

10HP System 3.45

By control of the FS unit, Super HRM enables simultaneous operation of cooling and heating.Super HRM also improves the energy efficiency by the recycling of exhaust heat.

Main HeatExchanger Sub-Heat

Exchanger

CompressorOutdoor unit

FS unit

Indoor unit

Heating Cooling Cooling Cooling

Outdoor unit

DC Twin RotaryCompressor

High-speed CalculationVector Control Inverter

Outdoor unit

FS unit(Flow Selector unit)

Indoor unit(Heating)

Indoor unit(Cooling)

3 pipe(Discharge gas / Suction gas / Liquid)

Ex. Mainly Cooling, Partly Heating Operation

Average COP 8HP System

Super-HRM(R410A)3.83

Page 7: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

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Design Flexibility

Piping flexibility

Y Branch after header branch(Toshiba unique technology)

FS Unit DesignThe compact and light weight design of the FS unit(Flow Selector Unit)allows it to be easilyinstalled within a limited space.

Centralized Control System

Flexibile Joint Combination

Header branch after Y joint

Header after header branch(Toshiba unique technology)

Equivalent piping lengthUp to 125m

Elevation between indoor units = 35m(No.1!) Furthest piping length from 1st branch = 50m(No.1!)

50m

(fro

m 1

st b

ranc

hing

)

35m

(ele

vatio

n b

etw

een

FCU

)

50m

(Ele

vatio

n be

twee

n C

DU

and

FC

U)

190H x 250W x 160D5kg

Easy of hanging(Only 2 hangers)

Easy maintenance(Valve coil and P.C. board are on the same side)

Central remotecontroller

Super MMS Super HRM

By using the central control devices, individual control of indoor units is possible throughoutmultiple systems. Centralized control systems with Super MMS can also be integrated with Build-ing Management System (BMS).

3

Page 8: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

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4

System overview

Page 9: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

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Page 10: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

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4

4 ForewordSystem overview

1. OUTLINE OF TOSHIBA SUPER HRM (Super Heat Recovery Multi System)

Outdoor unit

Outdoor unit

Outdoor unit

Outdoor unit

Outdoor unit

Indoor unit

Indoor unit

Indoor unit

Indoor unit

Indoor unit

Branching joint

Branching joint

Branching joint

Branching header

Header

Header

Header

Header

MMS Only

Super HRMOnly

Super HRMOnly

8F

7F

2F

1F

FS unit

FS unit

FSunit

FS unit

FS unit

Shortest route design by free branchingThe Combination of line and header branching is highly flexible.This follows for the shortest design route possible, thereby savingon installation time and cost. Line/header branching after theheader branching is only available with TOSHIBA Super HRM.

Line branching

Header branching

Line + Header branching

Header branching after header branching

Line branching after header branching

Page 11: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

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4

U1 U2

U1 U2 U1 U2 U1 U2

8F

7F

2F

1F

Non-polarized control wiringbetween outdoor and indoor units

Outdoor unit

Indoor unit

main heat exchanger

Sub heat exchanger

FS unit

Indoorunit

Compressor

Simultaneous operation

Heating Cooling Cooling Cooling

Allowable pipe length :150m equivalent length

Outdoor unit

Outdoorunit

1st branchingsection

From 1st branching to thefurthest indoor unit : 50m

Hei

ght d

iffer

ence

bet

wee

n in

door

unit

and

outd

oor u

nit :

50m

Hei

ght d

iffer

ence

bet

wee

n in

door

unit

and

indo

or u

nit :

35m

Page 12: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

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4

Energy savingNo.1 COP in heat recovery VRF industry.Compared with the conventional chiller fan coil system,a large energy saving can be achieved.

Advanced bus communication systemWiring between indoor and outdoor units is a simple 2 core wire system.Communication of addresses is also automatically configured.A default test mode operation is available.

Self diagnostics systemComprehensive troubleshooting codes allows for a timely identification of possible problems arising.

High lift and flexible piping designEquivalent pipe length of 150m and vertical lift of 50m is possible with TOSHIBA Super HRM.Vertical lift between indoor units of 35m is the highest in the industry.Also the maximum piping length from the 1st branch is 50m.This allows for greater flexibility within the building design of the system.

Simultaneous operationBy controlling the FS unit, Super HRM enables simultaneous operation of cooling and heating.This operation meets the various requirements of modern buildings that are highly airtight or havean increasing heat load due to the use of computers. Super HRM also improves energy efficiency byrecycling of the exhaust heat.

Extended outdoor temperature operating rangeBy use of sophisticated system control with inverter driven compressors, the operating rangein cooling has been increased from -5 to -10 .

Compact FS unit designThe compact and light weight design of the FS unit (Flow selector unit) allows it to be easilyinstalled with in a limited space.

Group control by one FS unitUp to 8 indoor units can be group controlled by the use of only one FS unit, this gives greater flexibility forvarious different types and sizes of rooms.

Intelligent controlTOSHIBA Super HRM intelligent controls and modulating valves deliver the required capacityaccording to the load variation from 50% to 100%.The intelligent controls and modulating valves limit or increase the cooling capacity dynamically sohumidity and temperature are kept within the comfort zone.

Conforms to building control lawIAQ (Indoor Air Quality) is also achieved by combining various accessories required by the BuildingControl Law.

Wide control applicationsArtificial Intelligence Network system.Central control and monitoring system available.Weekly schedule operation through weekly timer.

Integration with Building Management System (BMS) is available.

Page 13: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

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2. SUMMARY OF SYSTEM EQUIPMENTSEquipment

2. Outdoor units (Combination of outdoor units)

3. FS units (Flow selector units)

4. Branching joints and headers

Corresponding HPInverter unit

Appearance8HP

MAP0802FT8

22.4

25.0

10HP

MAP1002FT8

28.0

31.5

12HP

MAP1202FT8

33.5

35.5

Model name MMY-

Cooling capacity (kW)

Heating capacity (kW)

Corresponding HP 8HP 10HP

MAP0802FT822.425

8HP

13

Combined model

Cooling capacity (kW)Heating capacity (kW)

Combined outdoor units

No. of connectable indoor units

MMY- MAP1002FT828

31.510HP

16

MAP1202FT833.535.5

12HP

16

12HP

AP1602FT84550

8HP8HP

27

16HP

AP1802FT850.456.5

10HP8HP

30

18HP

Corresponding HP 20HP 24HP

AP2002FT85663

10HP10HP

33

Combined model

Cooling capacity (kW)Heating capacity (kW)

Combined outdoor units

No. of connectable indoor units

MMY-68

76.58HP8HP8HP40

AP2602FT873

81.510HP8HP8HP43

26HP

AP2802FT878.588

10HP10HP8HP47

28HP

AP3002FT88495

10HP10HP10HP

48

30HP

Model name

RBM-Y1122FE

RBM-Y1802FE

RBM-Y2802FE

Total capacity for indoor unit : Below 11.2 kw

Total capacity for indoor unit : 11.2 to below 18.0 kw

Total capacity for indoor unit : 18.0 to 28.0 kw or less

Usage Appearance

Y-shapebranchingjoint (*3)

4-branchingheader (*4) (*5)

8-branchingheader (*4) (*5)

T-shapebranchingjoint (Forconnectionof outdoorunits)

RBM-BY53FERBM-BY103FERBM-BY203FERBM-BY303FE

RBM-BY53ERBM-BY103ERBM-BY203ERBM-BY303E

RBM-HY1043FERBM-HY2043FERBM-HY1043ERBM-HY2043E

RBM-HY1083FERBM-HY2083FERBM-HY1083ERBM-HY2083E

Indoor unit capacity code (*1) : Total below 6.4Indoor unit capacity code (*1) : Total 6.4 or more and below 14.2Indoor unit capacity code (*1) : Total 14.2 or more and below 25.2Indoor unit capacity code (*1) : Total 25.2 or moreIndoor unit capacity code (*1) : Total below 6.4Indoor unit capacity code (*1) : Total 6.4 or more and below 14.2Indoor unit capacity code (*1) : Total 14.2 or more and below 25.2Indoor unit capacity code (*1) : Total 25.2 or moreIndoor unit capacity code (*1) : Total below 14.2Indoor unit capacity code (*1) : Total 14.2 or more and below 25.2Indoor unit capacity code (*1) : Total below 14.2Indoor unit capacity code (*1) : Total 14.2 or more and below 25.2Indoor unit capacity code (*1) : Total below 14.2Indoor unit capacity code (*1) : Total 14.2 or more and below 25.2Indoor unit capacity code (*1) : Total below 14.2Indoor unit capacity code (*1) : Total 14.2 or more and below 25.2

For 3piping

For 2piping (*6)

For 3pipingFor 2

piping (*6)For 3pipingFor 2

piping (*6)

AppearanceModel name Usage

RBM-BT13FEConnection piping

Balance pipePiping at liquid sidePiping at discharge gas sidePiping at suction gas side

Corresponded dia. (mm) 9.5

12.7 to 22.2 19.1 to 28.6 22.2 to 38.1

1111

Q'ty

*1 `̀Capacity code`̀ can be obtained from page 8. (Capacity code is not actual capacity)*2 If total capacity code value of indoor unit exceeds that of outdoor unit, apply capacity code of outdoor unit.*3 When using Y-shape branching joint for 1st branching, select according to the capacity code of outdoor unit.*4 Max. capacity code of 6.0 in total can be connected.*5 If capacity code of outdoor unit is 26 or more, it is not used for the 1st branching.*6 This is used for branching to `̀cooling only`̀ indoor unit.*7 Model names for outdoor and indoor units described in this guide are shortened because of the space constraint.

*Accessory part (Sold separately): Connection cable kit (RBC-CBK15FE) up to 15m.

1. Outdoor units

1 set 4 types T-shape joint pipes as described below:The required quantity is arranged and they are combined on site.

4

AP2402FT8

Page 14: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

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4

50Hz

Super Heat Recovery Multi System Outdoor Unit

HP (Capacitycode)

Model nameMMY-

No. ofcombined

units

Inverter8 HPMMY-

UsedQty

Inverter10 HPMMY-

UsedQty

UsedQty

Inverter12 HPMMY-

8HP ( 8)

10HP (10)

12HP (12)

16HP (16)

18HP (18)

20HP (20)

24HP (24)

26HP (26)

28HP (28)

30HP (30)

MAP0802HT8

MAP1002HT8

MAP1202HT8

1

1

1

2

2

2

MAP0802FT8

MAP0802FT8

MAP0802FT8

MAP0802FT8

MAP0802FT8

MAP0802FT8

1

2

1

3

2

1

1

1

2

1

2

3

1

MAP1002FT8

MAP1002FT8

MAP1002FT8

MAP1002FT8

MAP1002FT8

MAP1002FT8

MAP1202FT8*

* 12HP unit is for stand-alone use only. Outdoor unit combination with a 12HP unit is not available.

1. Allocation standard of model name

2. Rated conditions (Rated mode : Condition)Cooling : Indoor air temperature 27 DB/19 WB, Outdoor air temperature 35 DBHeating : Indoor air temperature 20 DB, Outdoor air temperature 7 DB/6 WB

3. Compatibility with 1 Series

FS unit

1 Series

RBM-Y***1E

2 Series

RBM-Y***2E

Oudoor unit MMY-

1 Series

-MAP**1FT8

OK

OK

2 Series*

-MAP**2FT8

NG

OK

* 2 series outdoor units cannot be used with 1 series outdoor units.

MMY- M AP T 8F

Power supply specifications, 3 380-415 V, 50Hz ....... 8

T : Capacity variable unit

F : Heat recovery

Development series No.

Capacity rank HP x 10

New refrigerant R410A

M : Single module unit, No mark : Combined Model name

Modular Multi

Page 15: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

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4

4. Indoor unitType Appearance Model name Capacity rank Capacity code Cooling

capacity (kW)Heating

capacity (kW)

4-way Air DischargeCassette Type

2-way Air DischargeCassette Type

1-way Air DischargeCassette Type

Slim Duct Type

Concealed DuctStandard Type

Concealed DuctHigh StaticPressure Type

Under Ceilling Type

MMU-AP0091HMMU-AP0121HMMU-AP0151HMMU-AP0181HMMU-AP0241HMMU-AP0271HMMU-AP0301HMMU-AP0361HMMU-AP0481HMMU-AP0561HMMU-AP0071WHMMU-AP0091WHMMU-AP0121WHMMU-AP0151WHMMU-AP0181WHMMU-AP0241WHMMU-AP0271WHMMU-AP0301WHMMU-AP0481WH*1)

MMU-AP0071YHMMU-AP0091YHMMU-AP0121YHMMU-AP0151SHMMU-AP0181SHMMU-AP0241SHMMU-AP0152SHMMU-AP0182SHMMU-AP0242SHMMD-AP0071SPHMMD-AP0091SPHMMD-AP0121SPHMMD-AP0151SPHMMD-AP0181SPHMMD-AP0071SPH(SH)-C*1)

MMD-AP0091SPH(SH)-C*1)

MMD-AP0121SPH(SH)-C*1)

MMD-AP0151SPH(SH)-C*1)

MMD-AP0181SPH(SH)-C*1)

MMD-AP0071SPH-K*3)

MMD-AP0091SPH-K*3)

MMD-AP0121SPH-K*3)

MMD-AP0151SPH-K*3)

MMD-AP0181SPH-K*3)

MMD-AP0071BHMMD-AP0091BHMMD-AP0121BHMMD-AP0151BHMMD-AP0181BHMMD-AP0241BHMMD-AP0271BHMMD-AP0301BHMMD-AP0361BHMMD-AP0481BHMMD-AP0561BHMMD-AP0181HMMD-AP0241HMMD-AP0271HMMD-AP0361HMMD-AP0481HMMD-AP0721HMMD-AP0961HMMC-AP0151HMMC-AP0181HMMC-AP0241HMMC-AP0271HMMC-AP0361HMMC-AP0481H

009 type012 type015 type018 type024 type027 type030 type036 type048 type056 type007 type009 type012 type015 type018 type024 type027 type030 type048 type007 type009 type012 type015 type018 type024 type015 type018 type024 type007 type009 type012 type015 type018 type007 type009 type012 type015 type018 type007 type009 type012 type015 type018 type007 type009 type012 type015 type018 type024 type027 type030 type036 type048 type056 type018 type024 type027 type036 type048 type072 type096 type015 type018 type024 type027 type036 type048 type

1.001.251.702.002.503.003.204.005.006.000.8

1.001.251.702.002.503.003.205.000.801.001.251.702.002.501.702.002.500.801.001.251.702.000.801.001.251.702.000.801.001.251.702.000.801.001.251.702.002.503.003.204.005.006.002.002.503.004.005.008.00

10.001.702.002.503.004.005.00

2.83.64.55.67.18.09.0

11.214.016.02.22.83.64.55.67.18.09.0

14.02.22.83.64.55.67.14.55.67.12.22.83.64.55.62.22.83.64.55.62.22.83.64.55.62.22.83.64.55.67.18.09.0

11.214.016.05.67.18.0

11.214.022.428.04.55.67.18.0

11.214.0

3.24.05.06.38.09.0

10.012.516.018.02.53.24.05.06.38.09.0

10.016.02.53.24.05.06.38.05.06.38.02.53.24.05.06.32.53.24.05.06.32.53.24.05.06.32.53.24.05.06.38.09.0

10.012.516.018.06.38.09.0

10.016.025.031.55.06.38.09.0

12.516.0

*1) China market only *2) European market only *3) Korea market only

Page 16: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

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4

Type Appearance Model name Capacity rank Capacity code Coolingcapacity (kW)

Heatingcapacity (kW)

Floor StandingCabinet Type

Floor StandindConcealed Type

Floor Standind Type

*1) China market only *2) European market only

MMK-AP0071HMMK-AP0091HMMK-AP0121HMMK-AP0151HMMK-AP0181HMMK-AP0241HMMK-AP0072H*2)

MMK-AP0092H*2)

MMK-AP0122H*2)

MML-AP0071HMML-AP0091HMML-AP0121HMML-AP0151HMML-AP0181HMML-AP0241HMML-AP0071HMML-AP0091HMML-AP0121HMML-AP0151HMML-AP0181HMML-AP0241HMMF-AP0151HMMF-AP0181HMMF-AP0241HMMF-AP0271HMMF-AP0361HMMF-AP0481HMMF-AP0561H

007 type009 type012 type015 type018 type024 type007 type009 type012 type007 type009 type012 type015 type018 type024 type007 type009 type012 type015 type018 type024 type015 type018 type024 type027 type036 type048 type056 type

0.801.001.251.702.002.500.801.001.250.801.001.251.702.002.500.801.001.251.702.002.501.702.002.503.004.005.006.00

2.22.83.64.55.67.12.22.83.62.22.83.64.55.67.12.22.83.64.55.67.14.55.67.18.0

11.214.016.0

2.53.24.05.06.38.02.53.24.02.53.24.05.06.38.02.53.24.05.06.38.05.06.38.09.0

10.016.018.0

*3) Korea market only

High Wall Type(2 series)

High Wall Type(1 series)

4. Indoor unit

Page 17: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

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4

16-1

5. Remote controller

UNIT

SET CL

SETTING

UNIT No.

CODE No.

TEST

SET DATA

R.C. No.

ûCûF

TESTSETTING

Name Modelname

Appearance Application Function

Wir

ed r

emo

te c

ont

rolle

rS

imp

le w

ired

rem

ote

co

ntro

ller

Wir

eles

s re

mo

te c

ont

rolle

r ki

t

TC

B-A

X21

ETC

B-A

X21

E2

RB

C-A

X22

CE

RB

C-A

X22

CE

2T

CB

-AX

21U

(W)-

ET

CB

-AX

21U

(W)-

E2

RB

C-A

S21

E/R

BC

-AS

21E

2R

BC

-AM

T21E

/RB

C-A

MT3

1E

Connected to indoor unit

Connected to indoor unit

Connected to indoor unit

Simple remote controller

Wired remotecontroller

Wired remote controller(In case of control by2 remote controllers)

Start / Stop Mode Change Temperature setting Change of air flow Timer function

Filter sign Displays automatically maintenance time of indoor filter. Filter sign flashes. Self-diagnosis function Pressing `̀CHECK`̀ button displays cause of fault on the check code. Control by 2 remote controllers is available. Two remote controllers can be connected to one indoor unit. The indoor unit can be separately operated from a different location.

1

2

Start / Stop Temperature setting Change of air flow Check code display

Start / Stop Mode change Temperature setting Change of air flow Timer function On or off timer operation, setting in 30 minute increments. Automatic Off function. Control by 2 remote controllers is available. Two wireless remote controllers can operate one indoor unit. The indoor unit can be separately operated from a different location. Check code display TCB-AX21U(W)-E2 (for 4-way airdischarge cassette) RBC-AX22CE2 (for under ceiling) TCB-AX21-E2 (for other units except for the concealed duct high static pressure)

On or off timer operation, setting in 30 minuteincrements.Automatic Off function.Combined with the weekly timer, weeklyschedule operation can be operated.

Page 18: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

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ON

8:00 12:00 13:00 18:00 19:00 21:00

OFF ON OFF ON OFF

WEEKLY TIMER

ERROR

SuMoTuWeTh Fr SaPROGRAM1

PROGRAM2

PROGRAM3

SELECT ZONE

CL SET

GROUP

CODE No.

UNIT No.

No.R.C.

TEST

ZONEALLZONEGROUP

SETTING

1234

SET DATA

Name

Wee

kly

timer

Modelname Appearance Application Performance

RB

C-E

XW

21E

RB

C-E

XW

21E

2

Cen

tral

rem

ote

co

ntro

ller

TCB

-SC

642T

LETC

B-S

C64

2TLE

2

Connected to centralremote controller or

wired remote controller

Connected to outdoor unit,indoor unit

Wiredremote controller

Weeklytimer

Outdoor unit

Centralremote controller

Weeklytimer

Outdoorunit

Centralremote controller

Indoorremote controller

Centralremote

controller

Weekly schedule operation

Setting different start / stop time for eachday of the week

ON / OFF can be set 3 timesa day.

1

2

3

Two different schedules for aweek can be specified.(Summer schedule and winterschedule, etc.)

4

5

If power supply fails, the settingcontents are stored in the memory for100 hours.

6

Individual control up to 64 indoor units.

Individual control for max. 64 indoorunits divided into 4 zones.

Up to 16 indoor units for eachzone

Up to 16 outdoor header units areconnectable.

Four selectable central control settings torestrict individual remote controlleroperations.

Setting for one of 1 to 4 zones isavailable.

Can be used with other central controldevices (Up to 10 central controldevices with in one control circuit)

Two selectable control modesCentral controller modeRemote controller mode

Setting of simultaneous ON/OFF 3times for each day of the weekcombined with a weekly timer.

`̀CHECK`̀ ̀̀PROGRAM`̀ ̀̀DAY`̀button copying of settings easy.

`̀CANCEL`̀ ̀̀ DAY`̀ button enablesholiday setting.

16-2

4

Page 19: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

1816-3

Name Modelname Appearance Application Performance

ON

-OFF

co

ntro

ller

TC

B-C

C16

3TLE

2

Connected to outdoor unit,indoor unit

Outdoor unit

Header

Indoorremote controller

Follower

Outdoor unit

ON-OFFcontroller

ON-OFFcontroller

Setting of simultaneous ON-OFF 3 times for each day of the week when combined with a weekly timer.

Individual control up to 16 indoor units.

Connected to 2 remote controllers ispossible.

Page 20: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

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5

Capacity compensation chart

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18

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19

15

1.2

1.1

1.0

0.9

0.820 24

1.1

1.0

0.980 90 100 110 120

-5 0 5 10 15 20 25 30 35 40 43

1.2

1.1

1.0

0.9

5

5 ForewordCapacity compensation chart

Cooling/heating capacity characteristics1. Cooling capacity calculation method : Required cooling capacity = Cooling capacity x Factor ( ) kW

Indoor air wet bulb temperature vs. capacity correction value1

Outdoor air dry bulb temperature vs.capacity correction value2

Air flow variation ratio of indoor unit vs. capacity correction (For concealed duct type only)3

*1: Coefficient to use for the correction of the outdoor unit capacity when the total capacity of the indoor units are not equal to the outdoor unit capacity.

Cap

acity

cor

rect

ion

valu

e

Cap

acity

cor

rect

ion

valu

e

Outdoor air dry bulb temp. ( )

Cap

acity

cor

rect

ion

valu

e

Indoor air wet bulb temp. ( )

Air flow variation ratio (%)

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20

Outdoor unit

Indoor unit

L, is the longest one of

(l,o + l

,a, l

,o + l

,b, l

,o + l

,c)

H = ho + (Largest one of ha, hb, and hc)

Aha

hbhc

ho l,o

l,a

l,b

l,c

B

C

0

80

60

40

20

20 40 60 80 100 120 135

120

100

100

50

40

30

20

10

0

-10

-20

20 30 40 50 60 70 80 90 100 110 120 130 140 150-30

98%

100

92 90 8488 86 82 80 78 7696 94

5

*1: Coefficient to use for the correction of the outdoor unit capacity when the total capacity of the indoor units are not equal to the outdoor unit capacity.

Hei

ght o

f out

doo

r un

it H

(m)

Pipe length (Equivalent length) L (m)

Cor

rect

ion

(%)

Outdoor unit (8 to 30HP)

Standard capacity ratio

Indoor units total capacity ratio (%)

Correction of outdoor unit diversity5

Connecting pipe length and lift difference between indoor and outdoor units vs. capacity correction value4

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21

0.815 20 24

0.9

1.0

1.1

1.2

0.5

0.6

0.7

0.8

0.9

1.0

1.1

1.2

-15 -10 -5 0 5 10 15

0.9

1.0

1.1

80 90 100 110 120

5

2. Heating capacity calculation method : Required heating capacity = Heating capacity x Factor ( ) kW

Indoor air dry bulb temperature vs. capacity correction value1

Outdoor air wet bulb temperature vs. capacity correction value2

Air flow variation ratio of indoor unit vs. capacity correction (For concealed duct type only)3

*1: Coefficient to use for the correction of the outdoor unit capacity when the total capacity of the indoor units are not equal to the outdoor unit capacity.

*2: Refer to item 3 on the next page.

Indoor air dry bulb temp. ( )

Outdoor air wet bulb temp. ( )

Cap

acity

cor

rect

ion

valu

e

Air flow variation ratio (%)Cap

acity

cor

rect

ion

valu

e

Cap

acity

cor

rect

ion

valu

e

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22

0

80

60

40

20

20 40 60 80 100 120 135

120

100

Outdoor unit

Indoor unit

L, is the longest one of

(l,o + l

,a, l

,o + l

,b, l

,o + l

,c)

H = ho + (Largest one of ha, hb, and hc)

Aha

hbhc

ho l,o

l,a

l,b

l,c

B

C

100 20 30 40 50 60 70 80 90 100 110 120 130 140 150

-20

-10

0

10

20

30

40

50

-30

100%

92939496979899 9195

0.8

0.9

1.0

-15 -10 -5 0 5 10

5

Connecting pipe length and lift difference between indoor and outdoor units vs. capacity correction value4

Correction of outdoor unit diversity5

*1: Coefficient to use for the correction of the outdoor unit capacity when the total capacity of the indoor units are not equal to the outdoor unit capacity.

3. Capacity correction in case of frost on the outdoor heat exchanger when in heatingCorrect the heating capacity when frost can be found on the outdoor heat exchanger.Heating capacity =Capacity after correction of outdoor unit Correction value of capacity resulted from frost (Capacity after correction of outdoor unit : Heating capacity calculated in the above item 2.)

Capacity correction in case of frost on the outdoor heat exchanger6

Outdoor air wet bulb temp. (� )

Cap

acity

cor

rect

ion

valu

e

Indoor units total capacity ratio (%)Standard capacity ratio

Cor

rect

ion

(%)

Pipe length (Equivalent length) L (m)

Hei

ght o

f out

doo

r un

it H

(m)

Outdoor unit (8 to 30HP)

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23

3025 28201510-10

-5

0

5

10

15

20

25

30

35

40

45

-20

-15

-10

-5

0

5

10

15

20

5 10 15 20 25 30

4. Capacity calculation for each indoor unitCapacity for each indoor unit = Capacity after correction of outdoor unit x

Required standard capacity of indoor unitTotal value of standard indoor unit capacity

5. Operating temperature range

* The unit can be operated even if the outdoor temperature goes below -20 , however you must note that the war- ranty only covers down to -15 this is because operation beyond this temperature is outside of specification.* When outdoor air temperature falls to below -15 , it may shorten the lifespan of the product.* When outdoor temperature goes out of the specified range `̀ or `̀ mark is indicated on the remote control- ler display and the required operation will stop. `̀ & `̀ : When heating operation `̀ `̀ : When cooling operation

[Notice] This indication is not a failure. When outdoor temperature goes back to within the specified range, `̀ or `̀ disappear and normal operation will start. Operation stops because the concurrent operation can not be kept in the condition, as it is out of specification for Super HRM. (Outdoor temp.(DB) <-10 : Cooling, >21 : Heating)

* Do not use `̀Super HRM`̀ other than for personal usage where the ambient temperature may go down below -10 . (For example, fresh air intake equipment/Electric device/Food/Animals and plants/Art object)

6. Rated conditionsCooling :Indoor air temperature 27 DB/19.0 WB, Outdoor air temperature 35 DB

Heating :Indoor air temperature 20 DB, Outdoor air temperature 7 DB/6 WB

In cooling time In heating time

Indoor air wet bulb temp. ( )

Out

doo

r ai

r d

ry b

ulb

tem

p. (

)

Out

doo

r ai

r w

et b

ulb

tem

p. (

)

Indoor air dry bulb temp. ( )

Continuouslyoperable

range

Usa

ble

ran

ge(in

war

min

g-up

)

Usa

ble

ran

ge(in

pul

l dow

n)

Continuouslyoperable

range

5

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24

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25

6

Piping requirements

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26

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27

H4 0.5 m

a

g h i j

l m n

o

p q (q)

k

b c

Indoor unit

FS unitH1 50m

H3 5m

L1

A

La Lb Lc

LA

C

A B CB

L9

L3

L4 L5 L6 L7

Lh

L8

Lj

FS unitd e f H2 35m

L 150m

A B C

Li 50m

L2

LO 25m

FS unit

(Header)

300 m LA+La+Lb+Lc+L1+L2+L3+L4+L5+L6+L7+L8+9+a+b+c+d+e+f+g+h+i+j+k+l+m+n+o+p+q

125 m

150 m LA+Lc+L1+L3+L4+L5+L6+L7+L8+q

85 m L1

50 m L3+L4+L5+L6+L7+L8+q

30 m a+g, b+h, c+i, d+l, e+m, f+n, j, k

15 m g, h, i, l, m, n, L7+o, L7+L8+p, L7+L8+q

25 m LA+Lc (LA+Lb)

10 m La, Lb, Lc

30 m L7+L8+q, L7+L8+p

15 m L7+o

50 m -

30 m -

35 m -

15 m -

5 m -

0.5 m -

6 ForewordPiping requirements

6

1. Allowable length/height difference of refrigerant piping

*1 : The furthest outdoor unit from 1st branch is to be named C, and furthest indoor unit from 1st branch to be named (q).

*2 : The supplied connection cable can be used up to 5 m in pipe length between the indoor and FS unit. When the pipe length between the indoor and FS unit exceeds 5 m, you must use the connection cable kit (RBC-CBK15FE).* System restrictions

3 units84.0 kW48 units

H2 15mH2 > 15m

135% (*1)105%

*1 : MMY-MAP1201HT8 : UP to 120 %

Note 1) Combination of outdoor units : Header unit (1 unit) + Follower unit (0 to 2 units). Header unit is outdoor unit nearest to the connected indoor unitsNote 2) Install the outdoor units in order of capacity. (Header unit Follower unit 1 Follower unit 2)Note 3) Refer to outdoor unit combination table in page.6.Note 4) Piping to indoor units shall be perpendicular to piping to the head outdoor unit as Ex.1. Do not connect piping to indoor units in the same direction of head outdoor unit as Ex.2.

Max. No. of combined outdoor unitsMax. capacity of combined outdoor units

Max. No. of connected indoor units

Max. capacity of combined indoor units

Total extension of pipe (Liquid pipe, real length)

Farthest piping length L (*1)Real length

Equivalent length

Max. equivalent length of main piping

Equivalent length of farthest piping from 1st branching Li (*1)

Max. real length of indoor unit connecting piping

Max. real length between FS unit and indoor unit (*2)

Max. Equivalent length of outdoor unit connecting piping LO (*1)

Max. real length of outdoor unit connecting piping

Max. equivalent length between FS unit and indoor unit Lj

Max. real length between FS unit and header indoor unit Lh (*2)

Height between outdoor units H3

Height difference between indoor units in group control by oneFS unit H4

Height between indoorand outdoor units H1

Height between indoor units H2

Upper outdoor unit

Lower outdoor unit

Upper outdoor unit

Lower outdoor unitHeight

Difference

PipeLength

Piping section

* Allowable length and height difference of refrigerant pipingAllowable value

Note:In case of connecting method Ex.2, a largeamount of refrigerant and refrigerant oil mayreturn to the head unit. Therefore, set the T-shapejoint so that oil does not enter directly

<Ex.1> Header UnitFollower UnitFollower Unit.

<Ex.2> Header UnitFollower UnitFollower Unit

Height differencebetweenindoorunits

Height differencebetween indoor unitsin group control by one FS unit(Upper outdoor unit)

Heightdifferencebetweenoutdoorunits

Heightdifferencebetweenoutdoorand indoorunits

Header Unit Follower Unit

Follower Unit

Outdoor Unit

T-shapebranching

Main piping

1st branchingsection

Branching pipingConnecting piping ofindoor unit

Branchingheader

Indoor unit < Cooling only > < Cooling only >Equivalent length corresponded to farthest piping

Equivalent length corresponded to farthest piping after 1st branching

Main connecting piping between outdoor units Length corresponded to farthest piping between outdoor units

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28

No.

O/ 22.2 O/ 19.1 O/ 12.7 MMY-MAP0802FT8 O/ 22.2 O/ 19.1 O/ 12.7 MMY-MAP1002FT8 Pipe size of outdoor

unit O/ 28.6 O/ 19.1 O/ 12.7

MMY-MAP1202FT8

No.

Connecting pipe size between outdoor units O/ 28.6 O/ 22.2 O/ 15.9 O/ 9.5 Below 61.5 Below 22

No.

O/ 22.2 O/ 19.1 O/ 12.7 Below 33.5 Below 12 O/ 28.6 O/ 19.1 O/ 12.7 33.5 12 O/ 28.6 O/ 22.2 O/ 19.1 45.0 to below 61.5 16 to below 22 O/ 34.9 O/ 28.6 O/ 19.1 61.5 to below 73.0 22 to below 26

Size of main pipe

O/ 34.9 O/ 28.6 O/ 22.2

73.0 or more 26 or more

No.

O/ 15.9 O/ 12.7 O/ 9.5 Below 18.0 Below 6.4 O/ 22.2 O/ 19.1 O/ 12.7 18.0 to below 34.0 6.4 to below 12.2 O/ 28.6 O/ 22.2 O/ 15.9 34.0 to below 56.5 12.2 to below 20.2 O/ 34.9 O/ 28.6 O/ 15.9 56.5 to below 70.5 20.2 to below 25.2

Pipe size between branching sections

*1 *2 *3

O/ 34.9 O/ 28.6 O/ 19.1

70.5 or more 25.2 or more O/ 15.9 O/ 12.7 O/ 9.5 Below 18.0 Below 6.4

Pipe size between the end of branch and FS

unit O/ 22.2 O/ 19.1 O/ 12.7

18.0 or more 6.4 or more

No.

O/ 9.5 - O/ 6.4 007 to 012 Type O/ 12.7 - O/ 6.4 015 to 018 Type O/ 15.9 - O/ 9.5 024 to 056 Type

Piping of indoor unit

O/ 22.2 - O/ 12.7

072 to 096 Type O/ 9.5 - O/ 6.4 15m or less O/ 12.7 O/ 9.5 15m above

007 to 012 Type

O/ 12.7 - O/ 6.4 15m or less O/ 15.9 O/ 9.5 15m above

015 to 018 Type

Piping of cooling only indoor unit (Between branching and indoor

unit) *2 O/ 15.9 - O/ 9.5

024 to 056 Type O/ 22.2 - O/ 12.7 072 to 096 Type

No.

Below 18.0 Below 6.4 RBM-BY53FE RBM-BY53E 18.0 to below 40.0 6.4 to below 14.2 RBM-BY103FE RBM-BY103E 40.0 to below 70.5 14.2 to below 25.2 RBM-BY203FE RBM-BY203E

Y-Shape branching joint *4 *5

70.5 or more 25.2 or more RBM-BY303FE RBM-BY303E Below 40.0 Below 14.2 RBM-HY1043FE RBM-HY1043E For

4 Branching 40.0 to below 70.5 14.2 to below 25.2 RBM-HY2043FE RBM-HY2043E Below 40.0 Below 14.2 RBM-HY1083FE RBM-HY1083E

Branching Header

*4, *5, *6 For 8 Branching 40.0 to below 70.5 14.2 to below 25.2 RBM-HY2083FE RBM-HY2083E

T-Shape branching joint (For connecting outdoor

unit)

- Balance pipe (O/ 9.52) X 1 - Piping at liquid side (O/ 12.7 to O/ 22.2) X 1 - Piping at discharge gas side (O/ 19.1 to O/ 28.6) X 1 - Piping at suction gas side (O/ 22.2 to O/ 38.1) X 1

RBM-BT13FE

RBM-Y1122FE Below 11.2 Below 4.0 5

RBM-Y1802FE 11.2 to below 18.0

4.0 to below 6.4 8

RBM-Y2802FE 18.0 to 28.0 or less

6.4 to 10.0 or less 8

OK OK 1/4,, 6.35 0.80

OK OK 3/8,, 9.52 0.80

OK OK 1/2,, 12.70 0.80

OK OK 5/8,, 15.88 1.00

NG OK 3/4,, 19.05 1.00

NG OK 7/8,, 22.20 1.00

NG OK 1.1/8,, 28.58 1.00

NG OK 1.3/8,, 34.92 1.10

1

2

3

4

5

6

7

8

9

10

6

2. Selection of refrigerant piping

* Selection of refrigerant pipingSelection of FS unit

* Minimum wall thickness for R410A application

* Selection for branching section

*1 In case the pipe exceeds the main pipe size, it should be the same as the main pipe size.*2 2 pipes for cooling only indoor unit shall be used with liquid pipe and suction gas pipe.*3 2 pipes from the FS unit to the branching section shallbe used with liquid pipe and suction gas pipe.*4 Branching pipe on the 1st branch should be selected according to the capacity code of the outdoor unit.*5 In case total capacity code of indoor units exceeds the capacity code of the outdoor unit, the pipe size should be selected based on the capacity of the outdoor unit.*6 For 1 line after header branching, indoor units with a total maximum capacity code of 6.0 in total can be connected.

Outdoor unit

Balance pipe1st branching section

FS unit

Main connecting piping between outdoor units

Indoor unit

< Cooling only >

Group control

< Cooling only >

FS unit

Outdoor unit connecting piping

2

5 5

4 4 4 4 4

6 6 6 6 6

5 10

10

6

1

T-shape branching joint

9Main piping3

Liquid pipeDischarge gas pipe

Suction gas pipe

4

Liquid pipeDischarge gas pipe

Suction gas pipe

4

Y-Shape branching joint8

8

8

8 8

Y-Shape branching joint8

4 6

5 5 5

6 6 7 7

1 1

Follower Unit

C

Follower Unit

B

Header Unit

A

Suctiongas sideItem

Dischargegas side Liquid side Outdoor unit model name

Item

Item

Item

Item

Suctiongas side

Dischargegas side Liquid side

Suctiongas side

Dischargegas side Liquid side

Suctiongas side

Dischargegas side Liquid side

Suctiongas side

Dischargegas side Liquid side

Balancepipe

Total capacity code of indoor units atdownstream side

Equivalent tocapacity Equivalent to HP

Total capacity code of all outdoor units

Equivalent tocapacity Equivalent to HP

Total capacity code of all outdoor units

Equivalent tocapacity Equivalent to HP

Capacity rank of indoor unit

Model Name

Total capacity code ofindoor unit

Max.No. ofconnected

indoorunits

Equivalent tocapacity (kW)

Equivalentto HP

SoftHalfHard

orHard

Outerdia.

(Inch)

Outerdia.

(mm)

MinimumWall

Thickness(mm)

Equivalent to capacityTotal capacity code of indoor unit

Equivalent to HP For 3 piping For 2 pipingModel Name

1 set of 4 types of T-shape joint pipes as described below

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29

R410A

6

3. Charging requirement with additional refrigerantAfter the system has been vacuumed, replace the vacuum pump with a refrigerant cylinder and charge thesystem with additional refrigerant.

Calculating the amount of additional refrigerant required

Refrigerant in the system when shipped from the factory

Refrigerant amount charged in factory Heat recovery model

8HP

11.5kg

10HP

11.5kg

12HP

11.5kg

When the system is charged with refrigerant at the factory, the amount of refrigerant needed for the pipes at thesite is not included. Therefore, calculate the additional amount needed and add the required amount to the system.

Additional refrigerant charge amount is calculated based on the size of liquid pipe at site and its real length.(Calculation)

[Additional refrigerant charge amount at site] =

[Real length of liquid pipe] xAdditional refrigerant charge amountper liquid pipe 1m (Table 1)

Compensation bysystem HP (Table 2)

Example : Additional charge amount R (kg) ={(L1 x 0.025kg/m) + (L2 x 0.055kg/m) + (L3 x 0.105kg/m)+ (L4 x 0.160kg/m) + (L5 x 0.250kg/m)} x 1.3

L1 : Real total length of liquid pipe 6.4 (m)L2 : Real total length of liquid pipe 9.5 (m)L3 : Real total length of liquid pipe 12.7 (m)L4 : Real total length of liquid pipe 15.9 (m)L5 : Real total length of liquid pipe 19.1 (m)System : 24HP

Pipe dia. at liquid side

Additional refrigerant amount/1m

6.4

0.025kg

9.5

0.055kg

12.7

0.105kg

15.9

0.160kg

19.1

0.250kg

22.2

0.350kg

Table 1

Combinedhorse power

(HP)

Outdoorcombination (HP)

Compensationby system HP

(kg)

8

10

12

16

18

20

24

26

28

30

8

10

12

8

10

10

8

10

10

10

8

8

10

8

8

10

10

8

8

8

10

2.0

2.5

3.0

-1.5

0.0

2.0

-4.5

-3.0

-1.5

0.0

Table 2

x 1.3 +

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30

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31

7

Refrigerant cycle diagram

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32

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33

7 ForewordRefrigerant cycle diagram

7

1. Inverter Unit (8,10,12HP)Model : MMY-MAP0802FT8, MAP1002FT8, MAP1202FT8

tubeCapillary

Str ainer

Solenoid valve

Solenoid valve

SwitchHigh-pressure

Com

pres

sor

2

Com

pres

sor

1

StrainerStrainer

Strainer

Strainer

valveservicepipeBalance

sideLiquid

valveservice

gasDischarge

side

valveservice

Suctiongasside

valveservice

sensorLow pressure

Sensor(TS1)

tubeCapillary

Capillary tube Capillary tube

Sensor(TK2)

Capillary tubeCapillary tube

Check joint

High pressuresensor

Check valve

tubeCapillary

valveSolenoid

valveSolenoid

Fan motor

Propeller fan

Checkvalve

Checkvalve

ValveCheck

ValveCheck

(SV3D)

StrainerCheck valve (SV11)

tubeCapillary

tubeCapillary

Strainer

Sensor(TD2)

SwitchHigh-pressure

valveSolenoid

Solenoid valve

Solenoid valve

Sensor

(SV6)Strainer

StrainertubeCapillary

tubeCapillary

(Inv

erte

r)

Sensor

(Inv

erte

r)

Separator

Oil

Strainer

(TK3)

Solenoid valve(SV41)

Sensor

Sensor

Sensor

Oil tank

Strainer

Main heat exchanger

Main heat exchanger

(Right side)

(Left side)

Sub-heat exchanger

Sub-heat exchanger

Solenoid valve

Solenoid valve

Solenoid valve

Check valve

Solenoid valveCheck valve

4-way valve

Sensor

jointCheck

Accumulator

jointCheck

Liquidtank

Sensor

Check valve

Pulse motor valve

Strainer Sensor

M

(PMV2)

(PMV3)

(SV12)(PMV1)

(TE1)

(TL)

(SV5)

(TS2)

(SV2)

(TO)

(SV42)

(TK4)

(TK1)

(SV3B)

(SV3A)

(SV3E)

(SV3C)(TD1)

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34

7

2. Explanation of Functional PartsFunctional part name Functional outline

Solenoid valve

4-way valve

Pulse motor valve

Oil separator

Temp. sensor

Pressure sensor

Heater

Balance pipe

1.SV3A

2.SV3B

3.SV3C

4.SV3D

5.SV3E

6.SV2

7.SV4(n)

8.SV5

9.SV6

10.SV11

11.SV12

PMV1,2

PMV3

1.TD1 TD2

2.TS1

3.TS2

4.TE1

5.TK1,TK2, TK3,TK4

6.TL

7.TO

1.High pressure sensor

2. Low pressuresensor

Compressor caseheater

Accumulator caseheater

(Connector CN324: Red) 1) Collects oil in the oil tank during OFF time.(Connector CN313: Blue) 1) Returns oil in the balance pipe to the compressor.(Connector CN314: Black) 1) Pressurizes oil reserved in the oil tank during operation.(Connector CN323: White) 1) Reserves oil in the oil separator during OFF time, and supplies oil during operation.

(Connector CN323: White) 1) Turns on during operation and balances oil between the compressors.(Hot gas bypass) (Connector CN312: White) 1) Low pressure release function 2) High pressure release function 3) Gas balance function during off time

(Start compensation valve of compressor) (Connector CN311: Blue) 1) For gas balance start 2) High pressure release function 3) Low pressure release function(Connector CN310: White) 1) For gas balance during operation mode change 2) For low pressure balance in all cooling operation

(Connector CN309 : White) 1) Liquid bypass function for releasing discharge temperature(Connector CN322 : White) 1) Discharge gas line shut-down function in all cooling and defrosting operation

(Connector CN319 : White) 1) Controls flow rate for sub-heat exchanger in simultaneous operation 2) Controls flow rate for sub-heat exchanger when defrosting

(Connector CN317: Blue) 1) Cooling/heating exchange 2)Reverse defrost 3) Main/sub heat exchager exchange

(Connector CN300, 301: White) 1) Super heat control function in all heating and majority heating operation 2) Sub-cool adjustment function in cooling operation 3) Distribution control in simultaneous operation(Connector CN302 : Red) 1) Controls flow rate for sub-heat exchanger in simultaneous operation 2) Preventive function for high-pressure rising in all cooling and all heating operation

1) Prevention for rapid decreasing of oil (Decreases oil flowing into the refrigeration cycle) 2) Reserve function of surplus oil

(TD1: Connector, CN502: White, TD2: Connector, CN503: Pink) 1) Protection of compressor discharge temp. Used for release(Connector CN504: White) 1) Controls super heat in heating operation(Connector CN522 : Black) 1) For refrigerant recovery control in all cooling and majority cooling operation 2) Detects overheating on refigeration cycle.

(Connector CN505: Green) 1) Controls defrost in all heating and majority heating operation 2) Controls outdoor fan in all heating and simultaneous operation

TK1 Connector CN514: Black, TK2 Connector CN515: Green, TK3 Connector CN516: Red, TK4 Connector CN523: Yellow 1) Determines oil level of the compressor

(Connector CN521: White) 1) Detects sub-cool in all cooling and simultaneous operation(Connector CN507: Yellow) 1) Detects outside temperature(Connector CN501: Red) 1) Detects high pressure and controls compressor capacity 2) Detects high pressure in all cooling operation, and controls the fan in low ambient cooling operation 3) Controls sub-cool of heating indoor unit. 4) Controls outdoor fan speed in majority cooling operation.(Connector CN500: White) 1) Detects low pressure in all cooling and simultaneous operation and controls compressor capacity 2) Detects low pressure in all heating and simultaneous operation, and controls the super heat

(Compressor 1 Connector CN316: White, Compressor 2 Connector CN315: Blue) 1) Prevents liquid accumulation to the compressor(Connector CN321: Red) 1) Prevents liquid accumulation to the accumulator

1) Oil balancing in each outdoor unit (This model doesn't use balance pipe)

( )

Page 38: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

35

(Depressurization valve)1) Returns refrigerant in indoor unit when stopped or in thermo-OFF status.2) Depressurizes indoor unit during the ON operation when the indoor unit stops heating.

PipePipePipeSuction gasDischarge gasLiquid

StrainerCheck valve

Strainer

tubeCapillary

tubeCapillary

tubeCapillary

of indoor unitTo gas side

of indoor unitTo liquid side

valveCheck

Strainer

SVSSSVDD

SVSSVD

PipePipePipeSuction gasDischarge gasLiquid

Strainer

tubeCapillary

tubeCapillary

tubeCapillary

of indoor unitTo gas side

of indoor unitTo liquid side

valveCheck

Strainer

SVS

SVSSSVDD

SVD

PipePipePipeSuction gasDischarge gasLiquid

Strainer

tubeCapillary

tubeCapillary

tubeCapillary

of indoor unitTo gas side

of indoor unitTo liquid side

valveCheck

Strainer

SVS

SVSSSVDD

SVD

Check valve

Strainer

Check valve

Strainer

3. Heat Exchanger of Outdoor Unit

7

Propeller Fan

Fan motor

Main Heat Exchanger

AirDirection

SubHeat Exchanger

Rear side(Right)

SubHeat Exchanger

AirDirection

Front side(Left)

Model RBM-Y1122FE Model RBM-Y1802FE Model RBM-Y2802FE

4. FS Unit (Flow Selector Unit)

Functional part nameSolenoidValve

SVD

SVS

SVDD

SVSS

(Discharge gas pipe shut-down valve)1) High pressure line in heating

Functional outline

(Suction gas pipe shut-down valve)1) Low pressure line in cooling(Pressurization valve)1) Pressurizes indoor unit during the ON operation when indoor unit starts heating.

Page 39: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

36

77

5. Indoor Unit

Liquid side Gas side

Strainer Capillary tube

Sensor(TC2)

Pulse MotorValve (PMV)

Strainer Sensor(TCJ)

Sensor(TA)

Fan

Fan motor

Sensor(TC1)

Air heat exchangerat indoor side

M

(NOTE) MMU-AP0071YH to AP0121YH type air conditioners do not have a TC2 sensor.

Functional part name Functional outline

Pulse Motor Valve

Temp. sensor

PMV

1. TA

2. TC1

3. TC2

4. TCJ

(Connector CN082 (6P): Blue)1)Controls super heat in cooling operation2)Controls sub-cooling in heating operation3)Recovers refrigerant oil in cooling operation4)Recovers refrigerant oil in heating operation

(Connector CN104 (2P): Yellow)1)Detects indoor suction temperature

(Connector CN100 (3P): Brown)1)Controls PMV super heat in cooling operation

(Connector CN101 (2P): Black)1)Controls PMV sub-cool in heating operation

(Connector CN102 (2P): Red)1)Controls PMV super heat in cooling operation2)[MMU-AP0071 to AP0121YH only]Controls PMV sub-cool in heating operation

Page 40: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

37

Liquid pipe

Discharge gas pipe

Suction gas pipe

SV1 2

PMV3v a l v e

SV3 C

TK3

Ac c u mu l a t o r

TLSV6

4 - wa y

SV3 D

Pd Se n s o r

TS1

SV4 1

TD1 TD2

HPHP

SV3 B

SV3 A

Ps s e n s o r

FM

SV5SV1 1

OS

Oil tank

TK2TK1

TK4SV3 E

2Co

mpr

esso

r

1Co

mpr

esso

r

PMV1 PMV2

TE1

TO

TS2

SV2

SV4 2L i q u i d

Ta n k

Co n d e n s e r

Co n d e n s e r

OFF

TCJTCJTCJTCJ

SVSSSVDD

SVSSVD

SVSSSVDD

SVSSVD

SVSSSVDD

SVSSVD

SVSSSVDD

SVSSVD

TC1TC2

PMV

STST

TC1TC2

PMV

STST

TC1TC2

PMV

STST

TC1TC2

PMV

STST

SV1 2

PMV3v a l v e

SV3 C

TK3

Ac c u mu l a t o r

TLSV6

4 - wa y

SV3 D

Pd Se n s o r

TS1

SV4 1

TD1 TD2

HPHP

SV3 B

SV3 A

Ps s e n s o r

FM

SV5SV1 1

OS

Oil tank

TK2TK1

TK4SV3 E

2Co

mpr

esso

r

1Co

mpr

esso

r

PMV1 PMV2

TE1

TO

TS2

SV2

SV4 2L i q u i d

Ta n k

Co n d e n s e r

Co n d e n s e r

OFF

7

6. SYSTEMATIC DRAWING

7

1. All Cooling Operation (Outdoor temperature : 10 or more)

Header Unit Follower Unit

FlowSelectorUnit

IndoorUnit

Cooling Cooling Cooling Stop

High-pressure gas or condensateliquid refrigerant

Low-pressure gas(refrigerant recovery line)

Low-pressure gas

Outdoor unit4WV

SV4(n)SV5SV6SV11SV12Fan

OFF(*1)ON

ControlOFFOFF

Control

SV3ASV3BSV3CSV3DSV3E

PMV1,2PMV3

ControlControlControlControl

ONControlClose

(*1) Turns on during compressor off status.

FS unit and Indoor unit

OFFONOFFON

Control

Cooling thermo-ON

SVDSVS

SVDDSVSSPMV

OFFOFFOFFON

Close

StopSVDSVS

SVDDSVSSPMV

High-pressure refrigerant(plunging circuit)

Page 41: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

38

Liquid pipe

Discharge gas pipe

Suction gas pipe

SV1 2

PMV3v a l v e

SV3 C

TK3

Ac c u mu l a t o r

TLSV6

4 - wa y

SV3 D

Pd Se n s o r

TS1

SV4 1

TD1 TD2

HPHP

SV3 B

SV3 A

Ps s e n s o r

FM

SV5SV1 1

OS

Oil tank

TK2TK1

TK4SV3 E

2Co

mpr

esso

r

1Co

mpr

esso

r

PMV1 PMV2

TE1

TO

TS2

SV2

SV4 2L i q u i d

Ta n k

ON

TCJTCJTCJTCJ

SVSSSVDD

SVSSVD

SVSSSVDD

SVSSVD

SVSSSVDD

SVSSVD

SVSSSVDD

SVSSVD

TC1TC2

PMV

STST

TC1TC2

PMV

STST

TC1TC2

PMV

STST

TC1TC2

PMV

STST

Condenser

Condenser

SV1 2

PMV3v a l v e

SV3 C

TK3

Ac c u mu l a t o r

TLSV6

4 - wa y

SV3 D

Pd Se n s o r

TS1

SV4 1

TD1 TD2

HPHP

SV3 B

SV3 A

Ps s e n s o r

FM

SV5SV1 1

OS

Oil tank

TK2TK1

TK4SV3 E

2Co

mpr

esso

r

1Co

mpr

esso

r

PMV1 PMV2

TE1

TO

TS2

SV2

SV4 2L i q u i d

Ta n k

ONCondenser

Condenser

7

2. All Cooling Operation (Outdoor temperature : 10 or more)

High-pressure gas or condensateliquid refrigerant

Low-pressure gas(refrigerant recovery line)

Low-pressure gas

High-pressure refrigerant(plunging circuit)

Outdoor unit4WV

SV4(n)SV5SV6SV11SV12Fan

ON(*1)OFF

ControlON

ControlControl

SV3ASV3BSV3CSV3DSV3E

PMV1,2PMV3

ControlControlControlControl

ONControl(*2)

Close

(*1) Turns on during compressor off status.(*2) Control depends on the operation status.

FS unit and Indoor unit

OFFONOFFON

Control

Cooling thermo-ON

SVDSVS

SVDDSVSSPMV

OFFOFFOFFON

Close

StopSVDSVS

SVDDSVSSPMV

Cooling Cooling Cooling Stop

Header Unit Follower Unit

FlowSelectorUnit

IndoorUnit

Page 42: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

39

Liquid pipe

Discharge gas pipe

Suction gas pipe

SV1 2

PMV3v a l v e

SV3 C

TK3

Ac c u mu l a t o r

TLSV6

4 - wa y

SV3 D

Pd Se n s o r

TS1

SV4 1

TD1 TD2

HPHP

SV3 B

SV3 A

Ps s e n s o r

FM

SV5SV1 1

OS

Oil tank

TK2TK1

TK4SV3 E

2Co

mpr

esso

r

1Co

mpr

esso

r

PMV1 PMV2

TE1

TO

TS2

SV2

SV4 2L i q u i d

Ta n k

ON

TCJTCJTCJTCJ

SVSSSVDD

SVSSVD

SVSSSVDD

SVSSVD

SVSSSVDD

SVSSVD

SVSSSVDD

SVSSVD

TC1TC2

PMV

STST

TC1TC2

PMV

STST

TC1TC2

PMV

STST

TC1TC2

PMV

STST

SV1 2

PMV3v a l v e

SV3 C

TK3

Ac c u mu l a t o r

TLSV6

4 - wa y

SV3 D

Pd Se n s o r

TS1

SV4 1

TD1 TD2

HPHP

SV3 B

SV3 A

Ps s e n s o r

FM

SV5SV1 1

OS

Oil tank

TK2TK1

TK4SV3 E

2Co

mpr

esso

r

1Co

mpr

esso

r

PMV1 PMV2

TE1

TO

TS2

SV2

SV4 2L i q u i d

Ta n k

ON

Evaporator

Evaporator

Evaporator

Evaporator

3. All Heating Operation

7

Outdoor unit4WV

SV4(n)SV5SV6SV11SV12Fan

ON(*1)OFF

ControlONOFF

Control

SV3ASV3BSV3CSV3DSV3E

PMV1,2PMV3

ControlON

ControlControl

ONControlClose(*2)

(*1) Turn on during compressor stop status.(*2) Control based on operation status.

FS unit and Indoor unit

ONOFFOFFOFF

Control

Heating thermo-ON

SVDSVS

SVDDSVSSPMV

OFFOFFOFFOFF

Close

Heating thermo-OFF

SVDSVS

SVDDSVSSPMV

StopOFFOFFOFFON

Close

SVDSVS

SVDDSVSSPMV

Header Unit Follower Unit

FlowSelectorUnit

IndoorUnit

Heating Heating Heating Stop

High-pressure gas or condensate liquid refrigerant

Low-pressure gas (refrigerant recovery line)

Low-pressure gas

High-pressure refrigerant (plunging circuit)

Page 43: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

40

Liquid pipe

Discharge gas pipe

Suction gas pipe

SV1 2

PMV3v a l v e

SV3 C

TK3

Ac c u mu l a t o r

TLSV6

4 - wa y

SV3 D

Pd Se n s o r

TS1

SV4 1

TD1 TD2

HPHP

SV3 B

SV3 A

Ps s e n s o r

FM

SV5SV1 1

OS

Oil tank

TK2TK1

TK4SV3 E

2Co

mpr

esso

r

1Co

mpr

esso

r

PMV1 PMV2

TE1

TO

TS2

SV2

SV4 2L i q u i d

Ta n k

ON

TCJTCJTCJTCJ

SVSSSVDD

SVSSVD

SVSSSVDD

SVSSVD

SVSSSVDD

SVSSVD

SVSSSVDD

SVSSVD

TC1TC2

PMV

STST

TC1TC2

PMV

STST

TC1TC2

PMV

STST

TC1TC2

PMV

STST

Condenser

Condenser

SV1 2

PMV3v a l v e

SV3 C

TK3

Ac c u mu l a t o r

TLSV6

4 - wa y

SV3 D

Pd Se n s o r

TS1

SV4 1

TD1 TD2

HPHP

SV3 B

SV3 A

Ps s e n s o r

FM

SV5SV1 1

OS

Oil tank

TK2TK1

TK4SV3 E

2Co

mpr

esso

r

1Co

mpr

esso

r

PMV1 PMV2

TE1

TO

TS2

SV2

SV4 2L i q u i d

Ta n k

ON

Condenser

Condenser

7

4. Mainly Cooling, Partly Heating Operation

Cooling Cooling HeatingStop

Header Unit Follower Unit

FlowSelectorUnit

IndoorUnit

Outdoor unit4WV

SV4(n)SV5SV6SV11SV12Fan

ON(*1)OFF

ControlON

ControlControl

SV3ASV3BSV3CSV3DSV3E

PMV1,2PMV3

ControlControlControlControl

ONClose(*2)

Close

(*1) Turns on during compressor off status.(*2) Control based on operation status.

FS unit and Indoor unit

OFFONOFFON

Control

Cooling, thermo-ON

SVDSVS

SVDDSVSSPMV

ONOFFOFFOFF

Control

Heating thermo-ON

SVDSVS

SVDDSVSSPMV

StopOFFOFFOFFON

Close

SVDSVS

SVDDSVSSPMV

High-pressure gas or condensate liquid refrigerant

Low-pressure gas (refrigerant recovery line)

Low-pressure gas

High-pressure refrigerant (plunging circuit)

Page 44: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

41

5. Mainly Heating, Partly Cooling Operation

7

Liquid pipe

Discharge gas pipe

Suction gas pipe

SV1 2

PMV3v a l v e

SV3 C

TK3

Ac c u mu l a t o r

TLSV6

4 - wa y

SV3 D

Pd Se n s o r

TS1

SV4 1

TD1 TD2

HPHP

SV3 B

SV3 A

Ps s e n s o r

FM

SV5SV1 1

OS

Oil tank

TK2TK1

TK4SV3 E

2Co

mpr

esso

r

1Co

mpr

esso

r

PMV1 PMV2

TE1

TO

TS2

SV2

SV4 2L i q u i d

Ta n k

ON

TCJTCJTCJTCJ

SVSSSVDD

SVSSVD

SVSSSVDD

SVSSVD

SVSSSVDD

SVSSVD

SVSSSVDD

SVSSVD

TC1TC2

PMV

STST

TC1TC2

PMV

STST

TC1TC2

PMV

STST

TC1TC2

PMV

STST

Evaporator

EvaporatorSV1 2

PMV3v a l v e

SV3 C

TK3

Ac c u mu l a t o r

TLSV6

4 - wa y

SV3 D

Pd Se n s o r

TS1

SV4 1

TD1 TD2

HPHP

SV3 B

SV3 A

Ps s e n s o r

FM

SV5SV1 1

OS

Oil tank

TK2TK1

TK4SV3 E

2Co

mpr

esso

r

1Co

mpr

esso

r

PMV1 PMV2

TE1

TO

TS2

SV2

SV4 2L i q u i d

Ta n k

ON

Evaporator

Evaporator

Outdoor unit4WV

SV4(n)SV5SV6SV11SV12Fan

ON(*1)OFF

ControlON

Close(*2)

Control

SV3ASV3BSV3CSV3DSV3E

PMV1,2PMV3

ControlControlControlControl

ONControlClose(*2)

(*1) Turns on during compressor off status.(*2) Control based on operation status.

FS unit and Indoor unit

OFFONOFFON

Control

Heating thermo-ON

SVDSVS

SVDDSVSSPMV

ONOFFOFFOFF

Control

Heating thermo-OFF

SVDSVS

SVDDSVSSPMV

StopOFFOFFOFFON

Close

SVDSVS

SVDDSVSSPMV

High-pressure gas or condensate liquid refrigerant

Low-pressure gas (refrigerant recovery line)

Low-pressure gas

High-pressure refrigerant (plunging circuit)

Header Unit Follower Unit

FlowSelectorUnit

IndoorUnit

Heating Heating Stop Cooling

Page 45: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

42

Liquid pipe

Discharge gas pipe

Suction gas pipe

TCJTCJTCJTCJ

SVSSSVDD

SVSSVD

SVSSSVDD

SVSSVD

SVSSSVDD

SVSSVD

SVSSSVDD

SVSSVD

TC1TC2

PMV

STST

TC1TC2

PMV

STST

TC1TC2

PMV

STST

TC1TC2

PMV

STST

OFF

SV1 2

PMV3valve

SV3C

TK3

Accumulator

TLSV6

4-way

SV3D

Pd S ensor

TS1

SV41

TD1 TD2

HPHP

SV3B

SV3A

Ps sensor

FM

SV5SV11

OS

Oil tank

TK2TK1

TK 4SV3E

2

Comp

ress

or

1

Comp

ress

or

PMV1 PMV2

TE1

TO

TS2

SV2

SV42LiquidTank

OFF

SV1 2

PMV3valve

SV3C

TK3

Accumulator

TLSV6

4-way

SV3D

Pd S ensor

TS1

SV41

TD1 TD2

HPHP

SV3B

SV3A

Ps sensor

FM

SV5SV11

OS

Oil tank

TK2TK1

TK 4SV3E

2

Comp

ress

or

1

Comp

ress

or

PMV1 PMV2

TE1

TO

TS2

SV2

SV42LiquidTank

7

6. Defrosting

(*1) Turns on during compressor off status.(*2) Control based on operation status.

Outdoor unit4WV

SV4(n)SV5SV6SV11SV12Fan

OFF(*1)ON

ControlOFF

CloseStop(*2)

SV3ASV3BSV3CSV3DSV3E

PMV1,2PMV3

OFFOFFOFF

ControlON

ControlControl

OFFONOFFON

ControlControl

FS unit and Indoor unitCooling thermo-ON

SVDSVS

SVDDSVSSPMVFan

OFFONOFFON

ControlStop

OthersSVDSVS

SVDDSVSSPMVFan

High-pressure gas or condensate liquid refrigerant

Low-pressure gas (refrigerant recovery line)Low-pressure gas

Header Unit Follower Unit

FlowSelectorUnit

IndoorUnit

Coolingindoor unit

Heatingindoor unit

Heatingindoor unit

Stopindoor unit

Defrosting is performed during "All heating" or "Mainly heating, partly cooling" operation.

Page 46: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

43

8

Sensible capacity table

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44

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45

4-way Discharge Cassette Type ( MMU-AP****H ) TC : Total capacity [kW] SHC : Sensible capacity [kW]

8

8 Sensible capacity table

14.0 WB 16.0 WB 18.0 WB 19.0 WB 20.0 WB 22.0 WB 24.0 WB20 DB 23 DB 26 DB 27 DB 28 DB 30 DB 32 DB

DB TC SHC TC SHC TC SHC TC SHC TC SHC TC SHC TC SHC10.0 2.3 1.9 2.5 2.0 2.7 2.1 2.8 2.1 2.9 2.1 3.1 2.1 3.2 2.012.0 2.3 1.9 2.5 2.0 2.7 2.1 2.8 2.1 2.9 2.1 3.1 2.1 3.2 2.014.0 2.3 1.9 2.5 2.0 2.7 2.1 2.8 2.1 2.9 2.1 3.1 2.1 3.2 2.016.0 2.3 1.9 2.5 2.0 2.7 2.1 2.8 2.1 2.9 2.1 3.1 2.1 3.2 2.018.0 2.3 1.9 2.5 2.0 2.7 2.1 2.8 2.1 2.9 2.1 3.1 2.1 3.2 2.020.0 2.3 1.9 2.5 2.0 2.7 2.1 2.8 2.1 2.9 2.1 3.1 2.1 3.2 2.021.0 2.3 1.9 2.5 2.0 2.7 2.1 2.8 2.1 2.9 2.1 3.1 2.1 3.2 2.0

009 23.0 2.3 1.9 2.5 2.0 2.7 2.1 2.8 2.1 2.9 2.1 3.1 2.1 3.2 2.025.0 2.3 1.9 2.5 2.0 2.7 2.1 2.8 2.1 2.9 2.1 3.1 2.1 3.2 2.027.0 2.3 1.9 2.5 2.0 2.7 2.1 2.8 2.1 2.9 2.1 3.1 2.1 3.2 2.029.0 2.3 1.9 2.5 2.0 2.7 2.1 2.8 2.1 2.9 2.1 3.1 2.1 3.2 2.031.0 2.3 1.9 2.5 2.0 2.7 2.1 2.8 2.1 2.9 2.1 3.1 2.1 3.2 2.033.0 2.3 1.9 2.5 2.0 2.7 2.1 2.8 2.1 2.9 2.1 3.1 2.1 3.2 2.035.0 2.3 1.9 2.5 2.0 2.7 2.1 2.8 2.1 2.9 2.1 3.1 2.1 3.2 2.037.0 2.2 1.8 2.5 1.9 2.6 2.0 2.7 2.0 2.8 2.0 3.0 2.0 3.1 2.039.0 2.2 1.8 2.4 1.9 2.6 2.0 2.6 2.0 2.7 2.0 2.9 2.0 3.0 1.910.0 3.0 2.3 3.3 2.5 3.5 2.6 3.6 2.6 3.7 2.6 3.9 2.6 4.1 2.512.0 3.0 2.3 3.3 2.5 3.5 2.6 3.6 2.6 3.7 2.6 3.9 2.6 4.1 2.514.0 3.0 2.3 3.3 2.5 3.5 2.6 3.6 2.6 3.7 2.6 3.9 2.6 4.1 2.516.0 3.0 2.3 3.3 2.5 3.5 2.6 3.6 2.6 3.7 2.6 3.9 2.6 4.1 2.518.0 3.0 2.3 3.3 2.5 3.5 2.6 3.6 2.6 3.7 2.6 3.9 2.6 4.1 2.520.0 3.0 2.3 3.3 2.5 3.5 2.6 3.6 2.6 3.7 2.6 3.9 2.6 4.1 2.521.0 3.0 2.3 3.3 2.5 3.5 2.6 3.6 2.6 3.7 2.6 3.9 2.6 4.1 2.5

012 23.0 3.0 2.3 3.3 2.5 3.5 2.6 3.6 2.6 3.7 2.6 3.9 2.6 4.1 2.525.0 3.0 2.3 3.3 2.5 3.5 2.6 3.6 2.6 3.7 2.6 3.9 2.6 4.1 2.527.0 3.0 2.3 3.3 2.5 3.5 2.6 3.6 2.6 3.7 2.6 3.9 2.6 4.1 2.529.0 3.0 2.3 3.3 2.5 3.5 2.6 3.6 2.6 3.7 2.6 3.9 2.6 4.1 2.531.0 3.0 2.3 3.3 2.5 3.5 2.6 3.6 2.6 3.7 2.6 3.9 2.6 4.1 2.533.0 3.0 2.3 3.3 2.5 3.5 2.6 3.6 2.6 3.7 2.6 3.9 2.6 4.1 2.535.0 3.0 2.3 3.3 2.5 3.5 2.6 3.6 2.6 3.7 2.6 3.9 2.6 4.1 2.537.0 2.9 2.2 3.2 2.4 3.4 2.5 3.5 2.5 3.6 2.5 3.8 2.5 4.0 2.439.0 2.8 2.2 3.1 2.3 3.3 2.5 3.4 2.4 3.5 2.4 3.7 2.4 3.9 2.410.0 3.7 2.8 4.1 3.0 4.4 3.2 4.5 3.2 4.6 3.2 4.9 3.2 5.1 3.112.0 3.7 2.8 4.1 3.0 4.4 3.2 4.5 3.2 4.6 3.2 4.9 3.2 5.1 3.114.0 3.7 2.8 4.1 3.0 4.4 3.2 4.5 3.2 4.6 3.2 4.9 3.2 5.1 3.116.0 3.7 2.8 4.1 3.0 4.4 3.2 4.5 3.2 4.6 3.2 4.9 3.2 5.1 3.118.0 3.7 2.8 4.1 3.0 4.4 3.2 4.5 3.2 4.6 3.2 4.9 3.2 5.1 3.120.0 3.7 2.8 4.1 3.0 4.4 3.2 4.5 3.2 4.6 3.2 4.9 3.2 5.1 3.121.0 3.7 2.8 4.1 3.0 4.4 3.2 4.5 3.2 4.6 3.2 4.9 3.2 5.1 3.1

015 23.0 3.7 2.8 4.1 3.0 4.4 3.2 4.5 3.2 4.6 3.2 4.9 3.2 5.1 3.125.0 3.7 2.8 4.1 3.0 4.4 3.2 4.5 3.2 4.6 3.2 4.9 3.2 5.1 3.127.0 3.7 2.8 4.1 3.0 4.4 3.2 4.5 3.2 4.6 3.2 4.9 3.2 5.1 3.129.0 3.7 2.8 4.1 3.0 4.4 3.2 4.5 3.2 4.6 3.2 4.9 3.2 5.1 3.131.0 3.7 2.8 4.1 3.0 4.4 3.2 4.5 3.2 4.6 3.2 4.9 3.2 5.1 3.133.0 3.7 2.8 4.1 3.0 4.4 3.2 4.5 3.2 4.6 3.2 4.9 3.2 5.1 3.135.0 3.7 2.8 4.1 3.0 4.4 3.2 4.5 3.2 4.6 3.2 4.9 3.2 5.1 3.137.0 3.6 2.7 4.0 2.9 4.2 3.1 4.4 3.1 4.5 3.1 4.7 3.1 5.0 3.039.0 3.5 2.7 3.8 2.8 4.1 3.0 4.2 3.0 4.4 3.0 4.6 3.0 4.8 2.910.0 4.6 3.5 5.1 3.8 5.4 4.0 5.6 4.0 5.8 4.0 6.1 4.0 6.4 3.912.0 4.6 3.5 5.1 3.8 5.4 4.0 5.6 4.0 5.8 4.0 6.1 4.0 6.4 3.914.0 4.6 3.5 5.1 3.8 5.4 4.0 5.6 4.0 5.8 4.0 6.1 4.0 6.4 3.916.0 4.6 3.5 5.1 3.8 5.4 4.0 5.6 4.0 5.8 4.0 6.1 4.0 6.4 3.918.0 4.6 3.5 5.1 3.8 5.4 4.0 5.6 4.0 5.8 4.0 6.1 4.0 6.4 3.920.0 4.6 3.5 5.1 3.8 5.4 4.0 5.6 4.0 5.8 4.0 6.1 4.0 6.4 3.921.0 4.6 3.5 5.1 3.8 5.4 4.0 5.6 4.0 5.8 4.0 6.1 4.0 6.4 3.9

018 23.0 4.6 3.5 5.1 3.8 5.4 4.0 5.6 4.0 5.8 4.0 6.1 4.0 6.4 3.925.0 4.6 3.5 5.1 3.8 5.4 4.0 5.6 4.0 5.8 4.0 6.1 4.0 6.4 3.927.0 4.6 3.5 5.1 3.8 5.4 4.0 5.6 4.0 5.8 4.0 6.1 4.0 6.4 3.929.0 4.6 3.5 5.1 3.8 5.4 4.0 5.6 4.0 5.8 4.0 6.1 4.0 6.4 3.931.0 4.6 3.5 5.1 3.8 5.4 4.0 5.6 4.0 5.8 4.0 6.1 4.0 6.4 3.933.0 4.6 3.5 5.1 3.8 5.4 4.0 5.6 4.0 5.8 4.0 6.1 4.0 6.4 3.935.0 4.6 3.5 5.1 3.8 5.4 4.0 5.6 4.0 5.8 4.0 6.1 4.0 6.4 3.937.0 4.5 3.4 4.9 3.7 5.3 3.9 5.4 3.9 5.6 3.9 5.9 3.8 6.2 3.739.0 4.3 3.3 4.8 3.6 5.1 3.8 5.3 3.8 5.4 3.8 5.7 3.7 6.0 3.6

unitsize

outdoorair temp.

indoor air temp.

