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E L E C T R O N I C G M B H Technical Manual TesiMod Touch Panel TP35N TP35NC Version 1.0 issued 12th January 2001 Sütron electronic GmbH Kurze Straße 29 70794 Filderstadt Tel.: ++49 7 11 / 77 09 80 Fax: ++49 7 11 / 77 09 86 0 Email: [email protected] Internet: www.suetron.de

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Page 1: ELECTRONIC GMBH - suetron.de · ELECTRONIC GMBH Technical Manual TesiMod Touch Panel TP35N TP35NC Version 1.0 issued 12th January 2001 Sütron electronic GmbH Kurze Straße 29 70794

E L E C T R O N I C G M B H

Technical Manual

TesiMod Touch Panel

TP35N

TP35NC

Version 1.0 issued 12th January 2001 Sütron electronic GmbHKurze Straße 2970794 FilderstadtTel.: ++49 7 11 / 77 09 80Fax: ++49 7 11 / 77 09 86 0Email: [email protected]: www.suetron.de

Page 2: ELECTRONIC GMBH - suetron.de · ELECTRONIC GMBH Technical Manual TesiMod Touch Panel TP35N TP35NC Version 1.0 issued 12th January 2001 Sütron electronic GmbH Kurze Straße 29 70794

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TesiMod TP35N

V1.0 12.01.2001 First edition

This manual and the illustrations it contains are protected by copyright law. Use of this manual by thirdparties in a manner that is contrary to copyright terms is prohibited. No part of this document may bereproduced, translated or archived in any form or by means, electronic or photographic, or alteredwithout the express written permission of the Sütron electronic GmbH. Acting in a manner that iscontrary to these terms makes the party liable to damages.Sütron electronic reserves the right to make changes that reflect technical advances.

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Table of Contents

1 Explanation of Symbols .................................................. 5

2 The Touch Panel TP35N........................................................... 5

2.1 Front View.............................................................................. 6

2.2 Keyboard ............................................................................... 72.2.1 Function Keys ................................................................................. 72.2.1.1 Function Key Arrangement ........................................................... 72.2.1.2 Slide-in Identification Strips for the Function Keys ............................ 7

2.3 Rear View .............................................................................. 92.3.1 Standard ....................................................................................... 92.3.2 InterBus ....................................................................................... 102.3.3 SUCOnet K .................................................................................. 112.3.4 PROFIBUS-DP ............................................................................... 122.3.5 MPI ............................................................................................. 132.3.6 CAN-Bus ..................................................................................... 142.3.7 LON-Bus ...................................................................................... 152.3.8 InterBus Optical Fibre .................................................................... 16

2.4 Mounting the Touch Panel..................................................... 172.4.1 Front Panel Dimensions .................................................................. 182.4.2 Side View, Mounting Depth............................................................ 192.4.3 Panel Cutout ................................................................................. 20

2.5 Pin Assignments ................................................................... 212.5.1 Pin Assignment X1.A / X1.B Supply Voltage .................................... 222.5.2 Pin Assignment X2.1 / X2.2 InterBus ............................................... 232.5.3 Pin Assignment X2.1 /X2.2 SUCOnet K .......................................... 242.5.4 Pin Assignment X2 PROFIBUS-DP..................................................... 252.5.5 Pin Assignment X2 MPI .................................................................. 262.5.6 Pin Assignment X2.1 / X2.2 CAN-Bus ............................................. 272.5.7 Pin Assignment X2 LON-Bus ........................................................... 282.5.8 Pin Assignment InterBus Optical Fibre .............................................. 292.5.9 Pin Assignment X3 SER1 TTY / 20 mA Current Loop.......................... 302.5.10 Pin Assignment X3 SER1 RS485 ..................................................... 312.5.11 Pin Assignment X3 SER1 RS232c .................................................... 322.5.12 Pin Assignment X3 SER2 RS232c .................................................... 32