Page 49: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

46

8

4-way Discharge Cassette Type ( MMU-AP****H ) TC : Total capacity [kW] SHC : Sensible capacity [kW]

14.0 WB 16.0 WB 18.0 WB 19.0 WB 20.0 WB 22.0 WB 24.0 WB20 DB 23 DB 26 DB 27 DB 28 DB 30 DB 32 DB

DB TC SHC TC SHC TC SHC TC SHC TC SHC TC SHC TC SHC10.0 5.8 4.3 6.4 4.6 6.9 4.9 7.1 4.9 7.3 4.9 7.7 4.9 8.1 4.712.0 5.8 4.3 6.4 4.6 6.9 4.9 7.1 4.9 7.3 4.9 7.7 4.9 8.1 4.714.0 5.8 4.3 6.4 4.6 6.9 4.9 7.1 4.9 7.3 4.9 7.7 4.9 8.1 4.716.0 5.8 4.3 6.4 4.6 6.9 4.9 7.1 4.9 7.3 4.9 7.7 4.9 8.1 4.718.0 5.8 4.3 6.4 4.6 6.9 4.9 7.1 4.9 7.3 4.9 7.7 4.9 8.1 4.720.0 5.8 4.3 6.4 4.6 6.9 4.9 7.1 4.9 7.3 4.9 7.7 4.9 8.1 4.721.0 5.8 4.3 6.4 4.6 6.9 4.9 7.1 4.9 7.3 4.9 7.7 4.9 8.1 4.7

024 23.0 5.8 4.3 6.4 4.6 6.9 4.9 7.1 4.9 7.3 4.9 7.7 4.9 8.1 4.725.0 5.8 4.3 6.4 4.6 6.9 4.9 7.1 4.9 7.3 4.9 7.7 4.9 8.1 4.727.0 5.8 4.3 6.4 4.6 6.9 4.9 7.1 4.9 7.3 4.9 7.7 4.9 8.1 4.729.0 5.8 4.3 6.4 4.6 6.9 4.9 7.1 4.9 7.3 4.9 7.7 4.9 8.1 4.731.0 5.8 4.3 6.4 4.6 6.9 4.9 7.1 4.9 7.3 4.9 7.7 4.9 8.1 4.733.0 5.8 4.3 6.4 4.6 6.9 4.9 7.1 4.9 7.3 4.9 7.7 4.9 8.1 4.735.0 5.8 4.3 6.4 4.6 6.9 4.9 7.1 4.9 7.3 4.9 7.7 4.9 8.1 4.737.0 5.6 4.2 6.2 4.5 6.7 4.8 6.9 4.7 7.1 4.7 7.5 4.7 7.8 4.639.0 5.5 4.1 6.1 4.4 6.5 4.6 6.7 4.6 6.9 4.6 7.3 4.6 7.6 4.510.0 6.6 4.9 7.3 5.2 7.8 5.5 8.0 5.5 8.2 5.5 8.7 5.4 9.1 5.312.0 6.6 4.9 7.3 5.2 7.8 5.5 8.0 5.5 8.2 5.5 8.7 5.4 9.1 5.314.0 6.6 4.9 7.3 5.2 7.8 5.5 8.0 5.5 8.2 5.5 8.7 5.4 9.1 5.316.0 6.6 4.9 7.3 5.2 7.8 5.5 8.0 5.5 8.2 5.5 8.7 5.4 9.1 5.318.0 6.6 4.9 7.3 5.2 7.8 5.5 8.0 5.5 8.2 5.5 8.7 5.4 9.1 5.320.0 6.6 4.9 7.3 5.2 7.8 5.5 8.0 5.5 8.2 5.5 8.7 5.4 9.1 5.321.0 6.6 4.9 7.3 5.2 7.8 5.5 8.0 5.5 8.2 5.5 8.7 5.4 9.1 5.3

027 23.0 6.6 4.9 7.3 5.2 7.8 5.5 8.0 5.5 8.2 5.5 8.7 5.4 9.1 5.325.0 6.6 4.9 7.3 5.2 7.8 5.5 8.0 5.5 8.2 5.5 8.7 5.4 9.1 5.327.0 6.6 4.9 7.3 5.2 7.8 5.5 8.0 5.5 8.2 5.5 8.7 5.4 9.1 5.329.0 6.6 4.9 7.3 5.2 7.8 5.5 8.0 5.5 8.2 5.5 8.7 5.4 9.1 5.331.0 6.6 4.9 7.3 5.2 7.8 5.5 8.0 5.5 8.2 5.5 8.7 5.4 9.1 5.333.0 6.6 4.9 7.3 5.2 7.8 5.5 8.0 5.5 8.2 5.5 8.7 5.4 9.1 5.335.0 6.6 4.9 7.3 5.2 7.8 5.5 8.0 5.5 8.2 5.5 8.7 5.4 9.1 5.337.0 6.4 4.7 7.0 5.0 7.5 5.3 7.7 5.3 8.0 5.3 8.4 5.3 8.8 5.239.0 6.2 4.6 6.8 4.9 7.3 5.2 7.5 5.2 7.8 5.2 8.2 5.1 8.6 5.010.0 7.4 5.5 8.2 5.9 8.7 6.2 9.0 6.2 9.3 6.2 9.8 6.1 10.3 6.012.0 7.4 5.5 8.2 5.9 8.7 6.2 9.0 6.2 9.3 6.2 9.8 6.1 10.3 6.014.0 7.4 5.5 8.2 5.9 8.7 6.2 9.0 6.2 9.3 6.2 9.8 6.1 10.3 6.016.0 7.4 5.5 8.2 5.9 8.7 6.2 9.0 6.2 9.3 6.2 9.8 6.1 10.3 6.018.0 7.4 5.5 8.2 5.9 8.7 6.2 9.0 6.2 9.3 6.2 9.8 6.1 10.3 6.020.0 7.4 5.5 8.2 5.9 8.7 6.2 9.0 6.2 9.3 6.2 9.8 6.1 10.3 6.021.0 7.4 5.5 8.2 5.9 8.7 6.2 9.0 6.2 9.3 6.2 9.8 6.1 10.3 6.0

030 23.0 7.4 5.5 8.2 5.9 8.7 6.2 9.0 6.2 9.3 6.2 9.8 6.1 10.3 6.025.0 7.4 5.5 8.2 5.9 8.7 6.2 9.0 6.2 9.3 6.2 9.8 6.1 10.3 6.027.0 7.4 5.5 8.2 5.9 8.7 6.2 9.0 6.2 9.3 6.2 9.8 6.1 10.3 6.029.0 7.4 5.5 8.2 5.9 8.7 6.2 9.0 6.2 9.3 6.2 9.8 6.1 10.3 6.031.0 7.4 5.5 8.2 5.9 8.7 6.2 9.0 6.2 9.3 6.2 9.8 6.1 10.3 6.033.0 7.4 5.5 8.2 5.9 8.7 6.2 9.0 6.2 9.3 6.2 9.8 6.1 10.3 6.035.0 7.4 5.5 8.2 5.9 8.7 6.2 9.0 6.2 9.3 6.2 9.8 6.1 10.3 6.037.0 7.2 5.3 7.9 5.7 8.5 6.0 8.7 6.0 9.0 6.0 9.5 5.9 9.9 5.839.0 7.0 5.2 7.7 5.5 8.2 5.9 8.5 5.8 8.7 5.8 9.2 5.8 9.7 5.610.0 9.2 6.8 10.2 7.3 10.9 7.7 11.2 7.7 11.5 7.7 12.2 7.6 12.8 7.512.0 9.2 6.8 10.2 7.3 10.9 7.7 11.2 7.7 11.5 7.7 12.2 7.6 12.8 7.514.0 9.2 6.8 10.2 7.3 10.9 7.7 11.2 7.7 11.5 7.7 12.2 7.6 12.8 7.516.0 9.2 6.8 10.2 7.3 10.9 7.7 11.2 7.7 11.5 7.7 12.2 7.6 12.8 7.518.0 9.2 6.8 10.2 7.3 10.9 7.7 11.2 7.7 11.5 7.7 12.2 7.6 12.8 7.520.0 9.2 6.8 10.2 7.3 10.9 7.7 11.2 7.7 11.5 7.7 12.2 7.6 12.8 7.521.0 9.2 6.8 10.2 7.3 10.9 7.7 11.2 7.7 11.5 7.7 12.2 7.6 12.8 7.5

036 23.0 9.2 6.8 10.2 7.3 10.9 7.7 11.2 7.7 11.5 7.7 12.2 7.6 12.8 7.525.0 9.2 6.8 10.2 7.3 10.9 7.7 11.2 7.7 11.5 7.7 12.2 7.6 12.8 7.527.0 9.2 6.8 10.2 7.3 10.9 7.7 11.2 7.7 11.5 7.7 12.2 7.6 12.8 7.529.0 9.2 6.8 10.2 7.3 10.9 7.7 11.2 7.7 11.5 7.7 12.2 7.6 12.8 7.531.0 9.2 6.8 10.2 7.3 10.9 7.7 11.2 7.7 11.5 7.7 12.2 7.6 12.8 7.533.0 9.2 6.8 10.2 7.3 10.9 7.7 11.2 7.7 11.5 7.7 12.2 7.6 12.8 7.535.0 9.2 6.8 10.2 7.3 10.9 7.7 11.2 7.7 11.5 7.7 12.2 7.6 12.8 7.537.0 8.9 6.6 9.8 7.0 10.5 7.5 10.8 7.5 11.2 7.5 11.8 7.4 12.4 7.239.0 8.7 6.4 9.6 6.8 10.2 7.3 10.5 7.2 10.9 7.2 11.5 7.2 12.0 7.0

unitsize

outdoorair temp.

indoor air temp.

Page 50: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

47

8

4-way Discharge Cassette Type ( MMU-AP****H ) TC : Total capacity [kW] SHC : Sensible capacity [kW]

14.0 WB 16.0 WB 18.0 WB 19.0 WB 20.0 WB 22.0 WB 24.0 WB20 DB 23 DB 26 DB 27 DB 28 DB 30 DB 32 DB

DB TC SHC TC SHC TC SHC TC SHC TC SHC TC SHC TC SHC10.0 11.5 8.7 12.7 9.3 13.6 9.8 14.0 9.8 14.4 9.8 15.3 9.7 16.0 9.512.0 11.5 8.7 12.7 9.3 13.6 9.8 14.0 9.8 14.4 9.8 15.3 9.7 16.0 9.514.0 11.5 8.7 12.7 9.3 13.6 9.8 14.0 9.8 14.4 9.8 15.3 9.7 16.0 9.516.0 11.5 8.7 12.7 9.3 13.6 9.8 14.0 9.8 14.4 9.8 15.3 9.7 16.0 9.518.0 11.5 8.7 12.7 9.3 13.6 9.8 14.0 9.8 14.4 9.8 15.3 9.7 16.0 9.520.0 11.5 8.7 12.7 9.3 13.6 9.8 14.0 9.8 14.4 9.8 15.3 9.7 16.0 9.521.0 11.5 8.7 12.7 9.3 13.6 9.8 14.0 9.8 14.4 9.8 15.3 9.7 16.0 9.5

048 23.0 11.5 8.7 12.7 9.3 13.6 9.8 14.0 9.8 14.4 9.8 15.3 9.7 16.0 9.525.0 11.5 8.7 12.7 9.3 13.6 9.8 14.0 9.8 14.4 9.8 15.3 9.7 16.0 9.527.0 11.5 8.7 12.7 9.3 13.6 9.8 14.0 9.8 14.4 9.8 15.3 9.7 16.0 9.529.0 11.5 8.7 12.7 9.3 13.6 9.8 14.0 9.8 14.4 9.8 15.3 9.7 16.0 9.531.0 11.5 8.7 12.7 9.3 13.6 9.8 14.0 9.8 14.4 9.8 15.3 9.7 16.0 9.533.0 11.5 8.7 12.7 9.3 13.6 9.8 14.0 9.8 14.4 9.8 15.3 9.7 16.0 9.535.0 11.5 8.7 12.7 9.3 13.6 9.8 14.0 9.8 14.4 9.8 15.3 9.7 16.0 9.537.0 11.1 8.4 12.3 9.0 13.1 9.5 13.6 9.5 14.0 9.5 14.8 9.4 15.4 9.239.0 10.8 8.2 12.0 8.7 12.8 9.2 13.2 9.2 13.6 9.2 14.4 9.1 15.0 8.910.0 13.1 9.8 14.5 10.4 15.5 11.0 16.0 11.0 16.5 11.0 17.4 10.9 18.2 10.612.0 13.1 9.8 14.5 10.4 15.5 11.0 16.0 11.0 16.5 11.0 17.4 10.9 18.2 10.614.0 13.1 9.8 14.5 10.4 15.5 11.0 16.0 11.0 16.5 11.0 17.4 10.9 18.2 10.616.0 13.1 9.8 14.5 10.4 15.5 11.0 16.0 11.0 16.5 11.0 17.4 10.9 18.2 10.618.0 13.1 9.8 14.5 10.4 15.5 11.0 16.0 11.0 16.5 11.0 17.4 10.9 18.2 10.620.0 13.1 9.8 14.5 10.4 15.5 11.0 16.0 11.0 16.5 11.0 17.4 10.9 18.2 10.621.0 13.1 9.8 14.5 10.4 15.5 11.0 16.0 11.0 16.5 11.0 17.4 10.9 18.2 10.6

056 23.0 13.1 9.8 14.5 10.4 15.5 11.0 16.0 11.0 16.5 11.0 17.4 10.9 18.2 10.625.0 13.1 9.8 14.5 10.4 15.5 11.0 16.0 11.0 16.5 11.0 17.4 10.9 18.2 10.627.0 13.1 9.8 14.5 10.4 15.5 11.0 16.0 11.0 16.5 11.0 17.4 10.9 18.2 10.629.0 13.1 9.8 14.5 10.4 15.5 11.0 16.0 11.0 16.5 11.0 17.4 10.9 18.2 10.631.0 13.1 9.8 14.5 10.4 15.5 11.0 16.0 11.0 16.5 11.0 17.4 10.9 18.2 10.633.0 13.1 9.8 14.5 10.4 15.5 11.0 16.0 11.0 16.5 11.0 17.4 10.9 18.2 10.635.0 13.1 9.8 14.5 10.4 15.5 11.0 16.0 11.0 16.5 11.0 17.4 10.9 18.2 10.637.0 12.7 9.4 14.1 10.1 15.0 10.7 15.5 10.6 16.0 10.6 16.9 10.5 17.7 10.339.0 12.4 9.2 13.7 9.8 14.6 10.4 15.1 10.4 15.5 10.4 16.4 10.3 17.2 10.0

unitsize

outdoorair temp.

indoor air temp.

Page 51: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

48

8

2-way Air Discharge Cassette Type ( MMU-AP****WH ) TC : Total capacity [kW] SHC : Sensible capacity [kW]

14.0 WB 16.0 WB 18.0 WB 19.0 WB 20.0 WB 22.0 WB 24.0 WB20 DB 23 DB 26 DB 27 DB 28 DB 30 DB 32 DB

DB TC SHC TC SHC TC SHC TC SHC TC SHC TC SHC TC SHC10.0 1.8 1.5 2.0 1.6 2.1 1.7 2.2 1.7 2.3 1.7 2.4 1.7 2.5 1.612.0 1.8 1.5 2.0 1.6 2.1 1.7 2.2 1.7 2.3 1.7 2.4 1.7 2.5 1.614.0 1.8 1.5 2.0 1.6 2.1 1.7 2.2 1.7 2.3 1.7 2.4 1.7 2.5 1.616.0 1.8 1.5 2.0 1.6 2.1 1.7 2.2 1.7 2.3 1.7 2.4 1.7 2.5 1.618.0 1.8 1.5 2.0 1.6 2.1 1.7 2.2 1.7 2.3 1.7 2.4 1.7 2.5 1.620.0 1.8 1.5 2.0 1.6 2.1 1.7 2.2 1.7 2.3 1.7 2.4 1.7 2.5 1.621.0 1.8 1.5 2.0 1.6 2.1 1.7 2.2 1.7 2.3 1.7 2.4 1.7 2.5 1.6

007 23.0 1.8 1.5 2.0 1.6 2.1 1.7 2.2 1.7 2.3 1.7 2.4 1.7 2.5 1.625.0 1.8 1.5 2.0 1.6 2.1 1.7 2.2 1.7 2.3 1.7 2.4 1.7 2.5 1.627.0 1.8 1.5 2.0 1.6 2.1 1.7 2.2 1.7 2.3 1.7 2.4 1.7 2.5 1.629.0 1.8 1.5 2.0 1.6 2.1 1.7 2.2 1.7 2.3 1.7 2.4 1.7 2.5 1.631.0 1.8 1.5 2.0 1.6 2.1 1.7 2.2 1.7 2.3 1.7 2.4 1.7 2.5 1.633.0 1.8 1.5 2.0 1.6 2.1 1.7 2.2 1.7 2.3 1.7 2.4 1.7 2.5 1.635.0 1.8 1.5 2.0 1.6 2.1 1.7 2.2 1.7 2.3 1.7 2.4 1.7 2.5 1.637.0 1.7 1.5 1.9 1.6 2.1 1.7 2.1 1.6 2.2 1.6 2.3 1.6 2.4 1.639.0 1.7 1.4 1.9 1.5 2.0 1.6 2.1 1.6 2.1 1.6 2.3 1.6 2.4 1.510.0 2.3 1.8 2.5 1.9 2.7 2.0 2.8 2.0 2.9 2.0 3.1 2.0 3.2 1.912.0 2.3 1.8 2.5 1.9 2.7 2.0 2.8 2.0 2.9 2.0 3.1 2.0 3.2 1.914.0 2.3 1.8 2.5 1.9 2.7 2.0 2.8 2.0 2.9 2.0 3.1 2.0 3.2 1.916.0 2.3 1.8 2.5 1.9 2.7 2.0 2.8 2.0 2.9 2.0 3.1 2.0 3.2 1.918.0 2.3 1.8 2.5 1.9 2.7 2.0 2.8 2.0 2.9 2.0 3.1 2.0 3.2 1.920.0 2.3 1.8 2.5 1.9 2.7 2.0 2.8 2.0 2.9 2.0 3.1 2.0 3.2 1.921.0 2.3 1.8 2.5 1.9 2.7 2.0 2.8 2.0 2.9 2.0 3.1 2.0 3.2 1.9

009 23.0 2.3 1.8 2.5 1.9 2.7 2.0 2.8 2.0 2.9 2.0 3.1 2.0 3.2 1.925.0 2.3 1.8 2.5 1.9 2.7 2.0 2.8 2.0 2.9 2.0 3.1 2.0 3.2 1.927.0 2.3 1.8 2.5 1.9 2.7 2.0 2.8 2.0 2.9 2.0 3.1 2.0 3.2 1.929.0 2.3 1.8 2.5 1.9 2.7 2.0 2.8 2.0 2.9 2.0 3.1 2.0 3.2 1.931.0 2.3 1.8 2.5 1.9 2.7 2.0 2.8 2.0 2.9 2.0 3.1 2.0 3.2 1.933.0 2.3 1.8 2.5 1.9 2.7 2.0 2.8 2.0 2.9 2.0 3.1 2.0 3.2 1.935.0 2.3 1.8 2.5 1.9 2.7 2.0 2.8 2.0 2.9 2.0 3.1 2.0 3.2 1.937.0 2.2 1.7 2.5 1.8 2.6 1.9 2.7 1.9 2.8 1.9 3.0 1.9 3.1 1.939.0 2.2 1.7 2.4 1.8 2.6 1.9 2.6 1.9 2.7 1.9 2.9 1.9 3.0 1.810.0 3.0 2.0 3.3 2.2 3.5 2.3 3.6 2.3 3.7 2.3 3.9 2.3 4.1 2.212.0 3.0 2.0 3.3 2.2 3.5 2.3 3.6 2.3 3.7 2.3 3.9 2.3 4.1 2.214.0 3.0 2.0 3.3 2.2 3.5 2.3 3.6 2.3 3.7 2.3 3.9 2.3 4.1 2.216.0 3.0 2.0 3.3 2.2 3.5 2.3 3.6 2.3 3.7 2.3 3.9 2.3 4.1 2.218.0 3.0 2.0 3.3 2.2 3.5 2.3 3.6 2.3 3.7 2.3 3.9 2.3 4.1 2.220.0 3.0 2.0 3.3 2.2 3.5 2.3 3.6 2.3 3.7 2.3 3.9 2.3 4.1 2.221.0 3.0 2.0 3.3 2.2 3.5 2.3 3.6 2.3 3.7 2.3 3.9 2.3 4.1 2.2

012 23.0 3.0 2.0 3.3 2.2 3.5 2.3 3.6 2.3 3.7 2.3 3.9 2.3 4.1 2.225.0 3.0 2.0 3.3 2.2 3.5 2.3 3.6 2.3 3.7 2.3 3.9 2.3 4.1 2.227.0 3.0 2.0 3.3 2.2 3.5 2.3 3.6 2.3 3.7 2.3 3.9 2.3 4.1 2.229.0 3.0 2.0 3.3 2.2 3.5 2.3 3.6 2.3 3.7 2.3 3.9 2.3 4.1 2.231.0 3.0 2.0 3.3 2.2 3.5 2.3 3.6 2.3 3.7 2.3 3.9 2.3 4.1 2.233.0 3.0 2.0 3.3 2.2 3.5 2.3 3.6 2.3 3.7 2.3 3.9 2.3 4.1 2.235.0 3.0 2.0 3.3 2.2 3.5 2.3 3.6 2.3 3.7 2.3 3.9 2.3 4.1 2.237.0 2.9 2.0 3.2 2.1 3.4 2.2 3.5 2.2 3.6 2.2 3.8 2.2 4.0 2.239.0 2.8 1.9 3.1 2.0 3.3 2.2 3.4 2.2 3.5 2.2 3.7 2.1 3.9 2.110.0 3.7 2.7 4.1 2.9 4.4 3.1 4.5 3.1 4.6 3.1 4.9 3.0 5.1 3.012.0 3.7 2.7 4.1 2.9 4.4 3.1 4.5 3.1 4.6 3.1 4.9 3.0 5.1 3.014.0 3.7 2.7 4.1 2.9 4.4 3.1 4.5 3.1 4.6 3.1 4.9 3.0 5.1 3.016.0 3.7 2.7 4.1 2.9 4.4 3.1 4.5 3.1 4.6 3.1 4.9 3.0 5.1 3.018.0 3.7 2.7 4.1 2.9 4.4 3.1 4.5 3.1 4.6 3.1 4.9 3.0 5.1 3.020.0 3.7 2.7 4.1 2.9 4.4 3.1 4.5 3.1 4.6 3.1 4.9 3.0 5.1 3.021.0 3.7 2.7 4.1 2.9 4.4 3.1 4.5 3.1 4.6 3.1 4.9 3.0 5.1 3.0

015 23.0 3.7 2.7 4.1 2.9 4.4 3.1 4.5 3.1 4.6 3.1 4.9 3.0 5.1 3.025.0 3.7 2.7 4.1 2.9 4.4 3.1 4.5 3.1 4.6 3.1 4.9 3.0 5.1 3.027.0 3.7 2.7 4.1 2.9 4.4 3.1 4.5 3.1 4.6 3.1 4.9 3.0 5.1 3.029.0 3.7 2.7 4.1 2.9 4.4 3.1 4.5 3.1 4.6 3.1 4.9 3.0 5.1 3.031.0 3.7 2.7 4.1 2.9 4.4 3.1 4.5 3.1 4.6 3.1 4.9 3.0 5.1 3.033.0 3.7 2.7 4.1 2.9 4.4 3.1 4.5 3.1 4.6 3.1 4.9 3.0 5.1 3.035.0 3.7 2.7 4.1 2.9 4.4 3.1 4.5 3.1 4.6 3.1 4.9 3.0 5.1 3.037.0 3.6 2.6 4.0 2.8 4.2 3.0 4.4 3.0 4.5 3.0 4.7 2.9 5.0 2.939.0 3.5 2.5 3.8 2.7 4.1 2.9 4.2 2.9 4.4 2.9 4.6 2.8 4.8 2.8

unitsize

outdoorair temp.

indoor air temp.

Page 52: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

49

2-way Air Discharge Cassette Type ( MMU-AP****WH ) TC : Total capacity [kW] SHC : Sensible capacity [kW]

8

14.0 WB 16.0 WB 18.0 WB 19.0 WB 20.0 WB 22.0 WB 24.0 WB20 DB 23 DB 26 DB 27 DB 28 DB 30 DB 32 DB

DB TC SHC TC SHC TC SHC TC SHC TC SHC TC SHC TC SHC10.0 4.6 3.4 5.1 3.6 5.4 3.8 5.6 3.8 5.8 3.8 6.1 3.8 6.4 3.712.0 4.6 3.4 5.1 3.6 5.4 3.8 5.6 3.8 5.8 3.8 6.1 3.8 6.4 3.714.0 4.6 3.4 5.1 3.6 5.4 3.8 5.6 3.8 5.8 3.8 6.1 3.8 6.4 3.716.0 4.6 3.4 5.1 3.6 5.4 3.8 5.6 3.8 5.8 3.8 6.1 3.8 6.4 3.718.0 4.6 3.4 5.1 3.6 5.4 3.8 5.6 3.8 5.8 3.8 6.1 3.8 6.4 3.720.0 4.6 3.4 5.1 3.6 5.4 3.8 5.6 3.8 5.8 3.8 6.1 3.8 6.4 3.721.0 4.6 3.4 5.1 3.6 5.4 3.8 5.6 3.8 5.8 3.8 6.1 3.8 6.4 3.7

018 23.0 4.6 3.4 5.1 3.6 5.4 3.8 5.6 3.8 5.8 3.8 6.1 3.8 6.4 3.725.0 4.6 3.4 5.1 3.6 5.4 3.8 5.6 3.8 5.8 3.8 6.1 3.8 6.4 3.727.0 4.6 3.4 5.1 3.6 5.4 3.8 5.6 3.8 5.8 3.8 6.1 3.8 6.4 3.729.0 4.6 3.4 5.1 3.6 5.4 3.8 5.6 3.8 5.8 3.8 6.1 3.8 6.4 3.731.0 4.6 3.4 5.1 3.6 5.4 3.8 5.6 3.8 5.8 3.8 6.1 3.8 6.4 3.733.0 4.6 3.4 5.1 3.6 5.4 3.8 5.6 3.8 5.8 3.8 6.1 3.8 6.4 3.735.0 4.6 3.4 5.1 3.6 5.4 3.8 5.6 3.8 5.8 3.8 6.1 3.8 6.4 3.737.0 4.5 3.3 4.9 3.5 5.3 3.7 5.4 3.7 5.6 3.7 5.9 3.6 6.2 3.639.0 4.3 3.2 4.8 3.4 5.1 3.6 5.3 3.6 5.4 3.6 5.7 3.5 6.0 3.510.0 5.8 4.3 6.4 4.5 6.9 4.8 7.1 4.8 7.3 4.8 7.7 4.8 8.1 4.612.0 5.8 4.3 6.4 4.5 6.9 4.8 7.1 4.8 7.3 4.8 7.7 4.8 8.1 4.614.0 5.8 4.3 6.4 4.5 6.9 4.8 7.1 4.8 7.3 4.8 7.7 4.8 8.1 4.616.0 5.8 4.3 6.4 4.5 6.9 4.8 7.1 4.8 7.3 4.8 7.7 4.8 8.1 4.618.0 5.8 4.3 6.4 4.5 6.9 4.8 7.1 4.8 7.3 4.8 7.7 4.8 8.1 4.620.0 5.8 4.3 6.4 4.5 6.9 4.8 7.1 4.8 7.3 4.8 7.7 4.8 8.1 4.621.0 5.8 4.3 6.4 4.5 6.9 4.8 7.1 4.8 7.3 4.8 7.7 4.8 8.1 4.6

024 23.0 5.8 4.3 6.4 4.5 6.9 4.8 7.1 4.8 7.3 4.8 7.7 4.8 8.1 4.625.0 5.8 4.3 6.4 4.5 6.9 4.8 7.1 4.8 7.3 4.8 7.7 4.8 8.1 4.627.0 5.8 4.3 6.4 4.5 6.9 4.8 7.1 4.8 7.3 4.8 7.7 4.8 8.1 4.629.0 5.8 4.3 6.4 4.5 6.9 4.8 7.1 4.8 7.3 4.8 7.7 4.8 8.1 4.631.0 5.8 4.3 6.4 4.5 6.9 4.8 7.1 4.8 7.3 4.8 7.7 4.8 8.1 4.633.0 5.8 4.3 6.4 4.5 6.9 4.8 7.1 4.8 7.3 4.8 7.7 4.8 8.1 4.635.0 5.8 4.3 6.4 4.5 6.9 4.8 7.1 4.8 7.3 4.8 7.7 4.8 8.1 4.637.0 5.6 4.1 6.2 4.4 6.7 4.7 6.9 4.6 7.1 4.6 7.5 4.6 7.8 4.539.0 5.5 4.0 6.1 4.3 6.5 4.5 6.7 4.5 6.9 4.5 7.3 4.5 7.6 4.410.0 6.6 4.9 7.3 5.2 7.8 5.5 8.0 5.5 8.2 5.5 8.7 5.4 9.1 5.312.0 6.6 4.9 7.3 5.2 7.8 5.5 8.0 5.5 8.2 5.5 8.7 5.4 9.1 5.314.0 6.6 4.9 7.3 5.2 7.8 5.5 8.0 5.5 8.2 5.5 8.7 5.4 9.1 5.316.0 6.6 4.9 7.3 5.2 7.8 5.5 8.0 5.5 8.2 5.5 8.7 5.4 9.1 5.318.0 6.6 4.9 7.3 5.2 7.8 5.5 8.0 5.5 8.2 5.5 8.7 5.4 9.1 5.320.0 6.6 4.9 7.3 5.2 7.8 5.5 8.0 5.5 8.2 5.5 8.7 5.4 9.1 5.321.0 6.6 4.9 7.3 5.2 7.8 5.5 8.0 5.5 8.2 5.5 8.7 5.4 9.1 5.3

027 23.0 6.6 4.9 7.3 5.2 7.8 5.5 8.0 5.5 8.2 5.5 8.7 5.4 9.1 5.325.0 6.6 4.9 7.3 5.2 7.8 5.5 8.0 5.5 8.2 5.5 8.7 5.4 9.1 5.327.0 6.6 4.9 7.3 5.2 7.8 5.5 8.0 5.5 8.2 5.5 8.7 5.4 9.1 5.329.0 6.6 4.9 7.3 5.2 7.8 5.5 8.0 5.5 8.2 5.5 8.7 5.4 9.1 5.331.0 6.6 4.9 7.3 5.2 7.8 5.5 8.0 5.5 8.2 5.5 8.7 5.4 9.1 5.333.0 6.6 4.9 7.3 5.2 7.8 5.5 8.0 5.5 8.2 5.5 8.7 5.4 9.1 5.335.0 6.6 4.9 7.3 5.2 7.8 5.5 8.0 5.5 8.2 5.5 8.7 5.4 9.1 5.337.0 6.4 4.7 7.0 5.0 7.5 5.3 7.7 5.3 8.0 5.3 8.4 5.3 8.8 5.239.0 6.2 4.6 6.8 4.9 7.3 5.2 7.5 5.2 7.8 5.2 8.2 5.1 8.6 5.010.0 7.4 5.3 8.2 5.7 8.7 6.0 9.0 6.0 9.3 6.0 9.8 5.9 10.3 5.812.0 7.4 5.3 8.2 5.7 8.7 6.0 9.0 6.0 9.3 6.0 9.8 5.9 10.3 5.814.0 7.4 5.3 8.2 5.7 8.7 6.0 9.0 6.0 9.3 6.0 9.8 5.9 10.3 5.816.0 7.4 5.3 8.2 5.7 8.7 6.0 9.0 6.0 9.3 6.0 9.8 5.9 10.3 5.818.0 7.4 5.3 8.2 5.7 8.7 6.0 9.0 6.0 9.3 6.0 9.8 5.9 10.3 5.820.0 7.4 5.3 8.2 5.7 8.7 6.0 9.0 6.0 9.3 6.0 9.8 5.9 10.3 5.821.0 7.4 5.3 8.2 5.7 8.7 6.0 9.0 6.0 9.3 6.0 9.8 5.9 10.3 5.8

030 23.0 7.4 5.3 8.2 5.7 8.7 6.0 9.0 6.0 9.3 6.0 9.8 5.9 10.3 5.825.0 7.4 5.3 8.2 5.7 8.7 6.0 9.0 6.0 9.3 6.0 9.8 5.9 10.3 5.827.0 7.4 5.3 8.2 5.7 8.7 6.0 9.0 6.0 9.3 6.0 9.8 5.9 10.3 5.829.0 7.4 5.3 8.2 5.7 8.7 6.0 9.0 6.0 9.3 6.0 9.8 5.9 10.3 5.831.0 7.4 5.3 8.2 5.7 8.7 6.0 9.0 6.0 9.3 6.0 9.8 5.9 10.3 5.833.0 7.4 5.3 8.2 5.7 8.7 6.0 9.0 6.0 9.3 6.0 9.8 5.9 10.3 5.835.0 7.4 5.3 8.2 5.7 8.7 6.0 9.0 6.0 9.3 6.0 9.8 5.9 10.3 5.837.0 7.2 5.1 7.9 5.5 8.5 5.8 8.7 5.8 9.0 5.8 9.5 5.8 9.9 5.639.0 7.0 5.0 7.7 5.3 8.2 5.7 8.5 5.6 8.7 5.6 9.2 5.6 9.7 5.5

unitsize

outdoorair temp.

indoor air temp.

Page 53: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

50

8

2-way Air Discharge Cassette Type ( MMU-AP****WH ) TC : Total capacity [kW] SHC : Sensible capacity [kW]

14.0 WB 16.0 WB 18.0 WB 19.0 WB 20.0 WB 22.0 WB 24.0 WB20 DB 23 DB 26 DB 27 DB 28 DB 30 DB 32 DB

DB TC SHC TC SHC TC SHC TC SHC TC SHC TC SHC TC SHC10.0 11.5 8.4 12.7 9.0 13.6 9.5 14.0 9.5 14.4 9.5 15.3 9.4 16.0 9.212.0 11.5 8.4 12.7 9.0 13.6 9.5 14.0 9.5 14.4 9.5 15.3 9.4 16.0 9.214.0 11.5 8.4 12.7 9.0 13.6 9.5 14.0 9.5 14.4 9.5 15.3 9.4 16.0 9.216.0 11.5 8.4 12.7 9.0 13.6 9.5 14.0 9.5 14.4 9.5 15.3 9.4 16.0 9.218.0 11.5 8.4 12.7 9.0 13.6 9.5 14.0 9.5 14.4 9.5 15.3 9.4 16.0 9.220.0 11.5 8.4 12.7 9.0 13.6 9.5 14.0 9.5 14.4 9.5 15.3 9.4 16.0 9.221.0 11.5 8.4 12.7 9.0 13.6 9.5 14.0 9.5 14.4 9.5 15.3 9.4 16.0 9.2

048 23.0 11.5 8.4 12.7 9.0 13.6 9.5 14.0 9.5 14.4 9.5 15.3 9.4 16.0 9.225.0 11.5 8.4 12.7 9.0 13.6 9.5 14.0 9.5 14.4 9.5 15.3 9.4 16.0 9.227.0 11.5 8.4 12.7 9.0 13.6 9.5 14.0 9.5 14.4 9.5 15.3 9.4 16.0 9.229.0 11.5 8.4 12.7 9.0 13.6 9.5 14.0 9.5 14.4 9.5 15.3 9.4 16.0 9.231.0 11.5 8.4 12.7 9.0 13.6 9.5 14.0 9.5 14.4 9.5 15.3 9.4 16.0 9.233.0 11.5 8.4 12.7 9.0 13.6 9.5 14.0 9.5 14.4 9.5 15.3 9.4 16.0 9.235.0 11.5 8.4 12.7 9.0 13.6 9.5 14.0 9.5 14.4 9.5 15.3 9.4 16.0 9.237.0 11.1 8.2 12.3 8.7 13.1 9.2 13.6 9.2 14.0 9.2 14.8 9.1 15.4 8.939.0 10.8 7.9 12.0 8.4 12.8 9.0 13.2 8.9 13.6 8.9 14.4 8.9 15.0 8.7

unitsize

outdoorair temp.

indoor air temp.

Page 54: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

51

8

TC : Total capacity [kW] SHC : Sensible capacity [kW]

14.0 WB 16.0 WB 18.0 WB 19.0 WB 20.0 WB 22.0 WB 24.0 WB20 DB 23 DB 26 DB 27 DB 28 DB 30 DB 32 DB

DB TC SHC TC SHC TC SHC TC SHC TC SHC TC SHC TC SHC10.0 1.8 1.6 2.0 1.7 2.1 1.8 2.2 1.8 2.3 1.8 2.4 1.8 2.5 1.712.0 1.8 1.6 2.0 1.7 2.1 1.8 2.2 1.8 2.3 1.8 2.4 1.8 2.5 1.714.0 1.8 1.6 2.0 1.7 2.1 1.8 2.2 1.8 2.3 1.8 2.4 1.8 2.5 1.716.0 1.8 1.6 2.0 1.7 2.1 1.8 2.2 1.8 2.3 1.8 2.4 1.8 2.5 1.718.0 1.8 1.6 2.0 1.7 2.1 1.8 2.2 1.8 2.3 1.8 2.4 1.8 2.5 1.720.0 1.8 1.6 2.0 1.7 2.1 1.8 2.2 1.8 2.3 1.8 2.4 1.8 2.5 1.721.0 1.8 1.6 2.0 1.7 2.1 1.8 2.2 1.8 2.3 1.8 2.4 1.8 2.5 1.7

007 23.0 1.8 1.6 2.0 1.7 2.1 1.8 2.2 1.8 2.3 1.8 2.4 1.8 2.5 1.725.0 1.8 1.6 2.0 1.7 2.1 1.8 2.2 1.8 2.3 1.8 2.4 1.8 2.5 1.727.0 1.8 1.6 2.0 1.7 2.1 1.8 2.2 1.8 2.3 1.8 2.4 1.8 2.5 1.729.0 1.8 1.6 2.0 1.7 2.1 1.8 2.2 1.8 2.3 1.8 2.4 1.8 2.5 1.731.0 1.8 1.6 2.0 1.7 2.1 1.8 2.2 1.8 2.3 1.8 2.4 1.8 2.5 1.733.0 1.8 1.6 2.0 1.7 2.1 1.8 2.2 1.8 2.3 1.8 2.4 1.8 2.5 1.735.0 1.8 1.6 2.0 1.7 2.1 1.8 2.2 1.8 2.3 1.8 2.4 1.8 2.5 1.737.0 1.7 1.5 1.9 1.6 2.1 1.7 2.1 1.7 2.2 1.7 2.3 1.7 2.4 1.739.0 1.7 1.5 1.9 1.6 2.0 1.7 2.1 1.7 2.1 1.7 2.3 1.7 2.4 1.610.0 2.3 2.0 2.5 2.1 2.7 2.2 2.8 2.2 2.9 2.2 3.1 2.2 3.2 2.112.0 2.3 2.0 2.5 2.1 2.7 2.2 2.8 2.2 2.9 2.2 3.1 2.2 3.2 2.114.0 2.3 2.0 2.5 2.1 2.7 2.2 2.8 2.2 2.9 2.2 3.1 2.2 3.2 2.116.0 2.3 2.0 2.5 2.1 2.7 2.2 2.8 2.2 2.9 2.2 3.1 2.2 3.2 2.118.0 2.3 2.0 2.5 2.1 2.7 2.2 2.8 2.2 2.9 2.2 3.1 2.2 3.2 2.120.0 2.3 2.0 2.5 2.1 2.7 2.2 2.8 2.2 2.9 2.2 3.1 2.2 3.2 2.121.0 2.3 2.0 2.5 2.1 2.7 2.2 2.8 2.2 2.9 2.2 3.1 2.2 3.2 2.1

009 23.0 2.3 2.0 2.5 2.1 2.7 2.2 2.8 2.2 2.9 2.2 3.1 2.2 3.2 2.125.0 2.3 2.0 2.5 2.1 2.7 2.2 2.8 2.2 2.9 2.2 3.1 2.2 3.2 2.127.0 2.3 2.0 2.5 2.1 2.7 2.2 2.8 2.2 2.9 2.2 3.1 2.2 3.2 2.129.0 2.3 2.0 2.5 2.1 2.7 2.2 2.8 2.2 2.9 2.2 3.1 2.2 3.2 2.131.0 2.3 2.0 2.5 2.1 2.7 2.2 2.8 2.2 2.9 2.2 3.1 2.2 3.2 2.133.0 2.3 2.0 2.5 2.1 2.7 2.2 2.8 2.2 2.9 2.2 3.1 2.2 3.2 2.135.0 2.3 2.0 2.5 2.1 2.7 2.2 2.8 2.2 2.9 2.2 3.1 2.2 3.2 2.137.0 2.2 1.9 2.5 2.0 2.6 2.1 2.7 2.1 2.8 2.1 3.0 2.1 3.1 2.139.0 2.2 1.8 2.4 2.0 2.6 2.1 2.6 2.1 2.7 2.1 2.9 2.1 3.0 2.010.0 3.0 2.4 3.3 2.5 3.5 2.7 3.6 2.7 3.7 2.7 3.9 2.7 4.1 2.612.0 3.0 2.4 3.3 2.5 3.5 2.7 3.6 2.7 3.7 2.7 3.9 2.7 4.1 2.614.0 3.0 2.4 3.3 2.5 3.5 2.7 3.6 2.7 3.7 2.7 3.9 2.7 4.1 2.616.0 3.0 2.4 3.3 2.5 3.5 2.7 3.6 2.7 3.7 2.7 3.9 2.7 4.1 2.618.0 3.0 2.4 3.3 2.5 3.5 2.7 3.6 2.7 3.7 2.7 3.9 2.7 4.1 2.620.0 3.0 2.4 3.3 2.5 3.5 2.7 3.6 2.7 3.7 2.7 3.9 2.7 4.1 2.621.0 3.0 2.4 3.3 2.5 3.5 2.7 3.6 2.7 3.7 2.7 3.9 2.7 4.1 2.6

012 23.0 3.0 2.4 3.3 2.5 3.5 2.7 3.6 2.7 3.7 2.7 3.9 2.7 4.1 2.625.0 3.0 2.4 3.3 2.5 3.5 2.7 3.6 2.7 3.7 2.7 3.9 2.7 4.1 2.627.0 3.0 2.4 3.3 2.5 3.5 2.7 3.6 2.7 3.7 2.7 3.9 2.7 4.1 2.629.0 3.0 2.4 3.3 2.5 3.5 2.7 3.6 2.7 3.7 2.7 3.9 2.7 4.1 2.631.0 3.0 2.4 3.3 2.5 3.5 2.7 3.6 2.7 3.7 2.7 3.9 2.7 4.1 2.633.0 3.0 2.4 3.3 2.5 3.5 2.7 3.6 2.7 3.7 2.7 3.9 2.7 4.1 2.635.0 3.0 2.4 3.3 2.5 3.5 2.7 3.6 2.7 3.7 2.7 3.9 2.7 4.1 2.637.0 2.9 2.3 3.2 2.5 3.4 2.6 3.5 2.6 3.6 2.6 3.8 2.6 4.0 2.539.0 2.8 2.3 3.1 2.4 3.3 2.5 3.4 2.5 3.5 2.5 3.7 2.5 3.9 2.510.0 3.7 2.7 4.1 2.9 4.4 3.1 4.5 3.1 4.6 3.1 4.9 3.0 5.1 3.012.0 3.7 2.7 4.1 2.9 4.4 3.1 4.5 3.1 4.6 3.1 4.9 3.0 5.1 3.014.0 3.7 2.7 4.1 2.9 4.4 3.1 4.5 3.1 4.6 3.1 4.9 3.0 5.1 3.016.0 3.7 2.7 4.1 2.9 4.4 3.1 4.5 3.1 4.6 3.1 4.9 3.0 5.1 3.018.0 3.7 2.7 4.1 2.9 4.4 3.1 4.5 3.1 4.6 3.1 4.9 3.0 5.1 3.020.0 3.7 2.7 4.1 2.9 4.4 3.1 4.5 3.1 4.6 3.1 4.9 3.0 5.1 3.021.0 3.7 2.7 4.1 2.9 4.4 3.1 4.5 3.1 4.6 3.1 4.9 3.0 5.1 3.0

015 23.0 3.7 2.7 4.1 2.9 4.4 3.1 4.5 3.1 4.6 3.1 4.9 3.0 5.1 3.025.0 3.7 2.7 4.1 2.9 4.4 3.1 4.5 3.1 4.6 3.1 4.9 3.0 5.1 3.027.0 3.7 2.7 4.1 2.9 4.4 3.1 4.5 3.1 4.6 3.1 4.9 3.0 5.1 3.029.0 3.7 2.7 4.1 2.9 4.4 3.1 4.5 3.1 4.6 3.1 4.9 3.0 5.1 3.031.0 3.7 2.7 4.1 2.9 4.4 3.1 4.5 3.1 4.6 3.1 4.9 3.0 5.1 3.033.0 3.7 2.7 4.1 2.9 4.4 3.1 4.5 3.1 4.6 3.1 4.9 3.0 5.1 3.035.0 3.7 2.7 4.1 2.9 4.4 3.1 4.5 3.1 4.6 3.1 4.9 3.0 5.1 3.037.0 3.6 2.6 4.0 2.8 4.2 3.0 4.4 3.0 4.5 3.0 4.7 2.9 5.0 2.939.0 3.5 2.5 3.8 2.7 4.1 2.9 4.2 2.9 4.4 2.9 4.6 2.8 4.8 2.8

1-way Air Discharge Cassette Type ( MMU-AP****YH [007 012] , -AP****SH [015 024] )

unitsize

outdoorair temp.

indoor air temp.

Page 55: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

52

8

TC : Total capacity [kW] SHC : Sensible capacity [kW]1-way Air Discharge Cassette Type ( MMU-AP****YH [007 012] , -AP****SH [015 024] )

14.0 WB 16.0 WB 18.0 WB 19.0 WB 20.0 WB 22.0 WB 24.0 WB20 DB 23 DB 26 DB 27 DB 28 DB 30 DB 32 DB

DB TC SHC TC SHC TC SHC TC SHC TC SHC TC SHC TC SHC10.0 4.6 3.4 5.1 3.6 5.4 3.8 5.6 3.8 5.8 3.8 6.1 3.8 6.4 3.712.0 4.6 3.4 5.1 3.6 5.4 3.8 5.6 3.8 5.8 3.8 6.1 3.8 6.4 3.714.0 4.6 3.4 5.1 3.6 5.4 3.8 5.6 3.8 5.8 3.8 6.1 3.8 6.4 3.716.0 4.6 3.4 5.1 3.6 5.4 3.8 5.6 3.8 5.8 3.8 6.1 3.8 6.4 3.718.0 4.6 3.4 5.1 3.6 5.4 3.8 5.6 3.8 5.8 3.8 6.1 3.8 6.4 3.720.0 4.6 3.4 5.1 3.6 5.4 3.8 5.6 3.8 5.8 3.8 6.1 3.8 6.4 3.721.0 4.6 3.4 5.1 3.6 5.4 3.8 5.6 3.8 5.8 3.8 6.1 3.8 6.4 3.7

018 23.0 4.6 3.4 5.1 3.6 5.4 3.8 5.6 3.8 5.8 3.8 6.1 3.8 6.4 3.725.0 4.6 3.4 5.1 3.6 5.4 3.8 5.6 3.8 5.8 3.8 6.1 3.8 6.4 3.727.0 4.6 3.4 5.1 3.6 5.4 3.8 5.6 3.8 5.8 3.8 6.1 3.8 6.4 3.729.0 4.6 3.4 5.1 3.6 5.4 3.8 5.6 3.8 5.8 3.8 6.1 3.8 6.4 3.731.0 4.6 3.4 5.1 3.6 5.4 3.8 5.6 3.8 5.8 3.8 6.1 3.8 6.4 3.733.0 4.6 3.4 5.1 3.6 5.4 3.8 5.6 3.8 5.8 3.8 6.1 3.8 6.4 3.735.0 4.6 3.4 5.1 3.6 5.4 3.8 5.6 3.8 5.8 3.8 6.1 3.8 6.4 3.737.0 4.5 3.3 4.9 3.5 5.3 3.7 5.4 3.7 5.6 3.7 5.9 3.6 6.2 3.639.0 4.3 3.2 4.8 3.4 5.1 3.6 5.3 3.6 5.4 3.6 5.7 3.5 6.0 3.510.0 5.8 4.4 6.4 4.7 6.9 5.0 7.1 5.0 7.3 5.0 7.7 5.0 8.1 4.812.0 5.8 4.4 6.4 4.7 6.9 5.0 7.1 5.0 7.3 5.0 7.7 5.0 8.1 4.814.0 5.8 4.4 6.4 4.7 6.9 5.0 7.1 5.0 7.3 5.0 7.7 5.0 8.1 4.816.0 5.8 4.4 6.4 4.7 6.9 5.0 7.1 5.0 7.3 5.0 7.7 5.0 8.1 4.818.0 5.8 4.4 6.4 4.7 6.9 5.0 7.1 5.0 7.3 5.0 7.7 5.0 8.1 4.820.0 5.8 4.4 6.4 4.7 6.9 5.0 7.1 5.0 7.3 5.0 7.7 5.0 8.1 4.821.0 5.8 4.4 6.4 4.7 6.9 5.0 7.1 5.0 7.3 5.0 7.7 5.0 8.1 4.8

024 23.0 5.8 4.4 6.4 4.7 6.9 5.0 7.1 5.0 7.3 5.0 7.7 5.0 8.1 4.825.0 5.8 4.4 6.4 4.7 6.9 5.0 7.1 5.0 7.3 5.0 7.7 5.0 8.1 4.827.0 5.8 4.4 6.4 4.7 6.9 5.0 7.1 5.0 7.3 5.0 7.7 5.0 8.1 4.829.0 5.8 4.4 6.4 4.7 6.9 5.0 7.1 5.0 7.3 5.0 7.7 5.0 8.1 4.831.0 5.8 4.4 6.4 4.7 6.9 5.0 7.1 5.0 7.3 5.0 7.7 5.0 8.1 4.833.0 5.8 4.4 6.4 4.7 6.9 5.0 7.1 5.0 7.3 5.0 7.7 5.0 8.1 4.835.0 5.8 4.4 6.4 4.7 6.9 5.0 7.1 5.0 7.3 5.0 7.7 5.0 8.1 4.837.0 5.6 4.3 6.2 4.6 6.7 4.9 6.9 4.8 7.1 4.8 7.5 4.8 7.8 4.739.0 5.5 4.2 6.1 4.4 6.5 4.7 6.7 4.7 6.9 4.7 7.3 4.7 7.6 4.6

unitsize

outdoorair temp.

indoor air temp.

Page 56: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

53

8

Concealed Duct Standard Type ( MMD-AP****BH ) TC : Total capacity [kW] SHC : Sensible capacity [kW]

14.0 WB 16.0 WB 18.0 WB 19.0 WB 20.0 WB 22.0 WB 24.0 WB20 DB 23 DB 26 DB 27 DB 28 DB 30 DB 32 DB

DB TC SHC TC SHC TC SHC TC SHC TC SHC TC SHC TC SHC10.0 1.8 1.5 2.0 1.6 2.1 1.7 2.2 1.7 2.3 1.7 2.4 1.7 2.5 1.612.0 1.8 1.5 2.0 1.6 2.1 1.7 2.2 1.7 2.3 1.7 2.4 1.7 2.5 1.614.0 1.8 1.5 2.0 1.6 2.1 1.7 2.2 1.7 2.3 1.7 2.4 1.7 2.5 1.616.0 1.8 1.5 2.0 1.6 2.1 1.7 2.2 1.7 2.3 1.7 2.4 1.7 2.5 1.618.0 1.8 1.5 2.0 1.6 2.1 1.7 2.2 1.7 2.3 1.7 2.4 1.7 2.5 1.620.0 1.8 1.5 2.0 1.6 2.1 1.7 2.2 1.7 2.3 1.7 2.4 1.7 2.5 1.621.0 1.8 1.5 2.0 1.6 2.1 1.7 2.2 1.7 2.3 1.7 2.4 1.7 2.5 1.6

007 23.0 1.8 1.5 2.0 1.6 2.1 1.7 2.2 1.7 2.3 1.7 2.4 1.7 2.5 1.625.0 1.8 1.5 2.0 1.6 2.1 1.7 2.2 1.7 2.3 1.7 2.4 1.7 2.5 1.627.0 1.8 1.5 2.0 1.6 2.1 1.7 2.2 1.7 2.3 1.7 2.4 1.7 2.5 1.629.0 1.8 1.5 2.0 1.6 2.1 1.7 2.2 1.7 2.3 1.7 2.4 1.7 2.5 1.631.0 1.8 1.5 2.0 1.6 2.1 1.7 2.2 1.7 2.3 1.7 2.4 1.7 2.5 1.633.0 1.8 1.5 2.0 1.6 2.1 1.7 2.2 1.7 2.3 1.7 2.4 1.7 2.5 1.635.0 1.8 1.5 2.0 1.6 2.1 1.7 2.2 1.7 2.3 1.7 2.4 1.7 2.5 1.637.0 1.7 1.5 1.9 1.6 2.1 1.7 2.1 1.6 2.2 1.6 2.3 1.6 2.4 1.639.0 1.7 1.4 1.9 1.5 2.0 1.6 2.1 1.6 2.1 1.6 2.3 1.6 2.4 1.510.0 2.3 1.9 2.5 2.0 2.7 2.1 2.8 2.1 2.9 2.1 3.1 2.1 3.2 2.012.0 2.3 1.9 2.5 2.0 2.7 2.1 2.8 2.1 2.9 2.1 3.1 2.1 3.2 2.014.0 2.3 1.9 2.5 2.0 2.7 2.1 2.8 2.1 2.9 2.1 3.1 2.1 3.2 2.016.0 2.3 1.9 2.5 2.0 2.7 2.1 2.8 2.1 2.9 2.1 3.1 2.1 3.2 2.018.0 2.3 1.9 2.5 2.0 2.7 2.1 2.8 2.1 2.9 2.1 3.1 2.1 3.2 2.020.0 2.3 1.9 2.5 2.0 2.7 2.1 2.8 2.1 2.9 2.1 3.1 2.1 3.2 2.021.0 2.3 1.9 2.5 2.0 2.7 2.1 2.8 2.1 2.9 2.1 3.1 2.1 3.2 2.0

009 23.0 2.3 1.9 2.5 2.0 2.7 2.1 2.8 2.1 2.9 2.1 3.1 2.1 3.2 2.025.0 2.3 1.9 2.5 2.0 2.7 2.1 2.8 2.1 2.9 2.1 3.1 2.1 3.2 2.027.0 2.3 1.9 2.5 2.0 2.7 2.1 2.8 2.1 2.9 2.1 3.1 2.1 3.2 2.029.0 2.3 1.9 2.5 2.0 2.7 2.1 2.8 2.1 2.9 2.1 3.1 2.1 3.2 2.031.0 2.3 1.9 2.5 2.0 2.7 2.1 2.8 2.1 2.9 2.1 3.1 2.1 3.2 2.033.0 2.3 1.9 2.5 2.0 2.7 2.1 2.8 2.1 2.9 2.1 3.1 2.1 3.2 2.035.0 2.3 1.9 2.5 2.0 2.7 2.1 2.8 2.1 2.9 2.1 3.1 2.1 3.2 2.037.0 2.2 1.8 2.5 1.9 2.6 2.0 2.7 2.0 2.8 2.0 3.0 2.0 3.1 2.039.0 2.2 1.8 2.4 1.9 2.6 2.0 2.6 2.0 2.7 2.0 2.9 2.0 3.0 1.910.0 3.0 2.2 3.3 2.4 3.5 2.5 3.6 2.5 3.7 2.5 3.9 2.5 4.1 2.412.0 3.0 2.2 3.3 2.4 3.5 2.5 3.6 2.5 3.7 2.5 3.9 2.5 4.1 2.414.0 3.0 2.2 3.3 2.4 3.5 2.5 3.6 2.5 3.7 2.5 3.9 2.5 4.1 2.416.0 3.0 2.2 3.3 2.4 3.5 2.5 3.6 2.5 3.7 2.5 3.9 2.5 4.1 2.418.0 3.0 2.2 3.3 2.4 3.5 2.5 3.6 2.5 3.7 2.5 3.9 2.5 4.1 2.420.0 3.0 2.2 3.3 2.4 3.5 2.5 3.6 2.5 3.7 2.5 3.9 2.5 4.1 2.421.0 3.0 2.2 3.3 2.4 3.5 2.5 3.6 2.5 3.7 2.5 3.9 2.5 4.1 2.4

012 23.0 3.0 2.2 3.3 2.4 3.5 2.5 3.6 2.5 3.7 2.5 3.9 2.5 4.1 2.425.0 3.0 2.2 3.3 2.4 3.5 2.5 3.6 2.5 3.7 2.5 3.9 2.5 4.1 2.427.0 3.0 2.2 3.3 2.4 3.5 2.5 3.6 2.5 3.7 2.5 3.9 2.5 4.1 2.429.0 3.0 2.2 3.3 2.4 3.5 2.5 3.6 2.5 3.7 2.5 3.9 2.5 4.1 2.431.0 3.0 2.2 3.3 2.4 3.5 2.5 3.6 2.5 3.7 2.5 3.9 2.5 4.1 2.433.0 3.0 2.2 3.3 2.4 3.5 2.5 3.6 2.5 3.7 2.5 3.9 2.5 4.1 2.435.0 3.0 2.2 3.3 2.4 3.5 2.5 3.6 2.5 3.7 2.5 3.9 2.5 4.1 2.437.0 2.9 2.1 3.2 2.3 3.4 2.4 3.5 2.4 3.6 2.4 3.8 2.4 4.0 2.339.0 2.8 2.1 3.1 2.2 3.3 2.4 3.4 2.4 3.5 2.4 3.7 2.3 3.9 2.310.0 3.7 2.7 4.1 2.8 4.4 3.0 4.5 3.0 4.6 3.0 4.9 3.0 5.1 2.912.0 3.7 2.7 4.1 2.8 4.4 3.0 4.5 3.0 4.6 3.0 4.9 3.0 5.1 2.914.0 3.7 2.7 4.1 2.8 4.4 3.0 4.5 3.0 4.6 3.0 4.9 3.0 5.1 2.916.0 3.7 2.7 4.1 2.8 4.4 3.0 4.5 3.0 4.6 3.0 4.9 3.0 5.1 2.918.0 3.7 2.7 4.1 2.8 4.4 3.0 4.5 3.0 4.6 3.0 4.9 3.0 5.1 2.920.0 3.7 2.7 4.1 2.8 4.4 3.0 4.5 3.0 4.6 3.0 4.9 3.0 5.1 2.921.0 3.7 2.7 4.1 2.8 4.4 3.0 4.5 3.0 4.6 3.0 4.9 3.0 5.1 2.9

015 23.0 3.7 2.7 4.1 2.8 4.4 3.0 4.5 3.0 4.6 3.0 4.9 3.0 5.1 2.925.0 3.7 2.7 4.1 2.8 4.4 3.0 4.5 3.0 4.6 3.0 4.9 3.0 5.1 2.927.0 3.7 2.7 4.1 2.8 4.4 3.0 4.5 3.0 4.6 3.0 4.9 3.0 5.1 2.929.0 3.7 2.7 4.1 2.8 4.4 3.0 4.5 3.0 4.6 3.0 4.9 3.0 5.1 2.931.0 3.7 2.7 4.1 2.8 4.4 3.0 4.5 3.0 4.6 3.0 4.9 3.0 5.1 2.933.0 3.7 2.7 4.1 2.8 4.4 3.0 4.5 3.0 4.6 3.0 4.9 3.0 5.1 2.935.0 3.7 2.7 4.1 2.8 4.4 3.0 4.5 3.0 4.6 3.0 4.9 3.0 5.1 2.937.0 3.6 2.6 4.0 2.7 4.2 2.9 4.4 2.9 4.5 2.9 4.7 2.9 5.0 2.839.0 3.5 2.5 3.8 2.7 4.1 2.8 4.2 2.8 4.4 2.8 4.6 2.8 4.8 2.7

unitsize

outdoorair temp.

indoor air temp.

Page 57: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

54

Concealed Duct Standard Type ( MMD-AP***BH ) TC : Total capacity [kW] SHC : Sensible capacity [kW]

8

14.0 WB 16.0 WB 18.0 WB 19.0 WB 20.0 WB 22.0 WB 24.0 WB20 DB 23 DB 26 DB 27 DB 28 DB 30 DB 32 DB

DB TC SHC TC SHC TC SHC TC SHC TC SHC TC SHC TC SHC10.0 4.6 3.3 5.1 3.5 5.4 3.7 5.6 3.7 5.8 3.7 6.1 3.7 6.4 3.612.0 4.6 3.3 5.1 3.5 5.4 3.7 5.6 3.7 5.8 3.7 6.1 3.7 6.4 3.614.0 4.6 3.3 5.1 3.5 5.4 3.7 5.6 3.7 5.8 3.7 6.1 3.7 6.4 3.616.0 4.6 3.3 5.1 3.5 5.4 3.7 5.6 3.7 5.8 3.7 6.1 3.7 6.4 3.618.0 4.6 3.3 5.1 3.5 5.4 3.7 5.6 3.7 5.8 3.7 6.1 3.7 6.4 3.620.0 4.6 3.3 5.1 3.5 5.4 3.7 5.6 3.7 5.8 3.7 6.1 3.7 6.4 3.621.0 4.6 3.3 5.1 3.5 5.4 3.7 5.6 3.7 5.8 3.7 6.1 3.7 6.4 3.6

018 23.0 4.6 3.3 5.1 3.5 5.4 3.7 5.6 3.7 5.8 3.7 6.1 3.7 6.4 3.625.0 4.6 3.3 5.1 3.5 5.4 3.7 5.6 3.7 5.8 3.7 6.1 3.7 6.4 3.627.0 4.6 3.3 5.1 3.5 5.4 3.7 5.6 3.7 5.8 3.7 6.1 3.7 6.4 3.629.0 4.6 3.3 5.1 3.5 5.4 3.7 5.6 3.7 5.8 3.7 6.1 3.7 6.4 3.631.0 4.6 3.3 5.1 3.5 5.4 3.7 5.6 3.7 5.8 3.7 6.1 3.7 6.4 3.633.0 4.6 3.3 5.1 3.5 5.4 3.7 5.6 3.7 5.8 3.7 6.1 3.7 6.4 3.635.0 4.6 3.3 5.1 3.5 5.4 3.7 5.6 3.7 5.8 3.7 6.1 3.7 6.4 3.637.0 4.5 3.2 4.9 3.4 5.3 3.6 5.4 3.6 5.6 3.6 5.9 3.5 6.2 3.539.0 4.3 3.1 4.8 3.3 5.1 3.5 5.3 3.5 5.4 3.5 5.7 3.4 6.0 3.410.0 5.8 4.4 6.4 4.7 6.9 5.0 7.1 5.0 7.3 5.0 7.7 5.0 8.1 4.812.0 5.8 4.4 6.4 4.7 6.9 5.0 7.1 5.0 7.3 5.0 7.7 5.0 8.1 4.814.0 5.8 4.4 6.4 4.7 6.9 5.0 7.1 5.0 7.3 5.0 7.7 5.0 8.1 4.816.0 5.8 4.4 6.4 4.7 6.9 5.0 7.1 5.0 7.3 5.0 7.7 5.0 8.1 4.818.0 5.8 4.4 6.4 4.7 6.9 5.0 7.1 5.0 7.3 5.0 7.7 5.0 8.1 4.820.0 5.8 4.4 6.4 4.7 6.9 5.0 7.1 5.0 7.3 5.0 7.7 5.0 8.1 4.821.0 5.8 4.4 6.4 4.7 6.9 5.0 7.1 5.0 7.3 5.0 7.7 5.0 8.1 4.8

024 23.0 5.8 4.4 6.4 4.7 6.9 5.0 7.1 5.0 7.3 5.0 7.7 5.0 8.1 4.825.0 5.8 4.4 6.4 4.7 6.9 5.0 7.1 5.0 7.3 5.0 7.7 5.0 8.1 4.827.0 5.8 4.4 6.4 4.7 6.9 5.0 7.1 5.0 7.3 5.0 7.7 5.0 8.1 4.829.0 5.8 4.4 6.4 4.7 6.9 5.0 7.1 5.0 7.3 5.0 7.7 5.0 8.1 4.831.0 5.8 4.4 6.4 4.7 6.9 5.0 7.1 5.0 7.3 5.0 7.7 5.0 8.1 4.833.0 5.8 4.4 6.4 4.7 6.9 5.0 7.1 5.0 7.3 5.0 7.7 5.0 8.1 4.835.0 5.8 4.4 6.4 4.7 6.9 5.0 7.1 5.0 7.3 5.0 7.7 5.0 8.1 4.837.0 5.6 4.3 6.2 4.6 6.7 4.9 6.9 4.8 7.1 4.8 7.5 4.8 7.8 4.739.0 5.5 4.2 6.1 4.4 6.5 4.7 6.7 4.7 6.9 4.7 7.3 4.7 7.6 4.610.0 6.6 5.0 7.3 5.3 7.8 5.6 8.0 5.6 8.2 5.6 8.7 5.5 9.1 5.412.0 6.6 5.0 7.3 5.3 7.8 5.6 8.0 5.6 8.2 5.6 8.7 5.5 9.1 5.414.0 6.6 5.0 7.3 5.3 7.8 5.6 8.0 5.6 8.2 5.6 8.7 5.5 9.1 5.416.0 6.6 5.0 7.3 5.3 7.8 5.6 8.0 5.6 8.2 5.6 8.7 5.5 9.1 5.418.0 6.6 5.0 7.3 5.3 7.8 5.6 8.0 5.6 8.2 5.6 8.7 5.5 9.1 5.420.0 6.6 5.0 7.3 5.3 7.8 5.6 8.0 5.6 8.2 5.6 8.7 5.5 9.1 5.421.0 6.6 5.0 7.3 5.3 7.8 5.6 8.0 5.6 8.2 5.6 8.7 5.5 9.1 5.4

027 23.0 6.6 5.0 7.3 5.3 7.8 5.6 8.0 5.6 8.2 5.6 8.7 5.5 9.1 5.425.0 6.6 5.0 7.3 5.3 7.8 5.6 8.0 5.6 8.2 5.6 8.7 5.5 9.1 5.427.0 6.6 5.0 7.3 5.3 7.8 5.6 8.0 5.6 8.2 5.6 8.7 5.5 9.1 5.429.0 6.6 5.0 7.3 5.3 7.8 5.6 8.0 5.6 8.2 5.6 8.7 5.5 9.1 5.431.0 6.6 5.0 7.3 5.3 7.8 5.6 8.0 5.6 8.2 5.6 8.7 5.5 9.1 5.433.0 6.6 5.0 7.3 5.3 7.8 5.6 8.0 5.6 8.2 5.6 8.7 5.5 9.1 5.435.0 6.6 5.0 7.3 5.3 7.8 5.6 8.0 5.6 8.2 5.6 8.7 5.5 9.1 5.437.0 6.4 4.8 7.0 5.1 7.5 5.4 7.7 5.4 8.0 5.4 8.4 5.4 8.8 5.239.0 6.2 4.7 6.8 5.0 7.3 5.3 7.5 5.3 7.8 5.3 8.2 5.2 8.6 5.110.0 7.4 5.5 8.2 5.9 8.7 6.2 9.0 6.2 9.3 6.2 9.8 6.1 10.3 6.012.0 7.4 5.5 8.2 5.9 8.7 6.2 9.0 6.2 9.3 6.2 9.8 6.1 10.3 6.014.0 7.4 5.5 8.2 5.9 8.7 6.2 9.0 6.2 9.3 6.2 9.8 6.1 10.3 6.016.0 7.4 5.5 8.2 5.9 8.7 6.2 9.0 6.2 9.3 6.2 9.8 6.1 10.3 6.018.0 7.4 5.5 8.2 5.9 8.7 6.2 9.0 6.2 9.3 6.2 9.8 6.1 10.3 6.020.0 7.4 5.5 8.2 5.9 8.7 6.2 9.0 6.2 9.3 6.2 9.8 6.1 10.3 6.021.0 7.4 5.5 8.2 5.9 8.7 6.2 9.0 6.2 9.3 6.2 9.8 6.1 10.3 6.0

030 23.0 7.4 5.5 8.2 5.9 8.7 6.2 9.0 6.2 9.3 6.2 9.8 6.1 10.3 6.025.0 7.4 5.5 8.2 5.9 8.7 6.2 9.0 6.2 9.3 6.2 9.8 6.1 10.3 6.027.0 7.4 5.5 8.2 5.9 8.7 6.2 9.0 6.2 9.3 6.2 9.8 6.1 10.3 6.029.0 7.4 5.5 8.2 5.9 8.7 6.2 9.0 6.2 9.3 6.2 9.8 6.1 10.3 6.031.0 7.4 5.5 8.2 5.9 8.7 6.2 9.0 6.2 9.3 6.2 9.8 6.1 10.3 6.033.0 7.4 5.5 8.2 5.9 8.7 6.2 9.0 6.2 9.3 6.2 9.8 6.1 10.3 6.035.0 7.4 5.5 8.2 5.9 8.7 6.2 9.0 6.2 9.3 6.2 9.8 6.1 10.3 6.037.0 7.2 5.3 7.9 5.7 8.5 6.0 8.7 6.0 9.0 6.0 9.5 5.9 9.9 5.839.0 7.0 5.2 7.7 5.5 8.2 5.9 8.5 5.8 8.7 5.8 9.2 5.8 9.7 5.6

unitsize

outdoorair temp.

indoor air temp.