2.6 Shielding .............................................................................. 32

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TesiMod TP35N

2.7 Display ................................................................................. 332.7.1 Display Contrast- / Brightness Setting .............................................. 332.7.2 Default Contrast- / Default Brightness Setting .................................... 342.7.3 Character Attributes ...................................................................... 342.7.4 Font Normal ................................................................................. 352.7.5 Font Zoom ................................................................................... 362.7.6 ASCII Character Set Table ............................................................. 37

2.8 User-Mode Switch................................................................. 38

2.9 Battery ................................................................................. 39

2.10 Fuse...................................................................................... 40

2.11 Application Memory ............................................................. 40

2.12 Compact Flash Card .............................................................. 40

2.12 Diagnosis LEDs ...................................................................... 402.12.1 InterBus ....................................................................................... 402.12.2 SUCOnet K .................................................................................. 412.12.3 PROFIBUS-DP ............................................................................... 412.12.4 MPI ............................................................................................. 412.12.5 CAN ........................................................................................... 422.12.6 LON............................................................................................ 422.12.7 InterBus Optical Fibre .................................................................... 43

3 Technical Data ...................................................................... 43

4 Index ........................................................................... 46

A Appendix A ................................................................. A-1

A.1 Shielding of SubminD - Interconnections .............................. A-1

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1 Explanation of Symbols

This manual uses the following symbols to indicate notes and hazardous situations.

Notes for the User

General Danger

Specific Danger

2 The Touch Panel TP35N

The Touch Panel TP35N is an operating terminal that can be operated by a touch screen instead of thenormal keyboard.

Nevertheless the TP35N is equipped with funktion keys with integrated status LEDs below the display.The funktions keys can be used for controller access, as direct access keys or as softkeys. Obvious youcan individually label the funktion keys with slide-in strips.

The touch panel TP35N is optionally equipped with a monochrome or a color display with a size of10.4�. It is able to display full graphics and supports positioning of images, text elements and processvalues dot by dot.

The TesiMod operating conept allows a comfortable use of the touch panel.

A built-in lithium battery buffers the data in the RAM and also supplies the real-time clock with power.The discharge state of the battery is monitored constantly by the system.

The communication with the TP35N is supported by standardized interfaces. The modularity of thesoftware allows a quick adjustment to different protocols.

The operator guidance for the TP35N is done by means of the PC program TSwin.

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TesiMod TP35N

2.1 Front View

1 Front Panel2 Front Cover3 Company Logo4 Unit Type Logo

5 Touch - Display6 Status-LED of the Function Keys7 Function Keys F1 to F8

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2.2 Keyboard

The Touch Panel has either a touch display and eight function keys with integrated status LEDs. Thekeyboard consists of short-stroke switches. The stroke distance is 0.5 mm and the key area is 20 x 20mm. The key elements are covered by an embossed polyester foil against environmental influences.This combination allows a sensitive use of the keys. The status LEDs illuminate green.The function of the keys depend on the application.The keys can be used for the following operations:� Function keys (functions are independent of the current mask)� Softkeys (functions depent on the current mask)� Mask change (direct access keys)� Activate functions in the controller� Internal controller operations (set/reset system variables)

2.2.1 Function Keys

Funktion key F1 to F8 with integrated LEDs for functional feedback. The keyfunctions can be freely assigned to a softkey functionality, either as direct accesskeys for menu control or to activate a function in the controller.

2.2.1.1 Function Key Arrangement

2.2.1.2 Slide-in Identification Strips for the Function Keys

The identification strips can be replaced after the terminal is dismounted. Inserting the strips from therear of the front panel does not affect the tightness specified for the unit.The unit is delivered with a set of identification strips.The set consists of:� four identification strips, labeled with F1 to F8� four blank identification strips.Various labeling methods are recommended, depending on the number of units involved.