Page 58: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

55

Concealed Duct Standard Type ( MMD-AP***BH ) TC : Total capacity [kW] SHC : Sensible capacity [kW]

8

14.0 WB 16.0 WB 18.0 WB 19.0 WB 20.0 WB 22.0 WB 24.0 WB20 DB 23 DB 26 DB 27 DB 28 DB 30 DB 32 DB

DB TC SHC TC SHC TC SHC TC SHC TC SHC TC SHC TC SHC10.0 9.2 6.5 10.2 6.9 10.9 7.3 11.2 7.3 11.5 7.3 12.2 7.2 12.8 7.112.0 9.2 6.5 10.2 6.9 10.9 7.3 11.2 7.3 11.5 7.3 12.2 7.2 12.8 7.114.0 9.2 6.5 10.2 6.9 10.9 7.3 11.2 7.3 11.5 7.3 12.2 7.2 12.8 7.116.0 9.2 6.5 10.2 6.9 10.9 7.3 11.2 7.3 11.5 7.3 12.2 7.2 12.8 7.118.0 9.2 6.5 10.2 6.9 10.9 7.3 11.2 7.3 11.5 7.3 12.2 7.2 12.8 7.120.0 9.2 6.5 10.2 6.9 10.9 7.3 11.2 7.3 11.5 7.3 12.2 7.2 12.8 7.121.0 9.2 6.5 10.2 6.9 10.9 7.3 11.2 7.3 11.5 7.3 12.2 7.2 12.8 7.1

036 23.0 9.2 6.5 10.2 6.9 10.9 7.3 11.2 7.3 11.5 7.3 12.2 7.2 12.8 7.125.0 9.2 6.5 10.2 6.9 10.9 7.3 11.2 7.3 11.5 7.3 12.2 7.2 12.8 7.127.0 9.2 6.5 10.2 6.9 10.9 7.3 11.2 7.3 11.5 7.3 12.2 7.2 12.8 7.129.0 9.2 6.5 10.2 6.9 10.9 7.3 11.2 7.3 11.5 7.3 12.2 7.2 12.8 7.131.0 9.2 6.5 10.2 6.9 10.9 7.3 11.2 7.3 11.5 7.3 12.2 7.2 12.8 7.133.0 9.2 6.5 10.2 6.9 10.9 7.3 11.2 7.3 11.5 7.3 12.2 7.2 12.8 7.135.0 9.2 6.5 10.2 6.9 10.9 7.3 11.2 7.3 11.5 7.3 12.2 7.2 12.8 7.137.0 8.9 6.3 9.8 6.7 10.5 7.1 10.8 7.1 11.2 7.1 11.8 7.0 12.4 6.839.0 8.7 6.1 9.6 6.5 10.2 6.9 10.5 6.9 10.9 6.9 11.5 6.8 12.0 6.610.0 11.5 8.2 12.7 8.7 13.6 9.2 14.0 9.2 14.4 9.2 15.3 9.1 16.0 8.912.0 11.5 8.2 12.7 8.7 13.6 9.2 14.0 9.2 14.4 9.2 15.3 9.1 16.0 8.914.0 11.5 8.2 12.7 8.7 13.6 9.2 14.0 9.2 14.4 9.2 15.3 9.1 16.0 8.916.0 11.5 8.2 12.7 8.7 13.6 9.2 14.0 9.2 14.4 9.2 15.3 9.1 16.0 8.918.0 11.5 8.2 12.7 8.7 13.6 9.2 14.0 9.2 14.4 9.2 15.3 9.1 16.0 8.920.0 11.5 8.2 12.7 8.7 13.6 9.2 14.0 9.2 14.4 9.2 15.3 9.1 16.0 8.921.0 11.5 8.2 12.7 8.7 13.6 9.2 14.0 9.2 14.4 9.2 15.3 9.1 16.0 8.9

048 23.0 11.5 8.2 12.7 8.7 13.6 9.2 14.0 9.2 14.4 9.2 15.3 9.1 16.0 8.925.0 11.5 8.2 12.7 8.7 13.6 9.2 14.0 9.2 14.4 9.2 15.3 9.1 16.0 8.927.0 11.5 8.2 12.7 8.7 13.6 9.2 14.0 9.2 14.4 9.2 15.3 9.1 16.0 8.929.0 11.5 8.2 12.7 8.7 13.6 9.2 14.0 9.2 14.4 9.2 15.3 9.1 16.0 8.931.0 11.5 8.2 12.7 8.7 13.6 9.2 14.0 9.2 14.4 9.2 15.3 9.1 16.0 8.933.0 11.5 8.2 12.7 8.7 13.6 9.2 14.0 9.2 14.4 9.2 15.3 9.1 16.0 8.935.0 11.5 8.2 12.7 8.7 13.6 9.2 14.0 9.2 14.4 9.2 15.3 9.1 16.0 8.937.0 11.1 7.9 12.3 8.4 13.1 8.9 13.6 8.9 14.0 8.9 14.8 8.8 15.4 8.639.0 10.8 7.7 12.0 8.2 12.8 8.7 13.2 8.7 13.6 8.7 14.4 8.6 15.0 8.410.0 13.1 9.6 14.5 10.2 15.5 10.8 16.0 10.8 16.5 10.8 17.4 10.7 18.2 10.512.0 13.1 9.6 14.5 10.2 15.5 10.8 16.0 10.8 16.5 10.8 17.4 10.7 18.2 10.514.0 13.1 9.6 14.5 10.2 15.5 10.8 16.0 10.8 16.5 10.8 17.4 10.7 18.2 10.516.0 13.1 9.6 14.5 10.2 15.5 10.8 16.0 10.8 16.5 10.8 17.4 10.7 18.2 10.518.0 13.1 9.6 14.5 10.2 15.5 10.8 16.0 10.8 16.5 10.8 17.4 10.7 18.2 10.520.0 13.1 9.6 14.5 10.2 15.5 10.8 16.0 10.8 16.5 10.8 17.4 10.7 18.2 10.521.0 13.1 9.6 14.5 10.2 15.5 10.8 16.0 10.8 16.5 10.8 17.4 10.7 18.2 10.5

056 23.0 13.1 9.6 14.5 10.2 15.5 10.8 16.0 10.8 16.5 10.8 17.4 10.7 18.2 10.525.0 13.1 9.6 14.5 10.2 15.5 10.8 16.0 10.8 16.5 10.8 17.4 10.7 18.2 10.527.0 13.1 9.6 14.5 10.2 15.5 10.8 16.0 10.8 16.5 10.8 17.4 10.7 18.2 10.529.0 13.1 9.6 14.5 10.2 15.5 10.8 16.0 10.8 16.5 10.8 17.4 10.7 18.2 10.531.0 13.1 9.6 14.5 10.2 15.5 10.8 16.0 10.8 16.5 10.8 17.4 10.7 18.2 10.533.0 13.1 9.6 14.5 10.2 15.5 10.8 16.0 10.8 16.5 10.8 17.4 10.7 18.2 10.535.0 13.1 9.6 14.5 10.2 15.5 10.8 16.0 10.8 16.5 10.8 17.4 10.7 18.2 10.537.0 12.7 9.3 14.1 9.9 15.0 10.5 15.5 10.5 16.0 10.5 16.9 10.4 17.7 10.139.0 12.4 9.0 13.7 9.6 14.6 10.2 15.1 10.2 15.5 10.2 16.4 10.1 17.2 9.8

unitsize

outdoorair temp.

indoor air temp.

Page 59: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

56

TC : Total capacity [kW] SHC : Sensible capacity [kW]Concealed Duct High Static Pressure Type ( MMD-AP****H )

8

14.0 WB 16.0 WB 18.0 WB 19.0 WB 20.0 WB 22.0 WB 24.0 WB20 DB 23 DB 26 DB 27 DB 28 DB 30 DB 32 DB

DB TC SHC TC SHC TC SHC TC SHC TC SHC TC SHC TC SHC10.0 4.6 3.6 5.1 3.8 5.4 4.0 5.6 4.0 5.8 4.0 6.1 4.0 6.4 3.912.0 4.6 3.6 5.1 3.8 5.4 4.0 5.6 4.0 5.8 4.0 6.1 4.0 6.4 3.914.0 4.6 3.6 5.1 3.8 5.4 4.0 5.6 4.0 5.8 4.0 6.1 4.0 6.4 3.916.0 4.6 3.6 5.1 3.8 5.4 4.0 5.6 4.0 5.8 4.0 6.1 4.0 6.4 3.918.0 4.6 3.6 5.1 3.8 5.4 4.0 5.6 4.0 5.8 4.0 6.1 4.0 6.4 3.920.0 4.6 3.6 5.1 3.8 5.4 4.0 5.6 4.0 5.8 4.0 6.1 4.0 6.4 3.921.0 4.6 3.6 5.1 3.8 5.4 4.0 5.6 4.0 5.8 4.0 6.1 4.0 6.4 3.9

018 23.0 4.6 3.6 5.1 3.8 5.4 4.0 5.6 4.0 5.8 4.0 6.1 4.0 6.4 3.925.0 4.6 3.6 5.1 3.8 5.4 4.0 5.6 4.0 5.8 4.0 6.1 4.0 6.4 3.927.0 4.6 3.6 5.1 3.8 5.4 4.0 5.6 4.0 5.8 4.0 6.1 4.0 6.4 3.929.0 4.6 3.6 5.1 3.8 5.4 4.0 5.6 4.0 5.8 4.0 6.1 4.0 6.4 3.931.0 4.6 3.6 5.1 3.8 5.4 4.0 5.6 4.0 5.8 4.0 6.1 4.0 6.4 3.933.0 4.6 3.6 5.1 3.8 5.4 4.0 5.6 4.0 5.8 4.0 6.1 4.0 6.4 3.935.0 4.6 3.6 5.1 3.8 5.4 4.0 5.6 4.0 5.8 4.0 6.1 4.0 6.4 3.937.0 4.5 3.5 4.9 3.7 5.3 3.9 5.4 3.9 5.6 3.9 5.9 3.9 6.2 3.839.0 4.3 3.4 4.8 3.6 5.1 3.8 5.3 3.8 5.4 3.8 5.7 3.8 6.0 3.710.0 5.8 4.4 6.4 4.7 6.9 5.0 7.1 5.0 7.3 5.0 7.7 5.0 8.1 4.812.0 5.8 4.4 6.4 4.7 6.9 5.0 7.1 5.0 7.3 5.0 7.7 5.0 8.1 4.814.0 5.8 4.4 6.4 4.7 6.9 5.0 7.1 5.0 7.3 5.0 7.7 5.0 8.1 4.816.0 5.8 4.4 6.4 4.7 6.9 5.0 7.1 5.0 7.3 5.0 7.7 5.0 8.1 4.818.0 5.8 4.4 6.4 4.7 6.9 5.0 7.1 5.0 7.3 5.0 7.7 5.0 8.1 4.820.0 5.8 4.4 6.4 4.7 6.9 5.0 7.1 5.0 7.3 5.0 7.7 5.0 8.1 4.821.0 5.8 4.4 6.4 4.7 6.9 5.0 7.1 5.0 7.3 5.0 7.7 5.0 8.1 4.8

024 23.0 5.8 4.4 6.4 4.7 6.9 5.0 7.1 5.0 7.3 5.0 7.7 5.0 8.1 4.825.0 5.8 4.4 6.4 4.7 6.9 5.0 7.1 5.0 7.3 5.0 7.7 5.0 8.1 4.827.0 5.8 4.4 6.4 4.7 6.9 5.0 7.1 5.0 7.3 5.0 7.7 5.0 8.1 4.829.0 5.8 4.4 6.4 4.7 6.9 5.0 7.1 5.0 7.3 5.0 7.7 5.0 8.1 4.831.0 5.8 4.4 6.4 4.7 6.9 5.0 7.1 5.0 7.3 5.0 7.7 5.0 8.1 4.833.0 5.8 4.4 6.4 4.7 6.9 5.0 7.1 5.0 7.3 5.0 7.7 5.0 8.1 4.835.0 5.8 4.4 6.4 4.7 6.9 5.0 7.1 5.0 7.3 5.0 7.7 5.0 8.1 4.837.0 5.6 4.3 6.2 4.6 6.7 4.9 6.9 4.8 7.1 4.8 7.5 4.8 7.8 4.739.0 5.5 4.2 6.1 4.4 6.5 4.7 6.7 4.7 6.9 4.7 7.3 4.7 7.6 4.610.0 6.6 4.8 7.3 5.1 7.8 5.4 8.0 5.4 8.2 5.4 8.7 5.3 9.1 5.212.0 6.6 4.8 7.3 5.1 7.8 5.4 8.0 5.4 8.2 5.4 8.7 5.3 9.1 5.214.0 6.6 4.8 7.3 5.1 7.8 5.4 8.0 5.4 8.2 5.4 8.7 5.3 9.1 5.216.0 6.6 4.8 7.3 5.1 7.8 5.4 8.0 5.4 8.2 5.4 8.7 5.3 9.1 5.218.0 6.6 4.8 7.3 5.1 7.8 5.4 8.0 5.4 8.2 5.4 8.7 5.3 9.1 5.220.0 6.6 4.8 7.3 5.1 7.8 5.4 8.0 5.4 8.2 5.4 8.7 5.3 9.1 5.221.0 6.6 4.8 7.3 5.1 7.8 5.4 8.0 5.4 8.2 5.4 8.7 5.3 9.1 5.2

027 23.0 6.6 4.8 7.3 5.1 7.8 5.4 8.0 5.4 8.2 5.4 8.7 5.3 9.1 5.225.0 6.6 4.8 7.3 5.1 7.8 5.4 8.0 5.4 8.2 5.4 8.7 5.3 9.1 5.227.0 6.6 4.8 7.3 5.1 7.8 5.4 8.0 5.4 8.2 5.4 8.7 5.3 9.1 5.229.0 6.6 4.8 7.3 5.1 7.8 5.4 8.0 5.4 8.2 5.4 8.7 5.3 9.1 5.231.0 6.6 4.8 7.3 5.1 7.8 5.4 8.0 5.4 8.2 5.4 8.7 5.3 9.1 5.233.0 6.6 4.8 7.3 5.1 7.8 5.4 8.0 5.4 8.2 5.4 8.7 5.3 9.1 5.235.0 6.6 4.8 7.3 5.1 7.8 5.4 8.0 5.4 8.2 5.4 8.7 5.3 9.1 5.237.0 6.4 4.6 7.0 4.9 7.5 5.2 7.7 5.2 8.0 5.2 8.4 5.2 8.8 5.139.0 6.2 4.5 6.8 4.8 7.3 5.1 7.5 5.1 7.8 5.1 8.2 5.0 8.6 4.910.0 9.2 6.9 10.2 7.4 10.9 7.8 11.2 7.8 11.5 7.8 12.2 7.7 12.8 7.512.0 9.2 6.9 10.2 7.4 10.9 7.8 11.2 7.8 11.5 7.8 12.2 7.7 12.8 7.514.0 9.2 6.9 10.2 7.4 10.9 7.8 11.2 7.8 11.5 7.8 12.2 7.7 12.8 7.516.0 9.2 6.9 10.2 7.4 10.9 7.8 11.2 7.8 11.5 7.8 12.2 7.7 12.8 7.518.0 9.2 6.9 10.2 7.4 10.9 7.8 11.2 7.8 11.5 7.8 12.2 7.7 12.8 7.520.0 9.2 6.9 10.2 7.4 10.9 7.8 11.2 7.8 11.5 7.8 12.2 7.7 12.8 7.521.0 9.2 6.9 10.2 7.4 10.9 7.8 11.2 7.8 11.5 7.8 12.2 7.7 12.8 7.5

036 23.0 9.2 6.9 10.2 7.4 10.9 7.8 11.2 7.8 11.5 7.8 12.2 7.7 12.8 7.525.0 9.2 6.9 10.2 7.4 10.9 7.8 11.2 7.8 11.5 7.8 12.2 7.7 12.8 7.527.0 9.2 6.9 10.2 7.4 10.9 7.8 11.2 7.8 11.5 7.8 12.2 7.7 12.8 7.529.0 9.2 6.9 10.2 7.4 10.9 7.8 11.2 7.8 11.5 7.8 12.2 7.7 12.8 7.531.0 9.2 6.9 10.2 7.4 10.9 7.8 11.2 7.8 11.5 7.8 12.2 7.7 12.8 7.533.0 9.2 6.9 10.2 7.4 10.9 7.8 11.2 7.8 11.5 7.8 12.2 7.7 12.8 7.535.0 9.2 6.9 10.2 7.4 10.9 7.8 11.2 7.8 11.5 7.8 12.2 7.7 12.8 7.537.0 8.9 6.7 9.8 7.1 10.5 7.6 10.8 7.6 11.2 7.5 11.8 7.5 12.4 7.339.0 8.7 6.5 9.6 6.9 10.2 7.4 10.5 7.3 10.9 7.3 11.5 7.3 12.0 7.1

unitsize

outdoorair temp.

indoor air temp.

Page 60: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

57

8

TC : Total capacity [kW] SHC : Sensible capacity [kW]Concealed Duct High Static Pressure Type ( MMD-AP****H )

14.0 WB 16.0 WB 18.0 WB 19.0 WB 20.0 WB 22.0 WB 24.0 WB20 DB 23 DB 26 DB 27 DB 28 DB 30 DB 32 DB

DB TC SHC TC SHC TC SHC TC SHC TC SHC TC SHC TC SHC10.0 11.5 8.4 12.7 9.0 13.6 9.5 14.0 9.5 14.4 9.5 15.3 9.4 16.0 9.212.0 11.5 8.4 12.7 9.0 13.6 9.5 14.0 9.5 14.4 9.5 15.3 9.4 16.0 9.214.0 11.5 8.4 12.7 9.0 13.6 9.5 14.0 9.5 14.4 9.5 15.3 9.4 16.0 9.216.0 11.5 8.4 12.7 9.0 13.6 9.5 14.0 9.5 14.4 9.5 15.3 9.4 16.0 9.218.0 11.5 8.4 12.7 9.0 13.6 9.5 14.0 9.5 14.4 9.5 15.3 9.4 16.0 9.220.0 11.5 8.4 12.7 9.0 13.6 9.5 14.0 9.5 14.4 9.5 15.3 9.4 16.0 9.221.0 11.5 8.4 12.7 9.0 13.6 9.5 14.0 9.5 14.4 9.5 15.3 9.4 16.0 9.2

048 23.0 11.5 8.4 12.7 9.0 13.6 9.5 14.0 9.5 14.4 9.5 15.3 9.4 16.0 9.225.0 11.5 8.4 12.7 9.0 13.6 9.5 14.0 9.5 14.4 9.5 15.3 9.4 16.0 9.227.0 11.5 8.4 12.7 9.0 13.6 9.5 14.0 9.5 14.4 9.5 15.3 9.4 16.0 9.229.0 11.5 8.4 12.7 9.0 13.6 9.5 14.0 9.5 14.4 9.5 15.3 9.4 16.0 9.231.0 11.5 8.4 12.7 9.0 13.6 9.5 14.0 9.5 14.4 9.5 15.3 9.4 16.0 9.233.0 11.5 8.4 12.7 9.0 13.6 9.5 14.0 9.5 14.4 9.5 15.3 9.4 16.0 9.235.0 11.5 8.4 12.7 9.0 13.6 9.5 14.0 9.5 14.4 9.5 15.3 9.4 16.0 9.237.0 11.1 8.2 12.3 8.7 13.1 9.2 13.6 9.2 14.0 9.2 14.8 9.1 15.4 8.939.0 10.8 7.9 12.0 8.4 12.8 9.0 13.2 8.9 13.6 8.9 14.4 8.9 15.0 8.710.0 18.4 13.2 20.3 14.1 21.7 14.9 22.4 14.9 23.1 14.9 24.4 14.8 25.5 14.412.0 18.4 13.2 20.3 14.1 21.7 14.9 22.4 14.9 23.1 14.9 24.4 14.8 25.5 14.414.0 18.4 13.2 20.3 14.1 21.7 14.9 22.4 14.9 23.1 14.9 24.4 14.8 25.5 14.416.0 18.4 13.2 20.3 14.1 21.7 14.9 22.4 14.9 23.1 14.9 24.4 14.8 25.5 14.418.0 18.4 13.2 20.3 14.1 21.7 14.9 22.4 14.9 23.1 14.9 24.4 14.8 25.5 14.420.0 18.4 13.2 20.3 14.1 21.7 14.9 22.4 14.9 23.1 14.9 24.4 14.8 25.5 14.421.0 18.4 13.2 20.3 14.1 21.7 14.9 22.4 14.9 23.1 14.9 24.4 14.8 25.5 14.4

072 23.0 18.4 13.2 20.3 14.1 21.7 14.9 22.4 14.9 23.1 14.9 24.4 14.8 25.5 14.425.0 18.4 13.2 20.3 14.1 21.7 14.9 22.4 14.9 23.1 14.9 24.4 14.8 25.5 14.427.0 18.4 13.2 20.3 14.1 21.7 14.9 22.4 14.9 23.1 14.9 24.4 14.8 25.5 14.429.0 18.4 13.2 20.3 14.1 21.7 14.9 22.4 14.9 23.1 14.9 24.4 14.8 25.5 14.431.0 18.4 13.2 20.3 14.1 21.7 14.9 22.4 14.9 23.1 14.9 24.4 14.8 25.5 14.433.0 18.4 13.2 20.3 14.1 21.7 14.9 22.4 14.9 23.1 14.9 24.4 14.8 25.5 14.435.0 18.4 13.2 20.3 14.1 21.7 14.9 22.4 14.9 23.1 14.9 24.4 14.8 25.5 14.437.0 17.8 12.8 19.7 13.6 21.0 14.5 21.7 14.4 22.3 14.4 23.6 14.3 24.7 14.039.0 17.3 12.4 19.1 13.2 20.4 14.1 21.1 14.0 21.7 14.0 23.0 13.9 24.0 13.610.0 23.0 16.2 25.4 17.3 27.2 18.4 28.0 18.3 28.8 18.3 30.5 18.1 31.9 17.712.0 23.0 16.2 25.4 17.3 27.2 18.4 28.0 18.3 28.8 18.3 30.5 18.1 31.9 17.714.0 23.0 16.2 25.4 17.3 27.2 18.4 28.0 18.3 28.8 18.3 30.5 18.1 31.9 17.716.0 23.0 16.2 25.4 17.3 27.2 18.4 28.0 18.3 28.8 18.3 30.5 18.1 31.9 17.718.0 23.0 16.2 25.4 17.3 27.2 18.4 28.0 18.3 28.8 18.3 30.5 18.1 31.9 17.720.0 23.0 16.2 25.4 17.3 27.2 18.4 28.0 18.3 28.8 18.3 30.5 18.1 31.9 17.721.0 23.0 16.2 25.4 17.3 27.2 18.4 28.0 18.3 28.8 18.3 30.5 18.1 31.9 17.7

096 23.0 23.0 16.2 25.4 17.3 27.2 18.4 28.0 18.3 28.8 18.3 30.5 18.1 31.9 17.725.0 23.0 16.2 25.4 17.3 27.2 18.4 28.0 18.3 28.8 18.3 30.5 18.1 31.9 17.727.0 23.0 16.2 25.4 17.3 27.2 18.4 28.0 18.3 28.8 18.3 30.5 18.1 31.9 17.729.0 23.0 16.2 25.4 17.3 27.2 18.4 28.0 18.3 28.8 18.3 30.5 18.1 31.9 17.731.0 23.0 16.2 25.4 17.3 27.2 18.4 28.0 18.3 28.8 18.3 30.5 18.1 31.9 17.733.0 23.0 16.2 25.4 17.3 27.2 18.4 28.0 18.3 28.8 18.3 30.5 18.1 31.9 17.735.0 23.0 16.2 25.4 17.3 27.2 18.4 28.0 18.3 28.8 18.3 30.5 18.1 31.9 17.737.0 22.3 15.7 24.6 16.7 26.3 17.8 18.3 17.7 27.9 17.7 29.5 17.6 30.9 17.139.0 21.6 15.3 23.9 16.3 25.6 17.3 26.3 17.2 27.1 17.2 28.7 17.1 30.0 16.7

unitsize

outdoorair temp.

indoor air temp.

Page 61: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

58

8

Under Ceiling Type ( MMC-AP****H ) TC : Total capacity [kW] SHC : Sensible capacity [kW]

14.0 WB 16.0 WB 18.0 WB 19.0 WB 20.0 WB 22.0 WB 24.0 WB20 DB 23 DB 26 DB 27 DB 28 DB 30 DB 32 DB

DB TC SHC TC SHC TC SHC TC SHC TC SHC TC SHC TC SHC10.0 3.7 2.8 4.1 3.0 4.4 3.2 4.5 3.2 4.6 3.2 4.9 3.2 5.1 3.112.0 3.7 2.8 4.1 3.0 4.4 3.2 4.5 3.2 4.6 3.2 4.9 3.2 5.1 3.114.0 3.7 2.8 4.1 3.0 4.4 3.2 4.5 3.2 4.6 3.2 4.9 3.2 5.1 3.116.0 3.7 2.8 4.1 3.0 4.4 3.2 4.5 3.2 4.6 3.2 4.9 3.2 5.1 3.118.0 3.7 2.8 4.1 3.0 4.4 3.2 4.5 3.2 4.6 3.2 4.9 3.2 5.1 3.120.0 3.7 2.8 4.1 3.0 4.4 3.2 4.5 3.2 4.6 3.2 4.9 3.2 5.1 3.121.0 3.7 2.8 4.1 3.0 4.4 3.2 4.5 3.2 4.6 3.2 4.9 3.2 5.1 3.1

015 23.0 3.7 2.8 4.1 3.0 4.4 3.2 4.5 3.2 4.6 3.2 4.9 3.2 5.1 3.125.0 3.7 2.8 4.1 3.0 4.4 3.2 4.5 3.2 4.6 3.2 4.9 3.2 5.1 3.127.0 3.7 2.8 4.1 3.0 4.4 3.2 4.5 3.2 4.6 3.2 4.9 3.2 5.1 3.129.0 3.7 2.8 4.1 3.0 4.4 3.2 4.5 3.2 4.6 3.2 4.9 3.2 5.1 3.131.0 3.7 2.8 4.1 3.0 4.4 3.2 4.5 3.2 4.6 3.2 4.9 3.2 5.1 3.133.0 3.7 2.8 4.1 3.0 4.4 3.2 4.5 3.2 4.6 3.2 4.9 3.2 5.1 3.135.0 3.7 2.8 4.1 3.0 4.4 3.2 4.5 3.2 4.6 3.2 4.9 3.2 5.1 3.137.0 3.6 2.7 4.0 2.9 4.2 3.1 4.4 3.1 4.5 3.1 4.7 3.1 5.0 3.039.0 3.5 2.7 3.8 2.8 4.1 3.0 4.2 3.0 4.4 3.0 4.6 3.0 4.8 2.910.0 4.6 3.5 5.1 3.7 5.4 3.9 5.6 3.9 5.8 3.9 6.1 3.9 6.4 3.812.0 4.6 3.5 5.1 3.7 5.4 3.9 5.6 3.9 5.8 3.9 6.1 3.9 6.4 3.814.0 4.6 3.5 5.1 3.7 5.4 3.9 5.6 3.9 5.8 3.9 6.1 3.9 6.4 3.816.0 4.6 3.5 5.1 3.7 5.4 3.9 5.6 3.9 5.8 3.9 6.1 3.9 6.4 3.818.0 4.6 3.5 5.1 3.7 5.4 3.9 5.6 3.9 5.8 3.9 6.1 3.9 6.4 3.820.0 4.6 3.5 5.1 3.7 5.4 3.9 5.6 3.9 5.8 3.9 6.1 3.9 6.4 3.821.0 4.6 3.5 5.1 3.7 5.4 3.9 5.6 3.9 5.8 3.9 6.1 3.9 6.4 3.8

018 23.0 4.6 3.5 5.1 3.7 5.4 3.9 5.6 3.9 5.8 3.9 6.1 3.9 6.4 3.825.0 4.6 3.5 5.1 3.7 5.4 3.9 5.6 3.9 5.8 3.9 6.1 3.9 6.4 3.827.0 4.6 3.5 5.1 3.7 5.4 3.9 5.6 3.9 5.8 3.9 6.1 3.9 6.4 3.829.0 4.6 3.5 5.1 3.7 5.4 3.9 5.6 3.9 5.8 3.9 6.1 3.9 6.4 3.831.0 4.6 3.5 5.1 3.7 5.4 3.9 5.6 3.9 5.8 3.9 6.1 3.9 6.4 3.833.0 4.6 3.5 5.1 3.7 5.4 3.9 5.6 3.9 5.8 3.9 6.1 3.9 6.4 3.835.0 4.6 3.5 5.1 3.7 5.4 3.9 5.6 3.9 5.8 3.9 6.1 3.9 6.4 3.837.0 4.5 3.3 4.9 3.6 5.3 3.8 5.4 3.8 5.6 3.8 5.9 3.7 6.2 3.739.0 4.3 3.3 4.8 3.5 5.1 3.7 5.3 3.7 5.4 3.7 5.7 3.6 6.0 3.610.0 5.8 4.5 6.4 4.8 6.9 5.1 7.1 5.1 7.3 5.1 7.7 5.1 8.1 4.912.0 5.8 4.5 6.4 4.8 6.9 5.1 7.1 5.1 7.3 5.1 7.7 5.1 8.1 4.914.0 5.8 4.5 6.4 4.8 6.9 5.1 7.1 5.1 7.3 5.1 7.7 5.1 8.1 4.916.0 5.8 4.5 6.4 4.8 6.9 5.1 7.1 5.1 7.3 5.1 7.7 5.1 8.1 4.918.0 5.8 4.5 6.4 4.8 6.9 5.1 7.1 5.1 7.3 5.1 7.7 5.1 8.1 4.920.0 5.8 4.5 6.4 4.8 6.9 5.1 7.1 5.1 7.3 5.1 7.7 5.1 8.1 4.921.0 5.8 4.5 6.4 4.8 6.9 5.1 7.1 5.1 7.3 5.1 7.7 5.1 8.1 4.9

024 23.0 5.8 4.5 6.4 4.8 6.9 5.1 7.1 5.1 7.3 5.1 7.7 5.1 8.1 4.925.0 5.8 4.5 6.4 4.8 6.9 5.1 7.1 5.1 7.3 5.1 7.7 5.1 8.1 4.927.0 5.8 4.5 6.4 4.8 6.9 5.1 7.1 5.1 7.3 5.1 7.7 5.1 8.1 4.929.0 5.8 4.5 6.4 4.8 6.9 5.1 7.1 5.1 7.3 5.1 7.7 5.1 8.1 4.931.0 5.8 4.5 6.4 4.8 6.9 5.1 7.1 5.1 7.3 5.1 7.7 5.1 8.1 4.933.0 5.8 4.5 6.4 4.8 6.9 5.1 7.1 5.1 7.3 5.1 7.7 5.1 8.1 4.935.0 5.8 4.5 6.4 4.8 6.9 5.1 7.1 5.1 7.3 5.1 7.7 5.1 8.1 4.937.0 5.6 4.4 6.2 4.7 6.7 5.0 6.9 4.9 7.1 4.9 7.5 4.9 7.8 4.839.0 5.5 4.3 6.1 4.5 6.5 4.8 6.7 4.8 6.9 4.8 7.3 4.8 7.6 4.610.0 6.6 5.0 7.3 5.3 7.8 5.6 8.0 5.6 8.2 5.6 8.7 5.5 9.1 5.412.0 6.6 5.0 7.3 5.3 7.8 5.6 8.0 5.6 8.2 5.6 8.7 5.5 9.1 5.414.0 6.6 5.0 7.3 5.3 7.8 5.6 8.0 5.6 8.2 5.6 8.7 5.5 9.1 5.416.0 6.6 5.0 7.3 5.3 7.8 5.6 8.0 5.6 8.2 5.6 8.7 5.5 9.1 5.418.0 6.6 5.0 7.3 5.3 7.8 5.6 8.0 5.6 8.2 5.6 8.7 5.5 9.1 5.420.0 6.6 5.0 7.3 5.3 7.8 5.6 8.0 5.6 8.2 5.6 8.7 5.5 9.1 5.421.0 6.6 5.0 7.3 5.3 7.8 5.6 8.0 5.6 8.2 5.6 8.7 5.5 9.1 5.4

027 23.0 6.6 5.0 7.3 5.3 7.8 5.6 8.0 5.6 8.2 5.6 8.7 5.5 9.1 5.425.0 6.6 5.0 7.3 5.3 7.8 5.6 8.0 5.6 8.2 5.6 8.7 5.5 9.1 5.427.0 6.6 5.0 7.3 5.3 7.8 5.6 8.0 5.6 8.2 5.6 8.7 5.5 9.1 5.429.0 6.6 5.0 7.3 5.3 7.8 5.6 8.0 5.6 8.2 5.6 8.7 5.5 9.1 5.431.0 6.6 5.0 7.3 5.3 7.8 5.6 8.0 5.6 8.2 5.6 8.7 5.5 9.1 5.433.0 6.6 5.0 7.3 5.3 7.8 5.6 8.0 5.6 8.2 5.6 8.7 5.5 9.1 5.435.0 6.6 5.0 7.3 5.3 7.8 5.6 8.0 5.6 8.2 5.6 8.7 5.5 9.1 5.437.0 6.4 4.8 7.0 5.1 7.5 5.4 7.7 5.4 8.0 5.4 8.4 5.4 8.8 5.239.0 6.2 4.7 6.8 5.0 7.3 5.3 7.5 5.3 7.8 5.3 8.2 5.2 8.6 5.1

unitsize

outdoorair temp.

indoor air temp.

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59

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Under Ceiling Type ( MMC-AP****H ) TC : Total capacity [kW] SHC : Sensible capacity [kW]

14.0 WB 16.0 WB 18.0 WB 19.0 WB 20.0 WB 22.0 WB 24.0 WB20 DB 23 DB 26 DB 27 DB 28 DB 30 DB 32 DB

DB TC SHC TC SHC TC SHC TC SHC TC SHC TC SHC TC SHC10.0 9.2 6.7 10.2 7.2 10.9 7.6 11.2 7.6 11.5 7.6 12.2 7.5 12.8 7.412.0 9.2 6.7 10.2 7.2 10.9 7.6 11.2 7.6 11.5 7.6 12.2 7.5 12.8 7.414.0 9.2 6.7 10.2 7.2 10.9 7.6 11.2 7.6 11.5 7.6 12.2 7.5 12.8 7.416.0 9.2 6.7 10.2 7.2 10.9 7.6 11.2 7.6 11.5 7.6 12.2 7.5 12.8 7.418.0 9.2 6.7 10.2 7.2 10.9 7.6 11.2 7.6 11.5 7.6 12.2 7.5 12.8 7.420.0 9.2 6.7 10.2 7.2 10.9 7.6 11.2 7.6 11.5 7.6 12.2 7.5 12.8 7.421.0 9.2 6.7 10.2 7.2 10.9 7.6 11.2 7.6 11.5 7.6 12.2 7.5 12.8 7.4

036 23.0 9.2 6.7 10.2 7.2 10.9 7.6 11.2 7.6 11.5 7.6 12.2 7.5 12.8 7.425.0 9.2 6.7 10.2 7.2 10.9 7.6 11.2 7.6 11.5 7.6 12.2 7.5 12.8 7.427.0 9.2 6.7 10.2 7.2 10.9 7.6 11.2 7.6 11.5 7.6 12.2 7.5 12.8 7.429.0 9.2 6.7 10.2 7.2 10.9 7.6 11.2 7.6 11.5 7.6 12.2 7.5 12.8 7.431.0 9.2 6.7 10.2 7.2 10.9 7.6 11.2 7.6 11.5 7.6 12.2 7.5 12.8 7.433.0 9.2 6.7 10.2 7.2 10.9 7.6 11.2 7.6 11.5 7.6 12.2 7.5 12.8 7.435.0 9.2 6.7 10.2 7.2 10.9 7.6 11.2 7.6 11.5 7.6 12.2 7.5 12.8 7.437.0 8.9 6.5 9.8 6.9 10.5 7.4 10.8 7.4 11.2 7.4 11.8 7.3 12.4 7.139.0 8.7 6.3 9.6 6.8 10.2 7.2 10.5 7.2 10.9 7.2 11.5 7.1 12.0 6.910.0 11.5 8.7 12.7 9.3 13.6 9.8 14.0 9.8 14.4 9.8 15.3 9.7 16.0 9.512.0 11.5 8.7 12.7 9.3 13.6 9.8 14.0 9.8 14.4 9.8 15.3 9.7 16.0 9.514.0 11.5 8.7 12.7 9.3 13.6 9.8 14.0 9.8 14.4 9.8 15.3 9.7 16.0 9.516.0 11.5 8.7 12.7 9.3 13.6 9.8 14.0 9.8 14.4 9.8 15.3 9.7 16.0 9.518.0 11.5 8.7 12.7 9.3 13.6 9.8 14.0 9.8 14.4 9.8 15.3 9.7 16.0 9.520.0 11.5 8.7 12.7 9.3 13.6 9.8 14.0 9.8 14.4 9.8 15.3 9.7 16.0 9.521.0 11.5 8.7 12.7 9.3 13.6 9.8 14.0 9.8 14.4 9.8 15.3 9.7 16.0 9.5

048 23.0 11.5 8.7 12.7 9.3 13.6 9.8 14.0 9.8 14.4 9.8 15.3 9.7 16.0 9.525.0 11.5 8.7 12.7 9.3 13.6 9.8 14.0 9.8 14.4 9.8 15.3 9.7 16.0 9.527.0 11.5 8.7 12.7 9.3 13.6 9.8 14.0 9.8 14.4 9.8 15.3 9.7 16.0 9.529.0 11.5 8.7 12.7 9.3 13.6 9.8 14.0 9.8 14.4 9.8 15.3 9.7 16.0 9.531.0 11.5 8.7 12.7 9.3 13.6 9.8 14.0 9.8 14.4 9.8 15.3 9.7 16.0 9.533.0 11.5 8.7 12.7 9.3 13.6 9.8 14.0 9.8 14.4 9.8 15.3 9.7 16.0 9.535.0 11.5 8.7 12.7 9.3 13.6 9.8 14.0 9.8 14.4 9.8 15.3 9.7 16.0 9.537.0 11.1 8.4 12.3 9.0 13.1 9.5 13.6 9.5 14.0 9.5 14.8 9.4 15.4 9.239.0 10.8 8.2 12.0 8.7 12.8 9.2 13.2 9.2 13.6 9.2 14.4 9.1 15.0 8.9

unitsize

outdoorair temp.

indoor air temp.

Page 63: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

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High Wall Type ( MMK-AP***1H, 1 series ) TC : Total capacity [kW] SHC : Sensible capacity [kW]

14.0 WB 16.0 WB 18.0 WB 19.0 WB 20.0 WB 22.0 WB 24.0 WB20 DB 23 DB 26 DB 27 DB 28 DB 30 DB 32 DB

DB TC SHC TC SHC TC SHC TC SHC TC SHC TC SHC TC SHC10.0 1.8 1.5 2.0 1.6 2.1 1.7 2.2 1.7 2.3 1.7 2.4 1.7 2.5 1.612.0 1.8 1.5 2.0 1.6 2.1 1.7 2.2 1.7 2.3 1.7 2.4 1.7 2.5 1.614.0 1.8 1.5 2.0 1.6 2.1 1.7 2.2 1.7 2.3 1.7 2.4 1.7 2.5 1.616.0 1.8 1.5 2.0 1.6 2.1 1.7 2.2 1.7 2.3 1.7 2.4 1.7 2.5 1.618.0 1.8 1.5 2.0 1.6 2.1 1.7 2.2 1.7 2.3 1.7 2.4 1.7 2.5 1.620.0 1.8 1.5 2.0 1.6 2.1 1.7 2.2 1.7 2.3 1.7 2.4 1.7 2.5 1.621.0 1.8 1.5 2.0 1.6 2.1 1.7 2.2 1.7 2.3 1.7 2.4 1.7 2.5 1.6

007 23.0 1.8 1.5 2.0 1.6 2.1 1.7 2.2 1.7 2.3 1.7 2.4 1.7 2.5 1.625.0 1.8 1.5 2.0 1.6 2.1 1.7 2.2 1.7 2.3 1.7 2.4 1.7 2.5 1.627.0 1.8 1.5 2.0 1.6 2.1 1.7 2.2 1.7 2.3 1.7 2.4 1.7 2.5 1.629.0 1.8 1.5 2.0 1.6 2.1 1.7 2.2 1.7 2.3 1.7 2.4 1.7 2.5 1.631.0 1.8 1.5 2.0 1.6 2.1 1.7 2.2 1.7 2.3 1.7 2.4 1.7 2.5 1.633.0 1.8 1.5 2.0 1.6 2.1 1.7 2.2 1.7 2.3 1.7 2.4 1.7 2.5 1.635.0 1.8 1.5 2.0 1.6 2.1 1.7 2.2 1.7 2.3 1.7 2.4 1.7 2.5 1.637.0 1.7 1.5 1.9 1.6 2.1 1.7 2.1 1.6 2.2 1.6 2.3 1.6 2.4 1.639.0 1.7 1.4 1.9 1.5 2.0 1.6 2.1 1.6 2.1 1.6 2.3 1.6 2.4 1.510.0 2.3 1.8 2.5 1.9 2.7 2.0 2.8 2.0 2.9 2.0 3.1 2.0 3.2 1.912.0 2.3 1.8 2.5 1.9 2.7 2.0 2.8 2.0 2.9 2.0 3.1 2.0 3.2 1.914.0 2.3 1.8 2.5 1.9 2.7 2.0 2.8 2.0 2.9 2.0 3.1 2.0 3.2 1.916.0 2.3 1.8 2.5 1.9 2.7 2.0 2.8 2.0 2.9 2.0 3.1 2.0 3.2 1.918.0 2.3 1.8 2.5 1.9 2.7 2.0 2.8 2.0 2.9 2.0 3.1 2.0 3.2 1.920.0 2.3 1.8 2.5 1.9 2.7 2.0 2.8 2.0 2.9 2.0 3.1 2.0 3.2 1.921.0 2.3 1.8 2.5 1.9 2.7 2.0 2.8 2.0 2.9 2.0 3.1 2.0 3.2 1.9

009 23.0 2.3 1.8 2.5 1.9 2.7 2.0 2.8 2.0 2.9 2.0 3.1 2.0 3.2 1.925.0 2.3 1.8 2.5 1.9 2.7 2.0 2.8 2.0 2.9 2.0 3.1 2.0 3.2 1.927.0 2.3 1.8 2.5 1.9 2.7 2.0 2.8 2.0 2.9 2.0 3.1 2.0 3.2 1.929.0 2.3 1.8 2.5 1.9 2.7 2.0 2.8 2.0 2.9 2.0 3.1 2.0 3.2 1.931.0 2.3 1.8 2.5 1.9 2.7 2.0 2.8 2.0 2.9 2.0 3.1 2.0 3.2 1.933.0 2.3 1.8 2.5 1.9 2.7 2.0 2.8 2.0 2.9 2.0 3.1 2.0 3.2 1.935.0 2.3 1.8 2.5 1.9 2.7 2.0 2.8 2.0 2.9 2.0 3.1 2.0 3.2 1.937.0 2.2 1.7 2.5 1.8 2.6 1.9 2.7 1.9 2.8 1.9 3.0 1.9 3.1 1.939.0 2.2 1.7 2.4 1.8 2.6 1.9 2.6 1.9 2.7 1.9 2.9 1.9 3.0 1.810.0 3.0 2.2 3.3 2.4 3.5 2.5 3.6 2.5 3.7 2.5 3.9 2.5 4.1 2.412.0 3.0 2.2 3.3 2.4 3.5 2.5 3.6 2.5 3.7 2.5 3.9 2.5 4.1 2.414.0 3.0 2.2 3.3 2.4 3.5 2.5 3.6 2.5 3.7 2.5 3.9 2.5 4.1 2.416.0 3.0 2.2 3.3 2.4 3.5 2.5 3.6 2.5 3.7 2.5 3.9 2.5 4.1 2.418.0 3.0 2.2 3.3 2.4 3.5 2.5 3.6 2.5 3.7 2.5 3.9 2.5 4.1 2.420.0 3.0 2.2 3.3 2.4 3.5 2.5 3.6 2.5 3.7 2.5 3.9 2.5 4.1 2.421.0 3.0 2.2 3.3 2.4 3.5 2.5 3.6 2.5 3.7 2.5 3.9 2.5 4.1 2.4

012 23.0 3.0 2.2 3.3 2.4 3.5 2.5 3.6 2.5 3.7 2.5 3.9 2.5 4.1 2.425.0 3.0 2.2 3.3 2.4 3.5 2.5 3.6 2.5 3.7 2.5 3.9 2.5 4.1 2.427.0 3.0 2.2 3.3 2.4 3.5 2.5 3.6 2.5 3.7 2.5 3.9 2.5 4.1 2.429.0 3.0 2.2 3.3 2.4 3.5 2.5 3.6 2.5 3.7 2.5 3.9 2.5 4.1 2.431.0 3.0 2.2 3.3 2.4 3.5 2.5 3.6 2.5 3.7 2.5 3.9 2.5 4.1 2.433.0 3.0 2.2 3.3 2.4 3.5 2.5 3.6 2.5 3.7 2.5 3.9 2.5 4.1 2.435.0 3.0 2.2 3.3 2.4 3.5 2.5 3.6 2.5 3.7 2.5 3.9 2.5 4.1 2.437.0 2.9 2.1 3.2 2.3 3.4 2.4 3.5 2.4 3.6 2.4 3.8 2.4 4.0 2.339.0 2.8 2.1 3.1 2.2 3.3 2.4 3.4 2.4 3.5 2.4 3.7 2.3 3.9 2.310.0 3.7 2.6 4.1 2.7 4.4 2.9 4.5 2.9 4.6 2.9 4.9 2.9 5.1 2.812.0 3.7 2.6 4.1 2.7 4.4 2.9 4.5 2.9 4.6 2.9 4.9 2.9 5.1 2.814.0 3.7 2.6 4.1 2.7 4.4 2.9 4.5 2.9 4.6 2.9 4.9 2.9 5.1 2.816.0 3.7 2.6 4.1 2.7 4.4 2.9 4.5 2.9 4.6 2.9 4.9 2.9 5.1 2.818.0 3.7 2.6 4.1 2.7 4.4 2.9 4.5 2.9 4.6 2.9 4.9 2.9 5.1 2.820.0 3.7 2.6 4.1 2.7 4.4 2.9 4.5 2.9 4.6 2.9 4.9 2.9 5.1 2.821.0 3.7 2.6 4.1 2.7 4.4 2.9 4.5 2.9 4.6 2.9 4.9 2.9 5.1 2.8

015 23.0 3.7 2.6 4.1 2.7 4.4 2.9 4.5 2.9 4.6 2.9 4.9 2.9 5.1 2.825.0 3.7 2.6 4.1 2.7 4.4 2.9 4.5 2.9 4.6 2.9 4.9 2.9 5.1 2.827.0 3.7 2.6 4.1 2.7 4.4 2.9 4.5 2.9 4.6 2.9 4.9 2.9 5.1 2.829.0 3.7 2.6 4.1 2.7 4.4 2.9 4.5 2.9 4.6 2.9 4.9 2.9 5.1 2.831.0 3.7 2.6 4.1 2.7 4.4 2.9 4.5 2.9 4.6 2.9 4.9 2.9 5.1 2.833.0 3.7 2.6 4.1 2.7 4.4 2.9 4.5 2.9 4.6 2.9 4.9 2.9 5.1 2.835.0 3.7 2.6 4.1 2.7 4.4 2.9 4.5 2.9 4.6 2.9 4.9 2.9 5.1 2.837.0 3.6 2.5 4.0 2.6 4.2 2.8 4.4 2.8 4.5 2.8 4.7 2.8 5.0 2.739.0 3.5 2.4 3.8 2.6 4.1 2.7 4.2 2.7 4.4 2.7 4.6 2.7 4.8 2.6

unitsize

outdoorair temp.

indoor air temp.

Page 64: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

61

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High Wall Type ( MMK-AP***1H, 1 series ) TC : Total capacity [kW] SHC : Sensible capacity [kW]

DB TC SHC TC SHC TC SHC TC SHC TC SHC TC SHC TC SHC10.0 4.6 3.2 5.1 3.4 5.4 3.6 5.6 3.6 5.8 3.6 6.1 3.6 6.4 3.512.0 4.6 3.2 5.1 3.4 5.4 3.6 5.6 3.6 5.8 3.6 6.1 3.6 6.4 3.514.0 4.6 3.2 5.1 3.4 5.4 3.6 5.6 3.6 5.8 3.6 6.1 3.6 6.4 3.516.0 4.6 3.2 5.1 3.4 5.4 3.6 5.6 3.6 5.8 3.6 6.1 3.6 6.4 3.518.0 4.6 3.2 5.1 3.4 5.4 3.6 5.6 3.6 5.8 3.6 6.1 3.6 6.4 3.520.0 4.6 3.2 5.1 3.4 5.4 3.6 5.6 3.6 5.8 3.6 6.1 3.6 6.4 3.521.0 4.6 3.2 5.1 3.4 5.4 3.6 5.6 3.6 5.8 3.6 6.1 3.6 6.4 3.5

018 23.0 4.6 3.2 5.1 3.4 5.4 3.6 5.6 3.6 5.8 3.6 6.1 3.6 6.4 3.525.0 4.6 3.2 5.1 3.4 5.4 3.6 5.6 3.6 5.8 3.6 6.1 3.6 6.4 3.527.0 4.6 3.2 5.1 3.4 5.4 3.6 5.6 3.6 5.8 3.6 6.1 3.6 6.4 3.529.0 4.6 3.2 5.1 3.4 5.4 3.6 5.6 3.6 5.8 3.6 6.1 3.6 6.4 3.531.0 4.6 3.2 5.1 3.4 5.4 3.6 5.6 3.6 5.8 3.6 6.1 3.6 6.4 3.533.0 4.6 3.2 5.1 3.4 5.4 3.6 5.6 3.6 5.8 3.6 6.1 3.6 6.4 3.535.0 4.6 3.2 5.1 3.4 5.4 3.6 5.6 3.6 5.8 3.6 6.1 3.6 6.4 3.537.0 4.5 3.1 4.9 3.3 5.3 3.5 5.4 3.5 5.6 3.5 5.9 3.5 6.2 3.439.0 4.3 3.0 4.8 3.2 5.1 3.4 5.3 3.4 5.4 3.4 5.7 3.4 6.0 3.310.0 5.8 4.2 6.4 4.4 6.9 4.7 7.1 4.7 7.3 4.7 7.7 4.7 8.1 4.512.0 5.8 4.2 6.4 4.4 6.9 4.7 7.1 4.7 7.3 4.7 7.7 4.7 8.1 4.514.0 5.8 4.2 6.4 4.4 6.9 4.7 7.1 4.7 7.3 4.7 7.7 4.7 8.1 4.516.0 5.8 4.2 6.4 4.4 6.9 4.7 7.1 4.7 7.3 4.7 7.7 4.7 8.1 4.518.0 5.8 4.2 6.4 4.4 6.9 4.7 7.1 4.7 7.3 4.7 7.7 4.7 8.1 4.520.0 5.8 4.2 6.4 4.4 6.9 4.7 7.1 4.7 7.3 4.7 7.7 4.7 8.1 4.521.0 5.8 4.2 6.4 4.4 6.9 4.7 7.1 4.7 7.3 4.7 7.7 4.7 8.1 4.5

024 23.0 5.8 4.2 6.4 4.4 6.9 4.7 7.1 4.7 7.3 4.7 7.7 4.7 8.1 4.525.0 5.8 4.2 6.4 4.4 6.9 4.7 7.1 4.7 7.3 4.7 7.7 4.7 8.1 4.527.0 5.8 4.2 6.4 4.4 6.9 4.7 7.1 4.7 7.3 4.7 7.7 4.7 8.1 4.529.0 5.8 4.2 6.4 4.4 6.9 4.7 7.1 4.7 7.3 4.7 7.7 4.7 8.1 4.531.0 5.8 4.2 6.4 4.4 6.9 4.7 7.1 4.7 7.3 4.7 7.7 4.7 8.1 4.533.0 5.8 4.2 6.4 4.4 6.9 4.7 7.1 4.7 7.3 4.7 7.7 4.7 8.1 4.535.0 5.8 4.2 6.4 4.4 6.9 4.7 7.1 4.7 7.3 4.7 7.7 4.7 8.1 4.537.0 5.6 4.0 6.2 4.3 6.7 4.6 6.9 4.5 7.1 4.5 7.5 4.5 7.8 4.439.0 5.5 3.9 6.1 4.2 6.5 4.4 6.7 4.4 6.9 4.4 7.3 4.4 7.6 4.3

unitsize

outdoorair temp.

indoor air temp.

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62

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High Wall Type ( MMK-AP****2H ) 2 series TC : Total capacity [kW] SHC : Sensible capacity [kW]

TC SHC TC SHC TC SHC TC SHC TC SHC TC SHC TC SHC10.0 1.8 1.5 2.0 1.6 2.1 1.7 2.2 1.7 2.3 1.7 2.4 1.7 2.5 1.612.0 1.8 1.5 2.0 1.6 2.1 1.7 2.2 1.7 2.3 1.7 2.4 1.7 2.5 1.614.0 1.8 1.5 2.0 1.6 2.1 1.7 2.2 1.7 2.3 1.7 2.4 1.7 2.5 1.616.0 1.8 1.5 2.0 1.6 2.1 1.7 2.2 1.7 2.3 1.7 2.4 1.7 2.5 1.618.0 1.8 1.5 2.0 1.6 2.1 1.7 2.2 1.7 2.3 1.7 2.4 1.7 2.5 1.620.0 1.8 1.5 2.0 1.6 2.1 1.7 2.2 1.7 2.3 1.7 2.4 1.7 2.5 1.621.0 1.8 1.5 2.0 1.6 2.1 1.7 2.2 1.7 2.3 1.7 2.4 1.7 2.5 1.6

007 23.0 1.8 1.5 2.0 1.6 2.1 1.7 2.2 1.7 2.3 1.7 2.4 1.7 2.5 1.625.0 1.8 1.5 2.0 1.6 2.1 1.7 2.2 1.7 2.3 1.7 2.4 1.7 2.5 1.627.0 1.8 1.5 2.0 1.6 2.1 1.7 2.2 1.7 2.3 1.7 2.4 1.7 2.5 1.629.0 1.8 1.5 2.0 1.6 2.1 1.7 2.2 1.7 2.3 1.7 2.4 1.7 2.5 1.631.0 1.8 1.5 2.0 1.6 2.1 1.7 2.2 1.7 2.3 1.7 2.4 1.7 2.5 1.633.0 1.8 1.5 2.0 1.6 2.1 1.7 2.2 1.7 2.3 1.7 2.4 1.7 2.5 1.635.0 1.8 1.5 2.0 1.6 2.1 1.7 2.2 1.7 2.3 1.7 2.4 1.7 2.5 1.637.0 1.7 1.5 1.9 1.6 2.1 1.7 2.1 1.6 2.2 1.6 2.3 1.6 2.4 1.639.0 1.7 1.4 1.9 1.5 2.0 1.6 2.1 1.6 2.1 1.6 2.3 1.6 2.4 1.510.0 2.3 1.8 2.5 1.9 2.7 2.0 2.8 2.0 2.9 2.0 3.1 2.0 3.2 1.912.0 2.3 1.8 2.5 1.9 2.7 2.0 2.8 2.0 2.9 2.0 3.1 2.0 3.2 1.914.0 2.3 1.8 2.5 1.9 2.7 2.0 2.8 2.0 2.9 2.0 3.1 2.0 3.2 1.916.0 2.3 1.8 2.5 1.9 2.7 2.0 2.8 2.0 2.9 2.0 3.1 2.0 3.2 1.918.0 2.3 1.8 2.5 1.9 2.7 2.0 2.8 2.0 2.9 2.0 3.1 2.0 3.2 1.920.0 2.3 1.8 2.5 1.9 2.7 2.0 2.8 2.0 2.9 2.0 3.1 2.0 3.2 1.921.0 2.3 1.8 2.5 1.9 2.7 2.0 2.8 2.0 2.9 2.0 3.1 2.0 3.2 1.9

009 23.0 2.3 1.8 2.5 1.9 2.7 2.0 2.8 2.0 2.9 2.0 3.1 2.0 3.2 1.925.0 2.3 1.8 2.5 1.9 2.7 2.0 2.8 2.0 2.9 2.0 3.1 2.0 3.2 1.927.0 2.3 1.8 2.5 1.9 2.7 2.0 2.8 2.0 2.9 2.0 3.1 2.0 3.2 1.929.0 2.3 1.8 2.5 1.9 2.7 2.0 2.8 2.0 2.9 2.0 3.1 2.0 3.2 1.931.0 2.3 1.8 2.5 1.9 2.7 2.0 2.8 2.0 2.9 2.0 3.1 2.0 3.2 1.933.0 2.3 1.8 2.5 1.9 2.7 2.0 2.8 2.0 2.9 2.0 3.1 2.0 3.2 1.935.0 2.3 1.8 2.5 1.9 2.7 2.0 2.8 2.0 2.9 2.0 3.1 2.0 3.2 1.937.0 2.2 1.7 2.5 1.8 2.6 1.9 2.7 1.9 2.8 1.9 3.0 1.9 3.1 1.939.0 2.2 1.7 2.4 1.8 2.6 1.9 2.6 1.9 2.7 1.9 2.9 1.9 3.0 1.810.0 3.0 2.2 3.3 2.4 3.5 2.5 3.6 2.5 3.7 2.5 3.9 2.5 4.1 2.412.0 3.0 2.2 3.3 2.4 3.5 2.5 3.6 2.5 3.7 2.5 3.9 2.5 4.1 2.414.0 3.0 2.2 3.3 2.4 3.5 2.5 3.6 2.5 3.7 2.5 3.9 2.5 4.1 2.416.0 3.0 2.2 3.3 2.4 3.5 2.5 3.6 2.5 3.7 2.5 3.9 2.5 4.1 2.418.0 3.0 2.2 3.3 2.4 3.5 2.5 3.6 2.5 3.7 2.5 3.9 2.5 4.1 2.420.0 3.0 2.2 3.3 2.4 3.5 2.5 3.6 2.5 3.7 2.5 3.9 2.5 4.1 2.421.0 3.0 2.2 3.3 2.4 3.5 2.5 3.6 2.5 3.7 2.5 3.9 2.5 4.1 2.4

012 23.0 3.0 2.2 3.3 2.4 3.5 2.5 3.6 2.5 3.7 2.5 3.9 2.5 4.1 2.425.0 3.0 2.2 3.3 2.4 3.5 2.5 3.6 2.5 3.7 2.5 3.9 2.5 4.1 2.427.0 3.0 2.2 3.3 2.4 3.5 2.5 3.6 2.5 3.7 2.5 3.9 2.5 4.1 2.429.0 3.0 2.2 3.3 2.4 3.5 2.5 3.6 2.5 3.7 2.5 3.9 2.5 4.1 2.431.0 3.0 2.2 3.3 2.4 3.5 2.5 3.6 2.5 3.7 2.5 3.9 2.5 4.1 2.433.0 3.0 2.2 3.3 2.4 3.5 2.5 3.6 2.5 3.7 2.5 3.9 2.5 4.1 2.435.0 3.0 2.2 3.3 2.4 3.5 2.5 3.6 2.5 3.7 2.5 3.9 2.5 4.1 2.437.0 2.9 2.1 3.2 2.3 3.4 2.4 3.5 2.4 3.6 2.4 3.8 2.4 4.0 2.339.0 2.8 2.1 3.1 2.2 3.3 2.4 3.4 2.4 3.5 2.4 3.7 2.3 3.9 2.3

unitsize

outdoorair temp.

indoor air temp.

Page 66: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

63

8

Floor Standing Cabinet Type ( MML-AP****H ) TC : Total capacity [kW] SHC : Sensible capacity [kW]

14.0 WB 16.0 WB 18.0 WB 19.0 WB 20.0 WB 22.0 WB 24.0 WB20 DB 23 DB 26 DB 27 DB 28 DB 30 DB 32 DB

DB TC SHC TC SHC TC SHC TC SHC TC SHC TC SHC TC SHC10.0 1.8 1.2 2.0 1.3 2.1 1.4 2.2 1.4 2.3 1.4 2.4 1.4 2.5 1.412.0 1.8 1.2 2.0 1.3 2.1 1.4 2.2 1.4 2.3 1.4 2.4 1.4 2.5 1.414.0 1.8 1.2 2.0 1.3 2.1 1.4 2.2 1.4 2.3 1.4 2.4 1.4 2.5 1.416.0 1.8 1.2 2.0 1.3 2.1 1.4 2.2 1.4 2.3 1.4 2.4 1.4 2.5 1.418.0 1.8 1.2 2.0 1.3 2.1 1.4 2.2 1.4 2.3 1.4 2.4 1.4 2.5 1.420.0 1.8 1.2 2.0 1.3 2.1 1.4 2.2 1.4 2.3 1.4 2.4 1.4 2.5 1.421.0 1.8 1.2 2.0 1.3 2.1 1.4 2.2 1.4 2.3 1.4 2.4 1.4 2.5 1.4

007 23.0 1.8 1.2 2.0 1.3 2.1 1.4 2.2 1.4 2.3 1.4 2.4 1.4 2.5 1.425.0 1.8 1.2 2.0 1.3 2.1 1.4 2.2 1.4 2.3 1.4 2.4 1.4 2.5 1.427.0 1.8 1.2 2.0 1.3 2.1 1.4 2.2 1.4 2.3 1.4 2.4 1.4 2.5 1.429.0 1.8 1.2 2.0 1.3 2.1 1.4 2.2 1.4 2.3 1.4 2.4 1.4 2.5 1.431.0 1.8 1.2 2.0 1.3 2.1 1.4 2.2 1.4 2.3 1.4 2.4 1.4 2.5 1.433.0 1.8 1.2 2.0 1.3 2.1 1.4 2.2 1.4 2.3 1.4 2.4 1.4 2.5 1.435.0 1.8 1.2 2.0 1.3 2.1 1.4 2.2 1.4 2.3 1.4 2.4 1.4 2.5 1.437.0 1.7 1.2 1.9 1.3 2.1 1.4 2.1 1.4 2.2 1.4 2.3 1.3 2.4 1.339.0 1.7 1.2 1.9 1.2 2.0 1.3 2.1 1.3 2.1 1.3 2.3 1.3 2.4 1.310.0 2.3 1.4 2.5 1.5 2.7 1.6 2.8 1.6 2.9 1.6 3.1 1.6 3.2 1.512.0 2.3 1.4 2.5 1.5 2.7 1.6 2.8 1.6 2.9 1.6 3.1 1.6 3.2 1.514.0 2.3 1.4 2.5 1.5 2.7 1.6 2.8 1.6 2.9 1.6 3.1 1.6 3.2 1.516.0 2.3 1.4 2.5 1.5 2.7 1.6 2.8 1.6 2.9 1.6 3.1 1.6 3.2 1.518.0 2.3 1.4 2.5 1.5 2.7 1.6 2.8 1.6 2.9 1.6 3.1 1.6 3.2 1.520.0 2.3 1.4 2.5 1.5 2.7 1.6 2.8 1.6 2.9 1.6 3.1 1.6 3.2 1.521.0 2.3 1.4 2.5 1.5 2.7 1.6 2.8 1.6 2.9 1.6 3.1 1.6 3.2 1.5

009 23.0 2.3 1.4 2.5 1.5 2.7 1.6 2.8 1.6 2.9 1.6 3.1 1.6 3.2 1.525.0 2.3 1.4 2.5 1.5 2.7 1.6 2.8 1.6 2.9 1.6 3.1 1.6 3.2 1.527.0 2.3 1.4 2.5 1.5 2.7 1.6 2.8 1.6 2.9 1.6 3.1 1.6 3.2 1.529.0 2.3 1.4 2.5 1.5 2.7 1.6 2.8 1.6 2.9 1.6 3.1 1.6 3.2 1.531.0 2.3 1.4 2.5 1.5 2.7 1.6 2.8 1.6 2.9 1.6 3.1 1.6 3.2 1.533.0 2.3 1.4 2.5 1.5 2.7 1.6 2.8 1.6 2.9 1.6 3.1 1.6 3.2 1.535.0 2.3 1.4 2.5 1.5 2.7 1.6 2.8 1.6 2.9 1.6 3.1 1.6 3.2 1.537.0 2.2 1.4 2.5 1.5 2.6 1.6 2.7 1.5 2.8 1.5 3.0 1.5 3.1 1.539.0 2.2 1.3 2.4 1.4 2.6 1.5 2.6 1.5 2.7 1.5 2.9 1.5 3.0 1.510.0 3.0 2.0 3.3 2.1 3.5 2.2 3.6 2.2 3.7 2.2 3.9 2.2 4.1 2.112.0 3.0 2.0 3.3 2.1 3.5 2.2 3.6 2.2 3.7 2.2 3.9 2.2 4.1 2.114.0 3.0 2.0 3.3 2.1 3.5 2.2 3.6 2.2 3.7 2.2 3.9 2.2 4.1 2.116.0 3.0 2.0 3.3 2.1 3.5 2.2 3.6 2.2 3.7 2.2 3.9 2.2 4.1 2.118.0 3.0 2.0 3.3 2.1 3.5 2.2 3.6 2.2 3.7 2.2 3.9 2.2 4.1 2.120.0 3.0 2.0 3.3 2.1 3.5 2.2 3.6 2.2 3.7 2.2 3.9 2.2 4.1 2.121.0 3.0 2.0 3.3 2.1 3.5 2.2 3.6 2.2 3.7 2.2 3.9 2.2 4.1 2.1

012 23.0 3.0 2.0 3.3 2.1 3.5 2.2 3.6 2.2 3.7 2.2 3.9 2.2 4.1 2.125.0 3.0 2.0 3.3 2.1 3.5 2.2 3.6 2.2 3.7 2.2 3.9 2.2 4.1 2.127.0 3.0 2.0 3.3 2.1 3.5 2.2 3.6 2.2 3.7 2.2 3.9 2.2 4.1 2.129.0 3.0 2.0 3.3 2.1 3.5 2.2 3.6 2.2 3.7 2.2 3.9 2.2 4.1 2.131.0 3.0 2.0 3.3 2.1 3.5 2.2 3.6 2.2 3.7 2.2 3.9 2.2 4.1 2.133.0 3.0 2.0 3.3 2.1 3.5 2.2 3.6 2.2 3.7 2.2 3.9 2.2 4.1 2.135.0 3.0 2.0 3.3 2.1 3.5 2.2 3.6 2.2 3.7 2.2 3.9 2.2 4.1 2.137.0 2.9 1.9 3.2 2.0 3.4 2.1 3.5 2.1 3.6 2.1 3.8 2.1 4.0 2.139.0 2.8 1.8 3.1 2.0 3.3 2.1 3.4 2.1 3.5 2.1 3.7 2.1 3.9 2.010.0 3.5 2.3 3.8 2.5 4.1 2.6 4.4 2.7 4.3 2.6 4.6 2.6 4.8 2.612.0 3.5 2.3 3.8 2.5 4.1 2.6 4.4 2.7 4.3 2.6 4.6 2.6 4.8 2.614.0 3.5 2.3 3.8 2.5 4.1 2.6 4.4 2.7 4.3 2.6 4.6 2.6 4.8 2.616.0 3.5 2.3 3.8 2.5 4.1 2.6 4.4 2.7 4.3 2.6 4.6 2.6 4.8 2.618.0 3.5 2.3 3.8 2.5 4.1 2.6 4.4 2.7 4.3 2.6 4.6 2.6 4.8 2.620.0 3.5 2.3 3.8 2.5 4.1 2.6 4.4 2.7 4.3 2.6 4.6 2.6 4.8 2.621.0 3.5 2.3 3.8 2.5 4.1 2.6 4.4 2.7 4.3 2.6 4.6 2.6 4.8 2.6

015 23.0 3.5 2.3 3.8 2.5 4.1 2.6 4.4 2.7 4.3 2.6 4.6 2.6 4.8 2.625.0 3.5 2.3 3.8 2.5 4.1 2.6 4.4 2.7 4.3 2.6 4.6 2.6 4.8 2.627.0 3.5 2.3 3.8 2.5 4.1 2.6 4.4 2.7 4.3 2.6 4.6 2.6 4.8 2.629.0 3.5 2.3 3.8 2.5 4.1 2.6 4.4 2.7 4.3 2.6 4.6 2.6 4.8 2.631.0 3.5 2.3 3.8 2.5 4.1 2.6 4.4 2.7 4.3 2.6 4.6 2.6 4.8 2.633.0 3.5 2.3 3.8 2.5 4.1 2.6 4.4 2.7 4.3 2.6 4.6 2.6 4.8 2.635.0 3.6 2.4 4.0 2.6 4.2 2.7 4.5 2.8 4.5 2.7 4.7 2.7 5.0 2.637.0 3.5 2.3 3.8 2.5 4.1 2.6 4.4 2.7 4.3 2.6 4.6 2.6 4.8 2.639.0 3.4 2.3 3.7 2.4 4.0 2.6 4.2 2.6 4.2 2.6 4.5 2.5 4.7 2.5

unitsize

outdoorair temp.

indoor air temp.