Page 8: ELECTRONIC GMBH - suetron.de · ELECTRONIC GMBH Technical Manual TesiMod Touch Panel TP35N TP35NC Version 1.0 issued 12th January 2001 Sütron electronic GmbH Kurze Straße 29 70794

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TesiMod TP35N

Suitable labeling methods for:

Single units, prototypes: lableling with an indelible penSmall batch production: transparency with laser printingLarge batch production: custom specific printed identification strips

Position of identification strips

Labelled identification strips, standard

Blank identification strips

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2.3 Rear View

2.3.1 Standard

1 Fastening Screw for Enclosure2 User-Mode Switch3 Terminator Switch (X3-SER1 RS485)4 Female Connector X3 (TTY/RS485/RS232c)5 Threaded Bolt for Protective Ground6 Connector X1.A / B (Power Supply)7 Mounting Bolts8 Front Panel

9 Warning10 Switch Positions of User-Mode Switch11 Pin Assingnment X3 (TTY/RS485/RS232c)12 Rubber Sealing13 Battery-related Information14 Compact Flash Card Slot on the Side15 Pin Assingnment X1.A / B16 Name Plate

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2.3.2 InterBus

1 Fastening Screw for Enclosure2 User-Mode Switch3 Female Connector X2.2 (Remotebus Out)4 Male Connector X2.1 (Remotebus In)5 Female Connector X3 (SER2-RS232c)6 Threaded Bolt for Protective Ground7 Connector X1.A / B (Power Supply)8 Mounting Bolts9 Front Panel10 Warning

11 Switch Positions of User-Mode Switch12 Pin Assignment X3 (SER2-RS232c)13 Rubber Sealing14 Battery-related Information15 Compact Flash Slot on the Side16 Pin Assignment Connector X1.A / B17 Pin Assignment X2.1 (Remotebus In)18 Pin Assignment X2.2 (Remotebus Out)19 Diagnosis LEDs20 Name Plate

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2.3.3 SUCOnet K

1 Fastening Screw for Enclosure2 User-Mode Switch3 Female Connector X2.2 (SUCOnet K)4 Female Connector X2.1 (SUCOnet K)5 Female Connector X3 (SER2-RS232c)6 Threaded Bolt for Protective Ground7 Connector X1.A / B (Power Supply)8 Mounting Bolts9 Front Panel10 Warning11 Switch Positions of User-Mode Switch

12 Pin Assignment X3 (SER2-RS232c)13 Rubber Sealing14 Battery-related Information15 Compact Flash Card Slot on the Side16 Pin Assignment Connector X1.A / B17 Terminator Switch X2.1 (SUCOnet K)18 Pin Assignment X2.1 (SUCOnet K)19 Pin Assignment X2.2 (SUCOnet K)20 Diagnosis LED X2.1 / X2.2 (SUCOnet K)21 Name Plate

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2.3.4 PROFIBUS-DP

1 Fastening Screw for Enclosure2 User-Mode Switch3 Female Connector X2 (PROFIBUS-DP)4 Female Connector X3 (SER2-RS232c)5 Threaded Bolt for Protective Ground6 Connector X1.A / B (Power Supply)7 Mounting Bolts8 Front Panel9 Warning

10 Switch Positions of User-Mode Switch11 Pin Assignment X3 (SER2-RS232c)12 Rubber Sealing13 Battery-related Information14 Compact Flash Card Slot on the Side15 Pin Assignment Connector X1.A / B16 Pin Assignment X2 (PROFIBUS-DP)17 Diagnosis LED18 Name Plate

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2.3.5 MPI

1 Fastening Screw for Enclosure2 User-Mode Switch3 Female Connector X2 (MPI)4 Female Connector X3 (SER2-RS232c)5 Threaded Bolt for Protective Ground6 Connector X1.A / B (Power Supply)7 Mounting Bolts8 Front Panel9 Warning

10 Switch Positions of User-Mode Switch11 Pin Assignment X3 (SER2-RS232c)12 Rubber Sealing13 Battery-related Information14 Compact Flash Card Slot on the Side15 Pin Assignment Connector X1.A / B16 Pin Assignment X2 (MPI)17 Diagnosis LED18 Name Plate