Page 67: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

64

8

Floor Standing Cabinet Type ( MML-AP****H ) TC : Total capacity [kW] SHC : Sensible capacity [kW]

14.0 WB 16.0 WB 18.0 WB 19.0 WB 20.0 WB 22.0 WB 24.0 WB20 DB 23 DB 26 DB 27 DB 28 DB 30 DB 32 DB

DB TC SHC TC SHC TC SHC TC SHC TC SHC TC SHC TC SHC10.0 4.6 3.1 5.1 3.3 5.4 3.5 5.6 3.5 5.8 3.5 6.1 3.5 6.4 3.412.0 4.6 3.1 5.1 3.3 5.4 3.5 5.6 3.5 5.8 3.5 6.1 3.5 6.4 3.414.0 4.6 3.1 5.1 3.3 5.4 3.5 5.6 3.5 5.8 3.5 6.1 3.5 6.4 3.416.0 4.6 3.1 5.1 3.3 5.4 3.5 5.6 3.5 5.8 3.5 6.1 3.5 6.4 3.418.0 4.6 3.1 5.1 3.3 5.4 3.5 5.6 3.5 5.8 3.5 6.1 3.5 6.4 3.420.0 4.6 3.1 5.1 3.3 5.4 3.5 5.6 3.5 5.8 3.5 6.1 3.5 6.4 3.421.0 4.6 3.1 5.1 3.3 5.4 3.5 5.6 3.5 5.8 3.5 6.1 3.5 6.4 3.4

018 23.0 4.6 3.1 5.1 3.3 5.4 3.5 5.6 3.5 5.8 3.5 6.1 3.5 6.4 3.425.0 4.6 3.1 5.1 3.3 5.4 3.5 5.6 3.5 5.8 3.5 6.1 3.5 6.4 3.427.0 4.6 3.1 5.1 3.3 5.4 3.5 5.6 3.5 5.8 3.5 6.1 3.5 6.4 3.429.0 4.6 3.1 5.1 3.3 5.4 3.5 5.6 3.5 5.8 3.5 6.1 3.5 6.4 3.431.0 4.6 3.1 5.1 3.3 5.4 3.5 5.6 3.5 5.8 3.5 6.1 3.5 6.4 3.433.0 4.6 3.1 5.1 3.3 5.4 3.5 5.6 3.5 5.8 3.5 6.1 3.5 6.4 3.435.0 4.6 3.1 5.1 3.3 5.4 3.5 5.6 3.5 5.8 3.5 6.1 3.5 6.4 3.437.0 4.5 3.0 4.9 3.2 5.3 3.4 5.4 3.4 5.6 3.4 5.9 3.4 6.2 3.339.0 4.3 2.9 4.8 3.1 5.1 3.3 5.3 3.3 5.4 3.3 5.7 3.3 6.0 3.210.0 5.8 4.0 6.4 4.2 6.9 4.5 7.1 4.5 7.3 4.5 7.7 4.5 8.1 4.412.0 5.8 4.0 6.4 4.2 6.9 4.5 7.1 4.5 7.3 4.5 7.7 4.5 8.1 4.414.0 5.8 4.0 6.4 4.2 6.9 4.5 7.1 4.5 7.3 4.5 7.7 4.5 8.1 4.416.0 5.8 4.0 6.4 4.2 6.9 4.5 7.1 4.5 7.3 4.5 7.7 4.5 8.1 4.418.0 5.8 4.0 6.4 4.2 6.9 4.5 7.1 4.5 7.3 4.5 7.7 4.5 8.1 4.420.0 5.8 4.0 6.4 4.2 6.9 4.5 7.1 4.5 7.3 4.5 7.7 4.5 8.1 4.421.0 5.8 4.0 6.4 4.2 6.9 4.5 7.1 4.5 7.3 4.5 7.7 4.5 8.1 4.4

024 23.0 5.8 4.0 6.4 4.2 6.9 4.5 7.1 4.5 7.3 4.5 7.7 4.5 8.1 4.425.0 5.8 4.0 6.4 4.2 6.9 4.5 7.1 4.5 7.3 4.5 7.7 4.5 8.1 4.427.0 5.8 4.0 6.4 4.2 6.9 4.5 7.1 4.5 7.3 4.5 7.7 4.5 8.1 4.429.0 5.8 4.0 6.4 4.2 6.9 4.5 7.1 4.5 7.3 4.5 7.7 4.5 8.1 4.431.0 5.8 4.0 6.4 4.2 6.9 4.5 7.1 4.5 7.3 4.5 7.7 4.5 8.1 4.433.0 5.8 4.0 6.4 4.2 6.9 4.5 7.1 4.5 7.3 4.5 7.7 4.5 8.1 4.435.0 5.8 4.0 6.4 4.2 6.9 4.5 7.1 4.5 7.3 4.5 7.7 4.5 8.1 4.437.0 5.6 3.9 6.2 4.1 6.7 4.4 6.9 4.4 7.1 4.4 7.5 4.3 7.8 4.239.0 5.5 3.8 6.1 4.0 6.5 4.2 6.7 4.2 6.9 4.2 7.3 4.2 7.6 4.1

unitsize

outdoorair temp.

indoor air temp.

Page 68: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

65

8

Floor Standing Concealed Type ( MML-AP****BH ) TC : Total capacity [kW] SHC : Sensible capacity [kW]

14.0 WB 16.0 WB 18.0 WB 19.0 WB 20.0 WB 22.0 WB 24.0 WB20 DB 23 DB 26 DB 27 DB 28 DB 30 DB 32 DB

DB TC SHC TC SHC TC SHC TC SHC TC SHC TC SHC TC SHC10.0 1.8 1.2 2.0 1.3 2.1 1.4 2.2 1.4 2.3 1.4 2.4 1.4 2.5 1.412.0 1.8 1.2 2.0 1.3 2.1 1.4 2.2 1.4 2.3 1.4 2.4 1.4 2.5 1.414.0 1.8 1.2 2.0 1.3 2.1 1.4 2.2 1.4 2.3 1.4 2.4 1.4 2.5 1.416.0 1.8 1.2 2.0 1.3 2.1 1.4 2.2 1.4 2.3 1.4 2.4 1.4 2.5 1.418.0 1.8 1.2 2.0 1.3 2.1 1.4 2.2 1.4 2.3 1.4 2.4 1.4 2.5 1.420.0 1.8 1.2 2.0 1.3 2.1 1.4 2.2 1.4 2.3 1.4 2.4 1.4 2.5 1.421.0 1.8 1.2 2.0 1.3 2.1 1.4 2.2 1.4 2.3 1.4 2.4 1.4 2.5 1.4

007 23.0 1.8 1.2 2.0 1.3 2.1 1.4 2.2 1.4 2.3 1.4 2.4 1.4 2.5 1.425.0 1.8 1.2 2.0 1.3 2.1 1.4 2.2 1.4 2.3 1.4 2.4 1.4 2.5 1.427.0 1.8 1.2 2.0 1.3 2.1 1.4 2.2 1.4 2.3 1.4 2.4 1.4 2.5 1.429.0 1.8 1.2 2.0 1.3 2.1 1.4 2.2 1.4 2.3 1.4 2.4 1.4 2.5 1.431.0 1.8 1.2 2.0 1.3 2.1 1.4 2.2 1.4 2.3 1.4 2.4 1.4 2.5 1.433.0 1.8 1.2 2.0 1.3 2.1 1.4 2.2 1.4 2.3 1.4 2.4 1.4 2.5 1.435.0 1.8 1.2 2.0 1.3 2.1 1.4 2.2 1.4 2.3 1.4 2.4 1.4 2.5 1.437.0 1.7 1.2 1.9 1.3 2.1 1.4 2.1 1.4 2.2 1.4 2.3 1.3 2.4 1.339.0 1.7 1.2 1.9 1.2 2.0 1.3 2.1 1.3 2.1 1.3 2.3 1.3 2.4 1.310.0 2.3 1.4 2.5 1.5 2.7 1.6 2.8 1.6 2.9 1.6 3.1 1.6 3.2 1.512.0 2.3 1.4 2.5 1.5 2.7 1.6 2.8 1.6 2.9 1.6 3.1 1.6 3.2 1.514.0 2.3 1.4 2.5 1.5 2.7 1.6 2.8 1.6 2.9 1.6 3.1 1.6 3.2 1.516.0 2.3 1.4 2.5 1.5 2.7 1.6 2.8 1.6 2.9 1.6 3.1 1.6 3.2 1.518.0 2.3 1.4 2.5 1.5 2.7 1.6 2.8 1.6 2.9 1.6 3.1 1.6 3.2 1.520.0 2.3 1.4 2.5 1.5 2.7 1.6 2.8 1.6 2.9 1.6 3.1 1.6 3.2 1.521.0 2.3 1.4 2.5 1.5 2.7 1.6 2.8 1.6 2.9 1.6 3.1 1.6 3.2 1.5

009 23.0 2.3 1.4 2.5 1.5 2.7 1.6 2.8 1.6 2.9 1.6 3.1 1.6 3.2 1.525.0 2.3 1.4 2.5 1.5 2.7 1.6 2.8 1.6 2.9 1.6 3.1 1.6 3.2 1.527.0 2.3 1.4 2.5 1.5 2.7 1.6 2.8 1.6 2.9 1.6 3.1 1.6 3.2 1.529.0 2.3 1.4 2.5 1.5 2.7 1.6 2.8 1.6 2.9 1.6 3.1 1.6 3.2 1.531.0 2.3 1.4 2.5 1.5 2.7 1.6 2.8 1.6 2.9 1.6 3.1 1.6 3.2 1.533.0 2.3 1.4 2.5 1.5 2.7 1.6 2.8 1.6 2.9 1.6 3.1 1.6 3.2 1.535.0 2.3 1.4 2.5 1.5 2.7 1.6 2.8 1.6 2.9 1.6 3.1 1.6 3.2 1.537.0 2.2 1.4 2.5 1.5 2.6 1.6 2.7 1.5 2.8 1.5 3.0 1.5 3.1 1.539.0 2.2 1.3 2.4 1.4 2.6 1.5 2.6 1.5 2.7 1.5 2.9 1.5 3.0 1.510.0 3.0 2.0 3.3 2.1 3.5 2.2 3.6 2.2 3.7 2.2 3.9 2.2 4.1 2.112.0 3.0 2.0 3.3 2.1 3.5 2.2 3.6 2.2 3.7 2.2 3.9 2.2 4.1 2.114.0 3.0 2.0 3.3 2.1 3.5 2.2 3.6 2.2 3.7 2.2 3.9 2.2 4.1 2.116.0 3.0 2.0 3.3 2.1 3.5 2.2 3.6 2.2 3.7 2.2 3.9 2.2 4.1 2.118.0 3.0 2.0 3.3 2.1 3.5 2.2 3.6 2.2 3.7 2.2 3.9 2.2 4.1 2.120.0 3.0 2.0 3.3 2.1 3.5 2.2 3.6 2.2 3.7 2.2 3.9 2.2 4.1 2.121.0 3.0 2.0 3.3 2.1 3.5 2.2 3.6 2.2 3.7 2.2 3.9 2.2 4.1 2.1

012 23.0 3.0 2.0 3.3 2.1 3.5 2.2 3.6 2.2 3.7 2.2 3.9 2.2 4.1 2.125.0 3.0 2.0 3.3 2.1 3.5 2.2 3.6 2.2 3.7 2.2 3.9 2.2 4.1 2.127.0 3.0 2.0 3.3 2.1 3.5 2.2 3.6 2.2 3.7 2.2 3.9 2.2 4.1 2.129.0 3.0 2.0 3.3 2.1 3.5 2.2 3.6 2.2 3.7 2.2 3.9 2.2 4.1 2.131.0 3.0 2.0 3.3 2.1 3.5 2.2 3.6 2.2 3.7 2.2 3.9 2.2 4.1 2.133.0 3.0 2.0 3.3 2.1 3.5 2.2 3.6 2.2 3.7 2.2 3.9 2.2 4.1 2.135.0 3.0 2.0 3.3 2.1 3.5 2.2 3.6 2.2 3.7 2.2 3.9 2.2 4.1 2.137.0 2.9 1.9 3.2 2.0 3.4 2.1 3.5 2.1 3.6 2.1 3.8 2.1 4.0 2.139.0 2.8 1.8 3.1 2.0 3.3 2.1 3.4 2.1 3.5 2.1 3.7 2.1 3.9 2.010.0 3.7 2.5 4.1 2.7 4.4 2.8 4.5 2.8 4.6 2.8 4.9 2.8 5.1 2.712.0 3.7 2.5 4.1 2.7 4.4 2.8 4.5 2.8 4.6 2.8 4.9 2.8 5.1 2.714.0 3.7 2.5 4.1 2.7 4.4 2.8 4.5 2.8 4.6 2.8 4.9 2.8 5.1 2.716.0 3.7 2.5 4.1 2.7 4.4 2.8 4.5 2.8 4.6 2.8 4.9 2.8 5.1 2.718.0 3.7 2.5 4.1 2.7 4.4 2.8 4.5 2.8 4.6 2.8 4.9 2.8 5.1 2.720.0 3.7 2.5 4.1 2.7 4.4 2.8 4.5 2.8 4.6 2.8 4.9 2.8 5.1 2.721.0 3.7 2.5 4.1 2.7 4.4 2.8 4.5 2.8 4.6 2.8 4.9 2.8 5.1 2.7

015 23.0 3.7 2.5 4.1 2.7 4.4 2.8 4.5 2.8 4.6 2.8 4.9 2.8 5.1 2.725.0 3.7 2.5 4.1 2.7 4.4 2.8 4.5 2.8 4.6 2.8 4.9 2.8 5.1 2.727.0 3.7 2.5 4.1 2.7 4.4 2.8 4.5 2.8 4.6 2.8 4.9 2.8 5.1 2.729.0 3.7 2.5 4.1 2.7 4.4 2.8 4.5 2.8 4.6 2.8 4.9 2.8 5.1 2.731.0 3.7 2.5 4.1 2.7 4.4 2.8 4.5 2.8 4.6 2.8 4.9 2.8 5.1 2.733.0 3.7 2.5 4.1 2.7 4.4 2.8 4.5 2.8 4.6 2.8 4.9 2.8 5.1 2.735.0 3.7 2.5 4.1 2.7 4.4 2.8 4.5 2.8 4.6 2.8 4.9 2.8 5.1 2.737.0 3.6 2.4 4.0 2.6 4.2 2.7 4.4 2.7 4.5 2.7 4.7 2.7 5.0 2.639.0 3.5 2.3 3.8 2.5 4.1 2.7 4.2 2.6 4.4 2.6 4.6 2.6 4.8 2.6

unitsize

outdoorair temp.

indoor air temp.

Page 69: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

66

8

Floor Standing Concealed Type ( MML-AP****BH ) TC : Total capacity [kW] SHC : Sensible capacity [kW]

DB TC SHC TC SHC TC SHC TC SHC TC SHC TC SHC TC SHC10.0 4.6 3.1 5.1 3.3 5.4 3.5 5.6 3.5 5.8 3.5 6.1 3.5 6.4 3.412.0 4.6 3.1 5.1 3.3 5.4 3.5 5.6 3.5 5.8 3.5 6.1 3.5 6.4 3.414.0 4.6 3.1 5.1 3.3 5.4 3.5 5.6 3.5 5.8 3.5 6.1 3.5 6.4 3.416.0 4.6 3.1 5.1 3.3 5.4 3.5 5.6 3.5 5.8 3.5 6.1 3.5 6.4 3.418.0 4.6 3.1 5.1 3.3 5.4 3.5 5.6 3.5 5.8 3.5 6.1 3.5 6.4 3.420.0 4.6 3.1 5.1 3.3 5.4 3.5 5.6 3.5 5.8 3.5 6.1 3.5 6.4 3.421.0 4.6 3.1 5.1 3.3 5.4 3.5 5.6 3.5 5.8 3.5 6.1 3.5 6.4 3.4

018 23.0 4.6 3.1 5.1 3.3 5.4 3.5 5.6 3.5 5.8 3.5 6.1 3.5 6.4 3.425.0 4.6 3.1 5.1 3.3 5.4 3.5 5.6 3.5 5.8 3.5 6.1 3.5 6.4 3.427.0 4.6 3.1 5.1 3.3 5.4 3.5 5.6 3.5 5.8 3.5 6.1 3.5 6.4 3.429.0 4.6 3.1 5.1 3.3 5.4 3.5 5.6 3.5 5.8 3.5 6.1 3.5 6.4 3.431.0 4.6 3.1 5.1 3.3 5.4 3.5 5.6 3.5 5.8 3.5 6.1 3.5 6.4 3.433.0 4.6 3.1 5.1 3.3 5.4 3.5 5.6 3.5 5.8 3.5 6.1 3.5 6.4 3.435.0 4.6 3.1 5.1 3.3 5.4 3.5 5.6 3.5 5.8 3.5 6.1 3.5 6.4 3.437.0 4.5 3.0 4.9 3.2 5.3 3.4 5.4 3.4 5.6 3.4 5.9 3.4 6.2 3.339.0 4.3 2.9 4.8 3.1 5.1 3.3 5.3 3.3 5.4 3.3 5.7 3.3 6.0 3.210.0 5.8 4.0 6.4 4.2 6.9 4.5 7.1 4.5 7.3 4.5 7.7 4.5 8.1 4.412.0 5.8 4.0 6.4 4.2 6.9 4.5 7.1 4.5 7.3 4.5 7.7 4.5 8.1 4.414.0 5.8 4.0 6.4 4.2 6.9 4.5 7.1 4.5 7.3 4.5 7.7 4.5 8.1 4.416.0 5.8 4.0 6.4 4.2 6.9 4.5 7.1 4.5 7.3 4.5 7.7 4.5 8.1 4.418.0 5.8 4.0 6.4 4.2 6.9 4.5 7.1 4.5 7.3 4.5 7.7 4.5 8.1 4.420.0 5.8 4.0 6.4 4.2 6.9 4.5 7.1 4.5 7.3 4.5 7.7 4.5 8.1 4.421.0 5.8 4.0 6.4 4.2 6.9 4.5 7.1 4.5 7.3 4.5 7.7 4.5 8.1 4.4

024 23.0 5.8 4.0 6.4 4.2 6.9 4.5 7.1 4.5 7.3 4.5 7.7 4.5 8.1 4.425.0 5.8 4.0 6.4 4.2 6.9 4.5 7.1 4.5 7.3 4.5 7.7 4.5 8.1 4.427.0 5.8 4.0 6.4 4.2 6.9 4.5 7.1 4.5 7.3 4.5 7.7 4.5 8.1 4.429.0 5.8 4.0 6.4 4.2 6.9 4.5 7.1 4.5 7.3 4.5 7.7 4.5 8.1 4.431.0 5.8 4.0 6.4 4.2 6.9 4.5 7.1 4.5 7.3 4.5 7.7 4.5 8.1 4.433.0 5.8 4.0 6.4 4.2 6.9 4.5 7.1 4.5 7.3 4.5 7.7 4.5 8.1 4.435.0 5.8 4.0 6.4 4.2 6.9 4.5 7.1 4.5 7.3 4.5 7.7 4.5 8.1 4.437.0 5.6 3.9 6.2 4.1 6.7 4.4 6.9 4.4 7.1 4.4 7.5 4.3 7.8 4.239.0 5.5 3.8 6.1 4.0 6.5 4.2 6.7 4.2 6.9 4.2 7.3 4.2 7.6 4.1

unitsize

outdoorair temp.

indoor air temp.

Page 70: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

67

8

Floor Standing Type ( MMF-AP****H ) TC : Total capacity [kW] SHC : Sensible capacity [kW]

14.0 WB 16.0 WB 18.0 WB 19.0 WB 20.0 WB 22.0 WB 24.0 WB20 DB 23 DB 26 DB 27 DB 28 DB 30 DB 32 DB

DB TC SHC TC SHC TC SHC TC SHC TC SHC TC SHC TC SHC10.0 3.7 3.0 4.1 3.2 4.4 3.4 4.5 3.4 4.6 3.4 4.9 3.4 5.1 3.312.0 3.7 3.0 4.1 3.2 4.4 3.4 4.5 3.4 4.6 3.4 4.9 3.4 5.1 3.314.0 3.7 3.0 4.1 3.2 4.4 3.4 4.5 3.4 4.6 3.4 4.9 3.4 5.1 3.316.0 3.7 3.0 4.1 3.2 4.4 3.4 4.5 3.4 4.6 3.4 4.9 3.4 5.1 3.318.0 3.7 3.0 4.1 3.2 4.4 3.4 4.5 3.4 4.6 3.4 4.9 3.4 5.1 3.320.0 3.7 3.0 4.1 3.2 4.4 3.4 4.5 3.4 4.6 3.4 4.9 3.4 5.1 3.321.0 3.7 3.0 4.1 3.2 4.4 3.4 4.5 3.4 4.6 3.4 4.9 3.4 5.1 3.3

015 23.0 3.7 3.0 4.1 3.2 4.4 3.4 4.5 3.4 4.6 3.4 4.9 3.4 5.1 3.325.0 3.7 3.0 4.1 3.2 4.4 3.4 4.5 3.4 4.6 3.4 4.9 3.4 5.1 3.327.0 3.7 3.0 4.1 3.2 4.4 3.4 4.5 3.4 4.6 3.4 4.9 3.4 5.1 3.329.0 3.7 3.0 4.1 3.2 4.4 3.4 4.5 3.4 4.6 3.4 4.9 3.4 5.1 3.331.0 3.7 3.0 4.1 3.2 4.4 3.4 4.5 3.4 4.6 3.4 4.9 3.4 5.1 3.333.0 3.7 3.0 4.1 3.2 4.4 3.4 4.5 3.4 4.6 3.4 4.9 3.4 5.1 3.335.0 3.7 3.0 4.1 3.2 4.4 3.4 4.5 3.4 4.6 3.4 4.9 3.4 5.1 3.337.0 3.6 2.9 4.0 3.1 4.2 3.3 4.4 3.3 4.5 3.3 4.7 3.3 5.0 3.239.0 3.5 2.8 3.8 3.0 4.1 3.2 4.2 3.2 4.4 3.2 4.6 3.2 4.8 3.110.0 4.6 3.6 5.1 3.9 5.4 4.1 5.6 4.1 5.8 4.1 6.1 4.1 6.4 4.012.0 4.6 3.6 5.1 3.9 5.4 4.1 5.6 4.1 5.8 4.1 6.1 4.1 6.4 4.014.0 4.6 3.6 5.1 3.9 5.4 4.1 5.6 4.1 5.8 4.1 6.1 4.1 6.4 4.016.0 4.6 3.6 5.1 3.9 5.4 4.1 5.6 4.1 5.8 4.1 6.1 4.1 6.4 4.018.0 4.6 3.6 5.1 3.9 5.4 4.1 5.6 4.1 5.8 4.1 6.1 4.1 6.4 4.020.0 4.6 3.6 5.1 3.9 5.4 4.1 5.6 4.1 5.8 4.1 6.1 4.1 6.4 4.021.0 4.6 3.6 5.1 3.9 5.4 4.1 5.6 4.1 5.8 4.1 6.1 4.1 6.4 4.0

018 23.0 4.6 3.6 5.1 3.9 5.4 4.1 5.6 4.1 5.8 4.1 6.1 4.1 6.4 4.025.0 4.6 3.6 5.1 3.9 5.4 4.1 5.6 4.1 5.8 4.1 6.1 4.1 6.4 4.027.0 4.6 3.6 5.1 3.9 5.4 4.1 5.6 4.1 5.8 4.1 6.1 4.1 6.4 4.029.0 4.6 3.6 5.1 3.9 5.4 4.1 5.6 4.1 5.8 4.1 6.1 4.1 6.4 4.031.0 4.6 3.6 5.1 3.9 5.4 4.1 5.6 4.1 5.8 4.1 6.1 4.1 6.4 4.033.0 4.6 3.6 5.1 3.9 5.4 4.1 5.6 4.1 5.8 4.1 6.1 4.1 6.4 4.035.0 4.6 3.6 5.1 3.9 5.4 4.1 5.6 4.1 5.8 4.1 6.1 4.1 6.4 4.037.0 4.5 3.5 4.9 3.7 5.3 4.0 5.4 4.0 5.6 4.0 5.9 3.9 6.2 3.839.0 4.3 3.4 4.8 3.6 5.1 3.9 5.3 3.9 5.4 3.9 5.7 3.8 6.0 3.710.0 5.8 4.7 6.4 5.0 6.9 5.3 7.1 5.3 7.3 5.3 7.7 5.3 8.1 5.112.0 5.8 4.7 6.4 5.0 6.9 5.3 7.1 5.3 7.3 5.3 7.7 5.3 8.1 5.114.0 5.8 4.7 6.4 5.0 6.9 5.3 7.1 5.3 7.3 5.3 7.7 5.3 8.1 5.116.0 5.8 4.7 6.4 5.0 6.9 5.3 7.1 5.3 7.3 5.3 7.7 5.3 8.1 5.118.0 5.8 4.7 6.4 5.0 6.9 5.3 7.1 5.3 7.3 5.3 7.7 5.3 8.1 5.120.0 5.8 4.7 6.4 5.0 6.9 5.3 7.1 5.3 7.3 5.3 7.7 5.3 8.1 5.121.0 5.8 4.7 6.4 5.0 6.9 5.3 7.1 5.3 7.3 5.3 7.7 5.3 8.1 5.1

024 23.0 5.8 4.7 6.4 5.0 6.9 5.3 7.1 5.3 7.3 5.3 7.7 5.3 8.1 5.125.0 5.8 4.7 6.4 5.0 6.9 5.3 7.1 5.3 7.3 5.3 7.7 5.3 8.1 5.127.0 5.8 4.7 6.4 5.0 6.9 5.3 7.1 5.3 7.3 5.3 7.7 5.3 8.1 5.129.0 5.8 4.7 6.4 5.0 6.9 5.3 7.1 5.3 7.3 5.3 7.7 5.3 8.1 5.131.0 5.8 4.7 6.4 5.0 6.9 5.3 7.1 5.3 7.3 5.3 7.7 5.3 8.1 5.133.0 5.8 4.7 6.4 5.0 6.9 5.3 7.1 5.3 7.3 5.3 7.7 5.3 8.1 5.135.0 5.8 4.7 6.4 5.0 6.9 5.3 7.1 5.3 7.3 5.3 7.7 5.3 8.1 5.137.0 5.6 4.5 6.2 4.8 6.7 5.1 6.9 5.1 7.1 5.1 7.5 5.1 7.8 5.039.0 5.5 4.4 6.1 4.7 6.5 5.0 6.7 5.0 6.9 5.0 7.3 4.9 7.6 4.810.0 6.6 5.2 7.3 5.6 7.8 5.9 8.0 5.9 8.2 5.9 8.7 5.8 9.1 5.712.0 6.6 5.2 7.3 5.6 7.8 5.9 8.0 5.9 8.2 5.9 8.7 5.8 9.1 5.714.0 6.6 5.2 7.3 5.6 7.8 5.9 8.0 5.9 8.2 5.9 8.7 5.8 9.1 5.716.0 6.6 5.2 7.3 5.6 7.8 5.9 8.0 5.9 8.2 5.9 8.7 5.8 9.1 5.718.0 6.6 5.2 7.3 5.6 7.8 5.9 8.0 5.9 8.2 5.9 8.7 5.8 9.1 5.720.0 6.6 5.2 7.3 5.6 7.8 5.9 8.0 5.9 8.2 5.9 8.7 5.8 9.1 5.721.0 6.6 5.2 7.3 5.6 7.8 5.9 8.0 5.9 8.2 5.9 8.7 5.8 9.1 5.7

027 23.0 6.6 5.2 7.3 5.6 7.8 5.9 8.0 5.9 8.2 5.9 8.7 5.8 9.1 5.725.0 6.6 5.2 7.3 5.6 7.8 5.9 8.0 5.9 8.2 5.9 8.7 5.8 9.1 5.727.0 6.6 5.2 7.3 5.6 7.8 5.9 8.0 5.9 8.2 5.9 8.7 5.8 9.1 5.729.0 6.6 5.2 7.3 5.6 7.8 5.9 8.0 5.9 8.2 5.9 8.7 5.8 9.1 5.731.0 6.6 5.2 7.3 5.6 7.8 5.9 8.0 5.9 8.2 5.9 8.7 5.8 9.1 5.733.0 6.6 5.2 7.3 5.6 7.8 5.9 8.0 5.9 8.2 5.9 8.7 5.8 9.1 5.735.0 6.6 5.2 7.3 5.6 7.8 5.9 8.0 5.9 8.2 5.9 8.7 5.8 9.1 5.737.0 6.4 5.1 7.0 5.4 7.5 5.7 7.7 5.7 8.0 5.7 8.4 5.7 8.8 5.539.0 6.2 4.9 6.8 5.2 7.3 5.6 7.5 5.6 7.8 5.6 8.2 5.5 8.6 5.4

unitsize

outdoorair temp.

indoor air temp.

Page 71: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

68

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Floor Standing Type ( MMF-AP****H ) TC : Total capacity [kW] SHC : Sensible capacity [kW]

14.0 WB 16.0 WB 18.0 WB 19.0 WB 20.0 WB 22.0 WB 24.0 WB20 DB 23 DB 26 DB 27 DB 28 DB 30 DB 32 DB

DB TC SHC TC SHC TC SHC TC SHC TC SHC TC SHC TC SHC10.0 9.2 7.1 10.2 7.6 10.9 8.0 11.2 8.0 11.5 8.0 12.2 7.9 12.8 7.712.0 9.2 7.1 10.2 7.6 10.9 8.0 11.2 8.0 11.5 8.0 12.2 7.9 12.8 7.714.0 9.2 7.1 10.2 7.6 10.9 8.0 11.2 8.0 11.5 8.0 12.2 7.9 12.8 7.716.0 9.2 7.1 10.2 7.6 10.9 8.0 11.2 8.0 11.5 8.0 12.2 7.9 12.8 7.718.0 9.2 7.1 10.2 7.6 10.9 8.0 11.2 8.0 11.5 8.0 12.2 7.9 12.8 7.720.0 9.2 7.1 10.2 7.6 10.9 8.0 11.2 8.0 11.5 8.0 12.2 7.9 12.8 7.721.0 9.2 7.1 10.2 7.6 10.9 8.0 11.2 8.0 11.5 8.0 12.2 7.9 12.8 7.7

036 23.0 9.2 7.1 10.2 7.6 10.9 8.0 11.2 8.0 11.5 8.0 12.2 7.9 12.8 7.725.0 9.2 7.1 10.2 7.6 10.9 8.0 11.2 8.0 11.5 8.0 12.2 7.9 12.8 7.727.0 9.2 7.1 10.2 7.6 10.9 8.0 11.2 8.0 11.5 8.0 12.2 7.9 12.8 7.729.0 9.2 7.1 10.2 7.6 10.9 8.0 11.2 8.0 11.5 8.0 12.2 7.9 12.8 7.731.0 9.2 7.1 10.2 7.6 10.9 8.0 11.2 8.0 11.5 8.0 12.2 7.9 12.8 7.733.0 9.2 7.1 10.2 7.6 10.9 8.0 11.2 8.0 11.5 8.0 12.2 7.9 12.8 7.735.0 9.2 7.1 10.2 7.6 10.9 8.0 11.2 8.0 11.5 8.0 12.2 7.9 12.8 7.737.0 8.9 6.9 9.8 7.3 10.5 7.8 10.8 7.7 11.2 7.7 11.8 7.7 12.4 7.539.0 8.7 6.7 9.6 7.1 10.2 7.6 10.5 7.5 10.9 7.5 11.5 7.5 12.0 7.310.0 11.5 8.8 12.7 9.3 13.6 9.9 14.0 9.9 14.4 9.9 15.3 9.8 16.0 9.612.0 11.5 8.8 12.7 9.3 13.6 9.9 14.0 9.9 14.4 9.9 15.3 9.8 16.0 9.614.0 11.5 8.8 12.7 9.3 13.6 9.9 14.0 9.9 14.4 9.9 15.3 9.8 16.0 9.616.0 11.5 8.8 12.7 9.3 13.6 9.9 14.0 9.9 14.4 9.9 15.3 9.8 16.0 9.618.0 11.5 8.8 12.7 9.3 13.6 9.9 14.0 9.9 14.4 9.9 15.3 9.8 16.0 9.620.0 11.5 8.8 12.7 9.3 13.6 9.9 14.0 9.9 14.4 9.9 15.3 9.8 16.0 9.621.0 11.5 8.8 12.7 9.3 13.6 9.9 14.0 9.9 14.4 9.9 15.3 9.8 16.0 9.6

048 23.0 11.5 8.8 12.7 9.3 13.6 9.9 14.0 9.9 14.4 9.9 15.3 9.8 16.0 9.625.0 11.5 8.8 12.7 9.3 13.6 9.9 14.0 9.9 14.4 9.9 15.3 9.8 16.0 9.627.0 11.5 8.8 12.7 9.3 13.6 9.9 14.0 9.9 14.4 9.9 15.3 9.8 16.0 9.629.0 11.5 8.8 12.7 9.3 13.6 9.9 14.0 9.9 14.4 9.9 15.3 9.8 16.0 9.631.0 11.5 8.8 12.7 9.3 13.6 9.9 14.0 9.9 14.4 9.9 15.3 9.8 16.0 9.633.0 11.5 8.8 12.7 9.3 13.6 9.9 14.0 9.9 14.4 9.9 15.3 9.8 16.0 9.635.0 11.5 8.8 12.7 9.3 13.6 9.9 14.0 9.9 14.4 9.9 15.3 9.8 16.0 9.637.0 11.1 8.5 12.3 9.0 13.1 9.6 13.6 9.6 14.0 9.6 14.8 9.5 15.4 9.339.0 10.8 8.3 12.0 8.8 12.8 9.3 13.2 9.3 13.6 9.3 14.4 9.2 15.0 9.010.0 13.1 10.1 14.5 10.8 15.5 11.4 16.0 11.4 16.5 11.4 17.4 11.3 18.2 11.012.0 13.1 10.1 14.5 10.8 15.5 11.4 16.0 11.4 16.5 11.4 17.4 11.3 18.2 11.014.0 13.1 10.1 14.5 10.8 15.5 11.4 16.0 11.4 16.5 11.4 17.4 11.3 18.2 11.016.0 13.1 10.1 14.5 10.8 15.5 11.4 16.0 11.4 16.5 11.4 17.4 11.3 18.2 11.018.0 13.1 10.1 14.5 10.8 15.5 11.4 16.0 11.4 16.5 11.4 17.4 11.3 18.2 11.020.0 13.1 10.1 14.5 10.8 15.5 11.4 16.0 11.4 16.5 11.4 17.4 11.3 18.2 11.021.0 13.1 10.1 14.5 10.8 15.5 11.4 16.0 11.4 16.5 11.4 17.4 11.3 18.2 11.0

056 23.0 13.1 10.1 14.5 10.8 15.5 11.4 16.0 11.4 16.5 11.4 17.4 11.3 18.2 11.025.0 13.1 10.1 14.5 10.8 15.5 11.4 16.0 11.4 16.5 11.4 17.4 11.3 18.2 11.027.0 13.1 10.1 14.5 10.8 15.5 11.4 16.0 11.4 16.5 11.4 17.4 11.3 18.2 11.029.0 13.1 10.1 14.5 10.8 15.5 11.4 16.0 11.4 16.5 11.4 17.4 11.3 18.2 11.031.0 13.1 10.1 14.5 10.8 15.5 11.4 16.0 11.4 16.5 11.4 17.4 11.3 18.2 11.033.0 13.1 10.1 14.5 10.8 15.5 11.4 16.0 11.4 16.5 11.4 17.4 11.3 18.2 11.035.0 13.1 10.1 14.5 10.8 15.5 11.4 16.0 11.4 16.5 11.4 17.4 11.3 18.2 11.037.0 12.7 9.8 14.1 10.4 15.0 11.1 15.5 11.0 16.0 11.0 16.9 10.9 17.7 10.739.0 12.4 9.5 13.7 10.1 14.6 10.8 15.1 10.7 15.5 10.7 16.4 10.6 17.2 10.4

unitsize

outdoorair temp.

indoor air temp.

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69

9

Part load performance

Page 73: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

70

Page 74: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

71

9 ForewordPart load performance

9

Part Load Performance

MMY-MAP0802FT8 (8HP, 22.4kW system)

CoolingCompressor + Oudoor Fan Power consumption (kW)

OutdoorUnit

Dry-Bulb (oC)

Outdoor Unit100% Cooling Capacity

(kW)

100%Capacity

90%Capacity

80%Capacity

70%Capacity

60%Capacity

50%Capacity

40%Capacity

30%Capacity

40oC

35oC

30oC

25oC

20oC

15oC

20.8

22.4

22.4

22.4

22.4

22.4

6.42

6.07

5.02

4.34

4.03

3.75

5.25

4.96

4.12

3.57

3.32

3.09

4.23

3.99

3.33

2.90

2.70

2.52

3.36

3.17

2.66

2.32

2.17

2.03

2.64

2.48

2.11

1.85

1.74

1.63

2.07

1.94

1.67

1.48

1.40

1.32

1.64

1.54

1.35

1.21

1.15

1.09

1.37

1.27

1.14

1.04

1.00

0.95

Indoor air temperature conditions : 27.0oC dry-bulb / 19.0oC wet bulb

HeatingCompressor + Oudoor Fan Power consumption (kW)

OutdoorUnit

Dry-Bulb (oC)

Outdoor Unit 100%

Heating Capacity

(kW)

100%Capacity

90%Capacity

80%Capacity

70%Capacity

60%Capacity

50%Capacity

40%Capacity

30%Capacity

15oC

11oC

7oC

1oC

-5oC

-10oC

25.0

25.0

25.0

23.3

20.0

17.0

5.48

5.91

6.29

6.40

5.94

5.34

4.59

4.93

5.23

5.31

4.94

4.45

3.80

4.06

4.29

4.35

4.05

3.66

3.11

3.30

3.47

3.50

3.26

2.96

2.51

2.64

2.76

2.77

2.59

2.36

2.02

2.09

2.17

2.17

2.03

1.86

1.62

1.65

1.69

1.68

1.58

1.46

1.32

1.32

1.33

1.31

1.23

1.16

Indoor air temperature conditions : 20.0oC dry-bulb

Page 75: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

72

9

Part Load Performance

MMY-MAP1002FT8 (10HP, 28kW system)

CoolingCompressor + Oudoor Fan Power consumption (kW)

OutdoorUnit

Dry-Bulb (oC)

Outdoor Unit 100%

Cooling Capacity

(kW)

100%Capacity

90%Capacity

80%Capacity

70%Capacity

60%Capacity

50%Capacity

40%Capacity

30%Capacity

40oC

35oC

30oC

25oC

20oC

15oC

26.0

28.0

28.0

28.0

28.0

28.0

9.04

8.54

7.07

6.10

5.37

4.99

7.39

6.98

5.80

5.02

4.43

4.12

5.95

5.61

4.69

4.07

3.60

3.36

4.73

4.45

3.74

3.27

2.91

2.71

3.71

3.49

2.96

2.61

2.33

2.18

2.91

2.73

2.35

2.09

1.88

1.77

2.31

2.16

1.90

1.71

1.55

1.47

1.93

1.79

1.61

1.47

1.35

1.28

Indoor air temperature conditions : 27.0oC dry-bulb / 19.0oC wet bulb

HeatingCompressor + Oudoor Fan Power consumption (kW)

OutdoorUnit

Dry-Bulb (oC)

Outdoor Unit 100%

HeatingCapacity

(kW)

100%Capacity

90%Capacity

80%Capacity

70%Capacity

60%Capacity

50%Capacity

40%Capacity

30%Capacity

15oC

11oC

7oC

1oC

-5oC

-10oC

31.5

31.5

31.5

29.3

25.2

21.4

7.61

8.20

8.73

8.88

8.25

7.42

6.37

6.84

7.26

7.37

6.85

6.18

5.27

5.63

5.96

6.03

5.62

5.08

4.31

4.58

4.82

4.86

4.53

4.11

3.49

3.67

3.83

3.85

3.60

3.28

2.80

2.91

3.01

3.01

2.81

2.59

2.25

2.30

2.35

2.33

2.19

2.03

1.83

1.84

1.85

1.81

1.71

1.61

Indoor air temperature conditions : 20.0oC dry-bulb

Page 76: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

73

Part Load Performance

MMY-MAP1202FT8 (12HP, 33.5kW system)

CoolingCompressor + Oudoor Fan Power consumption (kW)

OutdoorUnit

Dry-Bulb (oC)

Outdoor Unit 100%

Cooling Capacity

(kW)

100%Capacity

90%Capacity

80%Capacity

70%Capacity

60%Capacity

50%Capacity

40%Capacity

30%Capacity

40oC

35oC

30oC

25oC

20oC

15oC

31.2

33.5

33.5

33.5

33.5

33.5

13.65

12.90

10.68

9.22

8.57

7.97

10.44

9.87

8.16

7.03

6.54

6.07

8.30

7.84

6.50

5.62

5.23

4.86

6.47

6.10

5.08

4.41

4.11

3.83

4.93

4.65

3.90

3.40

3.18

2.97

3.70

3.47

2.95

2.60

2.44

2.29

2.76

2.59

2.24

1.99

1.88

1.77

2.13

1.99

1.76

1.59

1.51

1.44

Indoor air temperature conditions : 27.0oC dry-bulb / 19.0oC wet bulb

HeatingCompressor + Oudoor Fan Power consumption (kW)

OutdoorUnit

Dry-Bulb (oC)

Outdoor Unit 100%

HeatingCapacity

(kW)

100%Capacity

90%Capacity

80%Capacity

70%Capacity

60%Capacity

50%Capacity

40%Capacity

30%Capacity

15oC

11oC

7oC

1oC

-5oC

-10oC

35.5

35.5

35.5

33.0

28.4

24.1

8.41

9.06

9.65

9.81

9.12

8.20

7.36

7.92

8.43

8.57

7.96

7.16

6.26

6.72

7.13

7.24

6.73

6.07

5.16

5.51

5.82

5.89

5.49

4.96

4.10

4.35

4.57

4.60

4.29

3.90

3.22

3.37

3.51

3.52

3.29

3.01

2.51

2.59

2.67

2.65

2.49

2.30

Indoor air temperature conditions : 20.0oC dry-bulb

1.97

1.99

2.02

1.99

1.87

1.75

9

Page 77: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

74

9

Part Load Performance

MMY-AP1602FT8 (16HP, 45kW system)

CoolingCompressor + Oudoor Fan Power consumption (kW)

OutdoorUnit

Dry-Bulb (oC)

Outdoor Unit 100%

Cooling Capacity

(kW)

100%Capacity

90%Capacity

80%Capacity

70%Capacity

60%Capacity

50%Capacity

40%Capacity

30%Capacity

40oC

35oC

30oC

25oC

20oC

15oC

13.76

13.01

10.77

9.30

8.65

8.04

10.70

10.12

8.44

7.33

6.84

6.38

8.66

8.18

6.86

5.99

5.60

5.24

6.92

6.53

5.52

4.85

4.55

4.26

5.48

5.16

4.41

3.91

3.68

3.46

4.33

4.07

3.54

3.17

3.00

2.83

3.49

3.27

2.90

2.63

2.50

2.38

2.94

2.75

2.49

2.29

2.19

2.10

Indoor air temperature conditions : 27.0oC dry-bulb / 19.0oC wet bulb

HeatingCompressor + Oudoor Fan Power consumption (kW)

OutdoorUnit

Dry-Bulb (oC)

Outdoor Unit 100%

HeatingCapacity

(kW)

100%Capacity

90%Capacity

80%Capacity

70%Capacity

60%Capacity

50%Capacity

40%Capacity

30%Capacity

15oC

11oC

7oC

1oC

-5oC

-10oC

50.0

50.0

50.0

46.5

40.0

34.0

11.42

12.30

13.10

13.32

12.37

11.13

9.40

10.08

10.69

10.84

10.10

9.12

7.82

8.34

8.81

8.91

8.31

7.53

6.44

6.81

7.16

7.22

6.75

6.14

5.25

5.50

5.74

5.77

5.40

4.95

4.25

4.41

4.56

4.55

4.28

3.95

3.46

3.53

3.61

3.57

3.37

3.14

2.86

2.87

2.89

2.83

2.69

2.54

Indoor air temperature conditions : 20.0oC dry-bulb

41.9

45.0

45.0

45.0

45.0

45.0

Page 78: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

75

Part Load Performance

MMY-AP1802FT8 (18HP, 50.4kW system)

CoolingCompressor + Oudoor Fan Power consumption (kW)

OutdoorUnit

Dry-Bulb (oC)

Outdoor Unit 100%

Cooling Capacity

(kW)

100%Capacity

90%Capacity

80%Capacity

70%Capacity

60%Capacity

50%Capacity

40%Capacity

30%Capacity

40oC

35oC

30oC

25oC

20oC

15oC

46.9

50.4

50.4

50.4

50.4

50.4

16.31

15.42

12.76

11.02

9.70

9.02

12.84

12.13

10.12

8.79

7.95

7.41

10.39

9.81

8.22

7.17

6.51

6.08

8.29

7.82

6.61

5.80

5.28

4.95

6.55

6.17

5.27

4.66

4.27

4.02

5.18

4.86

4.22

3.77

3.48

3.29

4.16

3.90

3.44

3.12

2.90

2.76

3.50

3.27

2.95

2.71

2.55

2.43

Indoor air temperature conditions : 27.0oC dry-bulb / 19.0oC wet bulb

HeatingCompressor + Oudoor Fan Power consumption (kW)

OutdoorUnit

Dry-Bulb (oC)

Outdoor Unit 100%

HeatingCapacity

(kW)

100%Capacity

90%Capacity

80%Capacity

70%Capacity

60%Capacity

50%Capacity

40%Capacity

30%Capacity

15oC

11oC

7oC

1oC

-5oC

-10oC

56.5

56.5

56.5

52.5

45.2

38.4

10.33

11.07

11.74

11.92

11.09

10.02

8.59

9.16

9.67

9.79

9.13

8.27

7.06

7.48

7.86

7.93

7.41

6.74

5.75

6.04

6.30

6.33

5.92

5.42

4.66

4.83

5.00

4.99

4.69

4.32

3.78

3.86

3.95

3.91

3.69

3.44

Indoor air temperature conditions : 20.0oC dry-bulb

3.12

3.13

3.16

3.10

2.94

2.77

13.54

14.60

15.54

15.80

14.68

13.20

9

Page 79: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

76

9

Part Load Performance

MMY-AP2002FT8 (20HP, 56kW system)

CoolingCompressor + Oudoor Fan Power consumption (kW)

OutdoorUnit

Dry-Bulb (oC)

Outdoor Unit 100%

Cooling Capacity

(kW)

100%Capacity

90%Capacity

80%Capacity

70%Capacity

60%Capacity

50%Capacity

40%Capacity

30%Capacity

40oC

35oC

30oC

25oC

20oC

15oC

18.93

17.89

14.81

12.79

11.26

10.46

14.98

14.15

11.79

10.24

9.05

8.44

12.11

11.43

9.58

8.35

7.41

6.92

9.66

9.11

7.69

6.74

6.01

5.63

7.63

7.18

6.13

5.42

4.86

4.57

6.02

5.65

4.90

4.37

3.96

3.74

4.83

4.52

3.99

3.61

3.31

3.14

Indoor air temperature conditions : 27.0oC dry-bulb / 19.0oC wet bulb

HeatingCompressor + Oudoor Fan Power consumption (kW)

OutdoorUnit

Dry-Bulb (oC)

Outdoor Unit 100%

HeatingCapacity

(kW)

100%Capacity

90%Capacity

80%Capacity

70%Capacity

60%Capacity

50%Capacity

40%Capacity

30%Capacity

15oC

11oC

7oC

1oC

-5oC

-10oC

15.67

16.89

17.98

18.28

16.98

15.27

12.97

13.90

14.75

14.97

13.93

12.58

10.77

11.49

12.14

12.29

11.45

10.37

8.85

9.37

9.85

9.94

9.28

8.44

7.20

7.55

7.89

7.92

7.41

6.78

4.71

4.81

4.92

4.87

4.59

4.28

3.88

3.89

3.92

3.85

3.64

3.44

Indoor air temperature conditions : 20.0oC dry-bulb

52.1

56.0

56.0

56.0

56.0

56.0

4.06

3.79

3.42

3.14

2.90

2.77

63.0

63.0

63.0

58.6

50.4

42.8

5.82

6.03

6.24

6.23

5.85

5.39

Page 80: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

77

Part Load Performance

MMY-AP2402FT8 (24HP, 68.0kW system)

CoolingCompressor + Oudoor Fan Power consumption (kW)

OutdoorUnit

Dry-Bulb (oC)

Outdoor Unit 100%

Cooling Capacity

(kW)

100%Capacity

90%Capacity

80%Capacity

70%Capacity

60%Capacity

50%Capacity

40%Capacity

30%Capacity

40oC

35oC

30oC

25oC

20oC

15oC

63.2

68.0

68.0

68.0

68.0

68.0

20.80

19.66

16.27

14.05

13.07

12.15

16.06

15.17

12.66

11.00

10.26

9.57

13.00

12.27

10.30

8.99

8.40

7.85

10.38

9.80

8.28

7.27

6.82

6.39

8.22

7.74

6.62

5.86

5.52

5.19

6.50

6.11

5.31

4.75

4.49

4.25

5.23

4.91

4.34

3.94

3.75

3.57

4.41

4.12

3.73

3.43

3.29

3.14

Indoor air temperature conditions : 27.0oC dry-bulb / 19.0oC wet bulb

HeatingCompressor + Oudoor Fan Power consumption (kW)

OutdoorUnit

Dry-Bulb (oC)

Outdoor Unit 100%

HeatingCapacity

(kW)

100%Capacity

90%Capacity

80%Capacity

70%Capacity

60%Capacity

50%Capacity

40%Capacity

30%Capacity

15oC

11oC

7oC

1oC

-5oC

-10oC

76.5

76.5

76.5

71.1

61.2

52.0

14.10

15.12

16.03

16.27

15.15

13.68

11.73

12.51

13.21

13.37

12.47

11.30

9.65

10.22

10.74

10.83

10.12

9.21

7.87

8.25

8.61

8.65

8.10

7.42

6.38

6.61

6.84

6.83

6.41

5.92

5.19

5.29

5.41

5.36

5.06

4.72

Indoor air temperature conditions : 20.0oC dry-bulb

4.29

4.30

4.33

4.25

4.03

3.81

17.46

18.82

20.04

20.38

18.93

17.02

9

Page 81: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

78

9

Part Load Performance

MMY-AP2602FT8 (26HP, 73kW system)

CoolingCompressor + Oudoor Fan Power consumption (kW)

OutdoorUnit

Dry-Bulb (oC)

Outdoor Unit 100%

Cooling Capacity

(kW)

100%Capacity

90%Capacity

80%Capacity

70%Capacity

60%Capacity

50%Capacity

40%Capacity

30%Capacity

40oC

35oC

30oC

25oC

20oC

15oC

23.23

21.96

18.18

15.70

14.59

13.57

18.19

17.19

14.34

12.45

11.37

10.60

14.72

13.90

11.65

10.17

9.31

8.70

11.75

11.08

9.37

8.22

7.55

7.08

9.29

8.75

7.48

6.62

6.11

5.75

7.34

6.90

5.99

5.35

4.98

4.70

5.90

5.53

4.89

4.43

4.15

3.95

Indoor air temperature conditions : 27.0oC dry-bulb / 19.0oC wet bulb

HeatingCompressor + Oudoor Fan Power consumption (kW)

OutdoorUnit

Dry-Bulb (oC)

Outdoor Unit 100%

HeatingCapacity

(kW)

100%Capacity

90%Capacity

80%Capacity

70%Capacity

60%Capacity

50%Capacity

40%Capacity

30%Capacity

15oC

11oC

7oC

1oC

-5oC

-10oC

19.25

20.75

22.09

22.46

20.87

18.77

15.89

17.03

18.06

18.33

17.06

15.41

13.21

14.08

14.88

15.06

14.04

12.72

10.86

11.50

12.08

12.19

11.39

10.36

8.84

9.28

9.69

9.73

9.11

8.34

5.81

5.94

6.07

6.01

5.67

5.28

4.80

4.81

4.85

4.76

4.51

4.26

Indoor air temperature conditions : 20.0oC dry-bulb

67.9

73.0

73.0

73.0

73.0

73.0

4.97

4.64

4.19

3.86

3.64

3.48

81.5

81.5

81.5

75.8

65.2

55.4

7.16

7.43

7.68

7.67

7.20

6.64

Page 82: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

79

Part Load Performance

MMY-AP2802FT8 (28HP, 78.5kW system)

CoolingCompressor + Oudoor Fan Power consumption (kW)

OutdoorUnit

Dry-Bulb (oC)

Outdoor Unit 100%

Cooling Capacity

(kW)

100%Capacity

90%Capacity

80%Capacity

70%Capacity

60%Capacity

50%Capacity

40%Capacity

30%Capacity

40oC

35oC

30oC

25oC

20oC

15oC

73.0

78.5

78.5

78.5

78.5

78.5

25.82

24.40

20.19

17.44

15.35

14.27

20.33

19.21

16.01

13.90

12.48

11.63

16.44

15.52

13.01

11.34

10.21

9.54

13.12

12.37

10.45

9.17

8.29

7.76

10.37

9.76

8.34

7.37

6.70

6.30

8.18

7.69

6.67

5.96

5.46

5.16

6.57

6.16

5.44

4.93

4.56

4.33

5.53

5.16

4.66

4.28

4.00

3.81

Indoor air temperature conditions : 27.0oC dry-bulb / 19.0oC wet bulb

HeatingCompressor + Oudoor Fan Power consumption (kW)

OutdoorUnit

Dry-Bulb (oC)

Outdoor Unit 100%

Heating Capacity

(kW)

100%Capacity

90%Capacity

80%Capacity

70%Capacity

60%Capacity

50%Capacity

40%Capacity

30%Capacity

15oC

11oC

7oC

1oC

-5oC

-10oC

88.0

88.0

88.0

81.8

70.4

59.8

17.67

18.94

20.09

20.39

18.98

17.14

14.68

15.66

16.54

16.74

15.61

14.14

12.06

12.78

13.43

13.55

12.65

11.51

9.82

10.30

10.76

10.81

10.11

9.25

7.94

8.24

8.52

8.51

7.99

7.37

6.44

6.58

6.73

6.66

6.28

5.85

Indoor air temperature conditions : 20.0oC dry-bulb

5.31

5.33

5.37

5.26

4.99

4.70

21.38

23.04

24.53

24.94

23.17

20.84

9

Page 83: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

80

9

Part Load Performance

MMY-AP3002FT8 (30HP, 84kW system)

CoolingCompressor + Oudoor Fan Power consumption (kW)

OutdoorUnit

Dry-Bulb (oC)

Outdoor Unit 100%

Cooling Capacity

(kW)

100%Capacity

90%Capacity

80%Capacity

70%Capacity

60%Capacity

50%Capacity

40%Capacity

30%Capacity

40oC

35oC

30oC

25oC

20oC

15oC

28.40

26.84

22.21

19.18

16.89

15.70

14.48

13.66

11.53

10.11

9.02

8.44

11.44

10.77

9.19

8.13

7.29

6.85

9.02

8.48

7.34

6.56

5.94

5.61

7.24

6.78

5.99

5.42

4.96

4.71

Indoor air temperature conditions : 27.0oC dry-bulb / 19.0oC wet bulb

HeatingCompressor + Oudoor Fan Power consumption (kW)

OutdoorUnit

Dry-Bulb (oC)

Outdoor Unit 100%

Heating Capacity

(kW)

100%Capacity

90%Capacity

80%Capacity

70%Capacity

60%Capacity

50%Capacity

40%Capacity

30%Capacity

15oC

11oC

7oC

1oC

-5oC

-10oC

23.62

25.46

27.11

27.57

25.61

23.03

19.45

20.86

22.12

22.45

20.89

18.86

16.15

17.23

18.21

18.43

17.18

15.56

13.27

14.06

14.78

14.91

13.92

12.66

10.79

11.33

11.83

11.88

11.12

10.17

7.07

7.22

7.38

7.31

6.89

6.42

5.82

5.84

5.89

5.77

5.47

5.15

Indoor air temperature conditions : 20.0oC dry-bulb

6.09

5.68

5.12

4.71

4.35

4.15

95.0

95.0

95.0

88.4

76.0

64.6

8.73

9.05

9.36

9.35

8.77

8.09

78.1

84.0

84.0

84.0

84.0

84.0

22.47

21.23

17.69

15.36

13.58

12.66

18.16

17.14

14.36

12.52

11.11

10.38

Page 84: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

81

10

Wiring guideline

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82

Page 86: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

83

10 ForewordWiring guideline

10

WIRING DESIGN1. General

(1) Perform wiring of the power supplies in conformance with the regulations of the local electrical company.(2) Use a 2 core shielded wire for control wiring on connecting indoor units, and connecting of indoor units to outdoor

units. This is recommended to prevent possible noise issues.(3) Be sure to connect an earth leakage breaker to the power supply of the indoor units.(4) Supply a separate power supply to each outdoor unit ensuring use of an earth leakage breaker and isolator.(5) Never connect 220-240V power to the control wiring terminal block (U1, U2, U3, U4, U5, U6)

(Fault will be caused.)(6) Locate wiring system for the control and refrigerant piping system in the same line.(7) Arrange the cables so that the electrical wires do not come in to contact with high-temperature parts of the pipework ;

otherwise insulation will melt and an accident may be caused.(8) Do not turn on the power supply of the indoor units until vacuuming of the refrigerant pipe has finished.

2. For outdoor unit power supplySelect the power supply cabling and fuse of each outdoor unit from the following specifications:5 core cable, in conformance with Design 60245 IEC 66Do not connect them via the terminal block (L1, L2, L3, N).

L1 L2 L3 N L1 L2 L3 N L1 L2 L3 N

Outdoor power supply3-phase 380-415V, 50Hz

3. Electrical wiring design

Pull boxFS unit

Indoor unit

FS unit

Indoor unit

FS unit

Indoor unit

FS unit

Indoor unit

FS unit

Indoor unit

FS unit

Indoor unit

FS unit

Indoor unit

FS unit

Indoor unit

Indoor power source

Single phase50Hz 220-240VEarth leakage breakerpower switch

Earth

Outdoorpower source

3-phase50Hz 380-415VEarth leakagebreakerhand switch

Unit capacities and power supply wire sizes (Reference)

ModelMMY-

MAP0802FT8

MAP1002FT8

MAP1202FT8

Power supply wiring

Wire size

3.5 mm (AWG #10) Max. 20 m

5.5 mm (AWG #10) Max. 28 m

5.5 mm (AWG #10) Max. 27 m

Field fuse

30 A

30 A

30 A Determine the wire size for the indoor unit according to the number of connected indoor units downstream. Observe local regulations in reference to the wire size selection and installation.

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84

10

4. For Indoor unit power supply (Must be independent from the outdoor unit power supply.)

Item

Model

All models of indoor units

FS unit

Power supply wiring

Wire size Field fuse

2.0mm (AWG#14) Max. 20m 3.5mm (AWG#12) Max. 50m 15ABe sure to use the supplied cable. If the length between the indoor and FS unit exceeds 5 m,connect by using the connection cable kit (RBC-CBK15FE). (Sold separately)

NOTE :The above connecting lengths stated in the table, indicate the length from the isolator to the outdoor unit. When the powersupply of the indoor units are connected in parallel, it is assumed that no more than a 2% voltage drop will occur. If theconnecting length is to exceed the stated lengths, select a suitable wire in accordance with the local wiring standards.

CAUTIONS(1) Keep the refrigerant piping system and the indoor-indoor/indoor-outdoor control wiring systems together.(2) When running power supplies and control wires parallel to each other, run them through separate conduits or

maintain a suitable distance between them.(Current capacity of power supplies: 10A or less for 300m, 50A or less for 500m)

5. Design of control wiring

FS unit

FS unit

(Header) (Follower)

FS unitFS unit

Remotecontroller

Communication wire forcontrol between indoorand FS unit.

FS unit

Communication wire forcontrol between indoorand FS unit.

FS unit FS unit

Earth

(Open)

Communication wire for controlbetween outdoor unitsCommunication wire for controlbetween outdoor unit andindoor unit

Connection of shield wire must be connected(Connected to all connecting sections in each outdoor unit)Connection of shield wire must be connected (Connected to all connecting sections in each indoor unit)

[Central remote controller] (Option)TCB-SC642TLE (For line 64)

Power supplySingle phase220-240V 50Hz

Wire specification, quantity, size of crossover wiring and remote controller wiring

Name Q’tySize

Up to 500m Up to 1000m 1000 to 2000mSpecification

Crossover wiring(indoor-indoor / indoor-outdoor / control wiring,central control wiring)Remote controller wiring

Control wiring between indoor and FS unit

2 cores

2 cores

1.25mm2 2.0mm2 Shield wire

0.5 to 2.0mm2 - - -Be sure to use the supplied connection cable. If the length between the indoor unit and FSunitexceeds 5 m, connect by using the connection cable kit (RBC-CBK15FE). (Sold separately)

(1) The crossover wiring and central control wiring uses a 2-core non-polarity communication wire. Use 2-core shielded wire toprevent possible noise issues. Connect the end of the shielded wires and earth(ground) at both the outdoor and indoor unit.

Where the shielded wire is connected between a central controller and a outdoor unit, only earth(ground) at one end of the central control line.(2) Use 2-core non-polarity wire for remote controller. (A, B terminals)

Use 2-core non-polarity wire for wiring of group control. (A, B terminals)

Page 88: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

85

6. System Wiring Design

U1

U1/U3

U1/U2

L N

A

B

U2/U4

U2 U3 U4 U5 U6

A

B

Earth terminal

Earth leakage breaker

Power switch

PullBox

PullBox

Power supplySingle phase 220-240V50Hz

CN02 CN81

CN01

Indoor unit Remotecontroller

FS unitControl wiring

Powerline

Powerline

U1/U2

L N

A

B

A

B

Earth terminal

CN02

CN01

Indoor unit Remotecontroller

FS unit FS unit

U1/U2

L N

A

B

A

B

Earth terminal

CN02

CN01

Indoor unit Remotecontroller

Powerline

Controlwiring

Central remotecontroller

Outdoor unit

Power supply3 phase 380-415V 50Hz

Earth leakage breakerPower swith

Earthterminal

U1 U2 U3 U4 U5 U6

Power supply3 phase 380-415V 50Hz

Earth leakage breakerPower swith

Earth terminal

Earth terminal

Earth terminal U1 U2 U3 U4 U5 U6

Power supply3 phase 380-415V 50Hz

Earth leakage breakerPower swith

Earth terminal

Earth terminal

Earth terminal

Outdoor side

Indoor side

Single phase220-240V 50Hz

Control wiring

Earth terminal

Earth terminal

Earth terminal

Earth terminal

Earth terminal

Earth terminal

Earthterminal

Earthterminal

NOTE :Control wire and power supply wire between the FS unit and the indoor unit are supplied as an accessory complete with the FSunit. (Wire length : 6m)If the length between indoor and FS unit exceeds 5m, connect by using the connection cable kit sold separately (RBC-CBK15FE).

10

Page 89: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

86

MMU-AP0091HMMU-AP0121HMMU-AP0151HMMU-AP0181HMMU-AP0241HMMU-AP0271HMMU-AP0301HMMU-AP0361HMMU-AP0481HMMU-AP0561HMMU-AP0071WHMMU-AP0091WHMMU-AP0121WHMMU-AP0151WHMMU-AP0181WHMMU-AP0241WHMMU-AP0271WHMMU-AP0301WHMMU-AP0481WHMMU-AP0071YHMMU-AP0091YHMMU-AP0121YHMMU-AP0151SHMMU-AP0181SHMMU-AP0241SHMMD-AP0071BHMMD-AP0091BHMMD-AP0121BHMMD-AP0151BHMMD-AP0181BHMMD-AP0241BHMMD-AP0271BHMMD-AP0301BHMMD-AP0361BHMMD-AP0481BHMMD-AP0561BHMMD-AP0181HMMD-AP0241HMMD-AP0271HMMD-AP0361HMMD-AP0481HMMD-AP0721HMMD-AP0961HMMC-AP0151HMMC-AP0181HMMC-AP0241HMMC-AP0271HMMC-AP0361HMMC-AP0481HMMK-AP0071HMMK-AP0091HMMK-AP0121HMMK-AP0151HMMK-AP0181HMMK-AP0241HMMK-AP0072HMMK-AP0092HMMK-AP0122HMML-AP0071HMML-AP0091HMML-AP0121HMML-AP0151HMML-AP0181HMML-AP0241HMML-AP0071BHMML-AP0091BHMML-AP0121BHMML-AP0151BHMML-AP0181BHMML-AP0241BHMMF-AP0151HMMF-AP0181HMMF-AP0241HMMF-AP0271HMMF-AP0361HMMF-AP0481HMMF-AP0561H

10

50HzIndoor unit

Type ModelNominal Voltage

(V-Ph-Hz)Voltage RangeMin Max

Fan MotorkW FLA

Power SupplyMCA MOCP

4-Way AirDischarge

Cassette Type

2-Way AirDischarge

Cassette Type

1-Way AirDischarge

Cassette Type

Concealed Duct Type

Concealed DuctHigh Static

Pressure Type

Under Ceiling Type

High Wall Type (1 series)

High Wall Type (2 series)

Floor StandingCabinet Type

Floor StandingConcealed Type

Floor Standing Type

230-1-50230-1-50230-1-50230-1-50230-1-50230-1-50230-1-50230-1-50230-1-50230-1-50230-1-50230-1-50230-1-50230-1-50230-1-50230-1-50230-1-50230-1-50220-1-50230-1-50230-1-50230-1-50230-1-50230-1-50230-1-50230-1-50230-1-50230-1-50230-1-50230-1-50230-1-50230-1-50230-1-50230-1-50230-1-50230-1-50230-1-50230-1-50230-1-50230-1-50230-1-50230-1-50230-1-50230-1-50230-1-50230-1-50230-1-50230-1-50230-1-50230-1-50230-1-50230-1-50230-1-50230-1-50230-1-50230-1-50230-1-50230-1-50230-1-50230-1-50230-1-50230-1-50230-1-50230-1-50230-1-50230-1-50230-1-50230-1-50230-1-50230-1-50230-1-50230-1-50230-1-50230-1-50230-1-50230-1-50230-1-50

198198198198198198198198198198198198198198198198198198198198198198198198198198198198198198198198198198198198198198198198198198198198198198198198198198198198198198198198198198198198198198198198198198198198198198198198198198198198198

264264264264264264264264264264264264264264264264264264242264264264264264264264264264264264264264264264264264264264264264264264264264264264264264264264264264264264264264264264264264264264264264264264264264264264264264264264264264264

0.0600.0600.0600.0600.0600.0600.0600.0900.0900.0900.0530.0530.0530.0390.0390.0530.0530.0530.0920.0220.0220.0220.0340.0340.0340.1200.1200.1200.1200.1200.1200.1200.1200.1200.1200.1200.1600.1600.1600.2600.260

0.37030.37030.0300.0300.0400.0400.0800.0800.0300.0300.0300.0300.0300.0300.0300.0300.0300.0450.0450.0450.0450.0700.0700.0190.0190.0190.0700.0700.0700.0370.0370.0630.0630.1100.1600.160

0.200.200.220.240.280.280.400.680.930.950.360.360.360.370.370.530.530.541.330.280.280.280.550.550.630.330.330.390.390.500.600.600.700.961.131.130.931.551.551.872.126.046.350.330.370.480.480.900.960.350.350.350.370.370.400.200.210.220.300.300.490.490.540.540.290.290.290.520.520.530.770.771.011.011.481.841.84

0.250.250.280.300.350.350.500.851.161.190.450.450.450.460.460.660.660.681.670.350.350.350.690.690.790.410.410.490.490.620.750.750.881.201.411.411.161.941.942.342.657.557.940.410.460.600.601.131.200.440.440.440.460.460.500.240.260.270.370.370.620.620.680.680.360.360.360.650.650.660.960.961.271.271.852.302.30

1515151515151515151515151515151515151515151515151515151515151515151515151515151515151515151515151515151515151515151515151515151515151515151515151515151515

Legend MCA : Minimum Circuit AmpsMOCP : Maximum Overcurrent Protection (Amps)

FLA : Full Load AmpskW : Fan Motor Rated Output (kW)

Page 90: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

87

10

RLA

5.2

+ 5

.26.

5 +

6.5

6.5

+ 6

.55.

2 +

5.2

6.5

+ 6

.56.

5 +

6.5

6.5

+ 6

.5

Min

342

342

342

342

342

342

342

Sin

gle

out

do

or

unit

Hea

t Pum

pM

od

elM

MY

-

MA

P08

02FT

8M

AP

1002

FT8

MA

P12

02FT

8

No

min

alV

olta

ge

(V-P

h-H

z)

Vo

ltag

eR

ang

eC

om

pre

sso

rFa

n M

oto

rP

ow

er S

upp

ly

400-

3-50

400-

3-50

400-

3-50

Min

342

342

342

Max

457

457

457

RLA

5.2

+ 5

.26.