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TesiMod TP35N

2.3.6 CAN-Bus

1 Fastening Screw for Enclosure2 User-Mode Switch3 Female Connector X2.2 (CAN-Bus)4 Male Connector X2.1 (CAN-Bus)5 Female Connector X3 (SER2-RS232c)6 Threaded Bolt for Protective Ground7 Connector X1.A / B (Power Supply)8 Mounting Bolts9 Front Panel10 Warning

11 Switch Positions of User-Mode Switch12 Pin Assignment X3 (SER2-RS232c)13 Rubber Sealing14 Battery-related Information15 Compact Flash Card Slot on the Side16 Pin Assignment Connector X1.A / B17 Pin Assignment X2.1 (CAN-Bus)18 Pin Assignment X2.2 (CAN-Bus)19 Diagnosis LED20 Name Plate

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2.3.7 LON-Bus

1 Fastening Screw for Enclosure2 User-Mode Switch3 Female Connector X3 (SER2-RS232c)4 Threaded Bolt for Protective Ground5 Connector X1.A / B (Power Supply)6 Mounting Bolts7 Front Panel8 Warning9 Switch Positions of User-Mode Switch10 Pin Assignment X3 (SER2-RS232c)

11 Rubber Sealing12 Battery-related Information13 Compact Flash Card Slot on the Side14 Pin Assignment Connector X1.A / B15 Pin Assignment X2 (LON)16 Male Connector X2 (LON)17 Service Switch18 Diagnosis LED19 Name Plate

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TesiMod TP35N

2.3.8 InterBus Optical Fibre

1 Fastening Screw for Enclosure2 User-Mode Switch3 Female Connector X3 (SER2-RS232c)4 Threaded Bolt for Protective Ground5 Connector X1.A / B (Power Supply)6 Mounting Bolts7 Front Panel8 Warning9 Switch Positions of User-Mode Switch10 Pin Assignment X3 (SER2-RS232c)11 Rubber Sealing

12 Battery-related Information13 Compact Flash Card Slot on the Side14 Pin Assignment Connector X1.A / B15 Fibre Optical DO1 (Remotebus In)16 Fibre Optical DI1 (Remotebus In)17 Fibre Optical DI2 (Remotebus Out)18 Termintator Switch (InterBus)19 Fibre Optical DO2 (Remotebus Out)20 Diagnosis LEDs21 Name Plate

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The rear panel mounting with bolts is suitable for easy and sealed installation in places where the rearside of the appliance is accessible. The appliance is particularly suitable for mounting in controlcabinets with a mounting wall plate thickness of approximately 1 to 10 mm.The front panel permits sealed installation of the operating terminal in accordance with the IP65 degreeof protection (at the front). At the rear side of the front panel a circumferencial sealing is attached.All parts for mounting the appliance are given with the spare parts set.

Special care needs to be taken during installation to maintain this high degree of protection. The unitis inserted from the front through the panel cutout and screwed to the mounting wall from the rear. Theseal must be positioned evenly and the hexagonal nuts tightened uniformly.

When installing the terminal, keep a minimum space of 30 mm around the terminal for adequate aircirculation.

The tightness between the front panel and the mounting surface depends on the care duringinstallation.

2.4 Mounting the Touch Panel

Front Panel Dimensions: 275.0 x 350.0 x 4.0 mm (H x W x D)Panel Cutout: 238 x 324 mm (H x W)

Mounting and maintenance may only be performed by qualified and author-ized personnel!