5 +

6.5

9.5

+ 9

.5

LRA

- - -

kW 0.60

0.60

0.60

FLA

1.0

1.1

1.1

MC

A20

.022

.524

.5

MO

CP

30 30 30

ICF

- - -

Co

mb

inat

ion

of o

utd

oo

r un

it

Hea

t Pum

pM

od

elM

MY

-

AP

1602

FT8

AP

1802

FT8

AP

2002

FT8

AP

2402

FT8

AP

2602

FT8

AP

2802

FT8

AP

3002

FT8

No

min

alV

olta

ge

(V-P

h-H

z)

Vo

ltag

eR

ang

eC

om

pre

sso

r

400-

3-50

400-

3-50

400-

3-50

400-

3-50

400-

3-50

400-

3-50

400-

3-50

Max

457

457

457

457

457

457

457

LRA

- - - - - - -

Uni

t N

o.1

RLA

5.2

+ 5

.25.

2 +

5.2

6.5

+ 6

.55.

2 +

5.2

5.2

+ 5

.26.

5 +

6.5

6.5

+ 6

.5

LRA

- - - - - - -

RLA - - -

5.2

+ 5

.25.

2 +

5.2

5.2

+ 5

.26.

5 +

6.5

LRA

- - - - - - -

Uni

t N

o.2

Uni

t N

o.3

Fan

Mo

tor

Po

wer

Sup

ply

kW0.

60 x

20.

60 x

20.

60 x

20.

60 x

30.

60 x

30.

60 x

30.

60 x

3

FLA

1.0

+ 1

.01.

1 +

1.0

1.1

+ 1

.11.

0 +

1.0

+ 1

.01.

1 +

1.0

+ 1

.01.

1 +

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+ 1

.01.

1 +

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+ 1

.1

MC

A40

.042

.545

.060

.062

.565

.067

.5

MO

CP

50 50 60 70 70 80 80

ICF

- - - - - - -

Leg

end

MC

A: M

inim

um C

ircui

t A

mp

sM

OC

P: M

axim

um O

verc

urre

nt P

rote

ctio

n (A

mp

s)IC

F: M

axim

um In

stan

tane

ous

Cur

rent

Flo

w S

tart

RLA

: Rat

ed L

oad

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ps

LRA

: Loc

ked

Rot

or A

mp

sFL

A: F

ull L

oad

Am

ps

kW: F

an M

otor

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ed O

utp

ut (k

W)

NO

TE :

RLA

is b

ased

on

the

follo

win

g co

nditi

ons.

Ind

oor

tem

per

atur

e: 2

7oC

DB

/19o C

WB

Out

doo

r te

mp

erat

ure

: 35o C

DB

50H

z

Page 91: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

88

Page 92: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

89

11

Wiring diagram

Page 93: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

90

Page 94: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

91

11 ForewordWiring diagram

11

1. Indoor Unit1-1. 4-way Air Discharge Cassette TypeModel: MMU-AP0091H, AP0121H, AP0151H, AP0181H, AP0241H,

MMU-AP0271H, AP0301H, AP0361H, AP0481H, AP0561H

CN

104

(YE

L)

CN

102

(RE

D)

CN

101

(BLK

)

12

34

51

23

45

12

34

51

23

45

12

34

51

23

45

12

34

56

12

34

51

23

45

12

34

56

64

31

25

64

31

25

31

32

1C

N34

(RE

D)

FS

CN

33(W

HI)

CN

82(B

LU)

54

32

15

43

21

CN

334

(BLU

)

DC

20V

CN

333

(WH

I)C

N68

(BLU

)

CN

304

(GR

Y)

CN

66(W

HI)

CN

44(B

LN)

CN

67(B

LK)

LM1

PM

V

Ind

oo

r co

ntr

ol P

.C. b

oar

dM

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NL

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CT

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CN

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ED

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er in

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ion)

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e)

CN

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HI)

CN

20(B

LU)

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TC

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51

23

45

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34

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CN

81(B

LK)

CN

60(W

HI)

CN

32(W

HI)

CN

61(Y

EL)

CN

50(W

HI)

CN

40(B

LU)

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12

34

51

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23

45

61

23

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31

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31

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RY

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303

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D

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ase

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FM

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pply

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uit

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uit

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ame

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mot

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mp

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p se

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p se

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p se

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Love

r m

otor

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on

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ndic

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he le

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insi

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indi

cate

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e te

rmin

al n

umbe

r.

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ted

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en li

ne in

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te th

e w

iring

on

site

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3.

in

dica

tes

the

cont

rol P

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oard

.

RE

D: R

ED

WH

I: W

HIT

EY

EL

: YE

LLO

WB

LU: B

LUE

BR

N: B

RO

WN

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: BLA

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GR

Y: G

RA

YP

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AN

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GR

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RE

EN

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sed

end

conn

ecto

r

CN

01(W

HI)

CN

02(B

LU)

Ada

ptor

for

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less

re

mot

e co

ntro

ller

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ED

)

Net

wor

k ad

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r (O

ptio

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2 12

12

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12

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11

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mot

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ller

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AU

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12

CN

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HI)

CN

001

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I)

WH

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nit

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IB

LKBLK

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BLK

BLK

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WH

I

U1

U2

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k ad

apto

r P.

C. b

oard

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lF

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V

Flo

w s

elec

tor

unit

eart

h sc

rew

Page 95: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

92

11

1-2. 2-way Air Discharge Cassette TypeModel: MMU-AP0071WH, AP0091WH, AP0121WH, AP0151WH, AP0181WH,

MMU-AP0241WH, AP0271WH, AP0301WH, AP0481WHC

N10

4(Y

EL)

CN

102

(RE

D)

CN

101

(BLK

)

54

32

15

43

21

98

76

98

76

FAN

CN

083(

WH

I)

WH

I

RE

D

DP

(BLU

)C

N06

8

DM

CN

304

(GR

Y)

CN

066

(WH

I)

CN

067

(BLK

)

CN

044

(BR

W)

Ind

oo

r co

ntr

ol P

.C. b

oar

d

1 21 2

TA

1 21 2

TC

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CN

100

(BR

W)

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33

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080

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N)

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L

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CT

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CN

073

(RE

D)

1 2

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erC

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HI)

CN

081

(BLK

)

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060

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I)

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ion

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I)C

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HI)

CN

074

(WH

I)

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1 2 1 2 3 4 5

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34

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23

45

61

23

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61

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31

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12

12

12

31

23

12

31

23

45

6

12

34

56

12

34

56

12

34

56

12

34

56

CN

050

(WH

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LU)

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)

CN

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LU)

Net

wor

k ad

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r (O

ptio

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12

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12

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11

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22

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RY

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sw

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ulse

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RN

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31

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D)

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LU)

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31

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31

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43

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51

25

RY

001

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eT

5.0A

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CN

039

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L)

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12

12

PM

V

1 21 2

3 43 4

5 65 6

77 9

FM

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ORN

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HM

LU

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1.

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ndic

ates

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inal

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ck, t

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tter

insi

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indi

cate

s th

e te

rmin

al n

umbe

r.

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dot

ted

line

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brok

en li

ne in

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te th

e w

iring

on

site

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in

dica

tes

the

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rol P

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oard

.

Clo

sed

end

conn

ecto

r

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lor

ind

icat

ion

RE

D: R

ED

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I: W

HIT

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EL

: YE

LLO

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LUE

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: BLA

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Y: G

RA

YP

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KO

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GE

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WN

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EN

Line

Filt

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P30

1(B

LK)

Page 96: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

93

11

1-3. 1-way Air Discharge Cassette Type (Compact type)Model: MMU-AP0071YH, AP0091YH, AP0121YH

CN

104

(YE

L)

CN

102

(RE

D)

CN

101

(BLK

)

54

32

15

43

21

98

76

98

76

FAN

CN

083(

WH

I)

DP

(BLU

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CN

304

(GR

Y)

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ter

CN

301

(BLK

)

CN

066

(WH

I)

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I

RE

D

BLU

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CN

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)

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oo

r co

ntr

ol P

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oar

d

1 21 2

TA

TC

J

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CN

100

(BR

W)

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N)

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CT

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073

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D)

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HI)

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081

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060

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I)

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ion

CN

032

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I)C

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5(W

HI)

CN

074

(WH

I)

TR

1 2 1 2 3 4 5

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3

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1

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12

34

56

12

31

23

13

12

12

12

31

23

12

31

23

12

31

23

45

6

CN

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(WH

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LU)

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(BLU

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12

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HI)

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LU)

Net

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r (O

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12

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1

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C-1

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007

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005

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ase

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001

RY

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RY

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door

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p se

nsor

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p se

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p m

otor

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trol

rel

ayD

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p co

ntro

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r co

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alve

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RN

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12

31

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LU)

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31

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31

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cent

ral c

ontr

ol

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inal

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Fus

eT

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(YE

L)

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1 2 3

1 2 3

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21

21

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PM

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1 23 4

3 45 6

5 6

FM

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ORN

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RED

HM

LU

L

RC

1.

i

ndic

ates

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term

inal

blo

ck, t

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tter

insi

de

indi

cate

s th

e te

rmin

al n

umbe

r.

2.A

dot

ted

line

and

brok

en li

ne in

dica

te th

e w

iring

on

site

.

3.

in

dica

tes

the

cont

rol P

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oard

.

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sed

end

conn

ecto

r

12

34

56

12

34

56

12

34

56

12

34

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CN

01(W

HI)

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EL)

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rdM

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lor

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icat

ion

RE

D: R

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WH

I: W

HIT

EY

EL

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LLO

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LUE

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: BLA

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GR

Y: G

RA

YP

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GE

BR

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RO

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EN

Line

Filt

er

Flo

w s

elec

tor

unit

eart

h sc

rew

Page 97: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

94

11

Model: MMU-AP0151SH, AP0181SH, AP0241SH

FM

RC

TR

LM TA TC

1,T

C2,

TC

JR

Y00

1R

Y00

2R

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5~00

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ng c

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mer

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r m

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ayD

rain

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n m

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in p

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mot

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Sym

bo

lP

arts

nam

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lor

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ion

RE

D: R

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I: W

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EL

: YE

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LUE

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: BLA

CK

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Y: G

RA

YP

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KO

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GE

BR

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EN

1.

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cate

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lette

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side

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r.2.

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otte

d lin

e an

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line

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cate

s

the

wiri

ng o

n si

te.

3.

I

ndic

ates

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cont

rol p

.c. b

oard

.

53

17 7

9 95

31

RY

007

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1

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004

(GR

Y)

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304

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L)C

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9

(BLK

)

BLK

CN

067

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SE

T5.

0A 2

50V

~

RY

006

RY

005

H

RE

DB

LKO

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YE

L

ML

UL

31

31

31

31

31

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FM

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CN

104

(YE

L)

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CN

102

(RE

D)

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CN

101

(BLK

)

CN

100

(BR

W)

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080

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N)

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L

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CT

21

CN

073

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12

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12

34

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12

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56

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CN

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)

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door

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r

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60H

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r

Line

Filt

er

CN

01(W

HI)

CN

03(R

ED

)

CN

02(B

LU)

CN

041

(BLU

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HI)

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HI)

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TIO

N

CN

060

(WH

I)

EM

G

BLU

BLU

BLK

BLK

RC

TR

U1

U1

U2U

2A

B

Net

wo

rk A

dap

ter

(Op

tio

n)

Co

ntr

ol P

.C. b

oar

dfo

r In

do

or

un

itM

CC

-140

3

MC

C-1

401

1122

CN

1

1133

CN

074

(WH

I)

CN

075

(WH

I)

Pow

er s

uppl

yci

rcui

t

TR

1133

CN

068

(BLU

)

FAN

CN

083

(WH

I)

RY

002

DM

DM

1133

CN

033

(GR

N)

RY

001

LM

CN

082

(BLU

)

PM

V

LM

1133

CN

030

(RE

D)

FS

FS

1122

12

34

56

12

34

56

12

34

56

12

34

56

PM

V31

321

654

654

R(L)

S(N)

12

34

56

12

34

56

12

34

56

12

34

56

CN

01(W

HI)

CN

02(Y

EL)

Sub

P.C

. boa

rdM

CC

-152

0

Flo

w s

elec

tor

unit

eart

h sc

rew

Page 98: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

95

11

1-4. Concealed Duct Standard TypeModel: MMD-AP0071BH, AP0091BH, AP0121BH, AP0151BH, AP0181BH, AP0241BH

MMD-AP0271BH, AP0301BH, AP0361BH, AP0481BH, AP0561BH

CN

104

(YE

L)

CN

102

(RE

D)

CN

101

(BLK

)

12

34

51

23

45

61

23

45

6

64

31

25

64

31

25

31

32

1C

N34

(RE

D)

FS

CN

33(W

HI)

CN

82(B

LU)

DC

20V

CN

68(B

LU)

CN

304

(GR

Y)

CN

66(W

HI)

CN

44(B

RW

)

CN

67(B

LK)

Rea

ctor

PM

V

Ind

oo

r co

ntr

ol P

.C. b

oar

d

1 21 2

TA

1 21 2

TC

J1 2

1 2T

C2

CN

100

(BR

N)

1 21 2

33

CN

80(G

RN

)P

NL

EX

CT

1 2

CN

73(R

ED

)1 2

(Sig

nal o

utpu

t)(F

an d

rive)

CN

70(W

HI)

CN

20(B

LU)

1 23

TC

1

12

34

5

CN

81(B

LK)

CN

60(W

HI)

CN

32(W

HI)

CN

61(Y

EL)

CN

50(W

HI)

Ada

puto

r fo

r w

ired

rem

ote

cont

rolle

r

CN

309

(YE

L)C

N41

(BLU

)C

N40

(BLU

)

T10

12

34

51

21

23

45

61

23

45

12

31

23

12

31

23

12

12

12

3

13

12

2

45

6

12

12

RY

302

1 2 3 1 2 3

1 2 3

1 2 3

1 2

1 2 1 2

3

~+

~–

Fus

eT

6.3A

250V

~

Fus

eT

3.15

A

250V

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C15

VD

C12

VD

C7V

P30

1B

LK

RE

D

WH

I

WH

IW

HI

RE

D

Wire

d re

mot

e co

ntro

ller

12B

A

S(N)

R(L)

U2

12

CN

1(W

HI)

CN

001

(WH

I)

Indo

or u

nit p

ower

sup

ply

Sin

gle

phas

e 22

0-24

0V 5

0Hz

220

V 6

0Hz

Indo

or u

nit

Ear

th s

crew

WH

I

Out

door

uni

t

BLK

WH

IB

LK

BLK

BLUBLU

BLK

BLK

TR

WH

I

U1

U2

U1

DM

Pow

ersu

pply

circ

uit

Mot

or d

rive

circ

uit

CN

01(W

HI)

CN

02(B

LU)

CN

03(R

ED

)

Net

wor

k ad

apto

r (O

ptio

n)1

21

2

12

12

XY

33

22

11

Net

wor

k ad

apto

r P.

C. b

oard

Sym

bo

lF

M TA

TC1,

TC2,

TCJ

DM

FS

RY

302

PM

V

Par

ts n

ame

Fan

mot

or

Indo

or te

mp

sens

or

Indo

or te

mp

sens

or

Dra

in p

ump

mot

or

Flo

at s

witc

h

Dra

in p

ump

cont

rol r

elay

Pul

se M

otor

Val

ve

Co

lor

iden

tifi

cati

on

1.

i

ndic

ates

the

term

inal

blo

ck, t

he le

tter

insi

de

indi

cate

s th

e te

rmin

al n

umbe

r.

2.A

dot

ted

line

and

brok

en li

ne in

dica

te th

e w

iring

on

site

.

3.

in

dica

tes

the

cont

rol P

.C. b

oard

.

RE

D: R

ED

WH

I: W

HIT

EY

EL

: YE

LLO

WB

LU: B

LUE

BR

W: B

RO

WN

BLK

: BLA

CK

GR

Y: G

RA

YP

NK

: PIN

KO

RN

: OR

AN

GE

GR

N: G

RE

EN

Clo

sed

end

conn

ecto

r

CN

333

(WH

I)

CN

334

(WH

I)1122

344

551

35

13

12

31

23

5

11

5 45 4

FM

Flo

w s

elec

tor

unit

eart

h sc

rew

Page 99: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

96

11

1-5. Concealed Duct High Static Pressure TypeModel: MMD-AP0181H, AP0241H, AP0271H, AP0361H, AP0481H

TC

1T

C2

CN

080

(GR

N)

CN

101

(BLK

)

CN

073

(RE

D)

CN

070

(WH

I)

42

54

32

19

87

69

87

6FA

NC

N08

3(W

HI)

DP

(BLU

)C

N06

8

DP

CN

304

(GR

Y)

CN

066

(WH

I)

CN

067

(BLK

)

(BLK

)P

NL

EX

CT

1 2 1 2

Filt

er

CN

082

(BLU

)

CN

060

(WH

I)

Opt

ion

CN

032

(WH

I)C

N07

5(W

HI)

CN

074

(WH

I)

TRT10

1 2 6 5 4 3 2 1

6 5 4 3 2 1

5 2 1 3 4 6

5 2 1 3 4 6

CN

081

(BLK

)

1 2 3 4 53

12

34

56

CN

061

(YE

L)

Fan

driv

e

12

34

56

12

34

56

12

31

23

13

12

12

12

12

31

23

12

31

23

45

6

CN

050

(WH

I)C

N04

1(B

LU)

CN

040

(BLU

)C

N04

4(B

RW

)

12

12

34

5

RY

004

P30

1

1 2 3 1 2

RY

002

RY

006

RY

007

RY

005

12B

A

S(N)

R(L)

U2

12

Rem

ote

cont

rolle

r

CN

1(W

HI)

Pow

er s

uppl

yS

ingl

e ph

ase

220-

240V

50H

z

2

20V

60H

z

Indo

or u

nit

Ear

th s

crew

Out

door

uni

tU1

U2

U1

Pow

ersu

pply

circ

uit

Sym

bo

lF

M

RC

TR

TA

TC1,

TC2,

TCJ

RY

005~

007

RY

001

RY

002

PM

V

F

43F

1

DM

FS

Par

ts n

ame

Fan

mot

or

Run

ning

cap

acito

r

Tra

nsfo

rmer

Indo

or te

mp

sens

or

Tem

p se

nsor

Fan

mot

or c

ontr

ol r

elay

Fla

p m

otor

con

trol

rel

ay

Dra

in c

ontr

ol r

elay

Pul

se M

otor

Val

ve

Fus

e

Fan

mot

or c

ontr

ol r

elay

Dra

in p

ump

mot

or

Flo

at s

witc

h

Sol

dse

para

tely

LM(G

RN

)C

N03

31

23

12

3C

N10

0(B

RN

)1

23

12

31

23

12

31

21

2

TC

J

CN

102

(RE

D)

12

12

TA

CN

104

(YE

L)F

SC

N03

0(R

ED

)

12

12

RY

001

TR

OC

EM

GR

C

Fus

eT

5.0A

T10

A,2

50V

~1 2 3

1 2 3

CN

309

(YE

L)

1 2 3

1 2 3

RE

DW

HI

HM

LU

L

1.

i

ndic

ates

the

term

inal

blo

ck, t

he le

tter

insi

de in

dica

tes

the

term

inal

num

ber.

2.A

dot

ted

line

and

brok

en li

ne in

dica

te th

e w

iring

on

site

.3.

indi

cate

s th

e co

ntro

l P.C

. boa

rd.

4.W

hen

fittin

g a

drai

n pu

mp,

Rem

ove

CN

030

conn

ecto

r, a

nd c

onne

ct fl

oat s

witc

h.5.

A p

art i

s co

nnec

ted

to th

e te

rmin

al b

lock

. W

hen

a ch

ange

is r

equi

red

due

to th

e ou

tsid

e st

atic

pre

ssur

e at

site

, ch

eck

the

term

inal

No.

and

lead

col

our

of th

e fa

n m

otor

in th

e be

low

dia

gram

, an

d th

en c

hang

e th

e le

ad w

ire a

s in

dica

ted

by th

e ar

row

mar

k (

),6.

Pay

atte

ntio

n w

hen

chan

ging

sta

tic p

ress

ure

beca

use

the

outs

ide

stat

ic p

ress

ure

of

H ta

p in

50

or 6

0Hz.

PM

V

(Opt

ion)

CN

01(W

HI)

CN

02(B

LU)

WH

I

WHIREDGRY

WHIRED

BLU

ORN

BLK

BRN

GRY

YE

LRE

DRE

DR

ED

F

RE

D

WH

I

43F

1

6 4

CN

03(R

ED

)

MC

C-1

401

Net

wor

k ad

apto

r (O

ptio

n)

12

12

12

12

XY

33 2

11

43F

1

Spa

rkki

ller

87

43F

1

5 3

12

34

12

34

F1F2

F3F4

RC

FM

WH

I

BLK

BLU

OR

NB

RN

GR

YR

ED

49F

Ind

oo

r co

ntr

ol P

.C. b

oar

d

Clo

sed

end

conn

ecto

r

Clo

sed

end

conn

ecto

r

Wire

d fo

r M

MD

-AP

0481

onl

y(B

RN

Wire

)

Mot

or o

ver

heat

ing

prot

ectio

n sw

itch

Co

lor

ind

icat

ion

RE

D: R

ED

WH

I: W

HIT

EY

EL

: YE

LLO

WB

LU: B

LUE

BLK

: BLA

CK

GR

Y: G

RA

YP

NK

: PIN

KO

RN

: OR

AN

GE

BR

W: B

RO

WN

GR

N: G

RE

EN

12

34

56

12

34

56

12

34

56

12

34

56

CN

01(W

HI)

CN

02(Y

EL)

Sub

P.C

. boa

rdM

CC

-152

0F

low

sel

ecto

r un

it ea

rth

scre

w

Page 100: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

97

11

Model: MMD-AP0721H, AP0961H

FM

RC

TR

TA TC

1,T

C2,

TC

3R

Y00

5~00

7R

Y00

1R

Y00

2P

MV

F1~

343

F1,

43F

2D

MF

S

Fan

mot

orR

unni

ng c

apac

itor

Tran

sfor

mer

Indo

or te

mp

sens

orTe

mp

sens

orFa

n m

otor

con

trol

rel

ayLo

uver

con

trol

rel

ayD

rain

con

trol

rel

ayP

ulse

mot

or v

alve

Fus

e fo

r fa

n m

otor

Fan

mot

or c

ontr

ol r

elay

Dra

in p

ump

mot

orF

loat

sw

itch

Sol

d se

para

tely

Sym

bo

lP

arts

nam

e

1.

Indi

cate

s th

e te

rmin

al b

oloc

k,

Let

ter

on th

e in

side

indi

cate

s th

e te

rmin

al n

umbe

r.

2. A

dot

ted

line

and

brok

en li

ne in

dica

te

th

e w

iring

on

site

.3.

Ind

icat

es th

e co

ntro

l.4.

Whe

n fit

ting

a dr

ain

pum

p re

mov

e C

N03

0 co

nnec

tor

and

conn

ect f

loat

sw

itch.

5.

Pos

ition

is c

onne

cted

to th

e te

rmin

al b

lock

whe

n th

ere

is a

cha

nge

to

s

tatic

pre

ssur

e. C

hang

e th

e le

ad w

ire o

f arr

ow

pos

ition

afte

r ch

ecki

ngth

e te

rmin

al n

umbe

r as

figu

re

a

nd th

e le

ad w

ire's

col

our

on th

e fa

n m

otor

.6.

Whe

n se

tting

to th

e hi

gh ta

p, ta

ke c

are

as s

tatic

pre

ssur

es a

re

diff

eren

t at 5

0Hz

and

60H

z.

CN

080

(GR

N)

PN

L

EX

CT

2 31 2 23 34 45 561 12

22

33

34

44

55

56

66

1

11

CN

073

(RE

D)

21

FIL

TE

RC

N07

0(W

HI)

CN

081

(BLK

)

CN

082

(BLU

)

21

112

33

CN

100

(BR

W)

1122

CN

101

(BLK

)C

N03

0(R

ED

)

TC

1T

C2

1122

CN

102

(RE

D)

TC

J

1122

CN

104

(YE

L)

TA

PM

V

1133

FS

53

17 7

9 95

31

RY

007

P30

1(B

LK)

RE

DR

ED

Spa

rk K

iller

WHI

WHI

RE

D

YE

L

BLK

WH

IG

RY

RE

D

BLU

OR

N

RY

004

(GR

Y)

CN

304

(YE

L)C

N30

9

FU

SE

T5.

0A 2

50V

~

RY

006

RY

005

HM

LU

L

31

31

31

31

31

6

8

7

21

1122

12

1122

112

XY2

32

113

112

331

23

45

12

34

56

12

12

34

56

12

34

56

12

34

56

CN

066

(WH

I)

CN

067

(BLK

)

AC

INR

ED

WH

I

CN

044

(BR

W)

EM

G

Rem

ote

Con

trol

ler

Pow

er s

uppl

ysi

ngle

pha

se22

0-24

0V 5

0Hz

220V

60H

z

Indo

or u

nit

eart

h sc

rew

Clo

sed-

end

conn

ecto

r

Clo

sed-

end

conn

ecto

r

Line

Filt

er

WH

I

RE

D

RE

D

WH

I

RED

WHI

WHI

CN

01(W

HI)

CN

03(R

ED

)

CN

02(B

LU)

CN

040

(BLU

)C

N04

1(B

LU)

CN

050

(WH

I)C

N06

1(Y

EL)

CN

032

(WH

I)

FAN

DR

IVE

OP

TIO

N

CN

060

(WH

I)

BLU

BLU

BLK

BLK

RC

CO

TR

U1

U2

AB

Net

wo

rk A

dap

ter

(Op

tio

n)

Co

ntr

ol P

.C. b

oar

dfo

r In

do

or

un

itM

CC

-140

3

MC

C-1

401

1122

CN

1

1133

CN

074

(WH

I)

CN

075

(WH

I)

Pow

er s

uppl

yci

rcui

t

TR

DP

CN

068

(BLU

)

LMC

N03

3(G

RN

)

FAN

CN

083

(WH

I)

RY00

2

13

RY00

1

R(L)

S(N)

1133

DM

(Opt

ion)

43F2

43F1

49F

F1

T10

.0A

, 250

V~

T10

.0A

, 250

V~

T10

.0A

, 250

V~

RE

D

F2

RE

D

F3

RE

D

7 8

5 343

F1

7 8

5 343

F2

FAN

3

4P(R

ED

)

RCO

RW

RE

D

RE

D

OR

W

OR

W

YEL

YEL

WHIREDGRY

WHIREDGRY

BLU

ORN

12

34

12

34

FM3

F1

F2

F3

F4

6 443

F2

FAN

2

4P(B

LU)

RC

YEL

WHIREDGRY

WHIREDGRY

BLU

ORN

12

34

12

34

FM2

F1

F2

F3

F4

6 443

F1

FAN

1

4P(W

HI)

RC

YEL

WHIREDGRY

WHIREDGRY

BLU

ORN

12

34

12

34

FM1

F1

F2

F3

F4

5

Mot

or o

ver

heat

ing

prot

ectio

n sw

itch

Fan

mot

or in

side

wiri

ng d

iagr

am

Co

lor

ind

icat

ion

RE

D: R

ED

WH

I: W

HIT

EY

EL

: YE

LLO

WB

LU: B

LUE

BLK

: BLA

CK

GR

Y: G

RA

YP

NK

: PIN

KO

RN

: OR

AN

GE

BR

W: B

RO

WN

GR

N: G

RE

EN

A

U1

U2

Out

door

uni

t

F1

F2

F3

Term

inal

No

.Y

EL

BLU

OR

N

Fan

mo

tor

wir

ing

69(7

)13

7(14

)19

6(20

)

Sta

tic

pre

ssu

reP

a (m

mA

g)

Set

ting

from

fact

ory

No

te

12

34

56

12

34

56

12

34

56

12

34

56

CN

01(Y

EL)

CN

02(Y

EL)

Sub

P.C

. boa

rdM

CC

-152

0

S.K

S.K

Page 101: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

98

11

1-6. Under Ceiling TypeModel: MMC-AP0151H, AP0181H, AP0241H, AP0271H, AP0361H, AP0481H

CN

104

(YE

L)

CN

102

(RE

D)

CN

101

(BLK

)

12

34

51

23

45

12

34

51

1 1

2

2 2

33 3

4

4 4

5

5 5 6 6

6 6

12

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D)

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CN

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HI)

CN

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LU)

54

15

43

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334

(WH

I)

DC

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I)C

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(BLU

)

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(GR

Y)

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66(W

HI)

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67(B

LK)

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oo

r co

ntr

ol P

.C. b

oar

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TA

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RN

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e

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34

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CN

60(W

HI)

CN

32(W

HI)

CN

61(Y

EL)

CN

50(W

HI)

Adp

ter

for

wire

less

rem

ote

cont

rolle

r

CN

309

(YE

L)

CN

41(B

LU)

T10

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12

34

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LK)

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LU)

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12

12

RY

302

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1 2 3

1 2 3

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1 21 2

1 21

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303

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~–

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eT

3.15

A

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DC

12V

DC

7V

P30

1B

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D WH

I Clo

sed

end

term

inal

RED

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Wire

d re

mot

e co

ntro

ller

Out

door

uni

t1

2BA

U2

U1

U2

U1

12

CN

1(W

HI)

CN

001

(WH

I)

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or u

nit

Ear

th s

crew

WH

IB

LKB

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HI

BLK

TR

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I

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BLK

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FM

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ersu

pply

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uit

Mot

or d

rive

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uit

CN

01(W

HI)

CN

02(B

LU)

CN

03(R

ED

)

Net

wor

k ad

apto

r (O

ptio

n)1

21

2

12

12

XY

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22

11

Net

wor

k ad

apto

r P.

C. b

oard

Co

lor

iden

tifi

cati

on

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i

ndic

ates

the

term

inal

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ck, t

he le

tter

insi

de

indi

cate

s th

e te

rmin

al n

umbe

r.

2.A

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ted

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and

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en li

ne in

dica

te th

e w

iring

on

site

.

3.

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ates

the

cont

rol P

.C. b

oard

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D: R

ED

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I: W

HIT

EY

EL

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LLO

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LU: B

LUE

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W: B

RO

WN

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RA

YP

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KO

RN

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AN

GE

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N: G

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EN

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Pow

er s

uppl

ysi

ngle

pha

se20

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0Hz

200

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0Hz

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bo

lF

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CJ

LM

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302

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ts n

ame

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mot

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or te

mp

sens

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p se

nsor

Louv

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in c

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ol r

elay

Dra

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ump

mot

or

Flo

at s

witc

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old

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rate

ly

PM

V

Flo

w s

elec

tor

unit

eart

h sc

rew

CN

100

(BR

W)

1 21 2

33

TC

1

Page 102: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

99

11

1-7. High Wall Type (1 series)Model: MMK-AP0071H, AP0091H, AP0121H, AP0151H, AP0181H, AP0241H

FM

TA TC

1,T

C2,

TC

JP

MV

LM RY

303

Fan

mot

orIn

door

tem

p se

nsor

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p se

nsor

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se m

otor

val

veLo

ver

mot

orLo

uver

con

trol

rel

ay

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bo

lP

arts

nam

e

Co

lor

ind

icat

ion

RE

D: R

ED

WH

I: W

HIT

EY

EL

: YE

LLO

WB

LU: B

LUE

BLK

: BLA

CK

GR

Y: G

RA

YP

NK

: PIN

KO

RN

: OR

AN

GE

BR

W: B

RO

WN

GR

N: G

RE

EN

1.

Indi

cate

s th

e te

rmin

al b

oloc

k.

the

lette

r in

side

indi

cate

s th

e te

rmin

al n

umbe

r.2.

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otte

d lin

e an

d br

oken

line

indi

cate

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wiri

ng o

n si

de.

3.

i

ndic

ates

the

cont

rol p

.c. b

oard

.

CN

080

(GR

N)

EX

CT

2 31

CN

68(B

LU)

31

CN

304

(GR

Y)31

31

CN

67(B

LK)

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66(W

HI)31 21

31

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103

(GR

N)

21

CN

73(R

ED

)21

CN

70(W

HI)

21

112

31

23

45

3

CN

100

(BR

W)

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101

(BLK

)C

N34

(RE

D)

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33(W

HI)

12

34

5

CN

20(B

LU)

12

34

5

CN

81(B

LK)

12

34

56

CN

60(W

HI)

12

34

56

CN

61(Y

EL)

12

31

31

31

21

21

23

13

45

CN

50(W

HI)

CN

41(B

LU)

CN

40(B

LU)

GR

Y

BLU

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BLK

BLK

BLK

WH

I

GR

Y

CN

309

(YE

L)O

ptio

n

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CN

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HI)

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rive

CN

82(B

LU)

Mot

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rive

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uit

CN

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HI)

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1122

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HI)

CN

03(R

ED

)

CN

02(B

LU)

TR

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Net

wo

rk A

dap

ter

(Op

tio

n)

MC

C-1

401

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U2

U1

U2

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XY

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1(W

HI)

WH

IB

LK

Wire

d re

mot

eco

ntro

ller

Out

door

unit

1122

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001

(WH

I)

WH

IB

LK

Ada

pter

for

wire

less

rem

ote

cont

rolle

r

Pow

er s

uppl

ysi

ngle

pha

se22

0-24

0V 5

0Hz

220V

60H

z

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or u

nit

Ear

th s

crew

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sed-

end

conn

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r

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D

WH

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R(L)

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SE

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Pow

ersu

pply

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uit

DC

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DC

15V

DC

12V

DC

7V

Co

ntr

ol P

.C. b

oar

dfo

r In

do

or

un

itM

CC

-140

2

Flo

w s

elec

tor

unit

eart

h sc

rewR

ED

WH

I

Page 103: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

100

11

1-7. High Wall Type (2 series)Model: MMK-AP0072H, AP0092H, AP0122H

1.

The

lette

r at

insi

de in

dica

tes

the

term

inal

num

ber.

2. A

dot

ted

line

and

brok

en li

ne in

dica

tes

the

wiri

ng o

n si

te.

3.

in

dica

tes

the

cont

rol P

.C.b

oard

.

Page 104: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

101

11

1-8. Floor Standing Cabinet TypeModel: MML-AP0071H, AP0091H, AP0121H, AP0151H, AP0181H, AP0241H

FM

RC

TR

TA TC

1,T

C2,

TC

JR

Y00

1R

Y00

2R

Y00

4R

Y00

5~00

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MV

Fan

mot

orR

unni

ng c

apac

itor

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sfor

mer

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or te

mp

sens

orTe

mp

sens

orLo

uver

con

trol

rel

ayD

rain

con

trol

rel

ayH

eate

r co

ntro

l rel

ayFa

n m

otor

con

trol

rel

ayP

ulse

mot

or v

alve

Sym

bo

lP

arts

nam

eCo

lor

ind

icat

ion

RE

D: R

ED

WH

I: W

HIT

EY

EL

: YE

LLO

WB

LU: B

LUE

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: BLA

CK

GR

Y: G

RA

YP

NK

: PIN

KO

RN

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AN

GE

BR

W: B

RO

WN

GR

N: G

RE

EN

1.

Indi

cate

s th

e te

rmin

al b

oloc

k.

The

lette

r in

side

indi

cate

s th

e te

rmin

al n

umbe

r.2.

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otte

d lin

e an

d br

oken

line

indi

cate

the

wiri

ng o

n si

te.

3.

i

ndic

ates

the

cont

rol p

.c. b

oard

.

53

17 7

9 95

31

RY

007

P30

1(B

LK)

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004

(GR

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304

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L)C

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(YE

L)

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D)

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(BLK

)

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CT

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45

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34

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34

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34

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r

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ngle

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r

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er

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D

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I

CN

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HI)

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ED

)

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LU)

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041

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HI)

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061

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IVE

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ter

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itM

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C-1

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I)

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er s

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t

TR

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ED

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34

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12

34

56

12

34

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12

34

56

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654

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HI)

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EL)

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P.C

. boa

rdM

CC

-152

0F

low

sel

ecto

r un

it ea

rth

scre

w

Page 105: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

102

11

1-9. Floor Standing Concealed TypeModel: MML-AP0071BH, AP0091BH, AP0121BH, AP0151BH, AP0181BH, AP0241BH

GR

N

1.

Indi

cate

s th

e te

rmin

al b

oloc

k.

The

lette

r in

side

indi

cate

s th

e te

rmin

al n

umbe

r.2.

A d

otte

d lin

e an

d br

oken

line

indi

cate

the

wiri

ng o

n si

te.

3.

i

ndic

ates

the

cont

rol p

.c. b

oard

.

53

17 7

9 95

31

RY

007

R30

1(B

LK)

RY

004

(GR

Y)

CN

304

(YE

L)C

N30

9

(BLK

)C

N06

7

FU

SE

T5.

0A 2

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~

RY

006

RY

005

H

RE

DB

LKO

RN

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YE

L

ML

UL

31

31

31

31

31

RC

WHI

1 3

1 3

CN

104

(YE

L)

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CN

102

(RE

D)

TC

J

2121

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101

(BLK

)

CN

100

(BR

W)

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CN

080

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N)

TC

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PN

L

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CT

21

CN

073

(RE

D)

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FIL

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HI)

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21

1122

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1122

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32

11

11

3

112

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23

45

12

34

56

12

12

34

56

12

34

56

12

34

56

12

34

56

12

34

56

12

34

56

12

34

56

21 43 5

2

2

1

TC

1

AC

IN

CN

044

(BR

W)

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HI) C

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LU)

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door

uni

t Rem

ote

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trol

ler

Pow

er s

uppl

ysi

ngle

pha

se22

0-24

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0Hz

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60H

z

Indo

or u

nit

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rew

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sed-

end

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ecto

r

CN

01(W

HI)

CN

03(R

ED

)

CN

02(B

LU)

CN

03(R

ED

)

CN

041

(BLU

)C

N05

0(W

HI)

CN

061

(YE

L)C

N03

2(W

HI)

FAN

DR

IVE

OP

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N

CN

060

(WH

I)

EM

G

TR

RE

D

RED

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I

U1

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Net

wo

rk

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ter

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n)

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ntr

ol P

.C. b

oar

dfo

r u

nd

oo

r u

nit

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C-1

403

MC

C-1

401

For

AP

0071

BH

,AP

0091

BH

,AP

0121

BH

1122

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1

1133

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074

(WH

I)

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(WH

I)

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er s

uppl

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t

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(BLU

)

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CN

083

(WH

I)

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002

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RN

)

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001

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(BLU

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ED

)

PM

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23

45

61

23

45

6

12

34

56

12

34

56

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V

RE

D

4242

365

365

R(L)

S(N)

FM

GR

N

53

17 7

9 95

31

RE

DB

LKO

RN

BLU

YE

LFA

NC

N08

3(W

HI)

RE

DW

HI

231

231

654

654

RC

FM

FM

RC

TR

TA TC

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C2,

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Y00

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5~00

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MV

Fan

mot

orR

unni

ng c

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itor

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sfor

mer

Indo

or te

mp

sens

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mp

sens

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trol

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rain

con

trol

rel

ayH

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r co

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l rel

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n m

otor

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mot

or v

alve

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arts

nam

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olo

r in

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atio

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DW

HI

: WH

ITE

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: BLU

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RA

NG

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HI)

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EL)

Sub

P.C

. boa

rdM

CC

-152

0

Flo

w s

elec

tor

unit

eart

h sc

rew

Page 106: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

103

11

1-10. Floor Standing TypeModel: MMF-AP0151H, AP0181H, AP0241H, AP0271H, AP0361H, AP0481H, AP0561H

FM

RC

TR

LM TA TC

1,T

C2,

TC

JR

Y00

1R

Y00

2R

Y00

5~00

7P

MV

Fan

mot

orR

unni

ng c

apac

itor

Tran

sfor

mer

Love

r m

otor

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or te

mp

sens

orTe

mp

sens

orLo

uver

con

trol

rel

ayD

rain

con

trol

rel

ayFa

n m

otor

con

trol

rel

ayP

ulse

mot

or v

alve

Sym

bo

lP

arts

nam

eCo

lor

ind

icat

ion

RE

D: R

ED

WH

I: W

HIT

EY

EL

: YE

LLO

WB

LU: B

LUE

BLK

: BLA

CK

GR

Y: G

RA

YP

NK

: PIN

KO

RN

: OR

AN

GE

BR

W: B

RO

WN

GR

N: G

RE

EN

1.

Indi

cate

s th

e te

rmin

al b

oloc

k.

The

lette

r in

side

indi

cate

s th

e te

rmin

al n

umbe

r.2.

A d

otte

d lin

e an

d br

oken

line

indi

cate

the

wiri

ng o

n si

te3.

ind

icat

es th

e co

ntro

l p.c

. boa

rd.

53

17 7

9 95

31

RY

007

P30

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Page 107: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

104

11

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Page 108: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

105

11

3. FS Unit (Flow Selector Unit)Model: RBM-Y1122FE, Y1802FE

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Model: RBM-Y2802FE

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Connection Cable(Control Wiring)

Indoor UnitEarth Screw

Page 109: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

106

Page 110: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

107

12

Controls

Page 111: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

108

Page 112: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

109

12 ForewordControls

12

Outline of application Control

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F b

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TC

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CD

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• E

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Inte

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TC

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110

Indoorunit

Remotecontroller

Possible up to Max.total length 500m

Main remote controller

Indoorunit

Indoorunit

Indoorunit

Indoorunit

Remotecontroller

Max.8 indoor units

Possible up to Max.total length 500m

Indoorunit

WirelessRemote

controller

Receiver unit

Wireless remote controller

Indoorunit

Remotecontroller

Master Master

Possible up to Max.total length 500m

Wired & Wirelesscombination control(Either one of the two controllers can be set as side control).

Wired system Wireless system

Remotecontroller

Side

Indoorunit

Remotecontroller

Weekly timer

Indoorunit

Remotecontroller

Indoorunit

Wirelessremote

controller 1

Side

Wirelessremote

controller 2

Wirelessremote

controller

Weekly timer function• Setting of ON-OFF 3 times par day• Timer operation time is displayed.• Holiday period

(((

(((

( ( (( ( (

12

1. Applications for indoor remote controller

1-1

Basic function System diagram Model

1-2

1-3

1-4

GROUP controlOne remote controllercan control a group ofup to a maximum. 8indoor units.Operatingon the same setting

Two remote controlAir conditioner iscontrolled by tworemote controllers intwo locations.

Control byweekly timer

Weekly scheduleoperation

Individual controlAir conditioner isindividually operatedat a distance.

Wired remote controllerRBC-AMT21ERBC-AMT31E

Simple remote controllerRBC-AS21E2

Wired remote controllerRBC-AMT21ERBC-AMT31E

Simple remote controllerRBC-AS21E2

Wireless remote controllerkitTCB-AX21U(W)-E2RBC-AX22CE2TCB-AX21E2

Wired remote controllerRBC-AMT21ERBC-AMT31E

Simple remote controllerRBC-AS21E2

Wireless remote controllerkitTCB-AX21U(W)-E2RBC-AX22CE2TCB-AX21E2

Wired remote controllerRBC-AMT21ERBC-AMT31E

+Weekly timerRBC-EXW21E2

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111

12

2. Application controls for central remote controller

Basic function System diagram Model

2-1

2-2

Central managementcontroller for 64 units

Central remotecontroller +Weekly timer

Weekly operationschedulecan be set byconnecting a weeklytimer to the centralremote controller

Central remote controllerTCB-SC642TLE2

Indoor remote controller

Wired remote controllerRBC-AMT21ERBC-AMT31E

Simple remote controllerRBC-AS21E2Function of central remote controller

Individual control for up to 64 indoor units.Individual control for max. 64 indoor units divided in to4 zones. (Up to 16 indoor units for each zone.)Up to 16 outdoor header units are connectable.4 specific central control settings to restrict individualoperation by remote controller are selectable.Different settings for one of 1 to 4 zones.Usable with other central control devices(Up to 10 central control devices in one control circuit)Two selectable control modesCentral controller mode/Remote controller modeSetting of simultaneous ON/OFF 3 times per daywhen a controller is combined with using a weeklytimer.

Outdoor unitSuper MMS

Indoor unitLine-3

U3, U4

U5, U6

U1, U2

Single phase 220/230/240V

Powersupply

Central remote controller

Outdoor unit

Outdoor unit

Indoor unit

Indoor unit

Indoor remote controller

Indoor remote controller

Indoor remote controller

Line-2

Line-1

U3, U4

U3, U4

Zone4

Zone3

Zone2

Zone1

U5, U6

U1, U2

Header unit

Header unit

U1, U2

Header unit

FS unit

Super MMS

Super HRM

FS unit

Outdoor unitU3, U4

U1, U2

Indoor remote controller

Indoor unit

Weekly timer

Central remote controller

Power supply

Single phase 220/230/240V

Central remote controllerTCB-SC642TLE2 +Weekly timerRBC-EXW21E2

Indoor remote controller

Wired remote controllerRBC-AMT21ERBC-AMT31E orSimple remote controllerRBC-AS21E2

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112

12

Basic function System diagram Model

2-3

2-4

Central remotecontroller withoutindoor remotecontroller

Central remote controllerTCB-SC642TLE2TCB-SC163TLE2

“1 : 1 model” connectioninterfaceTCB-PCNT30TLE2

RAV-SM560KRT-E,SM800KRT-E are notcompatible to connect

Indoor remote controller

Wired remote controllerRBC-AMT21ERBC-AMT31E

Simple remote controllerRBC-AS21E2

Central remote controllerTCB-SC642TLE2

Indoor remote controllerWired remote controllerRBC-AMT21ERBC-AMT31E

* TOSHIBA Digital Inverter System and Super Digital Inverter System

Central manage-ment control with“1 : 1 model”

Outdoor unit

Single phase 220/230/240V

Powersupply

U3, U4

U1, U2

U3, U4

U1, U2

U1, U2

U3, U4

Single phase 220/230/240V

Powersupply

Single phase 220/230/240V

Powersupply

Outdoor unit

Available

Available

Central remote controller

Indoor unit

Central remote controller

Indoor remote controller is required

Outdoor unit

Central remote controller

(Group)

(Group)

Even when grouping operation is performedby connecting multiple indoor units to 1 line,the indoor remote controller is required.

Example of grouping operation

FS unit

FS unit

FS unit

Super HRM * 1

Powersupply

Headerunit

U1, U2

U3, U4

Central remote controller

Indoor remote controller

Indoor unit

"1:1 model"connection interface

FS unit

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113

BACnet serverBMS-LSV2E

TCS-Net Relay InterfaceBMS-IFLSV1E

“1 : 1 model” connectioninterfaceTCB-PCNT30TLE2

RAV-SM560KRT-E,SM800KRT-E are notcompatible to connect.

Indoor remote controllerWired remote controllerRBC-AMT21ERBC-AMT31E

Simple remote controllerRBC-AS21E2

12

3. Application control for network

Basic function System diagram Model

3-1-1

3-1-2

LONWORKS®

(*1)

BACnet®

(*2)

LN interfaceTCB-IFLN640TLE

“1 : 1 model” connectioninterfaceTCB-PCNT30TLE2

RAV-SM560KRT-E,SM800KRT-E are notcompatible to connect

Indoor remote controllerWired remote controllerRBC-AMT21ERBC-AMT31E orSimple remote controllerRBC-AS21E2

*1 TOSHIBA Digital Inverter System and Super Digital Inverter System

The LONWORKS interface should be connectedbetween a building management computer and a SuperHRM / Super MMS system.

Max. 64 indoor units are connectable per interface.

TCB-

Super HRM

LN Interface

Remote controller

LON Center

LON WORKS

* 1

"1:1 model"connection interface

FS unit

TCB-

Super HRM

BAC net server

TCN-NETrelay interface

Remote controller

BAC net center

* 1

"1:1 model"connection interface

FS unit

*1) LONWORKS : Registerd trademark Echelon corporation.*2) BACnetTM: ANSI/ASHRAE 135-1995, A Data Communication Protocol for Building Automation and Control Networks.

*1 TOSHIBA Digital Inverter System and Super Digital Inverter System

The local server should be connected to the BACnetnetwork and the Super HRM and Super MMS systemwill be connected through the interface.

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114

12

Touch screen controller system

System diagram

3-3

Dev

ices

Func

tion

Model NameTouch Screen controller(English version)

Intelligent ServerIntelligent Server SoftwareTCS-Net Relay InterfaceEnergy Monitoring Relay InterfaceDigital I/O Relay Interface(1) Monitoring air-conditioners

(2) Operating of air-conditioners

(3) Schedule operation

(4) Alarm list display

(5) Alarm record display

(6) Monthly report data extraction

(7) Energy monitoring data extraction

Header / individual control can be performed according to a unit.[Operating contents] ON/OFF, Operation setting (operation mode, air volume, louver position, setting temp., restricted setting from remote location)

Air-conditioners are operated according to the set-up schedule / operation pattern.Schedule opretaion can be performed according to a unit. [Operation pattern]Weekly pattern, special day pattern (4 pattern), Non-operation days pattern

The present alarm contents are displayed. [Display contents] Alarm contents, Unit number, Generated time

The alarm history records are displayed. [Display contents] Alarm contents, Unit number, Generated time

Monthly report data is written to "Compact Flash". Monthly reports can be created according toa unit using the monthly report software. [Monthly report contents] The number of ON/OFF, Operating time, Results of energy monitoring

Power consumption data is written to "Compact Flash". Energy monitoring can be performedaccording to a unit using the energy monitoring software. [Energy monitoring data] Power consumption according to the power meter

Touch ScreenController

Maximum 4Intelligent server

Maximum 4 EnergyMonitoring

Relay Interface

Digital I/O Relay Interface

Maximum 4 Digital I/O Relay Interface

[ Power meter ]

Local supply1kWh/pulseor 10kWh/pulse50-1000ms

Intelligent Server SoftwareEthernetconnection

RS-485

Control Maximum 512 indoor units

Maximum 8 Power Meter

Fire alarmDoor Key Entry ON/OFFError code output

Pulse Signal I/F

Intelligent Server

Control wiring

Control wiring

Control wiring

I/F

Max. 64indoor unitsMax. 16Refrigerantsystemsper TCS-NET relayinterface

TCS-Net Relay Interface

Energy Meter Relay Interface

Maximum 8 TCS-NET Relay Interface

Switching HUB

(Local Supply)

PC for Energy

Monitoring

(Local supply)

RS-485

RS-485

RS-485

(Note)Switching HUB (10BASE-T compliant) is requiredwhen using two or more intelligent servers or whenconnecting a PC for energy monitoring and billing.

Maximum 8 digital inputs

Maximum 4 digital outputs

Report Creation

software

(Excel macro)

Max. 32 (8 X 4)power meterper intelligentserver

Max. 32 (8 X 4)digital inputsMax. 16 (4 X 4)digital outputsper intelligentserver

Setup file(record in CF card)

Operation status can be viewed according to a unit. [Unit] All building, All tenants, Each tenant, Each area, Each remote controller group [Monitoring contents] Operation and alarm status, Setting status for each remote controller group

Model Name SpecificationBMS-TP0640ACE Max 64 indoor units , without energy monitoring and billingBMS-TP5120ACE Max 512 indoor units , without energy monitoring and billingBMS-TP0640PWE Max 64 indoor units , with energy monitoring and billingBMS-TP5120PWE Max 512 indoor units , with energy monitoring and billingBMS-LSV2E Server in between Touch Screen controller and RS-485BMS-STCC01E Installed on Intelligent ServerBMS-IFLSV1E Interface between intelligent Server Control wiring(TCC-LINK)BMS-IFWH3E Interface for power meterBMS-IFDD01E Interface for input / output signal

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115

12

3-2-2

Basic function System diagram Model

Windows basedcentral controller(Now planning) Personal computer on site

server

Relay Interface

Remote controller‘‘1:1 model’’connection interface

Energy monitoring relay interface

Digital I/O relay interface

Super MMS * 1

*1 TOSHIBA Digital Inverter System and Super Digital Inverter System

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116

12

4. Application control of optional devices connectable to indoor units

[1] Remote location ON/OFF control box

MonitoringON/OFF status (for indoor unit)Alarm status (system & indoor unit stop)

ON/OFF commandAir conditioner can be turned ON/OFFby external signals.The external ON/OFF signals will initiate the signals shown below.

Function

[2] Network adapterModelName

Appearance Features

TC

B-P

CN

T20

E

Indoor units of Super HRM system arecontroled by AI-NETWORK centralremote controller.Connectable indoor units per group.

Application

Connection of cables

Wiring diagram of indoor P.C. board

Install optional P.C. board in Electrical parts boxof indoor unit.

Display

Operation

Interface

RemoteController

Non-voltageON /OFF continious signal

ON /OFF

COM

Central RemoteControllerTCB-SC641E

PowerSupply AI Network

Indoor unit

Network Adapter

ModelName

Appearance Features

TC

B-I

FCB

-4E

Start and stop of the air conditioner is possibleby a external signal and indication ofoperation/alarm externally.

Application

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117

Indoor units

Super MMS control wiring

1:1 modelconnectioninterface

Outdoor unit

CentTCB-CC163TLE2 ral RemoteControllerTCB-SC642TLE2

Digital InverterSuper Digital Inverter

FS units

12

[3] "1:1 model" connection interfaceModelName

Appearance Features

TC

B-P

CN

T30

TLE

2

Link adapter for "1:1 model" into aVRF system network

1:1 model : Super digital inverterDigital inverter

Application

Connection of cables

Wiring diagram of indoor P.C. board

Install optional P.C. board in electrical parts boxof indoor unit.

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118

12

5. Application controls by optional P.C. board of outdoor unitModelName

Appearance Function

TC

B-P

CD

M2E

[1] Power peak-cut Control

FeatureThe upper limit capacity of the outdoor unit isrestricted based on the power peak cutsignal from outside.

FunctionTwo types of control can be selected by settingSW07 on the interface P.C. board on theoutdoor unit.

Application

Size : 71 x 85

* Install this optionalP.C. board in theinverter assemblyof the outdoor unit.

SW01ONOFF

SW02OFFON

OFF0% (stop)

100% (Nomal)

ONUp to 60%

100% (Normal)

Input

SW01OFFONOFFON

SW02OFFOFFONON

OFF100% (Nomal)

Up to 80%Up to 60%0% (stop)

ON100% (Normal)

Up to 85%Up to 75%Up to 60%

Input SW07-1

[Standard funciton]SW07-2 OFF

SW07-1

[ Expansion function ]SW07-2 ON

Ensure terminal contacts are securely fixed.Do not turn on both SW1 and SW2 terminals simultaneously.

Local Supply

ON

COM

TCB-PCDM2E

OFF

COM

SW1

SW2

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119

ON

OFF ON

OFF

12

ModelName

Appearance Function

TC

B-P

CM

O2E

[2] Snowfall fan control

FeatureOutdoor fan is operated by the snowfall signal from outside.

Function

Application

Size : 55.5 x 60

* Install this optionalP.C. board in theinverter assemblyof the outdoor unit.

SMC : Cooling mode select input (switch)Terminal Input signal Operation

SMC

Snowfall fan control(Operates outdoor fan.)

Usual operation

This control is activated when a input signal increases or decreases.(The increasing or decreasing signal needs to be held for a minimum of100m/sec in order to activate the control)

[3] External master ON/OFF control

FeatureThe outdoor unit starts or stops the system.

Function

SMC : Input signal for startSMH : Input signal for stop

Terminal Input signal Operation

SMC Starts all indoor units.

Stops all indoor units.

Ensure terminal contacts are securely fixed.

This control is activated when the input signal increases or decreases(The increasing or decreasing signal needs to be held for a minimum of100m/sec in order to activate the control.)

SMH

Local Supply

SMC

COM

Cooling

TCB-PCMO2E

Local Supply

SMC

COM

Cooling

TCB-PCMO2E

Heating

SMH

ON

OFFON

OFF

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120

12

ON

OFF ON

OFF

ModelName

Appearance Function

TC

B-P

CM

O2E

[4] Night operation (Sound reduction) control

FeatureSound level can be reduced by restricting the compressor andfan speeds.

Function

Application

Size : 55.5 x 60

* Install this optionalP.C. board in theinverter assemblyof the outdoor unit.

SMC : Cooling mode designated input switchTerminal Input signal Operation

SMC

Night operation control

Usual Operation

This control is activated when the input signal increases or decreases.(The increasing or decreasing signal needs to be held for a minimum of100m/sec in order to activate the control).

[5] Operation mode selection control

FeatureThis control can restrict the selectable operation mode.

Function

SMC : Cooling mode designated input switchSMH : Heating mode designated input switch

ON

OFF

Only cooling modepermitted

Ensure terminal contacts are securely fixed.

OFF

ONOnly heating modepermitted

Local Supply

SMC

COM

Cooling

TCB-PCMO2E

Local Supply

SMC

COM

Cooling

TCB-PCMO1E

Heating

SMH

SMC SMH Selected operation mode

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121

12

ModelName

Appearance Function

TC

B-P

CIN

2E

[6] Error / Operation output control

Application

Size : 73.0 x 79

*Install this optionalP.C. board in to theinverter assemblyof the headeroutdoor unit.

Ensure terminal contacts are securely fixed.Display Relay capacity of "OPERATION" and "EMG"Below AC240V 0.5A(COSφ=100%)When connecting a load such as a relay coil to "L1,L2",insert the noise surge absorber.Below DC24V 1A(Non-inductive load)When connecting a load such as a relay coil to "L1,L2",insert the byass circuit.

I/F P.C. Board* TCB-PCIN2E Local Supply

Power Supply

ConnectionCable

Power Supply

CN511 PJ20DisplayRelay

DisplayRelay

EMG

L1

L2

OPERATION

L1 : Operation monitoring lampL2 : Error monitoring lamp

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122

12

Remote controller

RBC-AMT31E

Wired remote controller

RBC-AMT21E

16120

4

2.7

120

120

62

8418

1612

0

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123

12

RBC-AS21E / RBC-AS21E2

Simple wired remote controller

80 120

6070

13

16

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124124-1

12

Wireless remote controller kit

RBC-AX22CE / RBC-AX22CE2

18658 19.5

61

186

177

32

TCB-AX21U (W)-E / TCB-AX21U (W)-E2

58 19.5130

61

177

65

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125

TCB-AX21E / TCB-AX21E2

Wireless remote controller kit

RBC-EXW21E / RBC-EXW21E2

Weekly timer

13

83.5

83.5

70 4.4 x 5.4 long hole

4.4 x 9.4 long hole

58 19.5

61

177

16120

4

2.7

120

124-2

12

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126

12

124-3

Remote sensor

Contral remote controller

80 120

6070

13

16

TCB-TC21LE / TCB-TC21LE2

TCB-SC642TLE / TCB-SC642TLE211647

15

13

1601486 (6)

121

160

148

6(6

)

121

115

6921

12880

128

80

36

47

13

Z

Z view (back side)

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127

12

TCB-CC163TLE2

ON-OFF controller

125

116

160

1486 (6)

122

160

148

6(6

)

12

1

11

5

6914

128

80

128 80

36 47

13

Unit: mm

Z

4-Ø5 diameter holes(for mounting)

Hole for electrical wiring

4-Ø5.5 diameter holes (for mounting)

Z-view (back side)

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128

12

126

BMS-IFLSV1E

TCS-Net relay interface

BMS-TP0640ACEBMS-TP5120ACEBMS-TP0640PWEBMS-TP5120PWE

Touch screen controller

200

22787822

22787822

66

63.6

146.

9

156

170

6- 5.5 mounting holes

70

25695

.75

91.7

575

75

316249

48

1624

299

.3

82.5 30255.5

3019

54495

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129

12

BMS-LSV2E

Intelligent server

BMS-IFWH3EBMS-IFDD01E

Energy mountoring relay interface/Digital I/O relay interface

370

198

39CAUTION

Do not rem

ove.

WARNINGDo not decompose.

234

1818

(193

)92

.564

.5

1818

53.5

103.

5

63.6

220

246

Grommet forpower input

Grommet forpower meter

Grommet forRS-485

127

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130128

TCB-PCDM2E

TCB-PCMO2E

TCB-PCIN2E

Dimension

85 75

TerminalScrew M3 x 6

TerminalScrew M4 x 8

4-4ø hole

71

61

TerminalScrew M3 x 6

55.5

45.5

60 50

4-4ø hole

6979

6373

4- 4 hole

Terminal (Screw M3 )

12

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129

13

Fan characteristics

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130

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131

200 400 600480

400 600 800650

300 500 700570

500 700 900780

Air

volu

me

limit

(Min

)

Air

volu

me

limit

(Max

)

0

20

40

60

80

100

120

140

long life filter

Air

volu

me

limit

(Min

)

Air

volu

me

limit

(Max

)

0

20

40

60

80

100

120

140

long life filter

Air

volu

me

limit

(Min

)

Air

volu

me

limit

(Max

)

0

20

40

60

80

100

120

140

long life filter

Air

volu

me

limit

(Min

)

Air

volu

me

limit

(Max

)

0

20

40

60

80

100

120

140

long life filter

Applic

ation

limit

Applic

ation

limit

Applicatio

n limit

Application limit

High-static pressure 2H tap

High static pressure 1H tap

Low static pressure H tapStandard L tap

Standard H tap

High static pressure 1H tap

Low static pressure H tapStandard L tap

Standard H tap

High-static pressure 2H tap

High static pressure 1H tap

Low static pressure H tapStandard L tap

Standard H tap

High-static pressure 2H tap

High-static pressure 2H tap

High static pressure 1H tap

Low static pressure H tap

Standard L tap

Standard H tap13

13 ForewordFan characteristics

Concealed Duct Standard type

MMD-AP0121BH

MMD-AP0151BH MMD-AP0181BHStandard air volume:780m3/hStandard air volume:650m3/h

Standard air volume:480m3/h Standard air volume:570m3/h

Air volume(m3/h)

Air volume(m3/h)Air volume(m3/h)

Air volume(m3/h)

Ext

erna

l sta

tic (P

a)

Ext

erna

l sta

tic p

ress

ure

(Pa)

Ext

erna

l sta

tic p

ress

ure

(Pa)

Ext

erna

l sta

tic p

ress

ure

(Pa)

MMD-AP0071BH, AP0091BH

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132

800 1000 12001140

1200 20001620

900 1100 13001260

1400 1800 22001980

Air

volu

me

limit

(Min

)

Air

volu

me

limit

(Max

)

0

20

40

60

80

100

120

140

long life filter

Air

volu

me

limit

(Min

)

Air

volu

me

limit

(Max

)

0

20

40

60

80

100

120

140

long life filter

Air

volu

me

limit

(Min

)

Air

volu

me

limit

(Max

)

0

20

40

60

80

100

120

140

long life filter

Air

volu

me

limit

(Min

)

Air

volu

me

limit

(Max

)

0

20

40

60

80

100

120

140

long life filter

Application limit

Application limit

Application limit

Application limit

High-static pressure 2H tap

High static pressure 1H tap

Low static pressure H tap

Standard L tap

Standard H tap

High-static pressure 2H tap

High static pressure 1H tap

Low static pressure H tap

Standard L tap

Standard H tap

High static pressure 1H tap

Low static pressure H tap

Standard L tap

Standard H tap

High-static pressure 2H tapHigh-static pressure 2H tap

High static pressure 1H tap

Low static pressure H tap

Standard L tap

Standard H tap

MMD-AP0301BH

MMD-AP0361BH MMD-AP0481BH, AP0561BH

Standard air volume:1980m3/hStandard air volume:1620m3/h

Standard air volume:1140m3/h Standard air volume:1260m3/h

Air volume(m3/h)

Air volume(m3/h)Air volume(m3/h)

Air volume(m3/h)

Ext

erna

l sta

tic p

ress

ure

(Pa)

Ext

erna

l sta

tic p

ress

ure

(Pa)

Ext

erna

l sta

tic p

ress

ure

(Pa)

Ext

erna

l sta

tic p

ress

ure

(Pa)

13

MMD-AP0241BH, AP0271BH

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133

Concealed Duct High Static Pressure typeFa

n m

otor

cur

rent

(A

)O

utsi

de s

tatic

pre

ssur

e (P

a)

1.5

1.0

0.5

250

200

150

100

50

700 800 900 1,000 1,1000

Air volume (m3/h)

High static pressure tap

High static pressure tap

Medium static pressure tap

Low static pressure tap

Medium static pressure tap

Low static pressure tap

Air

volu

me

low

er li

mit

Air

volu

me

uppe

r lim

it

50Hz60Hz

Standard air volume: 900 m3/h

Fan

mot

or c

urre

nt (

A)

Out

side

sta

tic p

ress

ure

(Pa)

2.0

1.5

1.0

300

250

200

150

50

100

1,000 1,100 1,200 1,3001,320

1,400 1,500 1,6000

Air volume (m3/h)

High static pressure tap

High static pressure tapMedium static pressure tap

Low static pressure tap

Medium static pressure tap

Low static pressure tap

Air

volu

me

low

er li

mit

Air

volu

me

uppe

r lim

it

50Hz60Hz

Standard air volume: 1,320 m3/h

Fan

mot

or c

urre

nt (

A)

Out

side

sta

tic p

ress

ure

(Pa)

2.5

2.0

1.5

1.0

250

200

150

100

50

1,400 1,500 1,600 1,700 1,8000

Air volume (m3/h)

High static pressure tap

Low static pressure tap

Medium static pressure tap

Low static pressure tap

Air

volu

me

low

er li

mit

Air

volu

me

uppe

r lim

it

Standard air volume: 1,600 m3/h

Fan

mot

or c

urre

nt (

A)

Out

side

sta

tic p

ress

ure

(Pa)

2.0

2.5

3.0

1.5

0.5

250

200

150

50

100

1,500 2,000

2,100

2,5000

Air volume (m3/h)

High static pressure tap

High static pressure tap

Low static pressure tap

Medium static pressure tapLow static pressure tap

Air

volu

me

low

er li

mit

Air

volu

me

uppe

r lim

it50Hz60Hz

Standard air volume: 2,100 m3/h

50Hz60Hz

High static pressure tap

Medium static pressure tapMedium static pressure tap

MMD-AP0241H, AP0271H

MMD-AP0361H MMD-AP0481H

13

MMD-AP0181H

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134

AIR SPEED CHARACTERISTICS Air Speed Distribution

0

3.6m

3

2

1

1 2 3 4 5m

0.7m/s

0.5m/s

0.3m/s

2

0.3m/s

1

2.8m

0 1 2 3 4 5m

0.7m/s

0.5m/s

0.7m/s

0.5m/s

0.3m/s1

2

33.6m

0 1 2 3 4 5m

2

3

0.7m/s

0.5m/s

0.3m/s1

3.6m

0 1 2 3 4 5m

2 0.7m/s

0.5m/s

0.3m/s1

2.8m

0 1 2 3 4 5m

2

3 0.7m/s

0.5m/s

0.3m/s1

3.6m

0 1 2 3 4 5m

0 1 2 3 4 5m

2.7m

1

2

0.3m/s

0.5 m/s

0.7m/s

0 3 4 5m

3.6m

1

2

3

1 2

0.3m/s

0.5m/s

0.7m/s

4-way air discharge cassette type

MMU-AP0091H, AP0121H MMU-AP0151H

MMU-AP0181H MMU-AP0241H, AP0271H

MMU-A0361H

MMU-A0481H

MMU-AP0561H13

MMU-AP0301H

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135

13

Foreword

Air Speed Distribution

2

0

(m)

1 2

0

1

2

2.7

1.0

0.5

0.30.3

1 2 3 4

3m

2.7m

1

1.0

0.5

0.3 0.3

2

0

(m)

1 2 3m

2.7m

1

1.0

0.50.5

0.30.30.3

2

0

(m)

1 2 3m

2.7m

11.0

0.5

0.30.30.3

0

1

2

2.7

1.0

0.5

0.30.3

1 2 3 4

2-way air discharge cassette type

MMU-AP0071WH, AP0091WH, AP0121WH

MMU-AP0241WH, AP0271WH

MMU-AP0301WH MMU-AP0481WH

MMU-AP0151WH, AP0181WH

Horizontal distance (m)

Cei

ling

heig

ht (m

)

Cei

ling

heig

ht (m

)Horizontal distance (m)

Horizontal distance (m)

Cei

ling

heig

ht (m

)

Horizontal distance (m)Horizontal distance (m)

Cei

ling

heig

ht (m

)

Cei

ling

heig

ht (m

)

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136

Air Speed Distribution

21.0

0.3 0.5 0.3

1

2.7m

0 1 2 3m

2

1

2.7m

0 1 2 3m

1m

1m 2m 3m 4m 1m 2m 3m 4m

1m 2m 3m 4m

2m

3m

1.0

0.50.3

0.3

0.3

0.5

1.0

0.3 0.5

1m

2m

3m

1m

2m

3m

0.3

0.5

1.0

0.3

0.3

0.5

1.0

0.3

2.7m

2

0 1 2 3m0.6

0.9

0.4 0.4

2.3

5.0

1

2.7m

2

0 1 2 3m

1.71.5

0.4

4.5

1

2.7m

2

0 1 2 3m0.3

0.5

0.20.2

2.5

4.0

1

2.7m

2

0 1 2 3m

1.5 1.10.3

3.00.3

1

H (High wind, blowing downward)

L (Low wind, blowing downward)

H (High wind, blowing horizontally)

L (Low wind, blowing horizontally)

1-way air discharge cassette type

MMU-AP0071YH, AP0091YH, AP0121YH

MMC-AP0181H, AP0481H

MMU-AP0151SH, AP0181SH MMU-AP0241SH

Under ceiling type

MMC-AP0361H

MMC-AP015H, AP0241H, AP0271H

13

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137

13

Discharge Air Speed and Air Throw

0 1 2 3 4 5 6 7

1

2

3

4

5

0 1 2 3 4 5 6 7

1

2

3

4

5

0 1 2 3 4 5 6 7

1

2

3

4

5

0 1 2 3 4 5 6 7

1

2

3

0 1 2 3 4 5 6 7

1

2

3

0 1 2 3 4 5 6 7 8

1

2

3

4

Distance from discharge grille (m) Distance from discharge grille (m)

Distance from discharge grille (m)

Air

spee

d (m

/s)

Air

spee

d (m

/s)

Air

spee

d (m

/s)

Air

spee

d (m

/s)

Air

spee

d (m

/s)

Horizontal throw (m) Horizontal throw (m)

Horizontal discharge Initial speed High wind : 5.0m/sMed. wind : 4.4m/s

Horizontal discharge Initial speed High wind : 5.0m/sMed. wind : 4.4m/s

High wind

Med. wind

Low wind

High wind

Med. windLow wind

High wind

Med. windLow wind

Air

spee

d (m

/s)

Horizontal throw (m)

Horizontal discharge Initial speed High wind : 5.0m/sMed. wind : 4.4m/s

0

1

2

3

4

5

Horizontal throw (m)

Air

spee

d (

m/s

)

Horizontal discharge Initial speed High wind : 4.5m/sMed wind : 3.7m/sLow wind : 3.2m/s

HighMidLow

0 1 2 3 4 5 6 7

High wall type

MMK-AP0071H, AP0091H, AP0121H

MML-AP0071H, AP0091H

MMK-AP0241H MMK-AP0072H, AP0092H, AP0122H

Floor standing cabinet type

MML-AP0121H, AP0151H

MMK-AP0151H, AP0181H

MML-AP0181H, AP0241H

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138

Air Speed Distribution

1 2 3 4 5 6 7 8

2.7

2.0

1.0

1.5m/s 1.0m/s 0.7m/s0.5m/s

1 2 3 4 5 6 7 8

2.7

2.0

1.0

1.5m/s 1.0m/s

0.5m/s

1 2 3 4 5 6 7 8

2.7

2.0

(m)

(m)

(m)

(m)

(m)

(m)

(m)

(m)

1.0

2.0m/s1.0m/s1.5m/s

0.5m/s

1 2 3 4 5 6 7 8

2.7

2.0

1.0

1.5m/s1.5m/s1.5m/s1.0m/s

Floor standing type

MMF-AP0151H, AP0181H

MMF-AP0361H MMF-AP0481H, AP0561H

MMF-AP0241H, AP0271H

13

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139

14

Sound characteristics (NC CURVE)

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140

Page 146: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

141

14

14 Foreword Sound characteristics (NC CURVE)

Sound level data (NC CURVE)

10

20

30

40

50

60

70

80

90

20~75 75~150 150~300 300~600 600~1200 1200~2400 2400~4800 4800~10000

NC-70

NC-60

NC-50

NC-40

NC-30

NC-20

H L

30

M

29 27Sound pressure

level(dB(A))

Fan Tap

L

HM

Audibility limits of continous white sound

H L

32

M

29 28Sound pressure

level(dB(A))

Audibility limits of continous white sound

H L

31

M

29 27Sound pressure

level(dB(A))

Audibility limits of continous white sound

H L

34

M

31 28Sound pressure

level(dB(A))

Audibility limits of continous white sound

Fan Tap

Fan Tap

Fan Tap

L

HM

L

HM

L

HM

NC-70

NC-60

NC-50

NC-40

NC-30

NC-20

Microphone

MMU-AP0091H, AP0121H

MMU-AP0151H

MMU-AP0241H, AP0271H

Oct

ave

ban

d s

oun

d p

ress

ure

leve

l (d

B)

Sound level values shown are based on a measurement in a non resound room.

Octave band frequency(Hz)Octave band frequency(Hz)

MMU-AP0181H

Oct

ave

ban

d s

oun

d p

ress

ure

leve

l (d

B)

Oct

ave

ban

d s

oun

d p

ress

ure

leve

l (d

B)

Oct

ave

ban

d s

oun

d p

ress

ure

leve

l (d

B)

Octave band frequency(Hz)

Octave band frequency(Hz)

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142

14

Sound level data (NC CURVE)

10

20

30

40

50

60

70

80

90

20~75 75~150 150~300 300~600 600~1200 1200~2400 2400~4800 4800~9600

NC-70

NC-60

NC-50

NC-40

NC-30

NC-20

H L

37

M

33 30Sound pressure

level(dB(A))

Fan Tap

Fan Tap

Fan Tap

Fan Tap

H L

40

M

36 33Sound pressure

level(dB(A))

H L

44

M

38 34Sound pressure

level(dB(A))

H L

45

M

48 34Sound pressure

level(dB(A))

HML

HML

HML

HML

Audibility limits of continous white sound

Audibility limits of continous white sound

Audibility limits of continous white sound

Audibility limits of continous white sound

MMU-AP0361H

MMU-AP0481H

Oct

ave

ban

d s

oun

d p

ress

ure

leve

l (d

B)

Sound level values shown are based on a measurement in a non resound room.

Octave band frequency (Hz)Octave band frequency (Hz)

MMU-AP0561H

Oct

ave

ban

d s

oun

d p

ress

ure

leve

l (d

B)

Oct

ave

ban

d s

oun

d p

ress

ure

leve

l (d

B)

MMU-AP0301H

Oct

ave

ban

d s

oun

d p

ress

ure

leve

l (d

B)

Octave band frequency (Hz)Octave band frequency (Hz)

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143

14

Sound level data (NC CURVE)

standard sound pressure 0.0002 µbar standard sound pressure 0.0002 µbar

H L

34

M

32 30Sound pressure

level(dB(A))

Fan Tap

H L

35

M

33 30Sound pressure

level(dB(A))

Fan TapH L

38

M

35 33Sound pressure

level(dB(A))

Fan Tap

Audibility limitsof continous white level

Audibility limitsof continous white level

Audibility limitsof continous white level

standard sound pressure 0.0002 µbar

Microphone

MMU-AP0071WH, AP0091WH, AP0121WH

MMU-AP0151WH, AP0181WH

Oct

ave

ban

d s

oun

d p

ress

ure

leve

l (d

B)

Sound level values shown are based on a measurement in a non resound room.

Octave band frequency (Hz)Octave band frequency (Hz)

MMU-AP0241WH, AP0271WH

Oct

ave

ban

d s

oun

d p

ress

ure

leve

l (d

B)

Oct

ave

ban

d s

oun

d p

ress

ure

leve

l (d

B)

Octave band frequency (Hz)

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144

14

Sound level data (NC CURVE)

H L

43

M

41 37Sound pressure

level(dB(A))

Fan Tap

H L

45

M

42 39Sound pressure

level(dB(A))

Fan TapH L

40

M

37 34Sound pressure

level(dB(A))

Fan Tap

H L

42

M

39 36Sound pressure

level(dB(A))

Fan Tap

NC-70

NC-60

NC-50

NC-40

NC-30

NC-20

HM

L

10

20

30

40

50

60

70

80

90

63 125 250 500 1000 2000 4000 8000

NC-70

NC-60

NC-50

NC-40

NC-30

NC-20

HM

L

10

20

30

40

50

60

70

80

90

63 125 250 500 1000 2000 4000 8000

Audibility limitsof continous white level

Audibility limitsof continouswhite level

Audibility limitsAudibility limitsof continouswhite level

Audibility limitsof continouswhite level

Audibility limitsAudibility limitsof continouswhite level

Audibility limitsof continouswhite level

Microphone

MMU-AP0301WH

Oct

ae b

and

so

und

pre

ssur

e le

vl (d

B)

Octave band frequency (Hz)

MMU-AP0151SH, AP0181SH

Oct

ave

ban

d s

oun

d p

ress

ure

leve

l(dB

)

Oct

ave

ban

d s

oun

d p

ress

ure

leve

l(dB

)

Octave band frequency (Hz)

Octave band center frequency (Hz)

Oct

ave

ban

d s

oun

d p

ress

ure

leve

l (d

B)

Octave band center frequency (Hz)

MMU-AP0481WH

MMU-AP0241SH

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145

14

Foreword

Sound level data (NC CURVE)

H M LSound pressure level

(dB(A))

Fan Tap

30 28 26

HM

L

10

20

30

40

50

60

70

80

90

63 125 250 500 1000 2000 4000 8000

NC-70

NC-60

NC-50

NC-40

NC-30

NC-20Audibility limits ofwhite level

H M LSound pressure level

(dB(A))

Fan Tap

31 29 27

H

ML

10

20

30

40

50

60

70

80

90

63 125 250 500 1000 2000 4000 8000

NC-70

NC-60

NC-50

NC-40

NC-30

NC-20Audibility limits ofwhite level

Sound pressure level(dB(A))

H M LFan Tap

31 29 27

H

ML

10

20

30

40

50

60

70

80

90

63 125 250 500 1000 2000 4000 8000

NC-70

NC-60

NC-50

NC-40

NC-30

NC-20Audibility limits ofwhite level

H M LOverall level

dB(A)

Fan Tap

30 2832

HM

L

10

20

30

40

50

60

70

80

90

63 125 250 500 1000 2000 4000 8000

NC-70

NC-60

NC-50

NC-40

NC-30

NC-20Audibility limits ofwhite level

Microphone

MMD-AP0121BHO

ctav

e b

and

so

und

pre

ssur

e le

vel(d

B)

Octave band center frequency (Hz)

MMD-AP0151BHO

ctav

e b

and

so

und

pre

ssur

e le

vel(d

B)

Oct

ave

ban

d s

oun

d p

ress

ure

leve

l(dB

)

Octave band center frequency (Hz)

Octave band center frequency (Hz)

MMD-AP0071BH, AP0091BH

MMD-AP0181BH

Octave band center frequency (Hz)

Oct

ave

ban

d s

oun

d p

ress

ure

leve

l(dB

)

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146

14

Sound level data (NC CURVE)

H M LSound pressure level

(dB(A))

Fan Tap

33 31 29

10

20

30

40

50

60

70

80

90

63 125 250 500 1000 2000 4000 8000

NC-70

NC-60

NC-50

NC-40

NC-30

NC-20Audibility limits ofwhite level

H M LSound pressure level

(dB(A))

Fan Tap

34 32 29

10

20

30

40

50

60

70

80

90

63 125 250 500 1000 2000 4000 8000

NC-70

NC-60

NC-50

NC-40

NC-30

NC-20Audibility limits ofwhite level

H M LSound pressure level

(dB(A))

Fan Tap

36 34 32

10

20

30

40

50

60

70

80

90

63 125 250 500 1000 2000 4000 8000

NC-70

NC-60

NC-50

NC-40

NC-30

NC-20Audibility limits ofwhite level

H M LSound pressure level

(dB(A))

Fan Tap

36 3238

10

20

30

40

50

60

70

80

90

63 125 250 500 1000 2000 4000 8000

NC-70

NC-60

NC-50

NC-40

NC-30

NC-20Audibility limits ofwhite level

MMD-AP0241BH, AP0271BH

Oct

ave

ban

d s

oun

d p

ress

ure

leve

l(dB

)

Octave band center frequency (Hz)

MMD-AP0481BH, AP0561BH

Oct

ave

ban

d s

oun

d p

ress

ure

leve

l(dB

)

Oct

ave

ban

d s

oun

d p

ress

ure

leve

l(dB

)

Octave band center frequency (Hz)

Octave band center frequency (Hz)

Oct

ave

ban

d s

oun

d p

ress

ure

leve

l(dB

)

Octave band center frequency (Hz)

MMD-AP0301BH

MMD-AP0361BH

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147

14

Sound level data (NC CURVE)

Audibility limitsof continous white level

Outside still pressure 68.6 (Pa) 137.2 (Pa) 196.0 (Pa)

(dB)

A

C

33

46

37

51

40

53

Overall level(dB)

(standard sound pressure 0.0002 µbar)

Outside still pressure 68.6 (Pa) 137.2 (Pa) 196.0 (Pa)

(dB)

A

C

36

50

40

53

44

57

Overall level

Audibility limitsof continous white level

(dB)

(standard sound pressure 0.0002 µbar)

Audibility limitsof continous white level

Outside still pressure 68.6 (Pa) 137.2 (Pa) 196.0 (Pa)

(dB)

A

C

33

47

37

49

40

53

Overall level(dB)

(standard sound pressure 0.0002 µbar)

Audibility limitsof continous white level

Outside still pressure 68.6 (Pa) 137.2 (Pa) 196.0 (Pa)

(dB)

A

C

36

50.5

40

53

44

57

Overall level(dB)

(standard sound pressure 0.0002 µbar)

196.0(external static pressure(Pa)) 196.0(external static pressure(Pa))

196.0(external static pressure(Pa)) 196.0(external static pressure(Pa))

Microphone

MMD-AP0181H

Octave band center frequency (Hz)

Oct

ave

ban

d s

oun

d p

ress

ure

leve

l (d

B)

Oct

ave

ban

d s

oun

d p

ress

ure

leve

l (d

B)

Octave band center frequency (Hz)

MMD-AP0241H, AP0271H

Octave band center frequency (Hz)

Oct

ave

ban

d s

oun

d p

ress

ure

leve

l (d

B)

Sound level values shown are based on a measurement in a non resound room.

Oct

ave

ban

d s

oun

d p

ress

ure

leve

l (d

B)

Octave band center frequency (Hz)

Page 153: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

148

14

Outside still pressure 68.6 (Pa) 137.2 (Pa) 196.0 (Pa)

(dB)

A

C

36

49.5

40

54

44

59

Overall level(dB)

Outside still pressure 68.6 (Pa) 137.2 (Pa) 196.0 (Pa)

(dB)

A

C

36

49

40

53.5

44

57

Overall level(dB)

(standard sound pressure 0.0002 µbar) (standard sound pressure 0.0002 µbar)

Audibility limitsof continous white level

Audibility limitsof continous white level

Outside still pressure 68.6 (Pa) 137.2 (Pa) 196.0 (Pa)

(dB)

A

C

36

47

40

51

44

54

Overall level(dB)

Outside still pressure 68.6 (Pa) 137.2 (Pa) 196.0 (Pa)

(dB)

A

C

36

47

40

51

44

54

Overall level(dB)

(standard sound pressure 0.0002 µbar) (standard sound pressure 0.0002 µbar)

Audibility limitsof continous white level

Audibility limitsof continous white level

196.0(external static pressure(Pa)) 196.0(external static pressure(Pa))

196.0(external static pressure(Pa))196.0(external static pressure(Pa))

MMD-AP0361H

Oct

ave

ban

d s

oun

d p

ress

ure

leve

l (d

B)

Octave band center frequency (Hz)

Oct

ave

ban

d s

oun

d p

ress

ure

leve

l (d

B)

Oct

ave

ban

d s

oun

d p

ress

ure

leve

l (d

B)

Octave band center frequency (Hz)

Octave band center frequency (Hz)Oct

ave

ban

d s

oun

d p

ress

ure

leve

l (d

B)

MMD-AP0481H

Octave band center frequency (Hz)

Page 154: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

149

14

Sound level data (NC CURVE)

10

20

30

40

50

60

70

80

90

NC-70

NC-60

NC-50

NC-40

NC-30

NC-20

H L

35

M

32 30Sound pressure

level(dB(A))

Fan Tap

20~

75

75~

150

150~

300

300~

600

600~

1200

1200~

2400

2400~

4800

4800~

9600

HML

Audibility limits of continous white sound

10

20

30

40

50

60

70

80

90

NC-70

NC-60

NC-50

NC-40

NC-30

NC-20

20~

75

75~

150

150~

300

300~

600

600~

1200

1200~

2400

2400~

4800

4800~

9600

HML

Audibility limits of continous white sound

10

20

30

40

50

60

70

80

90

NC-70

NC-60

NC-50

NC-40

NC-30

NC-20

20~

75

75~

150

150~

300

300~

600

600~

1200

1200~

2400

2400~

4800

4800~

9600

HML

Audibility limits of continous white sound

10

20

30

40

50

60

70

80

90

NC-70

NC-60

NC-50

NC-40

NC-30

NC-20

20~

75

75~

150

150~

300

300~

600

600~

1200

1200~

2400

2400~

4800

4800~

9600

HML

Audibility limits of continous white sound

H L

36

M

33 30Sound pressure

level(dB(A))

H L

38

M

36 33Sound pressure

level(dB(A))

H L

43

M

40 37Sound pressure

level(dB(A))

H L

41

M

38 35Sound pressure

level(dB(A))

10

20

30

40

50

60

70

80

90

NC-70

NC-60

NC-50

NC-40

NC-30

NC-20

20~

75

75~

150

150~

300

300~

600

600~

1200

1200~

2400

2400~

4800

4800~

9600

HML

Audibility limits of continous white sound

Fan Tap Fan Tap

Fan Tap Fan Tap

Microphone

MMC-AP0181H

Octave band frequency (Hz)

Oct

ave

ban

d s

oun

d p

ress

ure

leve

l (d

B)

Oct

ave

ban

d s

oun

d p

ress

ure

leve

l (d

B)

Octave band frequency (Hz)

MMC-AP0361H

Octave band frequency (Hz)

Oct

ave

ban

d s

oun

d p

ress

ure

leve

l (d

B)

Sound level values shown are based on a measurement in a non resound room.

Oct

ave

ban

d s

oun

d p

ress

ure

leve

l (d

B)

Octave band frequency (Hz)

MMC-AP0151H

MMC-AP0241H, AP0271H

Octave band frequency (Hz)

MMC-AP0481H

Oct

ave

ban

d s

oun

d p

ress

ure

leve

l (d

B)

Page 155: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

150

14

Sound level data (NC CURVE)

Fan tap H M LSound pressure

level (dB(A)) 35 32 29

Fan tap H M LSound pressure

level (dB(A)) 37 33 29

Fan tap H M LSound pressure

level (dB(A)) 33 2936

10

20

30

40

50

60

70

80

90

20 75 75 ~150 150 ~300 300 ~600 600 ~1200 1200 ~ 2400 2400 ~ 4800 4800 ~ 10000

NC-70

NC-60

NC-50

NC-40

NC-30

NC-20Audibility limitsof continouswhite level

~

NC-70

NC-60

NC-50

NC-40

NC-30

NC-20Audibility limitsof continouswhite level

20~75 75~150 150~300 300~600 600~1200 1200~2400 2400~4800 4800~10000

90

80

70

60

50

40

30

20

10

NC-70

NC-60

NC-50

NC-40

NC-30

NC-20Audibility limitsof continouswhite level

10

20

30

40

50

60

70

80

90

20~75 75~150 150~300 300~600 600~1200 1200~2400 2400~4800 4800~10000

Microphone O

ctav

e b

and

so

und

pre

ssur

e le

vel(d

B)

Octave band frequency (Hz)

MMK-AP0122H

Oct

ave

ban

d s

oun

d p

ress

ure

leve

l(dB

)

Oct

ave

ban

d s

oun

d p

ress

ure

leve

l (d

B)

Octave band frequency (Hz)

Octave band frequency (Hz)

MMK-AP0072H

MMK-AP0092H

Page 156: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

151

14

Sound level data (NC CURVE)

(standard sound pressure 0.0002 µbar) (standard sound pressure 0.0002 µbar)

Fan Tap H M L

50 Hz

A

C

36.0

41.4

34.0

40.0

32.0

38.8

Overall level(dB)

Fan Tap H M L

60 Hz

A

C

36.0

41.4

34.0

40.0

32.0

39.0

Overall level(dB)

(standard sound pressure 0.0002 µbar) (standard sound pressure 0.0002 µbar)

Fan Tap H M L

50 Hz

A

C

36.0

41.7

34.0

40.2

32.0

37.9

Overall level(dB)

Fan Tap H M L

60 Hz

A

C

36.0

41.6

34.0

39.8

32.0

38.1

Overall level(dB)

Audibility limitsudibility limitsof continous white leof continous white levelelAudibility limitsof continous white level

Audibility limitsudibility limitsof continous white leof continous white levelelAudibility limitsof continous white level

Audibility limitsudibility limitsof continous white leof continous white levelelAudibility limitsof continous white level

Audibility limitsudibility limitsof continous white leof continous white levelelAudibility limitsof continous white level

Microphone

MML-AP0071BH, AP0091BH, AP0121BH

Octave band center frequency (Hz)

Oct

ave

ban

d s

oun

d p

ress

ure

leve

l (d

B)

Oct

ave

ban

d s

oun

d p

ress

ure

leve

l (d

B)

Octave band center frequency (Hz)

MML-AP0151BH, AP0181BH

Octave band center frequency (Hz)

Oct

ave

ban

d s

oun

d p

ress

ure

leve

l (d

B)

Sound level values shown are based on a measurement in a non resound room.

Oct

ave

ban

d s

oun

d p

ress

ure

leve

l (d

B)

Octave band center frequency (Hz)

Page 157: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

152

14

Audibility limitsof continous white level

(standard sound pressure 0.0002 µbar) (standard sound pressure 0.0002 µbar)

Fan Tap H M L

50 Hz

A

C

42.0

46.4

37.0

41.0

33.0

37.7

Overall level(dB)

Fan Tap H M L

60 Hz

A

C

42.0

46.6

37.0

41.0

33.0

38.0

Overall level(dB)

Audibility limitsof continous white levelAudibility limitsof continous white level

Audibility limitsof continous white levelAudibility limitsof continous white level

Oct

ave

ban

d s

oun

d p

ress

ure

leve

l (d

B)

Octave band center frequency (Hz)Oct

ave

ban

d s

oun

d p

ress

ure

leve

l (d

B)

Octave band center frequency (Hz)

MML-AP0241BH

Page 158: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

153

14

Sound level data (NC CURVE)

NC-70

NC-60

NC-50

NC-40

NC-30

NC-20

10

20

30

40

50

60

70

80

90

20~75 75~150 150~300 300~600 600~1200 1200~2400 2400~4800 4800~10000

Cooling

Heating

Audibility limits of continous white sound

Sound pressure Level (dB(A)) 60

NC-70

NC-60

NC-50

NC-40

NC-30

NC-2010

20

30

40

50

60

70

80

90

20~75 75~150 150~300 300~600 600~1200 1200~2400 2400~4800 4800~10000

Cooling

Heating

Audibility limits of continous white sound

Sound pressure Level (dB(A)) 60.5

NC-70

NC-60

NC-50

NC-40

NC-30

NC-20

10

20

30

40

50

60

70

80

90

20~75 75~150 150~300 300~600 600~1200 1200~2400 2400~4800 4800~10000

Cooling

Heating

Audibility limits of continous white sound

Sound pressure Level (dB(A)) 57

NC-70

NC-60

NC-50

NC-40

NC-30

NC-20

10

20

30

40

50

60

70

80

90

20~75 75~150 150~300 300~600 600~1200 1200~2400 2400~4800 4800~10000

Cooling

Heating

Audibility limits of continous white sound

Sound pressure Level (dB(A)) 59

NC-70

NC-60

NC-50

NC-40

NC-30

NC-20

10

20

30

40

50

60

70

80

90

20~75 75~150 150~300 300~600 600~1200 1200~2400 2400~4800 4800~10000

Cooling

Heating

Audibility limits of continous white sound

Sound pressure Level (dB(A)) 58

Microphone

MMY-MAP1002FT8

Octave band frequency(Hz)

Oct

ave

ban

d s

oun

d p

ress

ure

leve

l(dB

)

Oct

ave

ban

d s

oun

d p

ress

ure

leve

l(dB

)

Octave band frequency(Hz)

MMY-AP1602FT8

Octave band frequency(Hz)

Oct

ave

ban

d s

oun

d p

ress

ure

leve

l(dB

)Sound level values shown are based on a measurement in a non resound room.

Oct

ave

ban

d s

oun

d p

ress

ure

leve

l(dB

)

Octave band frequency(Hz)

MMY-MAP0802FT8

MMY-MAP1202FT8

Octave band frequency(Hz)

MMY-AP1802FT8

Oct

ave

ban

d s

oun

d p

ress

ure

leve

l(dB

)

Page 159: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

154

14

Sound level data (NC CURVE)

NC-70

NC-60

NC-50

NC-40

NC-30

NC-20

10

20

30

40

50

60

70

80

90

20~75 75~150 150~300 300~600 600~1200 1200~2400 2400~4800 4800~10000

Cooling

Heating

Audibility limits of continous white sound

Sound pressure Level (dB(A)) 61

NC-70

NC-60

NC-50

NC-40

NC-30

NC-2010

20

30

40

50

60

70

80

90

20~75 75~150 150~300 300~600 600~1200 1200~2400 2400~4800 4800~10000

Cooling

Heating

Audibility limits of continous white sound

Sound pressure Level (dB)A)) 62

NC-70

NC-60

NC-50

NC-40

NC-30

NC-2010

20

30

40

50

60

70

80

90

20~75 75~150 150~300 300~600 600~1200 1200~2400 2400~4800 4800~10000

Cooling

Heating

Audibility limits of continous white sound

Sound pressure Level (dB(A)) 62.5

NC-70

NC-60

NC-50

NC-40

NC-30

NC-2010

20

30

40

50

60

70

80

90

20~75 75~150 150~300 300~600 600~1200 1200~2400 2400~4800 4800~10000

Cooling

Heating

Audibility limits of continous white sound

Sound pressure Level (dB(A)) 62

NC-70

NC-60

NC-50

NC-40

NC-30

NC-2010

20

30

40

50

60

70

80

90

20~75 75~150 150~300 300~600 600~1200 1200~2400 2400~4800 4800~10000

Cooling

Heating

Audibility limits of continous white sound

Sound pressure Level (dB(A)) 63

MMY-AP2002FT8

Oct

ave

ban

d s

oun

d p

ress

ure

leve

l(dB

)

Sound level values shown are based on a measurement in a non resound room.

Octave band frequency(Hz)

MMY-AP2802FT8

Oct

ave

ban

d s

oun

d p

ress

ure

leve

l(dB

)

Oct

ave

ban

d s

oun

d p

ress

ure

leve

l(dB

)

Octave band frequency(Hz)

Octave band frequency(Hz)

Oct

ave

ban

d s

oun

d p

ress

ure

leve

l(dB

)

Octave band frequency(Hz)

MMY-AP2402FT8

MMY-AP3002FT8

MMY-AP2602FT8

Octave band frequency(Hz)

Oct

ave

ban

d s

oun

d p

ress

ure

leve

l(dB

)

Page 160: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

155

15

Dimensional drawing

Page 161: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

156

Page 162: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

157

15

15 ForewordDimensional drawing

1. Indoor unit4-way Air Discharge Cassette Type

200

200

Check port( 450)

Check port( 450)

Electric parts box

Z35 ̊

105

105

B97

16120

4 2.7

120

57188

64

57.525

360

415

381.6

840 840

30

1000 or more

1000

or

mor

e15

or

mor

e

15 o

r m

ore

1000 or more

250 70270

35 210

45 113

174

130

A

88

227480

346.

5

254.

5 950

pane

l ext

erna

l dim

ensi

on

790

hang

ing

bolt

pitc

h

723 hanging bolt pitch

950panel external dimension

Suction grille (Air suction port)

Air discharge port (4-way)

860 to 910ceiling open dimension

860

to 9

10ce

iling

ope

n di

men

sion

Hanging boltM10 or W3/8 local arrange

Bottom face of ceiling Bottom face of ceiling

For branch duct knockout square hole Ø150 (2 positions at right side)

Refrigerant pipe connecting port(Gas)Refrigerant pipe connecting port(Liquid)

Drain discharge port

Model A B256319

120183

AP0091H to AP0301HAP0361H to AP0561H

mm

Indoor unit Bottom face of ceiling

Bottom face of ceiling

Knockout for flesh air intakeFor Ø100

Sta

nd-u

p85

0 or

less

Sta

nd-u

p64

0 or

less

MMU-AP0091H to P0561H

(NOTE)As ABS is used for the drain dischargeport of the main unit, the vinyl chloridepaste cannot be used.Use the flexible hose (Band fix)included in the package.

Z view Drain-up standing-up size Space required for installation and servicing

Note: All dimensions are in mm.

Wired remote controller RBC-AMT21E RBC-AMT31ESimple wired remote controller RBC-AS21E RBC-AS21E2Wireless remote controller kit TCB-AX21U(W)-E TCB-AX21U(W)-E2Weekly timer application RBC-AMT31E and RBC-EXW21E2

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158

15

2-way Air Discharge Cassette Type

Electric parts box

Z

53 60

30

95 35

265

1000

100

75 55

56

222 39

8

156

8

650

Center of main unit Center of panel

Unit external dimension830

Hanging bolt pitch880

Ceiling open dimension960

Panel external dimension1000

Han

ging

bol

tpi

tch

480

Uni

t ext

erna

ldi

men

sion

550

Cei

ling

open

dim

ensi

on 6

20P

anel

ext

erna

ldi

men

sion

650

Z view

Air suction port(2-way)

Air discharge port(2-way)

1000 or more

Ceiling

1000or more

5mmor more

1000or moreObstruction

Hanging bolt4-M10 procured locally

Branch duct knockout hole(also on opposite side)

Ceiling panel(Procured locally) Bottom face of ceiling

Ø200

Space required for installation and servicing

508m

m o

r le

ss

160m

m o

r le

ss

100mmor less

Bottom face of ceiling

Indoor unit

Power supply connecting port

178

242

282

348

35

78 35

210 Knockout hole for taking-in air(Only at reverse side)

Refrigerant pipe connecting port(Gas side Ø9.5)

Refrigerant pipe connecting port(Liquid side Ø6.4)

Drain pipe connecting portInner Ø32, Nominal Ø25 for vinyl chloride pipe

Pour water port

Ø150

MMU-AP0071WH, AP0091WH, AP0121WH

Note: All dimensions are in mm.

Wired remote controller RBC-AMT21E RBC-AMT31ESimple wired remote controller RBC-AS21E RBC-AS21E2Wireless remote controller kit TCB-AX21E TCB-AX21E2Weekly timer application RBC-AMT31E and RBC-EXW21E2

Page 164: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

159

15

Power supply connecting port

Branch duct knockout hole(Also on opposite side)

650

35 95

30

Z53

Ø20060

295

222 39

8

156

8

178

242

282

348

35

75 55

56

100

78 35

210

Center of main unit

1000 or more

Center of panel

Electric parts box

Unit external dimension 1350

Hanging bolt pitch 1400

Ceiling open dimension 1480

Ceiling 1000or more

5mm

or

mor

e

Panel external dimension 1520

1000or more

Han

ging

bol

tpi

tch

480

Uni

t ext

erna

ldi

men

sion

550

Cei

ling

open

imen

sion

620

Pan

el e

xter

nal

dim

ensi

on 6

50

Z view

Air suction port(2-way)

Air discharge port(2-way)

Obstruction

Space required for installation and servicing

ModelMMU-AP0151WH to AP0181WHMMU-AP0241WH to AP0301WH

AØ6.4Ø9.5

BØ12.7Ø15.9

Hanging bolt4-M10 procured locally

Ceiling panel(Procured locally)

Bottom face of ceiling

508m

m o

r le

ss

160m

m o

r le

ss

100mmor less

Bottom face of ceiling

Knockout hole for air intake(Only at reverse side)

Refrigerant pipe connecting port(Gas side ØB)

Refrigerant pipe connecting port(Liquid side ØA)

Drain pipe connecting portInner Ø32, Nominal Ø25 for vinyl chloride pipe

Pour water port

Ø150

MMU-AP0151WH, AP0181WH, AP0241WH, AP0271WH. AP0301WH

Note: All dimensions are in mm.

Wired remote controller RBC-AMT21E RBC-AMT31ESimple wired remote controller RBC-AS21E RBC-AS21E2Wireless remote controller kit TCB-AX21E TCB-AX21E2Weekly timer application RBC-AMT31E and RBC-EXW21E2

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160

15

Air suction port(2-way)

Air discharge port(2-way)Electric parts box

95

Z

230 40

6

60

8

166 68

455 150

5 105

680

1898

16120

4 2.7

120

Center of main unit Center of panel

Unit external dimension 1650

Hanging bolt pitch 1700

Ceiling open dimension 1850

Panel external dimension 1898

5mm

or

mor

e

Han

ging

bol

tpi

tch

510

Uni

t ext

erna

ldi

men

sion

620

Cei

ling

open

dim

ensi

on 6

50P

anel

ext

erna

ldi

men

sion

680

Z view

1000 or more

Ceiling 1000or more

1000or moreObstruction

Space required for installation and servicing

Hanging bolt4-M10 procured locally

Ceiling panel(Procured locally)

Branch duct knockout hole(Also on reverse side)

Bottom face of ceiling

Ø20

0

Ø20

0

• Wired remote controller (RBC-AMT21E)

516m

m o

r le

ss

160m

m o

r le

ss

Bottom face of ceiling

100mmor less

Power supply connecting port

186

250

290

356

15

75 55

56

100

86

15

Knockout hole for air intake(Only at reverse side)

210

Refrigerant pipe connecting port(Gas side Ø15.9)

Refrigerant pipe connecting port(Liquid side Ø9.5)

Drain pipe connecting port(VP25)

Pour water port

Ø150

MMU-AP0481WH

Note: All dimensions are in mm.

Wired remote controller RBC-AMT21E RBC-AMT31ESimple wired remote controller RBC-AS21E RBC-AS21E2Wireless remote controller kit TCB-AX21E TCB-AX21E2Weekly timer application RBC-AMT31E and RBC-EXW21E2

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161

15

1-way Air Discharge Cassette Type

16

4 2.7

120

120

Panel external dimension 1050

Ceiling open dimension 1010

Pan

el e

xter

nal

dim

ensi

on47

0

Cei

ling

open

dim

ensi

on43

020

20

Center of panelDrain pipe connecting port(VP25)

Power supply connecting port

Hanging bolt4-M10 procured locally

Supportmetal

Ceiling panelProcured locally

Bottom face of ceilingAir discharge portDischarge louver

Refrigerant pipe connecting port(Gas side) Ø9.5

Refrigerant pipe connecting port(Liquid side) Ø6.4

Panel mounting hole5 positions

Air suction port

100 or more 100 or more 200 or more

Bor

mor

e

Space required for installation and servicing

MMU-AP0071YH, AP0091YH, AP0121YH

DimensionsModel MMU-

AP0071YH,AP0091YH, AP0121YH

A

235

B

245

C

200

Note: All dimensions are in mm.

Wired remote controller RBC-AMT21E RBC-AMT31ESimple wired remote controller RBC-AS21E RBC-AS21E2Wireless remote controller kit TCB-AX21E TCB-AX21E2Weekly timer application RBC-AMT31E and RBC-EXW21E2

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162

15

16

4 2.7

Ø180

Ø150 knockout hole (For air intake)

96

30

530

655

20 30

20 3016

012

0

100

30

125DC65

50 E F 110

G

Panel external dimension ACeiling open dimension B

Center of panel

Cei

ling

open

dim

ensi

on 6

95P

anel

ext

erna

ldi

men

sion

755

Pitch 200 N10 10255

Z

Z

Knockout hole for discharge forward

8080 60

100

100 100H

130

198

10

A

Suction port

755

Z viewAir discharge port

Power supply connecting port

335440

Drain pipe connecting port(VP25)

Refrigerant pipe connecting port(Liquid side) ØI

Refrigerant pipe connecting port(Gas side) ØJ

ObstacleCeiling

200

or m

ore

1000 or more

120

120

1000 or more

1000 or more

Space required for installation and servicing

MMU-AP0151SH, AP0181SH, AP0241SH

Dimensions

Model MMU-

AP0151SH,AP0181SH

AP0241SH

A

1220

1420

B

1160

1360

C

545

645

D

485

585

E

530

630

F

470

570

G

254

460

H

800

1000

I

6.4

9.5

J

12.7

15.9

N

4

5

Note: All dimensions are in mm.

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163

15

Concealed Duct Standard Type

ø125 knockout hole(For air intake)

10-ø4 tapping screw ø160

100mm or less

Panel C, L

150

91

Drain-up piping

550m

m o

r les

s

271m

m o

r les

s

450mm

Air outlet

Check port B

450mmCheck port A

Air filter700mm for maintenance of air filter 700mm for

maintenance of air filter

Ceiling opening part

(150mm)

300m

m

ø26 power supply, remote controller wires drawing-out port

Ceiling opendimension D

E

Air Suction

B

C 142

70 to

270

240

Drain pipe connecting port(Inner ø32 vinyl chloride pipe VP25 connection)

Hanging bolt 4-M10 (Procured locally)

Refrigerant pipe connecting port(Gas side øF)

Refrigerant pipe connecting port(Liquid side øG)

Unit external dimension 800

Hanging bolt pitch 700

Hanging bolt pitch A ± 7.5

44

50 638498

41 59

25 40

49(Whe

n at

tach

ing

dire

ctly

)

Ceiling opening470

393

196

50 50 24313

1

41

21

5 AirDischarge

AirSuction

Model MMD-

AP0071BH, AP0091BH, AP0121BH

AP0151BH, AP0181BH

AP0241BH, AP0271BH, AP0301BH

AP0361BH, AP0481BH, AP0561BH

A616

766

1066

1416

MMD-AP0071BH, AP0091BH, AP0121BH, AP0151BH, AP0181BH, AP0241BH,AP0271BH, AP0301BH, AP0361BH, AP0481BH, AP0561BH

B550

700

1000

1350

C350

500

800

1150

D600

750

1050

1400

E470

620

920

1270

F9.5

12.7

15.9

15.9(Note)Two off high efficiency filters availableDeodorant filter not available

(Note)Be sure to create a check port at position A as indicatedin the following figure. This is for maintenance of the equipment.

Note: All dimensions are in mm.

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G6.4

9.4

9.5

9.5

Page 169: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

164

Concealed Duct High Static Pressure Type

624698

31

470

406

35

150

200

370

65

AP0181H to AP0271H type

Model MMD- A B6.49.5

12.715.9

AP0361H type

Hole for hanging bolt(4-Ø12 72)

Electric parts box

Electric parts box

AP0181HAP0241H, AP0271H, AP0361H, AP0481H

Power supply/communication piping port (Ø26)(Under electric parts box)

Refrigerant pipe connecting port(Gas side ØB)

Refrigerant pipe connecting port(Gas side Ø22.2)

710

(Han

ging

bol

t mou

ntin

g pi

tch

800)

1380

100

1260

(Han

ging

bol

t mou

ntin

g pi

tch)

1288(Hanging bolt mounting pitch)

1328

1250

45

190 250 250 250

250 250 250 250 190

250

Power supply/communication piping port (Ø26)(Under electric parts box)

Refrigerant pipe connecting port(Liquid side ØA)

Refrigerant pipe connecting port(Liquid side Ø12.7)

Screw hole for duct mounting (6-M6)

Air suction port

Screw hole for duct mounting (10-M6)

Screw hole for duct mounting (10-M6)

Drain pipe connecting port (VP25)

Drain pipe connecting port (VP25)

Z view Z view

Z view

Air discharge port

Suction port

Discharge port

Screw hole for duct mounting (4-M6)

Screw hole for duct mounting (6-M6)

Hole for hanging bolt(4-Ø12 ¥ 72)

Hole for hanging bolt(4-Ø12 ¥ 92)

Electric parts box

Refrigerant pipe connecting port(Gas side Ø15.9)

Refrigerant pipe connecting port(Liquid side Ø9.5)

Screw hole for duct mounting (8-M6) Air suction port

Drain pipe connectingport (VP25)

Air discharge portScrew hole for duct mounting (8-M6)

*1 Service space requirement for MMD-AP0721H and AP0961H are different from those in the above figure for details make enquiries to your dealer.

16

4 2.7

120

120

Space required for installation and servicing *1

500

mm

or

mor

e60

0 m

mor

mor

e

Check port 600

Service space

Service space

Air discharge port

Note: All dimensions are in mm.

15

MMD-AP0181H, AP0241H, AP0271H, AP0361H, AP0481H, AP0721H, AP0961H

MMD-AP0181H to AP0361H MMD-AP0481H

MMD-AP0721H, AP0961H

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165

Under Ceiling Type

Remote controller piping taking-in port (Knockout hole)

Upper piping drawing-out port (Knockout hole)

Power supply cable taking-in port (Knockout)

Left drain size

B (Hanging position)

500

or m

ore

Refrigerant pipe (Liquid side ØD)

Refrigerant pipe (Gas side ØC)

Drain pipe connecting port

Piping drawing-out port (Knockout port)

Drain port VP20 (Inner diam. Ø26, hose supplied)

Wireless sensor mounting section(Optional)

250 or more250 or more

(Han

ging

pos

ition

)

320

170

70

16

4 2.7

120

120

Piping hole on the wall (Ø100 hole)

Drain left piping drawing-out port (Knockout hole)

Air taking-in port (Duct sold separately) (Knockout hole Ø92)

Remote controller cable taking-in port

Power supply taking-in port (Knockout hole)

Remote controller cable taking-in port (Knockout hole)

(Front side to be positioned horizontally.)

Hanging bolt

Ceiling surface

With

in 5

0

Unit

A

15

MMC-AP0151H, AP0181H, AP0241H, AP0271H, AP0361H, AP0481H

Space required for installation and servicing

Model MMC-

AP0151H, AP0181H

AP0241H, AP0271H

AP0361H, AP0481H

A

910

1180

1595

B

855

1125

1540

C

12.7

15.9

15.9

D

6.4

9.5

9.5

Note: All dimensions are in mm.

Wired remote controller RBC-AMT21E RBC-AMT31ESimple wired remote controller RBC-AS21E RBC-AS21E2Wireless remote controller kit TCB-AX22CE TCB-AX22CE2Weekly timer application RBC-AMT31E and RBC-EXW21E2

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166

15

High Wall Type (1 series)

9.5

690 (Installation plate)

Upper end of installation plate

Discharge port(Air direction upward/downward/leftward/rightward are adjustable.)

Air suction port

Gas pipe 440Liquid pipe 540Drain pipe 560

Long hole for wooden screw15-6 X 30

Hole for anchor bolt10-10 X 20 long hole

16

4 2.7

120

120

Piping port from left/right sides(Knockout hole)

(Including installation plate)210

Including installation plate (Accessory)

Earth screw (M4)(Inside of electric parts box)

Refrigerant pipe connecting portGas side Ø9.5

Refrigerant pipe connecting portLiquid side Ø6.4

Drain pipe connecting port

300 or more 300 or more

30 o

r m

ore

At shipment(When drawing pipe from left)

MMK-AP0071H, AP0091H, AP0121H

Space required for service

Position of holes on the installation plate.

Note: All dimensions are in mm.

Wired remote controller RBC-AMT21E RBC-AMT31ESimple wired remote controller RBC-AS21E RBC-AS21E2Wireless remote controller kit TCB-AX21E TCB-AX21E2Weekly timer application RBC-AMT31E and RBC-EXW21E2

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167

690 (Installation plate)182.5 182.5

Upper end of installation plate

Gas pipe 440Liquid pipe 540Drain pipe 560

At shipment(When drawing pipe from left)

Hole for wooden screw15-6 X 30

Hole for anchor bolt10-10 X 20 long hole

Piping port from left/right sides(Knockout hole)

(Including installation plate)210

Including installation plate (Accessory)

Earth screw (M4)(Inside of electric parts box)

Refrigerant pipe connecting portGas side Ø12.7

Refrigerant pipe connecting portLiquid side Ø6.4

Drain pipe connecting port

300 or more 300 or more

30 o

r m

ore

Air discharge port(Air direction upward/downward/leftward/rightward air adjustable.)

Air suction port

15

MMK-AP0151H, AP0181H

Space required for service

Note: All dimensions are in mm.

Wired remote controller RBC-AMT21E RBC-AMT31ESimple wired remote controller RBC-AS21E RBC-AS21E2Wireless remote controller kit TCB-AX21E TCB-AX21E2Weekly timer application RBC-AMT31E and RBC-EXW21E2

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168

15

1090 (Installation plate)170 170

Upper end of installation plate

Air discharge port (Air direction upward/downward/leftward/rightward air adjustable.)

Air suction port

Gas pipe 440Liquid pipe 540Drain pipe 560

At shipment(When drawing pipe from left)

Hole for wooden screw21-6 X 30

Position of holes on the installation plate

Hole for anchor bolt16-10 X 20 long hole

Piping port from left/right sides(Knockout hole)

(Including installation plate)210

Including installation plate (Accessory)

Earth screw (M4)(Inside of electric parts box)

Refrigerant pipe connecting portGas side Ø15.9

Refrigerant pipe connecting portLiquid side Ø9.5

Drain pipe connecting port

300 or more 300 or more

30 o

r m

ore

MMK-AP0241H

Space required for service

Note: All dimensions are in mm.

Wired remote controller RBC-AMT21E RBC-AMT31ESimple wired remote controller RBC-AS21E RBC-AS21E2Wireless remote controller kit TCB-AX21E TCB-AX21E2Weekly timer application RBC-AMT31E and RBC-EXW21E2

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169

High Wall Type (2 series)

208

790

6

48

208

60

275

275

790

Air inlet port

Air outlet port

208

48

275

6 Knockout

321

275

790

Hook for installation plate

Refrigerant pipe connecting port Gas side O9.5

Refrigerant pipe connecting port Liquid side O6.4

Drain pipe

60 54.5

208

6054.5

48

790

48

Knockout60

(Installation space)

100mm or more

170mm or more*300mm or more170mm or more

*(When a Flow Selector unit is fitted for heat recovery.)

15

Model : MMK-AP0072H, AP0092H, AP0122H

Note: All dimensions are in mm.

Page 175: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

170

15

Floor Standing Cabinet Type

130

Fixing hole (Floor)(2-Ø10)

Lower refrigerant piping port(50 X 100 knockout hole)

Operation switch section (Sold separately)

Fixing hole (Wall)(Two off knockout holes Ø10-Ø20)

Air suction port

100left side( )

Power supply cord hole(Ø26 knockout on both sides)

Earth screw (M6)

Refrigerant pipe port(Ø130 knockout hole)

Refrigerant pipe port(50 X 100 knockout

Hole fixing wall(2-10 X 24 long hole)

1000

or

mor

e

Drain pipe connecting port (Ø20)

Refrigerant pipe connecting port(Liquid side ØB)

Refrigerant pipe connecting port(Gas side ØA)

Wall

Wall(Front side)

(Front side)

500or more 30

0or

mor

e

Air discharge port

holeon on both sides)

MML-AP0071H, AP0091H, AP0121H, AP0151H, AP0181H, AP0241H

Space required for serviceFigure shows piping at the left side

Positionaldrawing of piping

Dimensions

Model MML-

AP0071H, AP0091H, AP0121H

AP0151H, AP0181H

AP0241H

A

O/ 9.5

O/ 12.7

O/ 15.9

B

O/ 6.4

O/ 6.4

O/ 9.5

Note: All dimensions are in mm.

Wired remote controller RBC-AMT21E RBC-AMT31ESimple wired remote controller RBC-AS21E RBC-AS21E2Wireless remote controller kit TCB-AX21E TCB-AX21E2Weekly timer application RBC-AMT31E and RBC-EXW21E2

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171

Floor Standing Concealed Type

(Service space)

150or more

(Service space)

150or more

Fixing hole (Floor) (Discharge port size in flange)

Ceiling board section

(Air discharge port size in flange)

G-Ø4.7 hole(Front side and rear side each)

4-Ø15 hole(For mounting rear side)

Expansionvalve box

2-Ø4.7 hole (Left/right side each)

2-12 5 18 holeFixing hole (Floor)

16

4 2.7

120

120

15

MML-AP0071BH, AP0091BH, AP0121BH, AP0151BH, AP0181BH, AP0241BH

Dimensions

Name

Pipe connecting port at liquid side (O/ E)

Pipe connecting port at gas side (O/ F)

Drain pipe connecting port (20A)

Electric parts box(Earth terminal on the inside)

Air filter

No.

1

2

3

4

5

Model MML-

AP0071BH, AP0091BH, AP0121BH

AP0151BH, AP0181BH

AP0241BH

A

610

910

B

580

880

C

550

850

D

4

7

E

6.4

9.5

F

9.5

12.7

15.9

G

5

8

Note: All dimensions are in mm.

Wired remote controller RBC-AMT21E RBC-AMT31ESimple wired remote controller RBC-AS21E RBC-AS21E2Wireless remote controller kit TCB-AX21E TCB-AX21E2Weekly timer application RBC-AMT31E and RBC-EXW21E2

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172

15

Floor Standing Type

Installation plate

Installation plate

Suction port

Drainhose

Refrigerant piping hole (Back side)(Ø130 Knockout )

Refrigerant piping hole (Bottom side)(50 5 120 Knockout)

Earth screw (M4)

Dischargeport 80

30 5 3 30 5 3600

Wall

Wall

Wall

Wall

Wall

Floor

Wall

Incase of installing distance is 50mm from wall( )

Lower refrigerant piping port(50 5 120 Knockout hole)

Controlpart

Controlcover

Refrigerant piping port (Both side)(Ø80 Knockout)

a b

In c

ase

1770

a

In c

ase

1773

b

( )4- lower hole For M8 Screw bolt or M8 Anchor bolt

( )2- lower hole For M8 Screw bolt or M8 Anchor bolt

Front

Fro

nt

Mor

e th

an10

00

Mor

e th

an20

0

Morethan500

Refrigerant piping joint (Gas side A)

Refrigerant piping joint (Liquid side B)

50 5 120 (Square opening)(For under surface piping)Ø130 Knockout

(For backside piping)

MMF-AP0151H, AP0181H, AP0241H, AP0271H

Space required for service(In case of right side piping )

Refrigerant piping position

Details of hole for lower side pipingDetails of hole for back side piping

Note: All dimensions are in mm.

Dimensions

Model

MMF-AP0151H, AP0181H

MMF-AP0241H, AP0271H

A

O/ 12.7

O/ 15.7

B

O/ 6.4

O/ 9.5

Wired remote controller RBC-AMT21E RBC-AMT31ESimple wired remote controller RBC-AS21E RBC-AS21E2Wireless remote controller kit TCB-AX21E TCB-AX21E2Weekly timer application RBC-AMT31E and RBC-EXW21E2

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173

Installation plate

Dischargeport 80

30 5 3 30 5 3600

Wall

Wall

Incase of installing distance is 50mm from wall( )

Lower refrigerant piping port(50 5 120 Knockout)

Controlpart

Controlcover

Installation plate

Suction portDtain hose

Drain hose

Refrigerant piping hole (Back side)(Ø130 Knockout)

Refrigerant piping hole (Bottom side)(50 5 120 Knockout)

Earth screw (M4)

Refrigerant piping port (Both side)(Ø80 Knockout)

Wall

Wall

Wall

Wall

Front

Fro

nt

Mor

e th

an10

00

Mor

e th

an 2

00

Morethan500

Refrigerant piping joint (Gas side Ø19)

Refrigerant piping joint (Liquid side Ø9.5)

Gas side

Liquidside

( )4- lower hole For M8 Screw bolt or M8 Anchor bolt

( )2- lower hole For M8 Screw bolt or M8 Anchor bolt

50 5 120 (Square opening)(For under surface piping)

Ø130 Knockout(For backside piping)

Floor

a b

In c

ase

1770

a

In c

ase

1773

b 15

MMF-AP0361H, AP0481H, AP0561H

Refrigerant piping position

Details of hole for back side piping Details of hole for lower side piping

Space required for service(In case of right side piping )

Note: All dimensions are in mm.

Wired remote controller RBC-AMT21E RBC-AMT31ESimple wired remote controller RBC-AS21E RBC-AS21E2Wireless remote controller kit TCB-AX21E TCB-AX21E2Weekly timer application RBC-AMT31E and RBC-EXW21E2

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174

2. Outdoor unit

88115

231

225

154 21

5

8813

5

5813

0

112

852

173

5759

139

144

80

80

630

610

100

100

700anchor bolt pitch

755

anch

or b

olt p

itch

700anchor bolt pitch

990

755

anch

or b

olt p

itch

790

(incl

udin

g st

eady

leg)

750

4-15 20 (Long hole)

2-60 150 square hole (Hole for handling goods)

Refrigerant pipe connecting port (Liquid side)

Refrigerant pipe connecting port (Discharge gas side)

Refrigerant pipe connecting port (Suction gas side)

A

Section of bottom plate

Foundation

Foundation

Front side (For work and service)

Front sideFront side

Front sideFront side

Front side

10 or more

500

or m

ore

(Not

e 3)

(100

0 or

mor

e)60

0 or

mor

e

500

or m

ore

500

or m

ore

(Not

e 3)

(100

0 or

mor

e)60

0 or

mor

e

600

or m

ore

500

or m

ore

800

or le

ss

10 or more

1010 or more

500

or m

ore

500

or m

ore 17

50or

mor

e

Knockout for power piping (ø48)

Knockout for control piping (ø27)

Refrigerant pipe connecting port (Discharge gas side)

Refrigerant pipe connecting port (Liquid side)

Refrigerant pipe connecting port (Suction gas side)

Square hole15

MMY-MAP0802FT8, MAP1002FT8, MAP1202FT8

(NOTES)1. If there is an obstacle above the outdoor unit, ensure there is a minimum space of 2000mm or more above the unit.2. Any obstacle around the perimeter of the outdoor unit must be kept 800mm or less.3. Draw out the locally supplied pipe at the the front of the outdoor unit horizontally, keep a minimum of 500mm or more between the outdoor unit and traversing pipe. If the pipework is to be installed in this method.

Space required for service

Details of front pipe/cabling holes Details of hole for piping at lower side (Plane view)

Note: All dimensions are in mm.

*1 Cutting position of L-shape pipe when pipe at gas side is connected (Recommended pipe connecting position)

Model name

MMY-MAP0802FT8

MMY-MAP1002FT8

MMY-MAP1202FT8

O/ A

22.2

22.2

28.6

Page 180: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

175

2000

700

164018

00

88

165

20 or more990 990

700anchor bolt pitch

(310)700anchor bolt pitch

755

anch

or b

olt p

itch

790

(incl

udin

g st

eady

leg)

750

8-15 X 20 (hole)

1 2

Front sideFront side

Front sideFront side

Front sideFront side

Front sideFront side

Front side Front side

(Not

e 4)

500

or m

ore

(Not

e 4)

500

or m

ore

(Not

e 3)

(100

0 or

mor

e)60

0 or

mor

e

(Not

e 4)

500

or m

ore

(Not

e 3)

(100

0 or

mor

e)60

0 or

mor

e60

0or

mor

e50

0or

mor

e

(Not

e 4)

500m

m o

r m

ore

500m

mor

mor

e

1750

mm

or

mor

e

10mm or more

2020mm or more

20mm or more10mm

or more

800

or le

ss

800

or le

ss

Front side (For work and service)

15

(NOTES)1.If there is an obstacle above the outdoor unit, ensure there is a minimum space of 2000mm or more above the unit.2.Any obstacle around the perimeter of the outdoor unit must be kept 800mm or less.3.Draw out the locally supplied pipe to the front of the outdoor unit horizontally, keep a minimum of 500mm or more between the outdoor unit and traversing pipe. If the pipework is to be installed in this method.4.Arrange each outdoor unit in order of its capacity. (Header > Follower)

MMY-AP1602FT8, AP1802FT8, AP2002FT8

<Two units connected>

Combination unit

MMY-AP1602FT8

MMY-AP1802FT8

MMY-AP2002FT8

Header

MAP0802FT8

MAP1002FT8

MAP1002FT8

Follower

MAP0802FT8

MAP0802FT8

MAP1002FT8

Combination outdoor unit

Space required for service

Note: All dimensions are in mm.

Page 181: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

176

15

3010

700

164018

00

88

165

20 or more99020 or more990 990

700anchor bolt pitch

(310)700anchor bolt pitch

(310)700anchor bolt pitch

755

anch

or b

olt p

itch

790

(incl

udin

g st

eady

leg)

750

12-15 X 20 (hole)

321

Front sideFront side

Front sideFront side

Front sideFront side

Front sideFront side

Front sideFront side

Front sideFront side

Front side Front side Front side

(Fro

nt s

ide)

(Not

e 4)

500

or m

ore

(Not

e 4)

500

or m

ore

(Not

e 3)

(100

0 or

mor

e)60

0 or

mor

e

(Not

e 4)

500

or m

ore

600

or m

ore

500

or m

ore

(Not

e 3)

(100

0 or

mor

e)60

0 or

mor

e

800

or le

ss

800

or le

ss

(Rea

r si

de)

(Not

e 4)

500m

m o

r m

ore

500m

mor

mor

e

1750

mm

or

mor

e

10mm or more 20mm or more 20mm or more

3030mm or more

10mmor more

Front side (For work and service)

MMY-AP2402FT8, AP2602FT8, AP2802FT8, AP3002FT8<Three units connected>

Combination unit

MMY-AP2402FT8

MMY-AP2602FT8

MMY-AP2802FT8

MMY-AP3002FT8

Header

MMY-MAP0802FT8

MMY-MAP1002FT8

MMY-MAP1002FT8

MMY-MAP1002FT8

Combination outdoor unit

Follower

MMY-MAP0802FT8

MMY-MAP0802FT8

MMY-MAP1002FT8

MMY-MAP1002FT8

Follower

MMY-MAP0802FT8

MMY-MAP0802FT8

MMY-MAP0802FT8

MMY-MAP1002FT8

2 3

Space required for service

Note: All dimensions are in mm.

(NOTES)1.If there is an obstacle above the outdoor unit, ensure there is a minimum space of 2000mm or more above the unit.2.Any obstacle around the perimeter of the outdoor unit must be kept 800mm or less.3.Draw out the locally supplied pipe to the front of the outdoor unit horizontally, keep a minimum of 500mm or more between the outdoor unit and traversing pipe. If the pipework is to be installed in this method.4.Arrange each outdoor unit in order of its capacity. (Header > Follower > Follower )2 3

Page 182: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

177

3. FS unit (Flow Selector Unit)

7931

54

5739

160

154

2144

87 75

(94)(55)

(99) (55)

190

250Refrigerant pipe connecting port (Discharge gas)

Refrigerant pipe connecting port (Liquid)

Refrigerant pipe connecting port (Suction gas)

Outdoor unit side

Y1802FE only Earthscrew

(99)

320 (hanging bolt pitch)

<RBM-Y1122FE (when attached pipes are used)>

<RBM-Y1122FE, RBM-Y1802FE>

50

500 Check port

Outdoor unitside

Indoor unit side

450X450

Electrical partsbox cover

50

200 or more

200 or more

50

200 or more 300 or more

(159)

(118) 1

2 3

or mor

e

5050

Refrigerant pipe connecting port (Liquid)

Refrigerant pipe connecting port (Gas)

Indoor unit side

or m

ore

or mor

eor mor

eor mor

e

or mor

e

15

RBM-Y1122FE, Y1802FE

(Specifications)Accessory pipe and socket

Model name

Indoor unitside

Outdoorunit side

Connecting indoor unit capacity

Power supply

Total weight

Dimension (mm)

Liquid side

Gas side

Liquid side

Discharge gas side

Suction gas side

RBM-Y1122FE RBM-Y1802FEConnectingpipe

Connectingmethod

Connectingpipe

Connectingmethod

O/ 9.5 *1

O/ 15.9 *1

O/ 9.5

O/ 12.7

O/ 15.9

O/ 9.5

O/ 15.9

O/ 9.5

O/ 12.7

O/ 15.9

Flare

Flare

Flare

Flare

Flare

Flare

Flare

Flare

Flare

Flare

007 to 030 type 036 to 056 type

Single phase 50Hz 230V(220-240V)

5kg 5kgHeigt 190 X Width 250 X Depth 160

O/ 9.5, Brazing

O/ 12.7, Brazing

O/ 6.4, Brazing

For gas pipe

For gas pipe

For liquid pipe

007 to 012 type

015, 018 type

007 to 018 type

*1) When the capacity of the connected indoor unit is less than 5.6 kW, adjust the pipe

size by using this accessory pipe.

Note: All dimensions are in mm.

1

3

2

(Installation space)

Page 183: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

178

3. FS unit (Flow Selector Unit)

7732

31

6849

42

200

28 3867

(108) (109)(66)

(109) (65)

200

Refrigerant pipe connecting port (Discharge gas)

Refrigerant pipe connecting port (Liquid)

Refrigerant pipe connecting port (Suction gas)

Outdoor unit side

Earthscrew

470 (hanging bolt pitch)

RBM-Y2802FE (when supplied pipes are used)

50

500 Check port

Outdoor unitside

Indoor unit side

450X450

Electrical partsbox cover

400 or more 400 or more

(210)

(210)

(198)

Refrigerant pipe connecting port (Liquid)

Refrigerant pipe connecting port (Gas)

Indoor unit side

or m

ore

100

or

mor

e

100

or

mor

e

or mor

e

1

2

2

400

94

94

15

*1) Adjust the pipe size by using this accessory pipe.

Note: All dimensions are in mm.

RBM-Y2802FE

(Specifications)

(Installation space)

Model name

Indoor unitside

Outdoor unitside

Liquid side

Gas side

Liquid side

Discharge gas side

Suction gas side

Total capacity of indoor unit (kW)

Power Supply

Total Weight

Dimension (mm)

Connectingport

Connectingmethod

O/ 12.7

O/ 22.2 *1

O/ 12.7

O/ 15.9 *1

O/ 22.2 *1

18.0 to 28.0 or less

Single phase 50Hz 230V (220-240V)

8.5 kg

Height 200 X Width 400 X Depth 200

Flare

Flare

Flare

Flare

Flare

RBM-Y2802FEAccessory pipe

O/ 19.1 (Flare) O/ 22.2 (Brazing)2

21 O/ 15.9 (Flare) O/ 19.1 (Brazing)

O/ 19.1 (Flare) O/ 22.2 (Brazing)

Page 184: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

179

ØD

B 80 X n

Insulator

Insulator

50A

C

ØE

ØD

B 80 X n B

ØD

A ØE

74.5

61

4. Branch header/Branch joint

15

Branch headerRBM-HY1043E, HY1083E, HY2043E, HY2083E

Gas side

Liquid side

Model

RBM-HY1043E

RBM-HY1083E

RBM-HY2043E

RBM-HY2083E

Gas side

Liquid side

Gas side

Liquid side

Gas side

Liquid side

Gas side

Liquid side

A

380

360

700

680

385.5

360

705.5

680

B

90

60

90

60

95.5

60

95.5

60

C

83.6

-

83.6

-

89.3

-

89.3

-

O/ D

22.2

15.9

22.2

15.9

31.8

15.9

31.8

15.9

O/ E

15.9

9.5

15.9

9.5

15.9

9.5

15.9

9.5

n

3

3

7

7

3

3

7

7

Accessory soket Q’ty

6 X4, 9 X4, 14 X1, 18 X1, 70 X1

1 X4, 6 X1, 9 X1

6 X8, 9 X8, 14 X1, 18 X1, 70 X1

1 X8, 6 X1, 9 X1

6 X2, 9 X2, 27 X1, 59 X1

1 X2

6 X7, 9 X7, 27 X1, 59 X1

1 X7

Page 185: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

180

15

ØC

B

ØD

ØD

B

ØD

ØC

A

ØD

ØC

A

Insulator

Insulator

Insulator

Insulator

ØD

ØD

B

ØC

A

ØD

ØD

B

Y-shape branch jointRBM-BY53E, BY103E

Gas side Liquid side

RBM-BY203E, BY303E

Gas side Liquid side

Model

RBM-BY53E

RBM-BY103E

RBM-BY203E

RBM-BY303E

Gas side

Liquid side

Gas side

Liquid side

Gas side

Liquid side

Gas side

Liquid side

A

250

200

350

250

350

250

400

350

B

80

70

80

80

80

80

110

80

O/ C

15.9

12.7

22.2

15.9

31.8

15.9

38.1

22.2

O/ D

12.7

9.5

19.1

12.7

28.6

15.9

38.1

19.1

Accessory Socket Quantities

5 X2, 54 X2, 9 X1, 51 X1

1 X2, 5 X1

7 X1, 10 X1, 13 X2, 18 X1, 52 X2, 70 X1, 89 X1

2 X1, 5 X2, 6 X1, 9 X1, 54 X1

16 X1, 20 X1, 27 X1, 43 X2, 48 X1, 49 X1, 58 X1, 59 X1

3 X1, 6 X1, 9 X2

61 X3, 62 X2, 71 X2, 73 X1, 74 X1, 75 X1, 76 X1, 77 X1

4 X1, 7 X1, 10 X1, 13 X2, 14 X1, 18 X1, 52 X1

Page 186: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

181

ØB

A

Ø15.9Outer dia

ØB

A

Ø12.7Outer dia

Ø6.4

Ø9.5Outer dia

24

ØBA

Ø19.1Outer dia

ØB

A

Ø22.2Outer dia

ØB

A

Ø28.6Outer dia

ØB

A

Ø31.8Outer dia

ØB

A

Ø38.1Outer dia

1 2 5 54

3 6 9 51 4 7 10 13 52 89

16 20 43 48 49 5814 18 70 85 86

27 59 61 62 73 74 75 76 77

15

Accessory socket

A

29

26

31

O/B

6.4

9.5

15.9

2

5

54

A

39

39

36

33

43

53

O/B

6.4

9.5

12.7

15.9

22.2

28.6

4

7

10

A

50

52

50

54

52

62

O/B

15.9

19.1

22.2

9.5

12.7

34.9

16

20

43

A

55

66

66

66

66

64

62

62

O/B

34.9

41.3

28.6

22.2

19.1

15.9

12.7

9.5

61

62

71

A

35

32

28

38

O/B

6.4

9.5

12.7

19.1

3

6

9

A

40

40

54

41

44

O/B

15.9

19.1

28.6

12.7

9.5

14

18

70

A

49

59

O/B

28.6

34.9

27

59

52

89

13

51

85

86

48

49

58

73

74

75

76

77

Page 187: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

182

15

Insulator250

Ø 1

5.9 12

Ø 1

2.7

Ø 1

2.7

8010

10Ø 15.9Ø 9.5

Ø 12.7

2pcs.Outer dia Outer dia

26

Ø 12.7

2pcs.

31

5405

250

Ø 1

5.9 12

Ø 1

2.7

Ø 1

2.7

8010

10 Outer dia Outer dia

Outer dia Outer dia

Ø 12.7

Ø 15.9

Ø 12.7

Ø 9.5

2pcs.

26

Ø 15.9

Ø 12.7

1pc.

Closed pipe

31

1pcs.

28 (41.

9)

1pc.

Ø 12.7

Insulator

5405

09

Ø 9

.5Ø

9.5

70

Ø 1

2.7

200

10

9

9

Outer dia Outer dia2pcs. 1pc.

Ø 9.5

Ø 6.4

24

Ø 9.5

Ø 12.7

26

0501

Insulator

Y-shape branch jointRBM-BY53FESuction gas side Accessory socket

Discharge gas side Accessory socket

Accessory socketLiquid side

Page 188: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

183

350

18

Ø 2

2.2

8016

Ø 1

9.1

16

Ø 1

9.1

Outer dia Outer dia Outer dia Outer dia

Outer dia Outer dia

Ø 19.1

39 36 33

1pc.

Ø 19.1

1pc.

Ø 19.1

2pcs.

Ø 12.7Ø 9.5 Ø 15.9

42.5

53 54

1pc.

Ø 19.1

2pcs.

Ø 19.1

1pc.

Ø 22.2

Ø 28.6

Ø 22.2

Ø 28.6

Insulator

13 521007

89 70

350

18

Ø 2

2.2

8016

Ø 1

9.1

16

Ø 1

9.1

Ø 22.2

Ø 19.1

40

5210

18

Ø 19.1

Ø 12.7

Ø 19.1

Ø 22.2

42.5

36

Ø 19.1

(45)

Insulator

2 pcs. 1 pc.Outer dia

Closed pipe

Outer dia

1 pc.Outer dia

1 pc.Outer dia

Insulator

Ø 1

5.9

12

250

10

10 80

Ø 1

2.7

Ø 1

2.7

29

Ø 12.7

Ø 6.4

26

Ø 12.7

Ø 9.5

31

Ø 12.7

Ø 15.9

Ø 15.9

28

Ø 12.7

1 pc.Outer dia

2 pcs.Outer dia

1 pc.Outer dia

1 pc.Outer dia

0502

0954

15

Accessory socket

Accessory socket

Accessory socket

Y-shape branch jointRBM-BY103FE

Suction gas side

Discharge gas side

Liquid side

Page 189: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

184

15

350

22

Ø 2

8.6

80

22

Ø 2

8.6

22Ø 3

1.8

Insulator

52

Ø 28.6Ø 28.6

1 pc. 1 pc.

Ø 9.5

54

Ø 12.7

Ø 28.6Ø 28.6

1 pc. 2 pcs.

Ø 22.2

50

Ø 15.9

50

Ø 31.8

1 pc.

Ø 28.6

49

48 49

16 43

27

62

1 pc.

Ø 34.9

Ø 28.6

58

Outer dia.

Outer dia. Outer dia. Outer dia.

Outer dia. Outer dia.

350

18

Ø 2

2.2

Ø 1

9.1

80

Ø 1

9.1

16

16

Insulator

Ø 19.1

Ø 28.642

.5

2 pcs.

Ø 19.1

Ø 22.2

5453

Ø 22.2Outer dia.

Outer dia. Outer dia.

Outer dia. Outer dia.1 pc.

1 pc.

Ø 28.6

45

Ø 19.1

Closed pipe

1 pc.

5270

89

36

1 pc.

Ø 19.1

Ø 12.7

10

250

12

Ø 1

5.9

10

Ø 1

2.7

10

Ø 1

2.7

80

Insulator

26

Ø 12.7

Ø 9.5

05

Ø 12.7

31

Ø 15.9

54

37.5

Ø 15.9Outer dia. Outer dia.

Outer dia.Outer dia.

51Ø 19.1 Ø 6.4

Ø 12.7

29

02

1 pc. 1 pc.

2 pcs.1pc.

Suction gas side

Discharge gas side

Liquid side

Y-shape branch jointRBM-BY203FE

Accessory socket

Accessory socket

Accessory socket

Note: All dimensions are in mm.

Page 190: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

185

350

22

Ø 2

8.6

80

22

Ø 2

8.6

22Ø 3

1.8

Insulator

52

Ø 28.6Ø 28.6

1 pc. 1 pc.

Ø 9.5

54

Ø 12.7

Ø 28.6Ø 28.6

1 pc. 2 pcs.

Ø 22.2

50

Ø 15.9

50

Ø 31.8

1 pc.

Ø 28.6

49

48 49

16 43

27

62

1 pc.

Ø 34.9

Ø 28.6

58

Outer dia.

Outer dia. Outer dia. Outer dia.

Outer dia. Outer dia.

350

18

Ø 2

2.2

Ø 1

9.1

80

Ø 1

9.1

16

16

Insulator

Ø 19.1

Ø 28.642

.5

2 pcs.

Ø 19.1

Ø 22.2

5453

Ø 22.2Outer dia.

Outer dia. Outer dia.

Outer dia. Outer dia.1 pc.

1 pc.

Ø 28.6

45

Ø 19.1

Closed pipe

1 pc.

5270

89

36

1 pc.

Ø 19.1

Ø 12.7

10

250

12

Ø 1

5.9

10

Ø 1

2.7

10

Ø 1

2.7

80

Insulator

26

Ø 12.7

Ø 9.5

05

Ø 12.7

31

Ø 15.9

54

37.5

Ø 15.9Outer dia. Outer dia.

Outer dia.Outer dia.

51Ø 19.1 Ø 6.4

Ø 12.7

29

02

1 pc. 1 pc.

2 pcs.1pc.

15

Suction gas side

Discharge gas side

Liquid side

Y-shape branch jointRBM-BY303FE

Accessory socket

Accessory socket

Accessory socket

Note: All dimensions are in mm.

Page 191: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

186

15 Insulator

1pcs.

Ø 1

5.9

12

45 80 80 80 45

12

Ø 1

5.9

330 24

Ø 9.5

Ø 6.4

32

Ø 15.9

Ø 9.5

Ø 15.9

Ø 12.7

28

Ø 15.9

35(4

3.5)

Ø 9.5

35

(40.

2)

1pcs.4pcs. 1pcs.

1pcs.

Outer dia

Outer dia Outer dia

Outer dia Outer dia

9

Ø 9.5

74.5

61

Closed pipe

06 0901

80

380

18

90

Ø 2

2.2

68

80 80 50

Insulator

Ø 15.928

Ø 12.7

32

Ø 15.9

Ø 9.5

Ø 19.1

Ø 22.2

40

850906

18

Ø 22.2

41

Ø 12.7

Ø 15.9

(43.

5)35

4 pcs.Outer dia

1 pcs.Outer dia

3 pcs.Outer dia

4 pcs.Outer dia

1 pcs.Outer dia

Ø 15.9

83.6

12

Closed pipe

80

380

18

90

Ø 2

2.2

68

80 80 50

Insulator

Ø 15.9 Ø 22.2

1pcs.

Ø 15.9

40

Ø 15.9

3pcs. 4pcs.

Closed pipe

54

Ø 22.2

Ø 28.6

1pcs.

Ø 12.7Ø 9.5

32 2835 (43.

5)

Ø 15.9

1pcs.

Outer dia

Outer dia Outer dia

Outer dia Outer dia

Ø 15.9

83.6

12

140906

70

Suction gas side

Discharge gas side

Liquid side

Branch headerRBM-HY1043FE

Accessory socket

Accessory socket

Accessory socket

Note: All dimensions are in mm.

Page 192: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

187

0151

Outer dia.

Outer dia. Outer dia.

Outer dia.1 pc.

1 pc. 3 pcs.

7 pcs.

Ø 1

5.9

12

74.5

61

33080

Insulator

8045 80

Ø 1

5.912

45Ø 9.5

9

37.5

Ø 15.9

Ø 19.1

Ø 9.5

24

Ø 6.4

Closed pipe

Ø 9.5

(40.

2)3535

(43.

5)

Ø 15.9

Outer dia.2 pcs.Outer dia.1 pc. Outer dia.2 pcs.

27

59

06

Ø 3

1.8

89.3

12

Insulator

80

385.5

8095.5

66.223

80 50Ø 15.9

Ø 28.6

Ø 31.8

49

(43.

5)

35

Ø 15.9

Closed pipe

32

Ø 15.9

09

28

Ø 15.9

Outer dia.1 pc. Outer dia.3 pcs.

Ø 12.7Ø 9.5

Ø 31.8

Ø 34.9

597009

Outer dia.Outer dia.

Outer dia.

1 pc.4 pcs.

7 pcs.

68

90

380

18

Ø 2

2.2

508080 80

83.6

Ø 15.9

12

Insulator

(43.

5)

35

54

Ø 15.9

Ø 22.2

Closed pipe

Ø 34.928

Ø 15.9

Ø 12.7

15

Suction gas side

Discharge gas side

Liquid side

Branch headerRBM-HY2043FE

Accessory socket

Accessory socket

Accessory socket

Note: All dimensions are in mm.

Page 193: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

188

15

Insulator

1pcs.8pcs. 1pcs.

1pcs. 3pcs.

Outer dia Outer dia Outer dia

Outer dia Outer dia

Ø15

.9

1245 80 80 80 80 80 80 80 45

12

Ø15

.9

650

B

Ø9.5

9 61

74.5

24

Ø6.4 Ø12.7

Ø15.9

2832

Ø15.9

Ø9.5

Ø15.9

43.5

35 40.2

35

Ø9.5

Ø9.5

Closed pipe

06 0901

Insulator

700

Ø22

.2

90

18

808080

68

8080

83.6

12

Ø15.9508080

1pcs.8pcs. 8pcs.

1pcs.

850906

18

7pcs.

Outer dia Outer dia Outer dia

Outer dia Outer dia

Ø12.7

Ø22.2

4032 28

Ø15.9Ø15.9

Ø22.2

Ø12.7Ø9.5

Ø19.1

(43.

5)

35

41

Ø15.9

Closed pipe

Insulator

1pcs.7pcs. 8pcs.

1pcs. 3pcs.

Outer dia Outer dia Outer dia

Outer dia Outer dia

700

Ø22

.2

90

18

808080

68

8080

83.6

12

Ø15.9508080

Ø15.9

Ø22.2

5432 28

Ø15.9Ø15.9

Ø22.2

Ø12.7Ø9.5

Ø28.6

(43.

5)

35

40

Ø15.9

Closed pipe

140906

70

B-view

Suction gas side

Discharge gas side

Liquid side

Branch headerRBM-HY1083FE

Accessory socket

Accessory socket

Accessory socket

Note: All dimensions are in mm.

Page 194: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

189

0151

1 pc. 7 pcs.

1 pc. 3 pcs.

Outer dia. Outer dia.

Outer dia. Outer dia.

80650

4512

Ø15

.9

808080 80 8080

61

74.5

Ø15

.9

4512

9

Ø9.5

Insulator

24

Ø6.4Ø19.1

Ø9.5Ø15.9

37.5

(43.

5)

(40.

2)

Ø9.5Ø15.9

35 35

Closed pipe

06

09

27

1 pc.

7 pcs. 3 pcs.

7 pcs.66.2

95.5705.5

Ø31

.8

23

808080 80 80 80 80

Insulator

Ø15.950

89.3

12

49

Ø31.8

Ø28.6

35 (43.

5)

28

32

Ø15.9

Ø15.9 Ø 15.9

Ø9.5

Ø12.7 Closed pipe

59

1 pc.

Ø34.9

Ø31.8

59

Outer dia. Outer dia.

Outer dia. Outer dia.

Outer dia.

0970

80700

8090

68

Ø22

.2 18

80 80 8080 80 50

1283

.6

Ø15.9

Insulator

7 pcs.

1 pc. 8 pcs.

59

Ø22.2

Ø34.9(4

3.5)

28

35

Ø15.9

Ø15.9

Ø12.7

Closed pipe

Outer dia. Outer dia.

Outer dia.

15

Suction gas side

Discharge gas side

Liquid side

Branch headerRBM-HY2083FE

Accessory socket

Accessory socket

Accessory socket

Note: All dimensions are in mm.

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190

T-shape branch joint

Outer dia.2 pcs. Outer dia.3 pcs. Outer dia.1 pc.

73 71 61

14

78

Ø38

.1

Ø38

.1

39

14

1 pc.

14

Ø38.1

66

Ø38.1

Ø22.2

5566

Ø38.1 Ø 38.1

Ø28.6 Ø 34.9

Outer dia.2 pcs.

Outer dia.2 pcs.

20 43Ø28.6

Ø28

.6

Ø28

.6

21

41

21 21

82

Ø28.6

52

Ø28.6

Ø19.1

50

Ø22.2

1 pc.

Outer dia.2 pcs.

Outer dia.1 pc.

Outer dia.1 pc.

85 14 18

1 pc.

Ø22

.2

Ø22

.2

33

17

66

17

17

Ø22.2

Ø22.2

Ø15.9

41

Ø22.2

Ø12.7

4040

Ø22.2

Ø19.1

1 pc.34

8

Ø9.

5

14

Ø9.

5

8

8

Ø9.5

Suction gas side

Discharge gas side

Liquid side

RBM-BT13FE

Accessory socket

Accessory socket

Accessory socket

Note: All dimensions are in mm.

Balance pipe side

Page 196: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

191

16

Specifications

Page 197: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

192

Page 198: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

193

16

16 ForewordSpecifications

Indoor unit (50Hz specification)4-way Air Discharge Cassette Type

TECHNICAL SPECIFICATIONS

Power supply

Running current (A)

Power consumption (kW)

Starting current (A)

Main unit

CeilingPanel

Ceilingpanel

Model

Panel colour

Height (mm)

Width (mm)

Depth (mm)

Height (mm)

Width (mm)

Depth (mm)

Main unit (kg)

Ceiling panel (kg)

Electricalcharacteristics

Appearance

Total weight

Heat exchanger

Soundproof/Heat-insulating material

Fan

Standard air flow High(Mid./Low) (m3/h)

Motor (W)

Air filter

Controller

Connectingpipe

Sound pressure level(Note 2)(High/Mid./Low) (dB(A))

Gas side (mm)

Liquid side (mm)

Drain port (Nominal dia. mm)

Fan unit

AP0091H

2.8/3.2

0.17

0.020

0.30

0.19

0.022

0.33

0.21

0.026

0.36

0.24

0.032

0.42

0.35

0.048

0.59

0.59

0.070

0.87

0.81

0.110

1.23

0.83

0.112

1.26

AP0121H

3.6/4.0

AP0151H

4.5/5.0

AP0181H

5.6/6.3

AP0241H

7.1/8.0

AP0271H

8.0/9.0

AP0301H

9.0/10.0

AP0361H

11.2/12.5

AP0481H

14.0/16.0

AP0561H

16.0/18.0

1 phase 50Hz 230V (220-240V) (Separate power supply for indoor units is required.)

Heat-insulating material attached Zinc hot dipping steel plate

RBC-U21PG (W) -E

Moon white (Munsell/2.5GY 9.0/0.5)

840

840

35

950

950

4.5

Finned tube

Non-flammable insulation

Turbo fan

256 319

28232220

800(730/680)

60

Standard filter attached (Long life filter)

Remote controller

O/ 9.5

30/29/27 31/29/27 32/29/28 34/31/28 37/33/30 40/36/33 44/38/34

O/ 6.4

25 (Polyvinyl chloride tube)

O/ 12.7 O/ 15.9

O/ 9.5

90

930(830/790)

1,050(920/800)

1,200(920/820)

1,320(1,110/850)

1,680(1300/1,070)

2,040(1,430/1,130)

2,090(1,520/1,230)

50Hz

45/40/34

Model name MMU-

Cooling/Heating capacity (Note 1) (kW)

Main unit

Outerdimension

Note 1: The cooling capacities and electrical characteristics are measured under the conditions specified by JIS B 8615 based on thereference piping. The reference piping consists of 5 m of main piping and 2.5 m of branch piping connected with 0 meter height.

Note 2 : The sound levels are measured in an anechoic chamber in accordance with JIS B8616. Normally, the values measured in theactual operating environment become larger than the indicated values due to the effects of external sound.

Note : Rated conditions Cooling : Indoor air temperature 27oC DB/19oC WB, Outdoor air temperature 35oC DBHeating : Indoor air temperature 20oC DB, Outdoor air temperature 7oC DB/6oC WB

Page 199: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

194

Main unit

CeilingPanel

16

Model name MMU-

Cooling/Heating capacity (kW)

Power supply

Running current (A)

Power consumption (kW)

Power factor (%)

Starting current (A)

Ceilingpanel

Height (mm)

Width (mm)

Depth (mm)

Height (mm)

Width (mm)

Depth (mm)

Electricalcharacteristics

Main unit (kg)

Ceiling panel (kg)

Appearance

Total weight

Heat exchanger

Soundproof/Heat-insulating material

Outerdimension

Standard air flow(High/Mid./Low) (m3/h)

Fan

Motor (W)

Air filter

Controller

Connectingpipe

Gas side (mm)

Liquid side (mm)

Drain port (Nominal dia. mm)

AP0071WH

2.2/2.5

0.31

0.070

0.32

0.072

0.46

0.105

99

0.89

0.47

0.106

98

0.98

1.16

0.250

98

1.33

1 phase 50Hz 230V (220-240V) (Separate power supply for indoor units is required.)

398

44

Light ivory (Munsell 10Y 9/0.5)

650

570/510/450

53

Standard filter attached (Long life filter)

Remote controller

O/ 9.5

34/32/30 35/33/30 38/35/33 40/37/34

O/ 6.4

O/ 15.9

O/ 9.5

AP0091WH

2.8/3.2

AP0121WH

3.6/4.0

AP0151WH

4.5/5.0

AP0181WH

5.6/6.3

AP0241WH

7.1/8.0

AP0271WH

8.0/9.0

AP0301WH

9.0/10.0

AP0481WHChina only

14.0/16.0

1 phase50Hz 220V

97

0.47 0.60

Heat-insulating material attached Zinc hot dipping steel plate

RBC-UW136PG RBC-UW266PGRBC-

UW466PG

830 1,350

550

8

1,000 1,520

33

8

1,898

680

52

18

48

11

Finned tube

Non-flammable insulation

Centrifugal fan

Sound pressure level(Note 2)(High/Mid./Low) (dB(A))

39 53 92

O/ 12.7

1920/1500/1050

2-way Air Discharge Cassette Type

50Hz

Model

Panel colour

Main unit

406

1,650

620

Fan unit 780/700/600 1140/960/720 1260/1140/960

25 (Polyvinyl chloride tube)

45/42/39

Note 1: The cooling capacities and electrical characteristics are measured under the conditions specified by JIS B 8615 based on thereference piping. The reference piping consists of 5 m of main piping and 2.5 m of branch piping connected with 0 meter height.

Note 2:The sound levels are measured in an anechoic chamber in accordance with JIS B8616. Normally, the values measured in theactual operating environment become larger than the indicated values due to the effects of external sound.

Note : Rated conditions Cooling : Indoor air temperature 27oC DB/19oC WB, Outdoor air temperature 35oC DBHeating : Indoor air temperature 20oC DB, Outdoor air temperature 7oC DB/6oC WB

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195

16

1-way Air Discharge Cassette Type

(kW)

MMU-

2.2/2.5 2.8/3.2 3.6/4.0 4.5/5.0 5.6/6.3 7.1/8.0

(A) 0.24 0.48 0.55

(kW) 0.053 0.103 0.115

(%) 95 93 91

(A) 0.6 0.8 1.1

(mm) 235 198

(mm) 850 1,000 1,200

(mm) 400 655

(mm) 18 10

(mm) 1,050 1,220 1,420

(mm) 470 755

(kg) 22 27 31

(kg) 3.5 8 9

(m3/h) 540/480/420 780/720/660 1,200/1,140/1,020

(W) 22 34

(mm) Ø9.5 Ø12.7 Ø15.9

(mm) Ø6.4 Ø9.5

(dB(A)) 42/39/34 42/39/35 43/41/37

(Nominal dia. mm)

Model name

Cooling/Heating capacity (Note 1)

Power supply

Running current

Power consumption

Power factor

Starting current

Electricalcharacteristics(Note 2)

Appearance

Main unit

Ceilingpanel

Model

Panel colour

Outerdimension

Main unit

Height

Width

Depth

Height

Width

Depth

Ceilingpanel

Main unit

Ceiling panelTotal weight

Heat exchanger

Soundproof/Heat-insulating material

Fanunit Standard air flow (High/Mid./Low)

Motor

Fan

Controller

Room thermostat

Air filter

Connectingpipe

Gas side

Liquid side

Drain port

Sound pressure level(Note 2)(High/Mid./Low)

AP0071YH AP0091YH AP0121YH AP0151SH AP0181SH AP0241SH

1 phase 50Hz 230V (220-240V) (Separate power supply for indoor units is required.)

Heat-insulating material attached Zinc hot dipping steel plate

RBC-UY135PG RBC-US165PG RBC-US265PG

W : Silky shade (1Y8.5/0.5)

Finned tube

Non-flammable insulation

Centrifugal fan

Remote controller

Attached

Standard filter attached (Long life filter)

50Hz

25 (Polyvinyl chloride tube)

Note 1: The cooling capacities and electrical characteristics are measured under the conditions specified by JIS B 8615 based on thereference piping. The reference piping consists of 5 m of main piping and 2.5 m of branch piping connected with 0 meter height.

Note 2: The sound levels are measured in an anechoic chamber in accordance with JIS B8616. Normally, the values measured in theactual operating environment become larger than the indicated values due to the effects of external sound.

Note : Rated conditions Cooling : Indoor air temperature 27oC DB/19oC WB, Outdoor air temperature 35oC DBHeating : Indoor air temperature 20oC DB, Outdoor air temperature 7oC DB/6oC WB

Page 201: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

196

MMD-

(kW) 2.2/2.5 2.8/3.2 3.6/4.0 4.5/5.0 5.6/6.3 7.1/8.0 8.0/9.0 9.0/10.0 11.2/12.5 14.0/16.0 16.0/18.0

(A) 0.29 0.34 0.43 0.52 0.61 0.83 0.98

(kW) 0.033 0.039 0.050 0.060 0.071 0.107 0.128

(A) 0.5 0.59 0.75 0.90 1.05 1.44 1.70

(mm) 320

(mm) 550 700 1,000 1,350

(mm) 800

(mm) 9

(mm) 630 780 1,080 1,430

(mm) 500

(kg) 28 32 43 55

(kg) 3.5 4 6 7

(m3/h)480

(420/340)570

(490/400)650

(540/480)780

(660/540)1,140

(990/870)1,260

(1080/870)1,620

(1410/1200)1,980

(1710/1490)

(W) 120

(Pa) 40

(Pa) 100

(mm) Ø9.5 Ø12.7 Ø15.9

(mm) Ø6.4 Ø9.5

(dB(A)) 30/28/26 31/29/27 32/30/28 33/31/29 34/32/29 36/34/32 38/36/32

(Nominal dia. mm)

16

Concealed Duct Type

Model name

Cooling/Heating capacity (Note 1)

Power supply

Running current

Power consumption

Starting current

Electricalcharacteristics

Main unit

Outerdimension

Appearance

Height

Width

Depth

Height

Width

Depth

Main unit

Suctionceilingpanel

Main unit

Ceiling panelTotal weight

Heat exchanger

Soundproof/Heat-insulating material

Fan

Fan unit

Standard air flow

(High/Mid./Low)

Motor

External static pressure(factory setting)

External static pressure

Air filter

Controller

Connectingpipe

Gas side

Liquid side

Drain port

Sound pressure level(Note 2)(High/Mid./Low)

25 (Polyvinyl chloride tube)

Standard filter attached (Long life filter)

Remote controller

Finned tube

Non-flammable insulation

Centrifugal fan

Zinc hot dipping steel plate

1 phase 50Hz 230V (220-240V) (Separate power supply for indoor units is required.)

AP0071BH AP0091BH AP0121BH AP0151BH AP0181BH AP0241BH AP0271BH AP0301BH AP0361BH AP0481BH AP0561BH

50Hz

Note 1: The cooling capacities and electrical characteristics are measured under the conditions specified by JIS B 8615 based on thereference piping. The reference piping consists of 5 m of main piping and 2.5 m of branch piping connected with 0 meter height.

Note 2: The sound levels are measured in an anechoic chamber in accordance with JIS B8616. Normally, the values measured in theactual operating environment become larger than the indicated values due to the effects of external sound.

Note : Rated conditions Cooling : Indoor air temperature 27oC DB/19oC WB, Outdoor air temperature 35oC DBHeating : Indoor air temperature 20oC DB, Outdoor air temperature 7oC DB/6oC WB

Page 202: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

197

16

Concealed Duct High Static Pressure Type

MMD-

(kW) 5.6/6.3 7.1/8.0 8.0/9.0 11.2/12.5 14.0/16.0 22.4/25.0 28.0/31.5

(A) 0.81 1.35 1.63 1.84 5.25 5.52

(kW) 0.184 0.299 0.368 0.414 1.200 1.260

(%) 99 96 98 98 99 99

(A) 1.3 3.5 4.1 4.8 13.6 14.8

(mm) 380 x 850 x 660 380 x 1,200 x 660 470 x 1,380 x 1,250

(kg) 50 52 56 67 150

(m /h) 900 1,320 1,600 2,100 3,600 4,200

(W) 160 260 370 x 3

(Pa) 137

(Pa) 68.6-137-196

(m/ h) 720/1,080 1,060/1,580 1,280/1,920 1,680/2,520 2,880/4,320 3,360/5,040

(mm) Ø12.7 Ø15.9 Ø22.2

(mm) Ø6.4 Ø9.5 Ø12.7

(Nominal dia.)

(dB(A)) 37 40 49 50

3

Model name

Cooling/Heating capacity (Note 1)

Power supply

Electricalcharacteristics

Running current

Powerconsumption

Power factor

Appearance

Outerdimension

Starting current

Height x Width x Depth

Total weight

Heat exchanger

Soundproof/Heat-insulating material

Fan

Standard air flow

Motor

Fanunit

External static pressure(Factory setting)

External static pressure

Air flow limitLower limit/Upper limit

Air filter

Controller

Connectingpipe

Gas side

Liquid side

Drain port

Sound level (Note 2)(High/Mid./Low)

25 (One side of male screw)

Option or field supply

Remote controller

Finned tube

Non-flammable insulation

Centrifugal fan

Zinc hot dipping steel plate

1 phase 50Hz 230V (220-240V) (Separate power supply for indoor units is required.)

AP0181H AP0241H AP0271H AP0361H AP0481H AP0721H AP0961H

50Hz

Note 1: The cooling capacities and electrical characteristics are measured under the conditions specified by JIS B 8615 based on thereference piping. The reference piping consists of 5 m of main piping and 2.5 m of branch piping connected with 0 meter height.

Note 2: The sound levels are measured in an anechoic chamber in accordance with JIS B8616. Normally, the values measured in theactual operating environment become larger than the indicated values due to the effects of external sound.

Note : Rated conditions Cooling : Indoor air temperature 27oC DB/19oC WB, Outdoor air temperature 35oC DBHeating : Indoor air temperature 20oC DB, Outdoor air temperature 7oC DB/6oC WB

Page 203: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

198

16

Under Ceiling Type

MMC-

(kW) 4.5/5.0 5.6/6.3 7.1/8.0 8.0/9.0 11.2/12.5 14.0/16.0

(A) 0.29 0.32 0.42 0.78 0.84

(kW) 0.033 0.038 0.050 0.091 0.110

(A) 0.43 0.48 0.62 1.17 1.25

(mm) 210 x 910 x 680 210 x 1,180 x 680 210 x 1,595 x 680

(kg) 22 26 34

(m3/h) 720/600/540 780/660/540 1,110/900/840 1,650/1,380/1,200 1,800/1,560/1,320

(W) 30 40 80

(mm) Ø12.7 Ø15.9

(mm) Ø6.4 Ø9.5

(dB(A)) 35/32/30 36/33/30 38/36/33 41/38/35 43/40/37

(Nominal dia. mm)

Model name

Cooling/Heating capacity (Note 1)

Electricalcharacteristics

Power supply

Running current

Power consumption

Starting current

Appearance

Outerdimension Height x Width x Depth

Total weight

Heat exchanger

Soundproof/Heat-insulating material

Fan unit

Fan

Controller

Room thermostat

Air filter

Standard air flow(High/Mid./Low)

Motor

Gas side

Liquid side

Drain port

Connectingpipe

Sound pressure level(Note 2)(High/Mid./Low)

20 (Polyvinyl chloride tube)

Remote controller

Attached

Standard filter attached (Long life filter)

Finned tube

Non-flammable insulation

Centrifugal fan

White (Munsell 10Y 9.3/0.4)

1 phase 50Hz 230V (220-240V) (Separate power supply for indoor units is required.)

AP0151H AP0181H AP0241H AP0271H AP0361H AP0481H

50Hz

Note 1: The cooling capacities and electrical characteristics are measured under the conditions specified by JIS B 8615 based on thereference piping. The reference piping consists of 5 m of main piping and 2.5 m of branch piping connected with 0 meter height.

Note 2: The sound levels are measured in an anechoic chamber in accordance with JIS B8616. Normally, the values measured in theactual operating environment become larger than the indicated values due to the effects of external sound.

Note : Rated conditions Cooling : Indoor air temperature 27oC DB/19oC WB, Outdoor air temperature 35oC DBHeating : Indoor air temperature 20oC DB, Outdoor air temperature 7oC DB/6oC WB

Page 204: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

199

16

High Wall Type (1 series)

MMK-

(kW) 2.2/2.5 2.8/3.2 3.6/4.0 4.5/5.0 5.6/6.3 7.1/8.0

(A) 0.30 0.32 0.35

(kW) 0.035 0.037 0.040

(A) 0.36 0.42 0.47

(mm) 368 x 895 x 210 368 x 1,055 x 210 368 x 1,430 x 210

(kg) 18 19 25

(m3/h) 600/540/480 780/660/600 1,200/1,020/900

(W) 30

(mm) Ø9.5 Ø12.7 Ø15.9

(mm) Ø6.4 Ø9.5

(dB(A)) 39/34/31 42/38/35 42/38/35

(Nominal dia. mm)

Model name

Cooling/Heating capacity (Note 1)

Running current

Power consumption

Starting current

Electricalcharacteristics

Power supply

Appearance

Suction grille and side panel

Discharge grille

Bottom surface

Height x Width x Depth

Total weight

Heat exchanger

Soundproof/Heat-insulating material

Fan

Standard air flow (High/Mid./Low)

Motor outlet

Outerdimension

Fanunit

Air filter

Controller

Connecting pipe

Gas side

Liquid side

Drain port

Sound pressure level(Note 2)(High/Mid./Low)

20 (Polyvinyl chloride tube)

Standard filter attached (Simple filter)

Remote controller

Finned tube

Non-flammable insulation

Cross-flow fan

Silky mist (Munsell 1Y 8.9/0.5)

City gray (Munsell N6.5)

Silky mist (Munsell 1Y 8.9/0.5)

1 phase 50Hz 230V (220-240V) (Separate power supply for indoor units is required.)

AP0071H AP0091H AP0121H AP0151H AP0181H AP0241H

50Hz

Note 1: The cooling capacities and electrical characteristics are measured under the conditions specified by JIS B 8615 based on thereference piping. The reference piping consists of 5 m of main piping and 2.5 m of branch piping connected with 0 meter height.

Note 2: The sound levels are measured in an anechoic chamber in accordance with JIS B8616. Normally, the values measured in theactual operating environment become larger than the indicated values due to the effects of external sound.

Note : Rated conditions Cooling : Indoor air temperature 27oC DB/19oC WB, Outdoor air temperature 35oC DBHeating : Indoor air temperature 20oC DB, Outdoor air temperature 7oC DB/6oC WB

Page 205: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

200

16

High Wall Type (2 series)* *European market only

(kW) 2.2/2.5 2.8/3.2 3.6/4.0

(A) 0.17 0.18 0.19

(kW) 0.017 0.018 0.019

(A) 0.22 0.23 0.24

(mm) 275 x 790 x 208

(kg) 11

(m /h) 480/420/360 510/450/360 540/450/360

(W) 30

(mm) Ø 9.5

(mm) Ø 6.4

(Outer dia.)

(dB(A)) 35/32/29 36/33/29 37/33/29

3

Model name

Cooling/Heating capacity (Note 1)

MMK-

Power supply

Running current

Power consumption

Starting current

Suction grille and side panel

Discharge grille

Bottom surface

Electricalcharacteristics

Appearance

Outerdimension

Height x Width xDepth

Total weight

Heat exchanger

Soundproof/Heat-insulating material

Fan

Standard air flow(High/Mid./Low)

Motor outlet

Fanunit

Air filter

Controller

Connecting pipe

Gas side

Liquid side

Drain port

Sound level (Note 2)(High/Mid./Low)

16 (Polyvinyl chloride tube)

Standard filter attached (Simple filter)

Wireless remote controller (WH-H2UE, Packed with indoor unit)

Finned tube

Non-flammable insulation

Cross-flow fan

Moon white

Moon white

Moon white

AP0072H

1 phase 50Hz 230V (220-240V) (Separate power supply for indoor units is required.)

AP0092H AP0122H

50Hz

Note 1: The cooling capacities and electrical characteristics are measured under the conditions specified by JIS B 8615 based on thereference piping. The reference piping consists of 5 m of main piping and 2.5 m of branch piping connected with 0 meter height.

Note 2: The sound levels are measured in an anechoic chamber in accordance with JIS B8616. Normally, the values measured in theactual operating environment become larger than the indicated values due to the effects of external sound.

Note 3: Wireless remote controller is packed with indoor unit.Wired remote controller (RBC-AMT21E, RBC-AS21E) can be also connected.

Note : Rated conditions Cooling : Indoor air temperature 27oC DB/19oC WB, Outdoor air temperature 35oC DBHeating : Indoor air temperature 20oC DB, Outdoor air temperature 7oC DB/6oC WB

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201

(kW) 2.2/2.5 2.8/3.2 3.6/4.0 4.5/5.0 5.6/6.3 7.1/8.0

(A) 0.26 0.43 0.47

(kW) 0.056 0.092 0.102

(%) 94 93 94

(A) 0.60 0.80 1.10

(mm) 630 x 950 x 230

(kg) 37 40 40

(m3/h) 480/420/360 900/780/650 1,080/930/780

(W) 45 70

(mm) Ø9.5 Ø12.7 Ø15.9

(mm) Ø6.4 Ø9.5

(dB(A)) 39/37/35 45/41/38 49/44/39

(Nominal dia. mm)

16

Floor Standing Cabinet Type

Model name MML-

Cooling/Heating capacity (Note 1)

Power supply

Running current

Power consumption

Power factor

Starting current

Electricalcharacteristics

Appearance

Outerdimension

Fan unit

Total weight

Heat exchanger

Soundproof/Heat-insulating material

Fan

Standard air flow(High/Mid./Low)

Motor outlet

Air filter

Controller

Connectingpipe

Gas side

Liquid side

Drain port

Sound pressure level(Note 2)(High/Mid./Low)

20 (Polyvinyl chloride tube)

Standard filter attached (Simple filter)

Remote controller

Finned tube

Non-flammable insulation

Centrifugal fan

Silky shade (1Y8.5/0.5)

1 phase 50Hz 230V (220-240V) (Separate power supply for indoor units is required.)

AP0071H AP0091H AP0121H AP0151H AP0181H AP0241H

50Hz

Height x Width xDepth

Note 1: The cooling capacities and electrical characteristics are measured under the conditions specified by JIS B 8615 based on thereference piping. The reference piping consists of 5 m of main piping and 2.5 m of branch piping connected with 0 meter height.

Note 2: The sound levels are measured in an anechoic chamber in accordance with JIS B8616. Normally, the values measured in theactual operating environment become larger than the indicated values due to the effects of external sound.

Note : Rated conditions Cooling : Indoor air temperature 27oC DB/19oC WB, Outdoor air temperature 35oC DBHeating : Indoor air temperature 20oC DB, Outdoor air temperature 7oC DB/6oC WB

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202

16

Floor Standing Concealed Type

(kW) 2.2/2.5 2.8/3.2 3.6/4.0 4.5/5.0 5.6/6.3 7.1/8.0

(A) 0.25 0.45 0.46

(kW) 0.056 0.090 0.095

(%) 97 87 90

(A) 0.60 0.80 1.00

(mm) 600 x 745 x 220 600 x 1,045 x 220

(kg) 21 29

(m3/h) 460/400/300 740/600/490 950/790/640

(W) 19 70

(kPa) 0

(mm) Ø9.5 Ø12.7 Ø15.9

(mm) Ø6.4 Ø9.5

(dB(A)) 36 (34/32) 42 (37/33)

(Nominal dia. mm)

Model name

Cooling/Heating capacity (Note 1)

Power supply

Running current

Power consumption

Power factor

Starting current

Electricalcharacteristics

Appearance

Outerdimension

MML-

Height x Width xDepth

Total weight

Heat exchanger

Soundproof/Heat-insulating material

Fan unit

Fan

Standard air flow(High/Mid./Low)

Motor

Static pressure range

Air filter

Controller

Gas side

Liquid side

Drain port

Connectingpipe

Sound pressure level(Note 2)(High/Mid./Low)

20 (One side of male screw)

Standard filter attached (Simple filter)

Remote controller

Finned tube

Non-flammable insulation

Centrifugal fan

Zinc hot dipping steel plate

1 phase 50Hz 230V (220-240V) (Separate power supply for indoor units is required.)

AP0071BH AP0091BH AP0121BH AP0151BH AP0181BH AP0241BH

50Hz

Note 1: The cooling capacities and electrical characteristics are measured under the conditions specified by JIS B 8615 based on thereference piping. The reference piping consists of 5 m of main piping and 2.5 m of branch piping connected with 0 meter height.

Note 2: The sound levels are measured in an anechoic chamber in accordance with JIS B8616. Normally, the values measured in theactual operating environment become larger than the indicated values due to the effects of external sound.

Note : Rated conditions Cooling : Indoor air temperature 27oC DB/19oC WB, Outdoor air temperature 35oC DBHeating : Indoor air temperature 20oC DB, Outdoor air temperature 7oC DB/6oC WB

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203

16

Floor Standing Type

(kW) 4.5/5.0 5.6/6.3 7.1/8.0 8.0/9.0 11.2/12.5 14.0/16.0 16.0/18.0

(A) 0.67 0.88 1.29 1.60

(kW) 0.150 0.190 0.280 0.350

(%) 97 94 95

(A) 0.90 1.10 1.70 2.10

(mm) 1750 x 600 x 210 1750 x 600 x 390

(kg) 48 49 65

(m3/h) 900/780/660 1,200/1,020/840 1,920/1,680/1,380 2,160/1,860/1,560

(W) 37 63 11 16

(mm) Ø12.7 Ø15.9

(mm) Ø6.4 Ø9.5

(dB(A)) 46/43/38 49/45/40 51/48/44 54/50/46

(Nominal dia. mm)

Model name MMF-

Cooling/Heating capacity (Note 1)

Power supply

Running current

Power consumption

Power factor

Starting current

Electricalcharacteristics

Appearance

Outerdimension

Height x Width xDepth

Total weight

Heat exchanger

Soundproof/Heat-insulating material

Fan unit

Connectingpipe

Fan

Standard air flow(High/Mid./Low)

Motor

Air filter

Controller

Gas side

Liquid side

Drain port

Sound pressure level(Note 2)(High/Mid./Low)

20 (One side of male screw)

Standard filter attached (Simple filter)

Remote controller

Finned tube

Non-flammable insulation

Centrifugal fan

W : Silky shade (1Y 8.5/0.5)

1 phase 50Hz 230V (220-240V) (Separate power supply for indoor units is required.)

AP0151H AP0181H AP0271H AP0361H AP0481H AP0561HAP0241H

50Hz

Note 1: The cooling capacities and electrical characteristics are measured under the conditions specified by JIS B 8615 based on thereference piping. The reference piping consists of 5 m of main piping and 2.5 m of branch piping connected with 0 meter height.

Note 2: The sound levels are measured in an anechoic chamber in accordance with JIS B8616. Normally, the values measured in theactual operating environment become larger than the indicated values due to the effects of external sound.

Note : Rated conditions Cooling : Indoor air temperature 27oC DB/19oC WB, Outdoor air temperature 35oC DBHeating : Indoor air temperature 20oC DB, Outdoor air temperature 7oC DB/6oC WB

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16

MMY- MAP0802FT8 MAP1002FT8 MAP1202FT8

(kW) 22.4 28.0 33.5

(kW) 25.0 31.5 35.5

(A) 9.25 13.15 19.85

(kW) 6.07 8.54 12.90

(%) 95 94 94

(kW/kW) 3.69 3.28 2.60

(A) 1.0 1.0 1.0

(A) 9.55 13.40 14.85

(kW) 6.29 8.73 9.65

(%) 95 94 94

(kW/kW) 3.97 3.61 3.68

(A) 1.0 1.0 1.0

(mm)

(kg) 263

(kW) 2.3 × 2 3.1 × 2 4.2 × 2

(kW) 0.60

(m3/h) 9,900 10,500

(kg) 11.5

(MPa)

(* 5)

(mm) Ø19.1

(mm) Ø22.2 Ø28.6

(mm) Ø12.7

(mm) Ø9.5

(m) 150

(m)

(m) 300

(m)

13 16 16

(dB(A)) 57 58 59

Equivalent HP

Model name

Outdoor unit type

Cooling capacity (*1)

Standard heating capacity (*1)

Power supply (*2)

Electricalcharacteristics(*1)

Cooling

Heating

Running current

Power consumption

Power factor

EER (Energy Efficiency Ratio)

Starting current

Running current

Power consumption

Power factor

EER (Energy Efficiency Ratio)

Starting current

External dimension

Total weight

Color

Compressor

Fan unit

Type

Motor output

Fan

Motor output

Air volume

Heat exchanger

Refrigerant R410A (Charged refrigerant amount) (*3)

High-pressure switch

Protective devices

Refrigerant pipingspecifications (*4)

Connecting port dia

Connecting method

Discharge gas side

Suction gas side

Liquid side

Balance pipe

Discharge gas side

Suction gas side

Liquid side

Balance pipe

Max. equivalent length

Max. real length

Max. total pipe length (Real length)

Max. height difference

Control wiring

Central remote controller

Max. No. of connected indoor units

Sound level

Equivalent to 8HP Equivalent to 10HP Equivalent to 12HP

Inverter unit

3 phase 50Hz 400V (380-415V)

Height 1,800 x Width 990 x Depth 750

Silky shade (Munsell 1Y8.5/0.5)

Hermetic type

Propeller fan

Finned tube

OFF : 2.90 ON : 3.73

Brazing

Brazing

Flare

Flare

125 (If the total bend length exceeds 125m, use the max equivalentlength as the standard.)

Outdoor unit is higher than indoor unit : 50

Outdoor unit is lower than indoor unit : 30

Shield wire 1.25mm2 x 2 cores. up to 2000m

When connecting to outdoor unit :(Shield wire) 1.25mm2 x 2 cores. up to 1000m and

(Shield wire) 2.0mm2 x 2 cores. up to 2000m

Outdoor unit (50Hz)

50Hz

*1 : Rated conditions Cooling : Indoor air temperature 27oC DB/19oC WB, Outdoor air temperature 35oC DBHeating : Indoor air temperature 20oC DB, Outdoor air temperature 7oC DB/6oC WB

The standard piping means that main pipe length is 5 m, branching pipe length 2.5 m of branch piping connected with a 0 meter height.*2 : The source voltage must not fluctuate more than ±10%.*3 : The amount does not consider extra piping lengths. Refrigerant must be added on site in accordance with the actual piping length.*4 : The maximum total piping length indicates the sum of one-way piping lengths on the liquid side or gas side.*5 : Discharge temp. sensor, Suction temp. sensor, Compressor case thermostat, High-pressure switch, Over-current sensor,

High-pressure sensor, Low pressure sensor, Over-current relay.

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16

MMY- AP1602FT8 AP1802FT8 AP2002FT8

Inverter

MMY- MAP0802FT8 MAP0802FT8 MAP1002FT8 MAP0802FT8 MAP1002FT8 MAP1002FT8

(kW) 45.0 50.4 56.0

(kW) 50.0 56.5 63.0

(A) 19.68 23.29 26.90

(kW) 13.01 15.42 17.89

(%) 95 96 96

(kW/kW) 3.46 3.27 3.13

(A) 1.0 1.0 1.0

(A) 19.90 23.47 27.03

(kW) 13.10 15.54 17.98

(%) 95 96 96

(kW/kW) 3.82 3.64 3.50

(A) 1.0 1.0 1.0

(mm)

(kg) 263

(kW) 2.3 × 2 3.1 × 2 2.3 × 2 3.1 × 2

(kW) 0.6

(m3/h) 9,900 10,500 9,900 10,500

(kg) 11.5

(MPa)

(* 5)

(mm) Ø19.1

(mm) Ø22.2

(mm) Ø12.7

(mm) Ø9.5

(m) 150

(m)

(m) 300

(m)

27 30 33

(dB(A)) 60 60.5 61

Equivalent HP

Set Model name

Outdoor unit type

Outdoor unit model

Rated cooling capacity (*1)

Standard heating capacity (*1)

Power supply (*2)

Heat Recovery

Heat Recovery

Electricalcharacteristics (*1)

Cooling

Heating

Running currentPowerconsumption

Power factorEER(Energy Efficiency Ratio)

Starting current

Running currentPowerconsumption

Power factor

EER(Energy Efficiency Ratio)

Starting currentExternal dimension

Total weight

Color

Compressor

Fan unit

Type

Motor output

Fan

Motor output

Air volume

Heat exchanger

Refrigerant R410A Charged amount (*3)

High-pressure switch

Protective devices

Refrigerant pipespec. (*4)

Connectingport dia.

Connectingmethod

Dischargegas sideSuction gasside

Liquid side

Balance side

Discharge gas side

Suction gas side

Liquid side

Balance side

Max. equivalent length

Max. real length

Max. total pipe length(Real length)

Max. height difference

Control wiring

Central remote controller

Max. No. of connected indoor units

Sound level

Equivalent to 16HP Equivalent to 18HP Equivalent to 20HP

3 phase 50Hz 400V (380-415V)

Height 1,800 x Width 990 x Depth 750

Silky shade (Munsell 1Y8.5/0.5)

Hermetic type

Propeller fan

Finned tube

OFF : 2.90 ON : 3.73

Brazing

Brazing

Flare

Flare

125 (If the total bend length exceeds 125m, use the max equivalent length as the standard.)

When connecting to outdoor unit :(Shield wire) 1.25mm2x 2 cores up to 1000m and (Shield wire) 2.0mm2x 2 cores up to 2000m

50Hz

Outdoor unit is higher than indoor unit : 50

Outdoor unit is lower than indoor unit : 30

Shield wire 1.25mm2 x 2 cores. up to 2000m

Outdoor unit (Combination) (50Hz)

*1 : Rated conditions Cooling : Indoor air temperature 27oC DB/19oC WB, Outdoor air temperature 35oC DBHeating : Indoor air temperature 20oC DB, Outdoor air temperature 7oC DB/6oC WB

The standard piping means that main pipe length is 5m, branching pipe length 2.5m of branch piping connected with a 0 meter height.*2 : The source voltage must not fluctuate more than ±10%.*3 : The amount does not consider extra piping lengths. Refrigerant must be added on site in accordance with the actual piping length.*4 : The maximum total piping length indicates the sum of one-way piping lengths on the liquid side or gas side.System safety protection*5 : Discharge temp. sensor, Suction temp. sensor, Compressor case thermostat, High-pressure switch, Over-current sensor,

High-pressure sensor, Low pressure sensor, Over-current relay.

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206

16

MMY- AP2402FT8

MMY- MAP0802FT8 MAP0802FT8 MAP0802FT8

(kW) 68.0

(kW) 76.5

(A) 29.52

(kW) 19.66

(%) 96

(kW/kW) 3.46

(A) 1.0

(A) 29.86

(kW) 20.04

(%) 97

(kW/kW) 3.82

(A) 1.0

(mm)

(kg) 263

(kW) 2.3 × 2

(kW) 0.6

(m3/h) 9,900

(kg) 11.5

(MPa)

(* 5)

(mm) Ø19.1

(mm) Ø22.2

(mm) Ø12.7

(mm) Ø9.5

(m) 150

(m)

(m) 300

(m)

40

(dB(A)) 62

Equivalent HP

Set Model name

Outdoor unit type

Outdoor unit model

Rated cooling capacity (*1)

Standard heating capacity (*1)

Power supply (*2)

Heat Recovery

Heat Recovery

Electricalcharacteristics (*1)

Cooling

Heating

Running currentPowerconsumption

Power factorEER(Energy Efficiency Ratio)

Starting current

Running currentPowerconsumption

Power factor

EER(Energy Efficiency Ratio)

Starting current

External dimension

Total weight

Color

Compressor

Fan unit

Type

Motor output

Fan

Motor output

Air volumeHeat exchanger

Refrigerant R410A Charged amount (*3)

High-pressure switch

Protective devices

Refrigerantpipespec. (*4)

Connectingport dia.

Connectingmethod

Discharge gassideSuction gasside

Liquid side

Balance side

Discharge gas side

Suction gas side

Liquid side

Balance side

Max. equivalent length

Max. real length

Max. total pipe length(Real length)

Max. height difference

Control wiring

Central remote controller

Max. No. of connected indoor units

Sound level

Equivalent to 24HP

Inverter

3 phase 50Hz 400V (380-415V)

Height 1,800 x Width 990 x Depth 750

Silky shade (Munsell 1Y8.5/0.5)

Hermetic type

Propeller fan

Finned tube

OFF : 2.90 ON : 3.73

Brazing

Brazing

Flare

Flare

125 (If the total bend length exceeds 125m, use the max equivalent length as the standard.)

When connecting to outdoor unit :(Shield wire) 1.25mm2x 2 cores up to 1000m and (Shield wire) 2.0mm2x 2 cores up to 2000m

Outdoor unit is higher than indoor unit : 50

Outdoor unit is lower than indoor unit : 30

Shield wire 1.25mm2 x 2 cores. up to 2000m

50Hz

*1 : Rated conditions Cooling : Indoor air temperature 27oC DB/19oC WB, Outdoor air temperature 35oC DBHeating : Indoor air temperature 20oC DB, Outdoor air temperature 7oC DB/6oC WB

The standard piping means that main pipe length is 5m, branching pipe length 2.5m of branch piping connected with a 0 meter height.*2 : The source voltage must not fluctuate more than ±10%.*3 : The amount does not consider extra piping lengths. Refrigerant must be added on site in accordance with the actual piping length.*4 : The maximum total piping length indicates the sum of one-way piping lengths on the liquid side or gas side.System safety protection*5 : Discharge temp. sensor, Suction temp. sensor, Compressor case thermostat, High-pressure switch, Over-current sensor,

High-pressure sensor, Low pressure sensor, Over-current relay.

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207

16

MMY- AP2602FT8 AP2802FT8 AP3002FT8

MMY- MAP1002FT8 MAP0802FT8 MAP0802FT8 MAP1002FT8 MAP1002FT8 MAP0802FT8 MAP1002FT8 MAP1002FT8 MAP1002FT8

(kW) 73 78.5 84.0

(kW) 81.5 88.0 95.0

(A) 33.13 36.74 40.35

(kW) 21.96 24.40 26.84

(%) 96 96 96

(kW/kW) 3.32 3.22 3.13

(A) 1.0 1.0 1.0

(A) 33.42 36.99 40.55

(kW) 22.09 24.53 27.11

(%) 95 96 97

(kW/kW) 3.69 3.59 3.50

(A) 1.0 1.0 1.0

(mm)

(kg) 263

(kW) 3.1 × 2 2.3 × 2 3.1 × 2 2.3 × 2 3.1× 2

(kW) 0.6

(m3/h) 10,500 9,900 10,500 9,900 10,500

(kg) 11.5

(MPa)

(* 5)

(mm) Ø19.1

(mm) Ø22.2

(mm) Ø12.7

(mm) Ø9.5

(m) 150

(m)

(m) 300

(m)

43 47 48

(dB(A)) 62 62.5 63

Equivalent HP

Set Model name

Outdoor unit type

Outdoor unit model

Rated cooling capacity (*1)

Standard heating capacity (*1)

Power supply (*2)

Heat Recovery

Heat Recovery

Electricalcharacteristics (*1)

Cooling

Heating

Running currentPowerconsumption

Power factorEER(Energy Efficiency Ratio)

Starting current

Running current

Powerconsumption

Power factor

EER(Energy Efficiency Ratio)

Starting current

External dimension

Total weight

Color

Compressor

Fan unit

Type

Motor output

Fan

Motor output

Air volumeHeat exchanger

Refrigerant R410A Charged amount (*3)

High-pressure switch

Protective devices

Refrigerantpipespec. (*4)

Connectingport dia.

Connectingmethod

Dischargegas sideSuction gasside

Liquid side

Balance side

Discharge gas side

Suction gas side

Liquid side

Balance side

Max. equivalent length

Max. real length

Max. total pipe length(Real length)

Max. height difference

Control wiring

Central remote controller

Max. No. of connected indoor units

Sound level

Equivalent to 28HP

Inverter

3 phase 50Hz 400V (380-415V)

Height 1,800 x Width 990 x Depth 750

Silky shade (Munsell 1Y8.5/0.5)

Hermetic type

Propeller fan

Finned tube

OFF : 2.90 ON : 3.73

Brazing

Brazing

Flare

Flare

125 (If the total bend length exceeds 125m, use the max equivalent length as the standard.)

When connecting to outdoor unit :(Shield wire) 1.25mm2x 2 cores up to 1000m and (Shield wire) 2.0mm2x 2 cores up to 2000m

Outdoor unit is higher than indoor unit : 50

Outdoor unit is lower than indoor unit : 30

Shield wire 1.25mm2 x 2 cores. up to 2000m

Equivalent to 26HP Equivalent to 30HP

50Hz

*1 : Rated conditions Cooling : Indoor air temperature 27oC DB/19oC WB, Outdoor air temperature 35oC DBHeating : Indoor air temperature 20oC DB, Outdoor air temperature 7oC DB/6oC WB

The standard piping means that main pipe length is 5m, branching pipe length 2.5m of branch piping connected with a 0 meter height.*2 : The source voltage must not fluctuate more than ±10%.*3 : The amount does not consider extra piping lengths. Refrigerant must be added on site in accordance with the actual piping length.*4 : The maximum total piping length indicates the sum of one-way piping lengths on the liquid side or gas side.System safety protection*5 : Discharge temp. sensor, Suction temp. sensor, Compressor case thermostat, High-pressure switch, Over-current sensor,

High-pressure sensor, Low pressure sensor, Over-current relay.

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High Wall Type( 2 Series )

Engineering Data

Indoor UnitMMK-AP0072HMMK-AP0092HMMK-AP0122H

1. Equipments

2. Technical Specifications

3. Dimensional Drawing

4. Wiring Diagram

5. Refrigerant Cycle Diagram

6. Sensible Capacity Table

7. Fan characteristics

8. Sound Characteristics (NC curve)

9. Wireless Remote controller

Oct. 05’

A-1

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A-2

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1

1. Equipment

1-1. Line upType

High Wall type(2 series)

Appearance Model Name

MMK-AP0072H

MMK-AP0092H

MMK-AP0122H

Capacityrank

007 type

009 type

012 type

Capacitycode

0.8

1.0

1.25

CoolingCapacity (kW)

2.2

2.8

3.6

HeatingCapacity (kW)

2.5

3.2

4.0

Name Modelname

Appearance

1-2. Remote controller (Packed with the indoor unit)

Application Function

Start / StopChanging modeTemperature settingAir flow changing (5 step)ClockTimer function- ON/OFF timer (10 min. step)- Daily timerHigh power modeECO mode (Sleep timer with ECO-logic)One-touch pre-set memoryOne-touch Auto (*1)

Wire

less

rem

ote

cont

rolle

r

WH

-H2U

E

1-3. Wiring Design

Model

MMK-AP0072H

MMK-AP0092H

MMK-AP0122H

Nominal Voltage

(V-Ph-Hz)

230-1-50

230-1-50

230-1-50

Min

198

198

198

Max

264

264

264

kW

0.03

0.03

0.03

FLA

0.20

0.21

0.22

MCA

0.24

0.26

0.27

MOCP

15

15

15

Voltage Fan Motor Power Supply

Legend MCA : Minimum Circuit Amps FLA : Full Load AmpsMOCP : Maximum Overcurrent Protection (Amps) kW : Fan Motor Rated Output (kW)

1-4. AccessoriesAccessory parts name

Wired remote controller

Simple remote controller

Wireless remote controller kit

Central remote controller

Weekly timer

Model

RBC-AMT31E

RBC-AS21E2

TCB-AX21E2

TCB-SC642TLE2

RBC-EXW21E2

Remarks

with separated receiver unit

Max. 64 group / unit

Use with RBC-AMT31E

50Hz

(Note.1) Super MMS can not accept “AUTO” mode, Super HRM can accept “AUTO” mode.

A-3

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2

2. Technical Specifications

High Wall type (2 Series)

Model name MMK-

Cooling / Heating capacity (Note 1) (kW)

Electrical

Characteristics

Appearance

Outerdimension

Total weight (kg)

Heat exchanger

Soundproof/Heat-insulating material

Fan unit

Air filter

Controller (Note 3)

Connectingpipe

Sound level (Note 2) (High / Mid / Low) (dB(A))

Power Supply

Running current (A)

Power consumption (kW)

Starting current (A)

Suction grille and side panel

Discharge grille

Bottom surface

Height x Width x Depth (mm)

Fan

Standard air flow (High/Mid/Low)(m3/h)

Motor

Gas side (mm)

Liquid side (mm)

Drain port (Outer dia.)

AP0072H AP0092H AP0122H

2.2 / 2.5 2.8 / 3.2 3.6 / 4.0

1 phase 50Hz 230V (220-240V)(Power exclusive for indoor is required.)

0.17 0.18 0.19

0.017 0.018 0.019

0.22 0.23 0.24

Moon white

Moon white

Moon white

275 x 790 x 208

11

Finned tube

Non-flammable insulation

Cross-flow fan

480 / 420 /360 510 / 450 / 360 540 / 450 / 360

30

Standard filter attached (Simple filter)

Wireless remote controller(WH-H2UE, Packed with indoor unit)

9.5

6.4

16 (Polyvinyl chloride tube)

35-32-29 36-33-29 37-33-29

Note 1 : The cooling capacities and electrical characteristics are measured under theconditions specified by JIS B 8615 based on the reference piping. The referencepiping consists of 5 m of main piping and 2.5 m of branch piping connected with 0meter height.

Note 2 : The sound level are measured in an anechoic chamber in accordance with JISB8616.Normally, the values measured in the actual operating environment become largerthan the indicated values due to the effects of external sound.

Note 3 : Wireless remote controller is packed with indoor unit.Wired remote controller (RBC-AMT31E,RBC-AS21E2) can be also connected.

Note 4 : Rated conditions Cooling : Indoor air temperature 27 C DB/19 C WB,Outdoor air temperature 35 C DB

Heating : Indoor air temperature 20C DB,Outdoor air temperature 7C DB/6C WB

50Hz

A-4

Page 218: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

3

3. Dimensional Drawing

Model : MMK-AP0072H, AP0092H, AP0122H

Note : All dimensions are in mm.

208

790

6

48

208

60

275

275

790

Air inlet port

Air outlet port

208

48

275

6 Knockout

321

275

790

Tab for insulation plate

Refrigerant pipe connecting port Gas side O9.5

Refrigerant pipe connecting port Liquid side O6.4

Drain pipe

60 54.5

208

6054.5

48

790

48

Knockout60

(Installation space)

100mm or more

170mm or more*300mm or more170mm or more

*(For attached Flow Selector unit when used in heat recovery model)

Wired remote controller RBC-AMT21E RBC-AMT31ESimple wired remote controller RBC-AS21E RBC-AS21E2Wireless remote controller kit RBC-AX22CE RBC-AX22CE2

A-5

Page 219: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

4

4. Wiring Diagram

Model : MMK-AP0072H, AP0092H, AP0122H

A-6

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5

5. Refrigerant Cycle Diagram

Model : MMK-AP0072H, AP0092H, AP0122H

Air heat exchangerat indoor side

Sensor(TC2)

Fan

Fan motor

Sensor(TCJ)

Sensor(TC1)

Strainer

Pulse MotorValve (PMV)

Liquid side Gas side

Capillary tube

Sensor(TA)

Functional part name

Pulse MotorValve(PMV)

Temp. sensor

PMV

1.TA

2.TC1

3.TC2

4.TCJ

Functional outline

(Connector CN082 (6P): Blue)1) Controls super heat in cooling operation2) Controls under cool in heating operation3) Recovers refrigerant oil in cooling operation4) Recovers refrigerant oil in heating operation

(Connector CN104 (2P): Yellow)1) Detects indoor suction temperature

(Connector CN100 (3P): Brown)1) Controls PMV super heat in cooling operation

(Connector CN101 (2P): Black1) Controls PMV under cool in heating operation

(Connector CN102 (2P): Red)1) Controls PMV super heat in cooling operation

A-7

Page 221: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

6

6. Sensible Capacity TableHigh Wall Type ( MMK-AP****2H ) 2 series

unitsize

007

009

012

outdoor

air temp.

CDB

10.0

12.0

14.0

16.0

18.0

20.0

21.0

23.0

25.0

27.0

29.0

31.0

33.0

35.0

37.0

39.0

10.0

12.0

14.0

16.0

18.0

20.0

21.0

23.0

25.0

27.0

29.0

31.0

33.0

35.0

37.0

39.0

10.0

12.0

14.0

16.0

18.0

20.0

21.0

23.0

25.0

27.0

29.0

31.0

33.0

35.0

37.0

39.0

Indoor Air Temp.

14.0CWB 16.0CWB 18.0CWB 19.0CWB 20.0CWB 22.0CWB 24.0CWB

20CDB 23CDB 26CDB 27CDB 28CDB 30CDB 32CDB

TC SHC TC SHC TC SHC TC SHC TC SHC TC SHC TC SHC

1.8 1.5 2.0 1.6 2.1 1.7 2.2 1.7 2.3 1.7 2.4 1.7 2.5 1.6

1.8 1.5 2.0 1.6 2.1 1.7 2.2 1.7 2.3 1.7 2.4 1.7 2.5 1.6

1.8 1.5 2.0 1.6 2.1 1.7 2.2 1.7 2.3 1.7 2.4 1.7 2.5 1.6

1.8 1.5 2.0 1.6 2.1 1.7 2.2 1.7 2.3 1.7 2.4 1.7 2.5 1.6

1.8 1.5 2.0 1.6 2.1 1.7 2.2 1.7 2.3 1.7 2.4 1.7 2.5 1.6

1.8 1.5 2.0 1.6 2.1 1.7 2.2 1.7 2.3 1.7 2.4 1.7 2.5 1.6

1.8 1.5 2.0 1.6 2.1 1.7 2.2 1.7 2.3 1.7 2.4 1.7 2.5 1.6

1.8 1.5 2.0 1.6 2.1 1.7 2.2 1.7 2.3 1.7 2.4 1.7 2.5 1.6

1.8 1.5 2.0 1.6 2.1 1.7 2.2 1.7 2.3 1.7 2.4 1.7 2.5 1.6

1.8 1.5 2.0 1.6 2.1 1.7 2.2 1.7 2.3 1.7 2.4 1.7 2.5 1.6

1.8 1.5 2.0 1.6 2.1 1.7 2.2 1.7 2.3 1.7 2.4 1.7 2.5 1.6

1.8 1.5 2.0 1.6 2.1 1.7 2.2 1.7 2.3 1.7 2.4 1.7 2.5 1.6

1.8 1.5 2.0 1.6 2.1 1.7 2.2 1.7 2.3 1.7 2.4 1.7 2.5 1.6

1.8 1.5 2.0 1.6 2.1 1.7 2.2 1.7 2.3 1.7 2.4 1.7 2.5 1.6

1.7 1.5 1.9 1.6 2.1 1.7 2.1 1.6 2.2 1.6 2.3 1.6 2.4 1.6

1.7 1.4 1.9 1.5 2.0 1.6 2.1 1.6 2.1 1.6 2.3 1.6 2.4 1.5

2.3 1.8 2.5 1.9 2.7 2.0 2.8 2.0 2.9 2.0 3.1 2.0 3.2 1.9

2.3 1.8 2.5 1.9 2.7 2.0 2.8 2.0 2.9 2.0 3.1 2.0 3.2 1.9

2.3 1.8 2.5 1.9 2.7 2.0 2.8 2.0 2.9 2.0 3.1 2.0 3.2 1.9

2.3 1.8 2.5 1.9 2.7 2.0 2.8 2.0 2.9 2.0 3.1 2.0 3.2 1.9

2.3 1.8 2.5 1.9 2.7 2.0 2.8 2.0 2.9 2.0 3.1 2.0 3.2 1.9

2.3 1.8 2.5 1.9 2.7 2.0 2.8 2.0 2.9 2.0 3.1 2.0 3.2 1.9

2.3 1.8 2.5 1.9 2.7 2.0 2.8 2.0 2.9 2.0 3.1 2.0 3.2 1.9

2.3 1.8 2.5 1.9 2.7 2.0 2.8 2.0 2.9 2.0 3.1 2.0 3.2 1.9

2.3 1.8 2.5 1.9 2.7 2.0 2.8 2.0 2.9 2.0 3.1 2.0 3.2 1.9

2.3 1.8 2.5 1.9 2.7 2.0 2.8 2.0 2.9 2.0 3.1 2.0 3.2 1.9

2.3 1.8 2.5 1.9 2.7 2.0 2.8 2.0 2.9 2.0 3.1 2.0 3.2 1.9

2.3 1.8 2.5 1.9 2.7 2.0 2.8 2.0 2.9 2.0 3.1 2.0 3.2 1.9

2.3 1.8 2.5 1.9 2.7 2.0 2.8 2.0 2.9 2.0 3.1 2.0 3.2 1.9

2.3 1.8 2.5 1.9 2.7 2.0 2.8 2.0 2.9 2.0 3.1 2.0 3.2 1.9

2.2 1.7 2.5 1.8 2.6 1.9 2.7 1.9 2.8 1.9 3.0 1.9 3.1 1.9

2.2 1.7 2.4 1.8 2.6 1.9 2.6 1.9 2.7 1.9 2.9 1.9 3.0 1.8

3.0 2.2 3.3 2.4 3.5 2.5 3.6 2.5 3.7 2.5 3.9 2.5 4.1 2.4

3.0 2.2 3.3 2.4 3.5 2.5 3.6 2.5 3.7 2.5 3.9 2.5 4.1 2.4

3.0 2.2 3.3 2.4 3.5 2.5 3.6 2.5 3.7 2.5 3.9 2.5 4.1 2.4

3.0 2.2 3.3 2.4 3.5 2.5 3.6 2.5 3.7 2.5 3.9 2.5 4.1 2.4

3.0 2.2 3.3 2.4 3.5 2.5 3.6 2.5 3.7 2.5 3.9 2.5 4.1 2.4

3.0 2.2 3.3 2.4 3.5 2.5 3.6 2.5 3.7 2.5 3.9 2.5 4.1 2.4

3.0 2.2 3.3 2.4 3.5 2.5 3.6 2.5 3.7 2.5 3.9 2.5 4.1 2.4

3.0 2.2 3.3 2.4 3.5 2.5 3.6 2.5 3.7 2.5 3.9 2.5 4.1 2.4

3.0 2.2 3.3 2.4 3.5 2.5 3.6 2.5 3.7 2.5 3.9 2.5 4.1 2.4

3.0 2.2 3.3 2.4 3.5 2.5 3.6 2.5 3.7 2.5 3.9 2.5 4.1 2.4

3.0 2.2 3.3 2.4 3.5 2.5 3.6 2.5 3.7 2.5 3.9 2.5 4.1 2.4

3.0 2.2 3.3 2.4 3.5 2.5 3.6 2.5 3.7 2.5 3.9 2.5 4.1 2.4

3.0 2.2 3.3 2.4 3.5 2.5 3.6 2.5 3.7 2.5 3.9 2.5 4.1 2.4

3.0 2.2 3.3 2.4 3.5 2.5 3.6 2.5 3.7 2.5 3.9 2.5 4.1 2.4

2.9 2.1 3.2 2.3 3.4 2.4 3.5 2.4 3.6 2.4 3.8 2.4 4.0 2.3

2.8 2.1 3.1 2.2 3.3 2.4 3.4 2.4 3.5 2.4 3.7 2.3 3.9 2.3

TC: Total capacity [kW] SHC: Sensible capacity [kW]

A-8

Page 222: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

7

7. Fan Characteristics

Discharge Air Speed and Air Throw

High Wall Type (2 series)

Model : MMK-AP0072H, AP0092H, AP0122H

Horizontal discharge Initial speed High wind : 4.5m/sMed wind : 3.7m/sLow wind : 3.2m/s

0

1

2

3

4

5

Horizontal throw (m)

Air

spee

d (

m/s

)

HighMidLow

0 1 2 3 4 5 6 7

A-9

Page 223: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

8

8. Sound Characteristics (NC curve)High Wall Type (2 series)

Model : MMK-AP0072H, AP0092H, AP0122H

Microphone

1m

1m

MMK-AP0072H Fan tap H M L

Sound pressure level (dB(A)) 35 32 29

10

20

30

40

50

60

70

80

90

20-75 75-150 150-300 300-600 600-1200 1200-2400 2400-4800 4800-10000

Octave band frequency (Hz)

Oct

ave

band

sou

nd p

ress

ure

leve

l (dB

)

NC-70

NC-60

NC-50

NC-40

NC-30

NC-20Audibility limits of

continuous white level

A-10

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9

MMK-AP0092H Fan tap H M L

Sound pressure level (dB(A)) 36 33 29

MMK-AP0122H Fan tap H M L

Sound pressure level (dB(A)) 35 33 29

10

20

30

40

50

60

70

80

90

20-75 75-150 150-300 300-600 600-1200 1200-2400 2400-4800 4800-10000

Octave band frequency (Hz)

Oct

ave

band

sou

nd p

ress

ure

leve

l (dB

)

NC-70

NC-60

NC-50

NC-40

NC-30

NC-20Audibility limits ofcontinuous white level

10

20

30

40

50

60

70

80

90

20-75 75-150 150-300 300-600 600-1200 1200-2400 2400-4800 4800-10000

Octave band frequency (Hz)

Oct

ave

band

sou

nd p

ress

ure

leve

l (dB

)

NC-70

NC-60

NC-50

NC-40

NC-30

NC-20Audibility limits of

continuous white level

A-11

Page 225: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

10

9. Wireless Remote controller

External View

Function

Start/Stop

Setting

temp.

Fahrenheit display

Air Volume Control

Flap

Swing

Operation select

One-touch Auto

Preset mode

Clock

ON/OFF timer

ECONO mode

Daily timer

Timer cancel

High Power mode

Filter reset

Reset

Sensor button

High wall (1 series)

TCB-AX21E (Sold Separately)

Contents

OK

17~27 °C

18~30 °C

18~30 °C

16~26 °C

OK

3-Speed, Auto

OK

Auto, Heat, Dry,Cool, Fan

-

-

-

OFF timer, ON timer,Repeat timer, 30minutes interval,max. 72 hours,

-

-

OK

-

OK

OK

OK

Button

Start/Stop

-

Swing/Frap

-

-

-

SET

-

-

CL

-

Filter reset

Reset

SENSOR

High Wall (2 series)

WH-H2UE

Contents

OK

17~30 °C

17~30 °C

17~30 °C

17~30 °C

-

5-Speed, Auto

OK

OK

Auto,Cool,Dry,Heat, Fan

One-touch Auto

OK

OK

Clock displaysystem,10 minutes interval,max. 24 hours,

OK

OK

OK

OK

OK

OK

-

Button

START/STOP

-

FAN

FIX

SWING

MODE

AUTO

MEMO /PRESET

CLOCK

ON/OFF/SET

ECO

ON/OFF/SET

Hi-POWER

FILTER

RESET

-

Remarks

No Fahrenheit display function

5-step control

No switch setting forcooling only

One-touch auto ( Auto mode,Setting temperature :22 °C,Air volume : Auto, Flapposition : Auto, Swing : Off)

Memorizing of setting contentsfor preset mode freely.

Available for ON / OFFworking together

Sleep timer with ECO logic

Setting both ON and OFFtimer simultaneously anddaily

-

Automatic controls for quickcooling and heating

-

-

No remote controller sensor

AUTO

COOL

DRY

HEAT

(Note)1. Automatic operation mode can not be accepted by heat pump system. If transmission is sent as auto mode, operation lamp and

timer lamp of the indoor unit will light up with a beep as notification. In this case, change the other operation mode. (Heat recovery system can accept automatic operation by using this wireless remote controller.)2. Group control using the wired remote controller (WH-H2UE) is not available. If it is incorrect action or display disagreement

may occur.3. A wired remote controller is required for the group control. (sold separately.)4. When the wired remote controller is connected to this high wall unit, two remote control with the wireless remote controller

(WH-H2UE) can be used. In this case, last-push priority control is performed.5. When the unit is controlled in a group through a wired control, ECO-Timer and Hi-POWER operation will not function.

TCB-AX21E2(sold Separately)

A-12

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1-way (2 series)Air Discharge Cassette Type

Engineering Data

Oct. 05’

Contents

1. Specifications

2. Dimensions

3. Electrical current characteristics

4. Sensible capacity table

5. Wiring diagrams

6. Air speed characteristics

7. Sound characteristics (NC Curve)

8. Fresh air intake (Design guide)

9. Barycentric position

Indoor UnitMMU-AP0152SHMMU-AP0182SHMMU-AP0242SH

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A-14

Page 228: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

1

1. Specification1-way (2 series) Air Discharge Cassette Type

Model name MMU-

Cooling/Heating capacity (kW)

Electrical

characteristics

Appearance

Dimension

Total weight

Heat exchanger

Soundproof / Heat-insulating material

Fan

Standard air flow

Motor (W)

Air filter

Controller

Connecting pipe

Sound pressure level

Power supply

Running current (A)

Power consumption (kW)

Starting current (A)

Main unit

Ceiling panel

Panel color

Main unit

Ceiling panel

Height (mm)

Width (mm)

Depth (mm)

Height (mm)

Width (mm)

Depth (mm)

Main unit (kg)

Ceiling panel (kg)

High (m3/h)

(Mid./Low) (m3/h)

Gas pipe (mm)

Liquid pipe (mm)

Drain pipe (Nominal dia.mm)

High/Mid./Low (dB(A))

AP0152SH AP0182SH AP0242SH

4.5/5.0 5.6/6.3 7.1/8.0

1 phase 50Hz 230V (220-240V)

0.34 0.37 0.62

0.042 0.046 0.075

0.51 0.54 0.80

Heat-insulating material attached Zinc hot dipping steel plate

RBC-US21PGE

Moon white (Munsel 2.5GY9.0/0.5)

200

1000

710

20

1230

800

21 22

5.5

Finned tube

Polyethylene foam + Expanded polystyrene

Centrifugal fan (Sirocco fan)

750 780 1140

690/630 720/660 960/810

30

Standard filter attached (Long life filter)

Remote controller

12.7 15.9

6.4 9.5

25 (Polyvinyl chloride tube : External dia.32 Internal dia.25)

37/35/32 38/36/34 45/41/37

50Hz

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Page 229: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

2

1. Specification1-way (2 series) Air Discharge Cassette Type

60Hz

AP0152SH AP0182SH AP0242SH

4.5/5.0 5.6/6.3 7.1/8.0

1 phase 60Hz 220V

0.35 0.39 0.62

0.041 0.045 0.073

0.53 0.54 0.80

Heat-insulating material attached Zinc hot dipping steel plate

RBC-US21PGE

Moon white (Munsel 2.5GY9.0/0.5)

200

1000

710

20

1230

800

21 22

5.5

Finned tube

Polyethylene foam + Expanded polystyrene

Centrifugal fan (Sirocco fan)

750 780 1140

690/630 720/660 960/810

30

Standard filter attached (Long life filter)

Remote controller

12.7 15.9

6.4 9.5

25 (Polyvinyl chloride tube : External dia.32 Internal dia.25)

37/35/32 38/36/34 45/41/37

Model name MMU-

Cooling/Heating capacity (kW)

Electrical

characteristics

Appearance

Dimension

Total weight

Heat exchanger

Soundproof / Heat-insulating material

Fan

Standard air flow

Motor (W)

Air filter

Controller

Connecting pipe

Sound pressure level

Power supply

Running current (A)

Power consumption (kW)

Starting current (A)

Main unit

Ceiling panel

Panel color

Main unit

Ceiling panel

Height (mm)

Width (mm)

Depth (mm)

Height (mm)

Width (mm)

Depth (mm)

Main unit (kg)

Ceiling panel (kg)

High (m3/h)

(Mid./Low) (m3/h)

Gas pipe (mm)

Liquid pipe (mm)

Drain pipe (Nominal dia.mm)

High/Mid./Low (dB(A))

A-16

Page 230: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

3

2. Dimensions1-way (2 series) Air Discharge Cassette Type (MMU-AP***SH)

Cable inlet (Knockout hole)

Drain pipe connecting port(Be sure to connect the attached flexible hose.)

248

20 94

154

5620

20

7673

.4

135

220

233

122

200

20

2.7

120

93

475

Han

ging

bol

t pitc

h

760

Cei

ling

open

ing

size

710

Uni

t ext

erna

l siz

e

800

Pan

el e

xter

nal s

ize

1060 Hanging bolt pitch

Refrigerant pipe connecting port Gas side B

Refrigerant pipe connecting port Liquid side A

Hanging bolt M10 or W3/8 (Local supply)

1190 Ceiling opening size

1230 Panel external size

1000 Unit external size

Lower surface of ceiling Ceiling panel (Sold separately) For front air discharge unit (Sold separately) knockout hole

100 43

6080

216

72

Cable inlet

252

C/L

C/L

20

706

4

12016

112Fresh air inlet (Ø92 knockout hole)

Ø112 (4-tapping screw under-hole)

Model name MMU-

AP015, AP018 type

AP024 type

A B

Ø6.4 Ø12.7

Ø9.5 Ø15.9Wired remote controller RBC-AMT21E RBC-AMT31ESimple wired remote controller RBC-AS21E RBC-AS21E2Wireless remote controller kit TCB-AX21E TCB-AX21E2Weekly timer application RBC-AMT31E and RBC-EXW21E2

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Page 231: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

4

3. Electrical current characteristics1-way (2 series) Air Discharge Cassette Type

Model

MMU-AP0152SH

MMU-AP0182SH

MMU-AP0242SH

MMU-AP0152SH

MMU-AP0182SH

MMU-AP0242SH

MMU-AP0152SH

MMU-AP0182SH

MMU-AP0242SH

Nominal Voltage

(V-Ph-Hz)

230-1-50

230-1-50

230-1-50

220-1-60

220-1-60

220-1-60

230-1-50

230-1-50

230-1-50

Type

S-MMS (50Hz)

S-MMS (60Hz)

S-HRM

Voltage Range

Min Max

198 264

198 264

198 264

198 264

198 264

198 264

198 264

198 264

198 264

Fan Motor

kW FLA

0.030 0.40

0.030 0.42

0.030 0.71

0.030 0.40

0.030 0.45

0.030 0.75

0.030 0.40

0.030 0.42

0.030 0.71

Power Supply

MCA MOCP

0.49 15

0.53 15

0.88 15

0.50 15

0.57 15

0.94 15

0.49 15

0.53 15

0.88 15

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5

4. Sensible capacity table1-way (2 series) Air Discharge Cassette Type (MMU-AP***SH)

TC : Total capacity [kW] SHC : Sensible capacity [kW]

Indoor air temp.14.0CWB 16.0CWB 18.0CWB 19.0CWB 20.0CWB 22.0CWB 24.0CWB20CDB 23CDB 26CDB 27CDB 28CDB 30CDB 32CDB

TC SHC TC SHC TC SHC TC SHC TC SHC TC SHC TC SHC

3.7 2.8 4.1 3.0 4.4 3.2 4.5 3.2 4.6 3.2 4.9 3.2 5.1 3.13.7 2.8 4.1 3.0 4.4 3.2 4.5 3.2 4.6 3.2 4.9 3.2 5.1 3.13.7 2.8 4.1 3.0 4.4 3.2 4.5 3.2 4.6 3.2 4.9 3.2 5.1 3.13.7 2.8 4.1 3.0 4.4 3.2 4.5 3.2 4.6 3.2 4.9 3.2 5.1 3.13.7 2.8 4.1 3.0 4.4 3.2 4.5 3.2 4.6 3.2 4.9 3.2 5.1 3.13.7 2.8 4.1 3.0 4.4 3.2 4.5 3.2 4.6 3.2 4.9 3.2 5.1 3.13.7 2.8 4.1 3.0 4.4 3.2 4.5 3.2 4.6 3.2 4.9 3.2 5.1 3.13.7 2.8 4.1 3.0 4.4 3.2 4.5 3.2 4.6 3.2 4.9 3.2 5.1 3.13.7 2.8 4.1 3.0 4.4 3.2 4.5 3.2 4.6 3.2 4.9 3.2 5.1 3.13.7 2.8 4.1 3.0 4.4 3.2 4.5 3.2 4.6 3.2 4.9 3.2 5.1 3.13.7 2.8 4.1 3.0 4.4 3.2 4.5 3.2 4.6 3.2 4.9 3.2 5.1 3.13.7 2.8 4.1 3.0 4.4 3.2 4.5 3.2 4.6 3.2 4.9 3.2 5.1 3.13.7 2.8 4.1 3.0 4.4 3.2 4.5 3.2 4.6 3.2 4.9 3.2 5.1 3.13.7 2.8 4.1 3.0 4.4 3.2 4.5 3.2 4.6 3.2 4.9 3.2 5.1 3.13.6 2.7 4.0 2.9 4.2 3.1 4.4 3.1 4.5 3.1 4.7 3.1 5.0 3.03.5 2.7 3.8 2.8 4.1 3.0 4.2 3.0 4.4 3.0 4.6 3.0 4.8 2.9

4.6 3.5 5.1 3.7 5.4 3.9 5.6 3.9 5.8 3.9 6.1 3.9 6.4 3.84.6 3.5 5.1 3.7 5.4 3.9 5.6 3.9 5.8 3.9 6.1 3.9 6.4 3.84.6 3.5 5.1 3.7 5.4 3.9 5.6 3.9 5.8 3.9 6.1 3.9 6.4 3.84.6 3.5 5.1 3.7 5.4 3.9 5.6 3.9 5.8 3.9 6.1 3.9 6.4 3.84.6 3.5 5.1 3.7 5.4 3.9 5.6 3.9 5.8 3.9 6.1 3.9 6.4 3.84.6 3.5 5.1 3.7 5.4 3.9 5.6 3.9 5.8 3.9 6.1 3.9 6.4 3.84.6 3.5 5.1 3.7 5.4 3.9 5.6 3.9 5.8 3.9 6.1 3.9 6.4 3.84.6 3.5 5.1 3.7 5.4 3.9 5.6 3.9 5.8 3.9 6.1 3.9 6.4 3.84.6 3.5 5.1 3.7 5.4 3.9 5.6 3.9 5.8 3.9 6.1 3.9 6.4 3.84.6 3.5 5.1 3.7 5.4 3.9 5.6 3.9 5.8 3.9 6.1 3.9 6.4 3.84.6 3.5 5.1 3.7 5.4 3.9 5.6 3.9 5.8 3.9 6.1 3.9 6.4 3.84.6 3.5 5.1 3.7 5.4 3.9 5.6 3.9 5.8 3.9 6.1 3.9 6.4 3.84.6 3.5 5.1 3.7 5.4 3.9 5.6 3.9 5.8 3.9 6.1 3.9 6.4 3.84.6 3.5 5.1 3.7 5.4 3.9 5.6 3.9 5.8 3.9 6.1 3.9 6.4 3.84.5 3.3 4.9 3.6 5.3 3.8 5.4 3.8 5.6 3.8 5.9 3.7 6.2 3.74.3 3.3 4.8 3.5 5.1 3.7 5.3 3.7 5.4 3.7 5.7 3.6 6.0 3.6

5.8 4.4 6.4 4.7 6.9 5.0 7.1 5.0 7.3 5.0 7.7 5.0 8.1 4.85.8 4.4 6.4 4.7 6.9 5.0 7.1 5.0 7.3 5.0 7.7 5.0 8.1 4.85.8 4.4 6.4 4.7 6.9 5.0 7.1 5.0 7.3 5.0 7.7 5.0 8.1 4.85.8 4.4 6.4 4.7 6.9 5.0 7.1 5.0 7.3 5.0 7.7 5.0 8.1 4.85.8 4.4 6.4 4.7 6.9 5.0 7.1 5.0 7.3 5.0 7.7 5.0 8.1 4.85.8 4.4 6.4 4.7 6.9 5.0 7.1 5.0 7.3 5.0 7.7 5.0 8.1 4.85.8 4.4 6.4 4.7 6.9 5.0 7.1 5.0 7.3 5.0 7.7 5.0 8.1 4.85.8 4.4 6.4 4.7 6.9 5.0 7.1 5.0 7.3 5.0 7.7 5.0 8.1 4.85.8 4.4 6.4 4.7 6.9 5.0 7.1 5.0 7.3 5.0 7.7 5.0 8.1 4.85.8 4.4 6.4 4.7 6.9 5.0 7.1 5.0 7.3 5.0 7.7 5.0 8.1 4.85.8 4.4 6.4 4.7 6.9 5.0 7.1 5.0 7.3 5.0 7.7 5.0 8.1 4.85.8 4.4 6.4 4.7 6.9 5.0 7.1 5.0 7.3 5.0 7.7 5.0 8.1 4.85.8 4.4 6.4 4.7 6.9 5.0 7.1 5.0 7.3 5.0 7.7 5.0 8.1 4.85.8 4.4 6.4 4.7 6.9 5.0 7.1 5.0 7.3 5.0 7.7 5.0 8.1 4.85.6 4.3 6.2 4.6 6.7 4.9 6.9 4.8 7.1 4.8 7.5 4.8 7.8 4.75.5 4.2 6.1 4.4 6.5 4.7 6.7 4.7 6.9 4.7 7.3 4.7 7.6 4.6

Unitsize

015

018

024

Outdoorair temp.

CDB

10.012.014.016.018.020.021.023.025.027.029.031.033.035.037.039.0

10.012.014.016.018.020.021.023.025.027.029.031.033.035.037.039.0

10.012.014.016.018.020.021.023.025.027.029.031.033.035.037.039.0

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6

5. Wiring diagrams1-way (2 series) Air Discharge Cassette Type (MMU-AP***SH)

on s

ide

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7

Heating mode

MMU-AP0152SH, AP0182SH

MMU-AP0242SH

6. Air speed characteristics1-way (2 series) Air Discharge Cassette Type

1.0

0.50.5

0.3 0.3

Main unit3.5m

3m

2m

1m

1m 2m 3m 4m

Main unit

1.0

0.50.5

0.3

0.3

3.5m

3m

2m

1m

1m 2m 3m 4m

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8

7. Sound Characteristics (NC Curve)1-way (2 series) Air Discharge Cassette Type

MMU-AP0152SH MMU-AP0242SH

MMU-AP0182SH

10

20

30

40

50

60

70

80

90

63 125 250 500 1000 2000 4000 8000

Octave band center frequency (Hz)

Oct

ave

band

sou

nd p

ress

ure

leve

l (dB

)

L

H M

NC-60

NC-50

NC-40

NC-20

NC-70

NC-30

Approximate threshold ofhearing for continuous noise

10

20

30

40

50

60

70

80

90

63 125 250 500 1000 2000 4000 8000

Octave band center frequency (Hz)

Oct

ave

band

sou

nd p

ress

ure

leve

l (dB

)

M

L

H

NC-60

NC-50

NC-40

NC-20

NC-70

NC-30

Approximate threshold ofhearing for continuous noise

10

20

30

40

50

60

70

80

90

63 125 250 500 1000 2000 4000 8000

Octave band center frequency (Hz)

Oct

ave

band

sou

nd p

ress

ure

leve

l (dB

)

L

H M

NC-60

NC-50

NC-40

NC-20

NC-70

NC-30

Approximate threshold ofhearing for continuous noise

Center1.5m

Microphone

Fan tapSound pressure

level (dB(A))

H M L

37 35 32

Fan tapSound pressure

level (dB(A))

H M L

45 41 37

Fan tapSound pressure

level (dB(A))

H M L

38 36 34

A-22

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9

8. Fresh air intake (Design guide)1-way (2 series) Air Discharge Cassette Type

CautionThe fresh air shall be conditioned by a heat reclaim ventilator or similar.Ensure the fresh air volume is determined so that mixed suction air and fresh air can maintain theoperating temperature.*1.Recommended conditioned air temperature is 12 °C to 30 °C.

However, Make a fresh air volume within 20% of standard.

Install a filter within the fresh air duct.(Fresh air does not pass through the filter of Indoor unit.)

Insulate the fresh air duct.Electrically connect the fan of the Heat exchanger unit and the Indoor unit to a single isolator.

Inter - lock circuitConnect the driving relay of the duct fan(DC 12V) between 1 and 6 on the indoor P.C. board.(Rated current of the relay for duct fan should be up to 75mA.)After installation, carry out a trial operation to check that the duct fan of the indoor unit start/stopsimultaneously.(Carry out the trial operation following the installation manual of the indoor unit.)

0

10

20

30

40

50

60

70

80

0 50 100 150 200 250

Fresh Air Volume (m3/h)

Sta

tic P

ress

ure

(Pa)

MMU-AP0242SH

MMU-AP0152SH,MMU-AP182SH

Flange Option :TCB-FF101URE

Duct fanmotor Fresh Air VolumeIndoor unit

Model name MMU- AP0152SH AP0182SH AP0242SHStandard air flow (m3/h) 750 780 1140

A-23

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10

9. Units center of gravity1-way (2 series) Air Discharge Cassette Type

Model name X (mm) Y (mm) Z (mm)Weight (kg)

Main unit Ceiling panel

MMU-AP0152SH

MMU-AP0182SH

MMU-AP0242SH

370 475 8020 5.5

21 5.5

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Slim Duct Type

Engineering Data

Oct. 05’

Contents

1. Specifications2. Electrical current characteristics3. Dimensions4. Sensible capacity table5. Wiring diagrams6. Fan characteristics7. Sound characteristics (NC Curve)8. Fresh air intake (Design guide)

Indoor UnitMMD-AP0071SPHMMD-AP0091SPHMMD-AP0121SPHMMD-AP0151SPHMMD-AP0181SPH

MMD-AP0071SPH (SH)-CMMD-AP0091SPH (SH)-CMMD-AP0121SPH (SH)-CMMD-AP0151SPH (SH)-CMMD-AP0181SPH (SH)-C

MMD-AP0071SPH-KMMD-AP0091SPH-KMMD-AP0121SPH-KMMD-AP0151SPH-KMMD-AP0181SPH-K

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A-26

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1

1. Specification

Model name MMD-

Cooling/Heating capacity (kW)

Electrical

characteristics

Appearance

Dimension

Total weight (kg)

Heat exchanger

Soundproof / Heat-insulating material

Fan

Standard air

flow

Motor (W)

External static pressure (Pa)

Controller

Air filter

Connecting

pipe

Sound pressure level

High/Mid./Low

Sound power level (dB(A))

Gas pipe (mm)

Liquid pipe (mm)

Drain pipe (Nominal dia.mm)

Under air inlet (dB(A))

Back air inlet (dB(A))

High (m3/h)

(Mid./Low) (m3/h)

Air filter pressure loss (Pa)

Power supply

Running current (A)

Power consumption (kW)

Starting current (A)

Height (mm)

Width (mm)

Depth (mm)

AP0071SPH AP0091SPH AP0121SPH AP0151SPH AP0181SPH

2.2/2.5 2.8/3.2 3.6/4.0 4.5/5.0 5.6/6.3

1 phase 50Hz 230V (220-240V)

0.29 0.29 0.31 0.32 0.39

0.039 0.039 0.043 0.045 0.054

0.51 0.51 0.54 0.56 0.68

Zinc hot dipping steel plate

210

845

645

22 22 22 23 23

Finned tube

Polyethylene foam + Polyurethane foam

Centrifugal fan (Sirocco fan)

540 600 690 780

470/400 520/450 600/520 680/580

60

6 (Factory setting) 5 (Factory setting) 4 (Factory setting)

-16-31-46 4steps -15-30-45 4steps -14-29-44 4steps

4 5 6

Remote controller

Standard filter supplied (Long life filter)

9.5 12.7

6.4

25 (Polyvinyl chloride tube : External dia.32 Internal dia.25)

36/33/30 38/35/32 39/36/33 40/38/36

28/26/24 29/27/25 32/30/28 33/3129

51 53 54 55

* This sound pressure level is measured on the condition of Factory setting external static pressure.* This sound pressure level are measured in an anechoic chamber in accordance with JIS B8616.

50Hz

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2

1. Specification60Hz

AP0071SPH AP0091SPH AP0121SPH AP0151SPH AP0181SPH

2.2/2.5 2.8/3.2 3.6/4.0 4.5/5.0 5.6/6.3

1 phase 60Hz 220V

0.27 0.27 0.30 0.31 0.37

0.037 0.037 0.041 0.043 0.052

0.47 0.47 0.53 0.54 0.65

Zinc hot dipping steel plate

210

845

645

22 22 22 23 23

Finned tube

Polyethylene foam + Polyurethane foam

Centrifugal fan (Sirocco fan)

540 600 690 780

470/400 520/450 600/520 680/580

60

6 (Factory setting) 5 (Factory setting) 4 (Factory setting)

-16-31-46 4steps -15-30-45 4steps -14-29-44 4steps

4 5 6

Remote controller

Standard filter supplied (Long life filter)

9.5 12.7

6.4

25 (Polyvinyl chloride tube : External dia.32 Internal dia.25)

36/33/30 38/35/32 39/36/33 40/38/36

28/26/24 29/27/25 32/30/28 33/31/29

51 53 54 55

Model name MMD-

Cooling/Heating capacity (kW)

Electrical

characteristics

Appearance

Dimension

Total weight (kg)

Heat exchanger

Soundproof / Heat-insulating material

Fan

Standard air

flow

Motor (W)

External static pressure (Pa)

Controller

Air filter

Connecting

pipe

Sound pressure level

High/Mid./Low

Sound power level (dB(A))

Gas pipe (mm)

Liquid pipe (mm)

Drain pipe (Nominal dia.mm)

Under air inlet (dB(A))

Back air inlet (dB(A))

High (m3/h)

(Mid./Low) (m3/h)

Air filter pressure loss (Pa)

Power supply

Running current (A)

Power consumption (kW)

Starting current (A)

Height (mm)

Width (mm)

Depth (mm)

* This sound pressure level is measured on the condition of Factory setting external static pressure.* This sound pressure level are measured in an anechoic chamber in accordance with JIS B8616.

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3

1. Specification

China Model

AP0071SPH-C AP0091SPH-C AP0121SPH-C AP0151SPH-C AP0181SPH-C

2.2/2.5 2.8/3.2 3.6/4.0 4.5/5.0 5.6/6.3

1 phase 50Hz 220V

0.29 0.29 0.31 0.32 0.39

0.039 0.039 0.043 0.045 0.054

0.51 0.51 0.54 0.56 0.68

Zinc hot dipping steel plate

210

845

645

22 22 22 23 23

Finned tube

Polyethylene foam + Polyurethane foam

Centrifugal fan (Sirocco fan)

540 600 690 780

470/400 520/450 600/520 680/580

60

10(factory setting)-20-35-50 4steps

Remote controller

Field supply

9.5 12.7

6.4

25 (Polyvinyl chloride tube : External dia.32 Internal dia.25)

36/33/30 38/35/32 39/36/33 40/38/36

28/26/24 29/27/25 32/30/28 33/31/29

Model name MMD-

Cooling/Heating capacity (kW)

Electrical

characteristics

Appearance

Dimension

Total weight (kg)

Heat exchanger

Soundproof / Heat-insulating material

Fan

Standard air

flow

Motor (W)

External static pressure (Pa)

Controller

Air filter

Connecting

pipe

Sound pressure level

High/Mid./Low

Gas pipe (mm)

Liquid pipe (mm)

Drain pipe (Nominal dia.mm)

Under air inlet (dB(A))

Back air inlet (dB(A))

High (m3/h)

(Mid./Low) (m3/h)

Power supply

Running current (A)

Power consumption (kW)

Starting current (A)

Height (mm)

Width (mm)

Depth (mm)

* This sound pressure level is measured on the condition of Factory setting external static pressure.* This sound pressure level are measured in an anechoic chamber in accordance with JIS B8616.

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4

1. Specification

China Model

AP0071SH-C P0091SH-C AP0121SH-C AP0151SH-C AP0181SH-C

2.2/2.5 2.8/3.2 3.6/4.0 4.5/5.0 5.6/6.3

1 phase 50Hz 220V

0.26 0.26 0.27 0.28 0.35

0.027 0.027 0.031 0.033 0.042

0.46 0.46 0.47 0.49 0.61

Zinc hot dipping steel plate

210

845

645

22 22 22 23 23

Finned tube

Polyethylene foam + Polyurethane foam

Centrifugal fan (Sirocco fan)

540 600 690 780

470/400 520/450 600/520 680/580

60

10(factory setting)-20-35-50 4steps

Remote controller

Field supply

9.5 12.7

6.4

20 (Polyvinyl chloride tube : External dia.26 Internal dia.20)

36/33/30 38/35/32 39/36/33 40/38/36

28/26/24 29/27/25 32/30/28 33/31/29

Model name MMD-

Cooling/Heating capacity (kW)

Electrical

characteristics

Appearance

Dimension

Total weight (kg)

Heat exchanger

Soundproof / Heat-insulating material

Fan

Standard air

flow

Motor (W)

External static pressure (Pa)

Controller

Air filter

Connecting

pipe

Sound pressure level

High/Mid./Low

Gas pipe (mm)

Liquid pipe (mm)

Drain pipe (Nominal dia.mm)

Under air inlet (dB(A))

Back air inlet (dB(A))

High (m3/h)

(Mid./Low) (m3/h)

Power supply

Running current (A)

Power consumption (kW)

Starting current (A)

Height (mm)

Width (mm)

Depth (mm)

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5

1. Specification

60Hz

AP0071SPH-K AP0091SPH-K AP0121SPH-K AP0151SPH-K AP0181SPH-K

2.2/2.5 2.8/3.2 3.6/4.0 4.5/5.0 5.6/6.3

1 phase 60Hz 220V

0.27 0.27 0.30 0.31 0.37

0.037 0.037 0.041 0.043 0.052

0.47 0.47 0.53 0.54 0.65

Zinc hot dipping steel plate

210

845

645

22 22 22 23 23

Finned tube

Polyethylene foam + Polyurethane foam

Centrifugal fan (Sirocco fan)

540 600 690 780

470/400 520/450 600/520 680/580

60

6 (Factory setting) 5 (Factory setting) 4 (Factory setting)

-16-31-46 4steps -15-30-45 4steps -14-29-44 4steps

4 5 6

Remote controller

Standard filter supplied (Long life filter)

9.5 12.7

6.4

25 (Polyvinyl chloride tube : External dia.32 Internal dia.25)

36/33/30 38/35/32 39/36/33 40/38/36

28/26/24 29/27/25 32/30/28 33/31/29

Model name MMD-

Cooling/Heating capacity (kW)

Electrical

characteristics

Appearance

Dimension

Total weight (kg)

Heat exchanger

Soundproof / Heat-insulating material

Fan

Standard air

flow

Motor (W)

External static pressure (Pa)

Controller

Air filter

Connecting

pipe

Sound pressure level

High/Mid./Low

Gas pipe (mm)

Liquid pipe (mm)

Drain pipe (Nominal dia.mm)

Under air inlet (dB(A))

Back air inlet (dB(A))

High (m3/h)

(Mid./Low) (m3/h)

Air filter pressure loss (Pa)

Power supply

Running current (A)

Power consumption (kW)

Starting current (A)

Height (mm)

Width (mm)

Depth (mm)

* This sound pressure level is measured on the condition of Factory setting external static pressure.* This sound pressure level are measured in an anechoic chamber in accordance with JIS B8616.

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6

2. Electrical current characteristics

Nominal Voltage

(V-Ph-Hz)

230-1-50

230-1-50

230-1-50

230-1-50

230-1-50

220-1-60

220-1-60

220-1-60

220-1-60

220-1-60

230-1-50

230-1-50

230-1-50

230-1-50

230-1-50

Type

S-MMS (50Hz)

S-MMS (60Hz)

S-HRM

Voltage Range

Min Max

198 264

198 264

198 264

198 264

198 264

198 264

198 264

198 264

198 264

198 264

198 264

198 264

198 264

198 264

198 264

Fan Motor

kW FLA

0.060 0.35

0.060 0.35

0.060 0.37

0.060 0.38

0.060 0.47

0.060 0.32

0.060 0.32

0.060 0.36

0.060 0.37

0.060 0.44

0.060 0.35

0.060 0.35

0.060 0.37

0.060 0.38

0.060 0.47

Power Supply

MCA MOCP

0.44 15

0.44 15

0.47 15

0.48 15

0.59 15

0.41 15

0.41 15

0.45 15

0.47 15

0.56 15

0.44 15

0.44 15

0.47 15

0.48 15

0.59 15

MMD-AP0071SPH

MMD-AP0091SPH

MMD-AP0121SPH

MMD-AP0151SPH

MMD-AP0181SPH

MMD-AP0071SPH

MMD-AP0091SPH

MMD-AP0121SPH

MMD-AP0151SPH

MMD-AP0181SPH

MMD-AP0071SPH

MMD-AP0091SPH

MMD-AP0121SPH

MMD-AP0151SPH

MMD-AP0181SPH

Model

A-32

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7

805

805

825

n=24 M5 (Ø4.2 mounting hole)

n=22 M5 (Ø4.2 mounting hole)

10012.5

100 100 100 100 100 10012.5

45.3

10026

6.5

12.5

170

100

41.5 8.2

or le

ss28

6.8

12.5

44.3

100

44.3

188.

6

100

825

100 100 100 100 100 100 100 100

845

80580

Fresh air inlet(Knock-out hole)

59 910

168

(insi

de)

2120

19

67

210

5751

164

567

359

40

372

422

502

4-Ø

4

Ø92 80 16

812

021 803 (inside) Refrigerant piping2121

Air filter 103

31

33163

Hanger plate

Drain-up port

3. DimensionsMMD-AP0071SPH(-K), AP0091SPH(-K), AP0121SPH(-K), AP0151SPH(-K), AP0181SPH(-K)

Air inlet connecting flange (Field supply)

Rearside

Underside

Wired remote controller RBC-AMT21E RBC-AMT31ESimple wired remote controller RBC-AS21E RBC-AS21E2Wireless remote controller kit TCB-AX21E TCB-AX21E2Weekly timer application RBC-AMT31E and RBC-EXW21E2

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8

3. DimensionsInstallation space

5 or more

210

100 or more 250 or more

235 or moreAir outlet

5 or more

210

50 or more

235 or m

2500 or more

Floor surface

Air inletCeiling

5 or more

210

300 or more

235 or more

2500 or more

Air intlet

Floor surface

Ceiling

Service space

(length:mm)

50 50 645945 Air filter

Service door (Ceiling opening)

645945

Service door (Ceiling opening)

Air filter

745

945

645

745

Air outlet

(length:mm)

Under air inlet Rear air inlet

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Page 248: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

9

845

80580

Fresh air inlet(Knock-out hole)

59 910

168

(insi

de)

2120

19

67

210

5751

164

5

67

359

40

372

422

502

4-Ø

4

Ø92 80 16

8

146

120

21 21 803 (inside)Refrigerant piping

21Natural drain port 103

31

33163

Hanger plate

Drain-up port(SPH model only)

3. DimensionsMMD-AP007SPH-C, AP0091SPH-C, AP0121SPH-C, AP0151SPH-C, AP0181SPH-C,MMD-AP0071SH-C, AP0091SH-C, AP0121SH-C, AP0151SH-C, AP0181SH-C

Air inlet connecting flange (Field supply)

805

805

825

n=24 M5 (Ø4.2 mounting hole)

n=22 M5 (Ø4.2 mounting hole)

10012.5

100 100 100 100 100 10012.5

45.3

10026

6.5

12.5

170

100

41.5 8.2

or le

ss28

6.8

12.5

44.3

100

44.3

188.

6

100

825

100 100 100 100 100 100 100 100

Rearside

Underside

Wired remote controller RBC-AMT21E RBC-AMT31ESimple wired remote controller RBC-AS21E RBC-AS21E2Wireless remote controller kit TCB-AX21E TCB-AX21E2Weekly timer application RBC-AMT31E and RBC-EXW21E2

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Page 249: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

10

3. DimensionsInstallation space(length:mm)

5 or more

100 or more 250 or more

210 235 or moreAir outlet

MMD-AP0071SPH-C, MMD-AP0091SPH-C, MMD-AP0121SPH-C, MMD-AP0151SPH-C, MMD-AP0181SPH-C

MMD-AP0071SH-C, MMD-AP0091SH-C, MMD-AP0121SH-C, MMD-AP0151SH-C, MMD-AP0181SH-C

Drain piping

5 or more

100 or more 250 or more

210 235 or moreAir outlet

Drain piping left side

Drain pipng right sideDrain piping

5 or more

250 or more 200 or more

(Refrigerant piping space)

210 235 or moreAir outlet

MMD-AP0071SPH-C, MMD-AP0091SPH-C, MMD-AP0121SPH-C, MMD-AP0151SPH-C, MMD-AP0181SPH-CMMD-AP0071SH-C, MMD-AP0091SH-C, MMD-AP0121SH-C, MMD-AP0151SH-C, MMD-AP0181SH-C

5 or more

50 or more

210 235 or more

2500 or more

Floor surface

Air inletCeiling

5 or more

210

300 or more

235 or more

2500 or more

Air intlet

Floor surface

Ceiling

Under air inlet

Rear air inlet

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Page 250: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

11

3. DimensionsService space(length:mm)

50 50

945 645

Service door (Ceiling opening)

945

645

Air outlet

MMD-AP0071SPH-C, MMD-AP0091SPH-C, MMD-AP0121SPH-C, MMD-AP0151SPH-C, MMD-AP0181SPH-C

MMD-AP0071SH-C, MMD-AP0091SH-C, MMD-AP0121SH-C, MMD-AP0151SH-C, MMD-AP0181SH-CDrain piping

50 100

995 645

Service door (Ceiling opening)

995

645

Air outlet

Drain piping left side

Drain pipng right sideDrain piping

100 50

645

Service door (Ceiling opening)

995

995

645

Air outlet

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Page 251: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

12

4. Sensible capacity tableSlim Duct Type ( MMD-AP***SPH )

TC : Total capacity [kW] SHC : Sensible capacity [kW]

Unitsize

007

009

012

Outdoorair temp.

CDB

10.012.014.016.018.020.021.023.025.027.029.031.033.035.037.039.0

10.012.014.016.018.020.021.023.025.027.029.031.033.035.037.039.0

10.012.014.016.018.020.021.023.025.027.029.031.033.035.037.039.0

Indoor air temp.14.0CWB 16.0CWB 18.0CWB 19.0CWB 20.0CWB 22.0CWB 24.0CWB20CDB 23CDB 26CDB 27CDB 28CDB 30CDB 32CDB

TC SHC TC SHC TC SHC TC SHC TC SHC TC SHC TC SHC

1.8 1.6 2.0 1.7 2.1 1.8 2.2 1.8 2.3 1.8 2.4 1.8 2.5 1.71.8 1.6 2.0 1.7 2.1 1.8 2.2 1.8 2.3 1.8 2.4 1.8 2.5 1.71.8 1.6 2.0 1.7 2.1 1.8 2.2 1.8 2.3 1.8 2.4 1.8 2.5 1.71.8 1.6 2.0 1.7 2.1 1.8 2.2 1.8 2.3 1.8 2.4 1.8 2.5 1.71.8 1.6 2.0 1.7 2.1 1.8 2.2 1.8 2.3 1.8 2.4 1.8 2.5 1.71.8 1.6 2.0 1.7 2.1 1.8 2.2 1.8 2.3 1.8 2.4 1.8 2.5 1.71.8 1.6 2.0 1.7 2.1 1.8 2.2 1.8 2.3 1.8 2.4 1.8 2.5 1.71.8 1.6 2.0 1.7 2.1 1.8 2.2 1.8 2.3 1.8 2.4 1.8 2.5 1.71.8 1.6 2.0 1.7 2.1 1.8 2.2 1.8 2.3 1.8 2.4 1.8 2.5 1.71.8 1.6 2.0 1.7 2.1 1.8 2.2 1.8 2.3 1.8 2.4 1.8 2.5 1.71.8 1.6 2.0 1.7 2.1 1.8 2.2 1.8 2.3 1.8 2.4 1.8 2.5 1.71.8 1.6 2.0 1.7 2.1 1.8 2.2 1.8 2.3 1.8 2.4 1.8 2.5 1.71.8 1.6 2.0 1.7 2.1 1.8 2.2 1.8 2.3 1.8 2.4 1.8 2.5 1.71.8 1.6 2.0 1.7 2.1 1.8 2.2 1.8 2.3 1.8 2.4 1.8 2.5 1.71.7 1.5 1.9 1.6 2.1 1.7 2.1 1.7 2.2 1.7 2.3 1.7 2.4 1.71.7 1.5 1.9 1.6 2.0 1.7 2.1 1.7 2.1 1.7 2.3 1.7 2.4 1.6

2.3 1.9 2.5 2.0 2.7 2.1 2.8 2.1 2.9 2.1 3.1 2.1 3.2 2.02.3 1.9 2.5 2.0 2.7 2.1 2.8 2.1 2.9 2.1 3.1 2.1 3.2 2.02.3 1.9 2.5 2.0 2.7 2.1 2.8 2.1 2.9 2.1 3.1 2.1 3.2 2.02.3 1.9 2.5 2.0 2.7 2.1 2.8 2.1 2.9 2.1 3.1 2.1 3.2 2.02.3 1.9 2.5 2.0 2.7 2.1 2.8 2.1 2.9 2.1 3.1 2.1 3.2 2.02.3 1.9 2.5 2.0 2.7 2.1 2.8 2.1 2.9 2.1 3.1 2.1 3.2 2.02.3 1.9 2.5 2.0 2.7 2.1 2.8 2.1 2.9 2.1 3.1 2.1 3.2 2.02.3 1.9 2.5 2.0 2.7 2.1 2.8 2.1 2.9 2.1 3.1 2.1 3.2 2.02.3 1.9 2.5 2.0 2.7 2.1 2.8 2.1 2.9 2.1 3.1 2.1 3.2 2.02.3 1.9 2.5 2.0 2.7 2.1 2.8 2.1 2.9 2.1 3.1 2.1 3.2 2.02.3 1.9 2.5 2.0 2.7 2.1 2.8 2.1 2.9 2.1 3.1 2.1 3.2 2.02.3 1.9 2.5 2.0 2.7 2.1 2.8 2.1 2.9 2.1 3.1 2.1 3.2 2.02.3 1.9 2.5 2.0 2.7 2.1 2.8 2.1 2.9 2.1 3.1 2.1 3.2 2.02.3 1.9 2.5 2.0 2.7 2.1 2.8 2.1 2.9 2.1 3.1 2.1 3.2 2.02.2 1.8 2.5 1.9 2.6 2.0 2.7 2.0 2.8 2.0 3.0 2.0 3.1 2.02.2 1.8 2.4 1.9 2.6 2.0 2.6 2.0 2.7 2.0 2.9 2.0 3.0 1.9

3.0 2.2 3.3 2.4 3.5 2.5 3.6 2.5 3.7 2.5 3.9 2.5 4.1 2.43.0 2.2 3.3 2.4 3.5 2.5 3.6 2.5 3.7 2.5 3.9 2.5 4.1 2.43.0 2.2 3.3 2.4 3.5 2.5 3.6 2.5 3.7 2.5 3.9 2.5 4.1 2.43.0 2.2 3.3 2.4 3.5 2.5 3.6 2.5 3.7 2.5 3.9 2.5 4.1 2.43.0 2.2 3.3 2.4 3.5 2.5 3.6 2.5 3.7 2.5 3.9 2.5 4.1 2.43.0 2.2 3.3 2.4 3.5 2.5 3.6 2.5 3.7 2.5 3.9 2.5 4.1 2.43.0 2.2 3.3 2.4 3.5 2.5 3.6 2.5 3.7 2.5 3.9 2.5 4.1 2.43.0 2.2 3.3 2.4 3.5 2.5 3.6 2.5 3.7 2.5 3.9 2.5 4.1 2.43.0 2.2 3.3 2.4 3.5 2.5 3.6 2.5 3.7 2.5 3.9 2.5 4.1 2.43.0 2.2 3.3 2.4 3.5 2.5 3.6 2.5 3.7 2.5 3.9 2.5 4.1 2.43.0 2.2 3.3 2.4 3.5 2.5 3.6 2.5 3.7 2.5 3.9 2.5 4.1 2.43.0 2.2 3.3 2.4 3.5 2.5 3.6 2.5 3.7 2.5 3.9 2.5 4.1 2.43.0 2.2 3.3 2.4 3.5 2.5 3.6 2.5 3.7 2.5 3.9 2.5 4.1 2.43.0 2.2 3.3 2.4 3.5 2.5 3.6 2.5 3.7 2.5 3.9 2.5 4.1 2.42.9 2.1 3.2 2.3 3.4 2.4 3.5 2.4 3.6 2.4 3.8 2.4 4.0 2.32.8 2.1 3.1 2.2 3.3 2.4 3.4 2.4 3.5 2.4 3.7 2.3 3.9 2.3

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Page 252: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

13

4. Sensible capacity tableSlim Duct Type ( MMD-AP***SPH )

TC : Total capacity [kW] SHC : Sensible capacity [kW]

Unitsize

015

018

Outdoorair temp.

CDB

10.012.014.016.018.020.021.023.025.027.029.031.033.035.037.039.0

10.012.014.016.018.020.021.023.025.027.029.031.033.035.037.039.0

Indoor air temp.14.0CWB 16.0CWB 18.0CWB 19.0CWB 20.0CWB 22.0CWB 24.0CWB20CDB 23CDB 26CDB 27CDB 28CDB 30CDB 32CDB

TC SHC TC SHC TC SHC TC SHC TC SHC TC SHC TC SHC

3.7 2.8 4.1 3.0 4.4 3.2 4.5 3.2 4.6 3.2 4.9 3.2 5.1 3.13.7 2.8 4.1 3.0 4.4 3.2 4.5 3.2 4.6 3.2 4.9 3.2 5.1 3.13.7 2.8 4.1 3.0 4.4 3.2 4.5 3.2 4.6 3.2 4.9 3.2 5.1 3.13.7 2.8 4.1 3.0 4.4 3.2 4.5 3.2 4.6 3.2 4.9 3.2 5.1 3.13.7 2.8 4.1 3.0 4.4 3.2 4.5 3.2 4.6 3.2 4.9 3.2 5.1 3.13.7 2.8 4.1 3.0 4.4 3.2 4.5 3.2 4.6 3.2 4.9 3.2 5.1 3.13.7 2.8 4.1 3.0 4.4 3.2 4.5 3.2 4.6 3.2 4.9 3.2 5.1 3.13.7 2.8 4.1 3.0 4.4 3.2 4.5 3.2 4.6 3.2 4.9 3.2 5.1 3.13.7 2.8 4.1 3.0 4.4 3.2 4.5 3.2 4.6 3.2 4.9 3.2 5.1 3.13.7 2.8 4.1 3.0 4.4 3.2 4.5 3.2 4.6 3.2 4.9 3.2 5.1 3.13.7 2.8 4.1 3.0 4.4 3.2 4.5 3.2 4.6 3.2 4.9 3.2 5.1 3.13.7 2.8 4.1 3.0 4.4 3.2 4.5 3.2 4.6 3.2 4.9 3.2 5.1 3.13.7 2.8 4.1 3.0 4.4 3.2 4.5 3.2 4.6 3.2 4.9 3.2 5.1 3.13.7 2.8 4.1 3.0 4.4 3.2 4.5 3.2 4.6 3.2 4.9 3.2 5.1 3.13.6 2.7 4.0 2.9 4.2 3.1 4.4 3.1 4.5 3.1 4.7 3.1 5.0 3.03.5 2.7 3.8 2.8 4.1 3.0 4.2 3.0 4.4 3.0 4.6 3.0 4.8 2.9

4.6 3.5 5.1 3.7 5.4 3.9 5.6 3.9 5.8 3.9 6.1 3.9 6.4 3.84.6 3.5 5.1 3.7 5.4 3.9 5.6 3.9 5.8 3.9 6.1 3.9 6.4 3.84.6 3.5 5.1 3.7 5.4 3.9 5.6 3.9 5.8 3.9 6.1 3.9 6.4 3.84.6 3.5 5.1 3.7 5.4 3.9 5.6 3.9 5.8 3.9 6.1 3.9 6.4 3.84.6 3.5 5.1 3.7 5.4 3.9 5.6 3.9 5.8 3.9 6.1 3.9 6.4 3.84.6 3.5 5.1 3.7 5.4 3.9 5.6 3.9 5.8 3.9 6.1 3.9 6.4 3.84.6 3.5 5.1 3.7 5.4 3.9 5.6 3.9 5.8 3.9 6.1 3.9 6.4 3.84.6 3.5 5.1 3.7 5.4 3.9 5.6 3.9 5.8 3.9 6.1 3.9 6.4 3.84.6 3.5 5.1 3.7 5.4 3.9 5.6 3.9 5.8 3.9 6.1 3.9 6.4 3.84.6 3.5 5.1 3.7 5.4 3.9 5.6 3.9 5.8 3.9 6.1 3.9 6.4 3.84.6 3.5 5.1 3.7 5.4 3.9 5.6 3.9 5.8 3.9 6.1 3.9 6.4 3.84.6 3.5 5.1 3.7 5.4 3.9 5.6 3.9 5.8 3.9 6.1 3.9 6.4 3.84.6 3.5 5.1 3.7 5.4 3.9 5.6 3.9 5.8 3.9 6.1 3.9 6.4 3.84.6 3.5 5.1 3.7 5.4 3.9 5.6 3.9 5.8 3.9 6.1 3.9 6.4 3.84.5 3.3 4.9 3.6 5.3 3.8 5.4 3.8 5.6 3.8 5.9 3.7 6.2 3.74.3 3.3 4.8 3.5 5.1 3.7 5.3 3.7 5.4 3.7 5.7 3.6 6.0 3.6

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Page 253: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

14

5. Wiring diagramsMMD-AP0071SPH(SH), AP0091SPH(SH), AP0121SPH(SH), AP0151SPH(SH), AP0181SPH(SH)

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Page 254: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

15

6. Fan characteristicsMMD-AP0071SPHMMD-AP0091SPH

0

10

20

30

40

50

60

300 400 500 600 700

Air Volume (m3/h)

Ext

erna

l sta

tic p

ress

ure

(Pa)

High (50Pa)

High (35Pa)

High (20Pa)

High (10Pa)

Low (50Pa)

Low (35Pa)

Low (20Pa)

Lower limit of externalstatic pressure (50Pa)

Lower limit of externalstatic pressure (35Pa)

Lower limit of externalstatic pressure (20Pa)

Upper limit ofexternal static

pressure(35Pa)

Upper limit of externalstatic pressure(50Pa)

Upper limit ofexternal static

pressure(20Pa)

Upper limit ofexternal static

pressure(10Pa)

Standard air volume : 540m3/h

Low (10Pa)

MMD-AP0121SPH

0

10

20

30

40

50

60

300 400 500 600 700

Air Volume (m3/h)

Ext

erna

l sta

tic p

ress

ure

(Pa)

High (50Pa)

High (35Pa)

High (20Pa)

High (10Pa)

Low (50Pa)

Low (35Pa)

Low (20Pa)

Low (10Pa)

Lower limit of externalstatic pressure (50Pa)

Lower limit of externalstatic pressure (35Pa)

Lower limit of externalstatic pressure (20Pa)

Upper limit of externalstatic pressure(50Pa)

Upper limit ofexternal static

pressure(20Pa)

Upper limit ofexternal static

pressure(35Pa)

Upper limit ofexternal static

pressure(10Pa)

Standard air volume : 600m3/h

MMD-AP0151SPH

0

10

20

30

40

50

60

400 500 600 700 800

High (50Pa)

High (35Pa)

High (20Pa)

High (10Pa)

Low (50Pa)

Low (35Pa)

Low (20Pa)

Low (10Pa)

Lower limit of externalstatic pressure (50Pa)

Lower limit of externalstatic pressure (35Pa)

Lower limit of externalstatic pressure (20Pa)

Upper limit of externalstatic pressure(50Pa)

Upper limit ofexternal static

pressure(20Pa)

Upper limit ofexternal static

pressure(35Pa)

Upper limit ofexternal static

pressure(10Pa)

Air Volume (m3/h)

Ext

erna

l sta

tic p

ress

ure

(Pa)

Standard air volume : 690m3/h

MMD-AP0181SPH

0

10

20

30

40

50

60

400 500 600 700 800 900

High (50Pa)

High (35Pa)

High (20Pa)

Low (50Pa)

Low (35Pa)

Low (20Pa)

Low (10Pa)

Lower limit ofexternal staticpressure (50Pa)

Lower limit ofexternal staticpressure (35Pa)

Lower limit ofexternal staticpressure (20Pa)

Upper limit of externalstatic pressure(50Pa)

Upper limit ofexternal static

pressure(20Pa)

Upper limit ofexternal static

pressure(35Pa)

Upper limit ofexternal static

pressure(10Pa)

High (10Pa)

Standard air volume : 780m3/h

Air Volume (m3/h)

Ext

erna

l sta

tic p

ress

ure

(Pa)

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Page 255: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

16

6. Fan characteristics(Filter attached)

MMD-AP0071SPHMMD-AP0091SPH

MMD-AP0121SPH

0

10

20

30

40

50

60

300 400 500 600 700

High (50Pa)

High (20Pa)

High (10Pa)

Low (50Pa)

Low (35Pa)

Low (20Pa)

Lower limit of externastatic pressure (50Pa)

Lower limit of externalstatic pressure (35Pa)

Lower limit of externstatic pressure (20Pa)

Upper limit of externalstatic pressure(50Pa)

Upper limit ofexternal static

pressure(20Pa)

Upper limit of external static

pressure(35Pa)

Upper limit ofexternal static

pressure(10Pa)Standard filterpressure loss

Air Volume (m3/h)

Ext

erna

l sta

tic p

ress

ure

(Pa)

Standard air volume : 540m3/h

Low (10Pa)0

10

20

30

40

50

60

300 400 500 600 700

High (50Pa)

High (35Pa)

High (20Pa)

High (10Pa)

Low (50Pa)

Low (35Pa)

Low (20Pa)

Low (10Pa)

Lower limit of externalstatic pressure (50Pa)

Lower limit of externalstatic pressure (35Pa)

Lower limit of externalstatic pressure (20Pa)

Upper limit of externalstatic pressure(50Pa)

Upper limit oexternal static

pressure(20Pa)

Upper limit oexternal static

pressure(35Pa)

Upper limit oexternal static

pressure(10Pa)Standard filterpressure loss

Air Volume (m3/h)

Ext

erna

l sta

tic p

ress

ure

(Pa)

Standard air volume : 600m3/h

MMD-AP0151SPH MMD-AP0181SPH

0

10

20

30

40

50

60

400 500 600 700 800

High (50Pa)

High (35Pa)

High (10Pa)

Low (50Pa)

Low (35Pa)

Low (20Pa)

Low (10Pa)

Lower limit of externalstatic pressure (35Pa)

Lower limit of externastatic pressure (20Pa)

Upper limit of externalstatic pressure(50Pa)

Upper limit ofexternal static

pressure(20Pa)

Upper limit of externalstatic pressure(35Pa)

Upper limit ofexternal static

pressure(10Pa)

Standard filterpressure loss

High (20Pa)

Lower limit of externalstatic pressure (50Pa)

Standard air volume : 690m3/h

Air Volume (m3/h)

Ext

erna

l sta

tic p

ress

ure

(Pa)

0

10

20

30

40

50

60

400 500 600 700 800 900

High (50Pa)

High (35Pa)

High (20Pa)

High (10Pa)

Low (50Pa)

Low (35Pa)

Low (20Pa)

Low (10Pa)

Lower limit ofexternal staticpressure (50Pa)

Lower limit ofexternal staticpressure (35Pa)

Upper limit of externalstatic pressure(50Pa)

Upper limit of externalstatic pressure(20Pa)

Upper limit of externalstatic pressure(35Pa)

Upper limit ofexternal static

pressure(10Pa)

Lower limit ofexternal staticpressure (20Pa)

Standard filterpressure loss

Air Volume (m3/h)

Ext

erna

l sta

tic p

ress

ure

(Pa)

Standard air volume : 780m3/h

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Page 256: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

17

6. Fan characteristicsCHINA model (Filter attached)

MMD-AP0071SPH-C, SH-CMMD-AP0091SPH-C, SH-C

MMD-AP0121SPH-C, SH-C

0

10

20

30

40

50

60

300 400 500 600 700

High (50Pa)

High (35Pa)

High (20Pa)

High (10Pa)

Low (50Pa)

Low (35Pa)

Low (20Pa)

Lower limit of externalstatic pressure (50Pa)

Lower limit of externalstatic pressure (35Pa)

Lower limit of externalstatic pressure (20Pa)

Upper limit ofexternal static

pressure(35Pa)

Upper limit of externalstatic pressure(50Pa)

Upper limit ofexternal static

pressure(35Pa)

Upper limit ofexternal static

pressure(10Pa)

Air Volume (m3/h)

Ext

erna

l sta

tic p

ress

ure

(Pa)

Standard air volume : 540m3/h

Low (10Pa)

Upper limit ofexternal static

pressure(20Pa)

0

10

20

30

40

50

60

300 400 500 600 700

High (50Pa)

High (35Pa)

High (20Pa)

High (10Pa)

Low (50Pa)

Low (35Pa)

Low (20Pa)

Low (10Pa)

Upper limit of externalstatic pressure(50Pa)

Upper limit ofexternal static

pressure(20Pa)

Upper limit ofexternal static

pressure(35Pa)

Upper limit of externalstatic pressure(10Pa)

Air Volume (m3/h)

Ext

erna

l sta

tic p

ress

ure

(Pa)

Standard air volume : 600m3/h

Lower limit of externalstatic pressure (50Pa)

Lower limit of externalstatic pressure (35Pa)

Lower limit of externalstatic pressure (20Pa)

MMD-AP0151SPH-C, SH-C MMD-AP0181SPH-C, SH-C

0

10

20

30

40

50

60

400 500 600 700 800

High (50Pa)

High (35Pa)

High (20Pa)

High (10Pa)

Low (50Pa)

Low (35Pa)

Low (20Pa)

Low (10Pa)

Upper limit of externalstatic pressure(50Pa)

Upper limit ofexternal static

pressure(20Pa)

Upper limit of externalstatic pressure(35Pa)

Upper limit of external static

pressure(10Pa)

Air Volume (m3/h)

Ext

erna

l sta

tic p

ress

ure

(Pa)

Standard air volume : 690m3/h

Lower limit of externalstatic pressure (50Pa)

Lower limit of externstatic pressure (35Pa)

Lower limit of externalstatic pressure (20Pa)

0

10

20

30

40

50

60

400 500 600 700 800 900

High (50Pa)

High (35Pa)

High (20Pa)

High (10Pa)

Low (50Pa)

Low (35Pa)

Low (20Pa)

Low (10Pa)

Lower limit of externstatic pressure (35Pa)

Upper limit of externalstatic pressure(50Pa)

Upper limit of externalstatic pressure(20Pa)

Upper limit of externalstatic pressure(35Pa)

Upper limit of externalstatic pressure(10Pa)

Air Volume (m3/h)

Ext

erna

l sta

tic p

ress

ure

(Pa)

Standard air volume : 780m3/h

Lower limit ofexternal staticpressure (50Pa)

Lower limit of extestatic pressure (20Pa)

A-43

Page 257: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

18

7. Sound Characteristics (NC Curve)MMD-AP0071SPH/SH ,MMD-AP0091SPH/SH

Air outlet Air inlet

2m 1m

Duct Duct

Center1.5m

Microphone

Measuring location

Rear air intake

External static pressure 10Pa External static pressure 20Pa

10

20

30

40

50

60

70

63 125 250 500 1000 2000 4000 8000

L

HM

NC-50

NC-40

NC-30

NC-20

Octave band center frequency (Hz)

Oct

ave

band

sou

nd p

ress

ure

leve

l (dB

)

hearing for continuous noiseApproximate threshold of

10

20

30

40

50

60

70

63 125 250 500 1000 2000 4000 8000

L

HM

NC-50

NC-40

NC-30

NC-20

Octave band center frequency (Hz)

Oct

ave

band

sou

nd p

ress

ure

leve

l (dB

)

hearing for continuous noiseApproximate threshold of

External static pressure 35Pa External static pressure 50Pa

10

20

30

40

50

60

70

63 125 250 500 1000 2000 4000 8000

NC-50

NC-40

NC-30

NC-20L

H

M

Octave band center frequency (Hz)

Oct

ave

band

sou

nd p

ress

ure

leve

l (dB

)

hearing for continuous noiseApproximate threshold of

10

20

30

40

50

60

70

63 125 250 500 1000 2000 4000 8000

L

HM

NC-50

NC-40

NC-30

NC-20

Octave band center frequency (Hz)

Oct

ave

band

sou

nd p

ress

ure

leve

l (dB

)

hearing for continuous noiseApproximate threshold of

Fan tapSound pressure

level (dB(A))

H M L

28 26 24

Fan tapSound pressure

level (dB(A))

H M L

29 27 25

Fan tapSound pressure

level (dB(A))

H M L

30 28 26

Fan tapSound pressure

level (dB(A))

H M L

32 29 27

A-44

Page 258: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

19

7. Sound Characteristics (NC Curve)MMD-AP0121SPH/SH

Measuring location

Rear air intakeAir outlet Air inlet

2m 1m

Duct Duct

Center1.5m

Microphone

10

20

30

40

50

60

70

63 125 250 500 1000 2000 4000 8000

L

H

M

NC-50

NC-40

NC-30

NC-20

Octave band center frequency (Hz)

Oct

ave

band

sou

nd p

ress

ure

leve

l (dB

)

hearing for continuous noiseApproximate threshold of

10

20

30

40

50

60

70

63 125 250 500 1000 2000 4000 8000

Octave band center frequency (Hz)

Oct

ave

band

sou

nd p

ress

ure

leve

l (dB

)

L

H

M

NC-50

NC-40

NC-30

NC-20

hearing for continuous noiseApproximate threshold of

10

20

30

40

50

60

70

63 125 250 500 1000 2000 4000 8000

Octave band center frequency (Hz)

Oct

ave

band

sou

nd p

ress

ure

leve

l (dB

)

NC-50

NC-40

NC-30

NC-20

L

H

M

hearing for continuous noiseApproximate threshold of

10

20

30

40

50

60

70

63 125 250 500 1000 2000 4000 8000

Octave band center frequency (Hz)

Oct

ave

band

sou

nd p

ress

ure

leve

l (dB

)

L

H

M

NC-50

NC-40

NC-30

NC-20

hearing for continuous noiseApproximate threshold of

External static pressure 10Pa External static pressure 20Pa

External static pressure 35Pa External static pressure 50Pa

Fan tapSound pressure

level (dB(A))

H M L

29 27 25

Fan tapSound pressure

level (dB(A))

H M L

30 28 26

Fan tapSound pressure

level (dB(A))

H M L

31 29 27

Fan tapSound pressure

level (dB(A))

H M L

32 30 28

A-45

Page 259: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

20

10

20

30

40

50

60

70

63 125 250 500 1000 2000 4000 8000

Octave band center frequency (Hz)

Oct

ave

band

sou

nd p

ress

ur le

vel (

dB)

NC-50

NC-40

NC-30

NC-20

L

H

M

Approximate threshold ofhearing for continuous noise

10

20

30

40

50

60

70

63 125 250 500 1000 2000 4000 8000

Octave band center frequency (Hz)

Oct

ave

band

sou

nd p

ress

ure

leve

l (dB

)

L

H

M

NC-50

NC-40

NC-30

NC-20

Approximate threshold ofhearing for continuous noise

7. Sound Characteristics (NC Curve)

Measuring location

Rear air intakeAir outlet Air inlet

2m 1m

Duct Duct

Center1.5m

Microphone

L

10

20

30

40

50

60

70

63 125 250 500 1000 2000 4000 8000

Octave band center frequency (Hz)

Oct

ave

band

sou

nd p

ress

ure

leve

l (dB

)

H

M

NC-50

NC-40

NC-30

NC-20

Approximate threshold ofhearing for continuous noise

10

20

30

40

50

60

70

63 125 250 500 1000 2000 4000 8000

Octave band center frequency (Hz)

Oct

ave

band

sou

nd p

ress

ure

leve

l (dB

)

L

H

M

NC-50

NC-40

NC-30

NC-20

Approximate threshold ofhearing for continuous noise

MMD-AP0151SPH/SH

External static pressure 10Pa External static pressure 20Pa

External static pressure 35Pa External static pressure 50Pa

Fan tapSound pressure

level (dB(A))

H M L

32 30 28

Fan tapSound pressure

level (dB(A))

H M L

33 31 29

Fan tapSound pressure

level (dB(A))

H M L

34 32 30

Fan tapSound pressure

level (dB(A))

H M L

35 33 31

A-46

Page 260: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

21

10

20

30

40

50

60

70

63 125 250 500 1000 2000 4000 8000

Octave band center frequency (Hz)

Oct

ave

band

sou

nd p

ress

ure

leve

l (dB

)

Approximate threshold ofhearing for continuous noise

L

H

M

NC-50

NC-40

NC-30

NC-20

7. Sound Characteristics (NC Curve)MMD-AP0181SPH/SH

Measuring location

Rear air intake

Air outlet Air inlet

2m 1m

Duct Duct

Center1.5m

Microphone

10

20

30

40

50

60

70

63 125 250 500 1000 2000 4000 8000

Octave band center frequency (Hz)

Oct

ave

band

sou

nd p

ress

ure

leve

l (dB

)

L

H

M

NC-50

NC-40

NC-30

NC-20Approximate threshold ofhearing for continuous noise

10

20

30

40

50

60

70

63 125 250 500 1000 2000 4000 8000

Octave band center frequency (Hz)

Oct

ave

band

sou

nd p

ress

ure

leve

l (dB

)

L

HM

NC-50

NC-40

NC-30

NC-20

hearing for continuous noiseApproximate threshold of

10

20

30

40

50

60

70

63 125 250 500 1000 2000 4000 8000

Octave band center fequency (Hz)

Oct

ave

band

sou

nd p

ress

ure

leve

l (dB

)

NC-50

NC-40

NC-30

NC-20

Approximate threshold ofhearing for continuous noise

L

H

M

External static pressure 10Pa External static pressure 20Pa

External static pressure 35Pa External static pressure 50Pa

Fan tapSound pressure

level (dB(A))

H M L

33 31 29

Fan tapSound pressure

level (dB(A))

H M L

34 32 30

Fan tapSound pressure

level (dB(A))

H M L

35 33 31

Fan tapSound pressure

level (dB(A))

H M L

36 34 32

A-47

Page 261: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

22

10

20

30

40

50

60

70

63 125 250 500 1000 2000 4000 8000

Octave band center frequency (Hz)

Oct

ave

band

sou

nd p

ress

ure

leve

l (dB

)

L

H

M

NC-50

NC-40

NC-30

NC-20

hearing for continuous noiseApproximate threshold of

7. Sound Characteristics (NC Curve)

Measuring location

Under air intake

10

20

30

40

50

60

70

63 125 250 500 1000 2000 4000 8000

Octave band center frequency (Hz)

Oct

ave

band

sou

nd p

ress

ure

leve

l (dB

)

L

H

M

NC-50

NC-40

NC-30

NC-20

hearing for continuous noiseApproximate threshold of

10

20

30

40

50

60

70

63 125 250 500 1000 2000 4000 8000

Octave band center frequency (Hz)

Oct

ave

band

sou

ne p

ress

ure

leve

l (dB

)

NC-50

NC-40

NC-30

NC-20

L

H

M

hearing for continuous noiseApproximate threshold of

10

20

30

40

50

60

70

63 125 250 500 1000 2000 4000 8000

Octave band center frequency (Hz)

Oct

ave

band

sou

nd p

ress

ure

leve

l (dB

)

L

HM

NC-50

NC-40

NC-30

NC-20

hearing for continuous noiseApproximate threshold of

MMD-AP0071SPH/SH ,MMD-AP0091SPH/SH

Air outlet

Air inlet

2m

Center1.5m

Duct

Microphone

External static pressure 10Pa External static pressure 20Pa

External static pressure 35Pa External static pressure 50Pa

Fan tapSound pressure

level (dB(A))

H M L

36 33 30

Fan tapSound pressure

level (dB(A))

H M L

37 34 31

Fan tapSound pressure

level (dB(A))

H M L

39 36 33

Fan tapSound pressure

level (dB(A))

H M L

41 38 35

A-48

Page 262: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

23

7. Sound Characteristics (NC Curve)MMD-AP0121SPH/SH

Measuring location

Under air intake

Air outlet

Air inlet

2m

Center1.5m

Duct

Microphone

10

20

30

40

50

60

70

63 125 250 500 1000 2000 4000 8000

Octave band center frequency (Hz)

Oct

ave

band

sou

nd p

ress

ure

leve

l (dB

)

L

H

M

NC-50

NC-40

NC-30

NC-20

hearing for continuous noiseApproximate threshold of

10

20

30

40

50

60

70

63 125 250 500 1000 2000 4000 8000

Octave band center frequency (Hz)

Oct

ave

band

sou

nd p

ress

ure

leve

l (dB

)

L

H

M

NC-50

NC-40

NC-30

NC-20

hearing for continuous noiseApproximate threshold of

10

20

30

40

50

60

70

63 125 250 500 1000 2000 4000 8000

Octave band center frequency (Hz)

Oct

ave

band

sou

nd p

ress

ure

leve

l (dB

)

NC-50

NC-40

NC-30

NC-20

L

H

M

hearing for continuous noiseApproximate threshold of

10

20

30

40

50

60

70

63 125 250 500 1000 2000 4000 8000

Octave band center frequency (Hz)

Oct

ave

band

sou

nd p

ress

ure

frequ

ency

(dB

)

L

H

M

NC-50

NC-40

NC-30

NC-20

hearing for continuous noiseApproximate threshold of

External static pressure 10Pa External static pressure 20Pa

External static pressure 35Pa External static pressure 50Pa

Fan tapSound pressure

level (dB(A))

H M L

38 35 32

Fan tapSound pressure

level (dB(A))

H M L

39 36 33

Fan tapSound pressure

level (dB(A))

H M L

41 38 35

Fan tapSound pressure

level (dB(A))

H M L

43 40 37

A-49

Page 263: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

24

10

20

30

40

50

60

70

63 125 250 500 1000 2000 4000 8000

Octave band center frequency (Hz)

Oct

ave

band

sou

nd fr

eque

ncy

leve

l (dB

)

L

H

M

NC-50

NC-40

NC-30

NC-20

hearing for continuous noiseApproximate threshold of

7. Sound Characteristics (NC Curve)MMD-AP0151SPH/SH

Measuring location

Under air intake

Air outlet

Air inlet

2m

Center1.5m

Duct

Microphone

10

20

30

40

50

60

70

63 125 250 500 1000 2000 4000 8000

Octave band center frequency (Hz)

Oct

ave

band

sou

nd p

ress

ure

leve

l (dB

)

L

H

M

NC-50

NC-40

NC-30

NC-20

hearing for continuous noiseApproximate threshold of

10

20

30

40

50

60

70

63 125 250 500 1000 2000 4000 8000

L

H

M

NC-50

NC-40

NC-30

NC-20

hearing for continuous noiseApproximate threshold of

Octave band center frequency (Hz)

Oct

ave

band

sou

nd fr

eque

ncy

leve

l (dB

)

10

20

30

40

50

60

70

63 125 250 500 1000 2000 4000 8000

Octave band center frequency (Hz)

Oct

ave

band

sou

nd p

ress

ure

leve

l (dB

)

NC-50

NC-40

NC-30

NC-20

L

H

M

hearing for continuous noiseApproximate threshold of

External static pressure 10Pa External static pressure 20Pa

External static pressure 35Pa External static pressure 50Pa

Fan tapSound pressure

level (dB(A))

H M L

39 36 33

Fan tapSound pressure

level (dB(A))

H M L

40 37 34

Fan tapSound pressure

level (dB(A))

H M L

41 38 35

Fan tapSound pressure

level (dB(A))

H M L

43 40 37

A-50

Page 264: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

25

10

20

30

40

50

60

70

63 125 250 500 1000 2000 4000 8000

Octave band center frequency (Hz)

Oct

ave

band

sou

nd p

ress

ure

leve

l (dB

)

L

H

M

NC-50

NC-40

NC-30

NC-20

hearing for continuous noiseApproximate threshold of

7. Sound Characteristics (NC Curve)MMD-AP0181SPH/SH

Measuring location

Under air intake

Air outlet

Air inlet

2m

Center1.5m

Duct

Microphone

10

20

30

40

50

60

70

63 125 250 500 1000 2000 4000 8000

Octave band center frequency (Hz)

Oct

ave

band

sou

nd p

ress

ure

leve

l (dB

)

L

H

M

NC-50

NC-40

NC-30

NC-20

hearing for continuous noiseApproximate threshold of

10

20

30

40

50

60

70

63 125 250 500 1000 2000 4000 8000

Octave band center frequency (Hz)

Oct

ave

band

sou

nd p

ress

ure

leve

l (dB

)

L

H

M

NC-50

NC-40

NC-30

NC-20

hearing for continuous noiseApproximate threshold of

10

20

30

40

50

60

70

63 125 250 500 1000 2000 4000 8000

Octave band center frequency (Hz)

Oct

ave

band

sou

nd p

ress

ure

leve

l (dB

)

NC-50

NC-40

NC-30

NC-20

L

H

M

hearing for continuous noiseApproximate threshold of

External static pressure 10Pa External static pressure 20Pa

External static pressure 35Pa External static pressure 50Pa

Fan tapSound pressure

level (dB(A))

H M L

40 38 36

Fan tapSound pressure

level (dB(A))

H M L

42 40 37

Fan tapSound pressure

level (dB(A))

H M L

43 41 38

Fan tapSound pressure

level (dB(A))

H M L

44 42 39

A-51

Page 265: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

26

8. Fresh air intake (Design guide)

Slim Duct Type MMD-AP0071SPH, AP0091SPH, AP0121SPHMMD-AP0071SPH-C, AP0091SPH-C, AP0121SPH-CMMD-AP0071SH-C, AP0091SH-C, AP0121SH-C

CautionThe fresh air shall be conditioned by heat reclaim ventilator or similar.Ensure the fresh air volume is determined so that mixed suction air and fresh air maintain theoperating temperature.*1.Recommended conditioned air temperature is 12 °C to 30 °C.

However, Make a fresh air volume within 20% of standard.

Install a air filter within the fresh air duct.( Fresh air does not pass through the filter of Indoor unit.)

Insulate the fresh air duct.Electrically connect the fan of the Heat exchanger unit and the Indoor unit to a single isolator.

-10

0

10

20

30

0 20 40 60 80 100 120 140

Fresh Air Volume (m3/h)

Sta

tic P

ress

ure

(Pa)

Duct fanmotor Fresh Air Volume

Flange Option :TCB-FF101URE

Indoor unit

Inter - lock circuitConnect the driving relay of the duct fan (DC 12V) between 1 and 6 on the indoor P.C. board.(Rated current of the relay for duct fan should be up to 75mA.)After installation, carry out a trial operation to check that the duct fan of the indoor unit start/stopsimultaneously.(Carry out the trial operation following the installation manual of the indoor unit.)

Model name MMD- AP0071SPH AP0091SPH AP0121SPHAP0071SPH-C AP0091SPH-C AP0121SPH-CAP0071SH-C AP0091SH-C AP0121SH-C

Standard air flow (m3/h) 540 540 600

A-52

Page 266: Engineering_en.pdf1 1 The engineering data book details all specific data, charts and drawings to enable you to get the best performance from the Toshiba Super Heat Recovery Multi

27

8. Fresh air intake (Design guide)

Slim Duct Type MMD-AP0151SPH, AP0181SPHMMD-AP0151SPH-C, AP0181SPH-CMMD-AP0151SH-C, AP0181SH-C

CautionThe fresh air shall be conditioned by heat reclaim ventilator or similar.Ensure the fresh air volume is determined so that mixed suction air and fresh air maintain theoperating temperature.*1.Recommended conditioned air temperature is 12 °C to 30 °C.

However, Make a fresh air volume within 20% of standard.

Install a air filter within the fresh air duct.( Fresh air does not pass through the filter of Indoor unit.)

Insulate the fresh air duct.Electrically connect the fan of the Heat exchanger unit and the Indoor unit to a single isolator.

-10

0

10

20

30

40

50

60

0 20 40 60 80 100 120 140 160 180

Fresh Air Volume (m3/h)

Sta

tic P

ress

ure

(Pa) AP0151

AP0181

Duct fanmotor Fresh Air Volume

Flange Option :TCB-FF101URE

Indoor unit

Inter - lock circuitConnect the driving relay of the duct fan (DC 12V) between 1 and 6 on the indoor P.C. board.(Rated current of the relay for duct fan should be up to 75mA.)After installation, carry out a trial operation to check that the duct fan of the indoor unit start/stopsimultaneously.(Carry out the trial operation following the installation manual of the indoor unit.)

Model name MMD- AP0151SPH AP0181SPHAP0151SPH-C AP0181SPH-CAP0151SH-C AP0181SH-C

Standard air flow (m3/h) 690 780

A-53