Page 18: ELECTRONIC GMBH - suetron.de · ELECTRONIC GMBH Technical Manual TesiMod Touch Panel TP35N TP35NC Version 1.0 issued 12th January 2001 Sütron electronic GmbH Kurze Straße 29 70794

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TesiMod TP35N

2.4.1 Front Panel Dimensions

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2.4.2 Side View, Mounting Depth

1 Front Panel2 Circumferencial Sealing3 Press-In Threaded Bolt M4 mm

4 Mounting Surface Thickness 1 to 10 mm5 Spring Lock Washer B4 DIN127 Form B6 Nut M4 DIN934

Page 20: ELECTRONIC GMBH - suetron.de · ELECTRONIC GMBH Technical Manual TesiMod Touch Panel TP35N TP35NC Version 1.0 issued 12th January 2001 Sütron electronic GmbH Kurze Straße 29 70794

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TesiMod TP35N

2.4.3 Panel Cutout

1 12 Holes with a Diameter of 4.5 mm

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2.5 Pin Assignments

The touch panel is fitted as standard terminal or as bus terminal:

The connector X3 combines several interface standards within one physical connector. The connectoris divided into two channels. The channel for communication (SER1) is divided from the channel forupload/download/logging printer/scanner (SER2). The channels can operate independent of eachother.The channel of communication (SER1) can handle - specified by protocol - only one of the threeinterface standards.

Standard terminal:

Connector X1 24 VDC Supply VoltageConnector X3 SER1 TTY / 20 mA CommunicationConnector X3 SER1 RS232c CommunicationConnector X3 SER1 RS485 CommunicationConnector X3 SER2 RS232c Upload/Download/Logging Printer/Scanner

Bus terminal:

Connector X1 24 VDC Supply VoltageConnector X3 SER2 RS232c Upload/Download/Logging Printer/ScannerConnector X2.1 / X2.2 InterBus CommunicationConnector X2.1 / X2.2 SUCOnet K CommunicationConnector X2 PROFIBUS-DP CommunicationConnector X2.1 / X2.2 CAN-Bus CommunicationConnector DO1 / DI1 InterBusand DO2 / DI2 Optical Fibre Communication

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2.5.1 Pin Assignment X1.A / X1.B Supply Voltage

Hazardous voltages can exist inside electrical installations that can pose a dangerto humans. Coming in contact with live parts may result in electric shock!

The supply voltage is connected via the connector X1.A and internal connected to the connector X1.B.The pin assignment is the equal for both connectors.The maximum continuous current rating is 5 A. To prevent an overload you must insert an externalprotection (e.g. fuse).

The unit is equipped with a reverse voltage protection. If the poling is wrong, the unit doesn´t operate.

This unit confirms to the safety class I. For safe operation it is necessary to use safety extra-low voltage(SELV) in accordance with DIN EN 61131 for the supply voltage.

Connector in the terminal: 3-pin male connector strip Phoenix COMBICON MSTBV 2,5/3-GF

Pin Designation Function1 Signal Ground2 0 V Supply Voltage 0 V3 24 VDC Supply Voltage 24 VDC

The supply voltage is connected via a plug-in 3-pin female connector strip. The cable is secured in thefemale connector strip by means of screw terminals. Cables with fine wires with a cross-section of upto 2.5mm2 can be used. The female connector strip is secured in position by means of a screw-typelocking.The female connector strips of the type Phoenix COMBICON FKC 2.5/3-STF-5,08 for connectingX1.A and X1.B are supplied.

Please note with respect to pin assignment:If shielded connecting cables are used for the supply voltage, the shield should beconnected to pin 1.

Threaded bolt for protective grounding

A separate ground conductor must be provided for the ground screw in each case.The minimum cross-section of the ground conductor must be 1.5 mm2 and thelength as short as possible. Compliance with this information increases theoperational safety.

Never exceed the maximally permissible current between X1.A and X1.B! Thatleads to inadmissible heating up in the unit and an open fire can arise !

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2.5.2 Pin Assignment X2.1 / X2.2 InterBus

The unit can be fitted with the bus interfaces X2.1 and X2.2 for connection to the InterBus instead ofthe standard interfaces TTY / 20 mA and RS422 / RS485. The InterBus connection is certified underthe number 076. The connectors are of the 9-pin Submin D female and male connector strip type.

Connector in the terminal: 9-pin SubminD male connector strip for Remotebus In

Assignment:Pin Designation Function1 DO Data Out2 DI Data In3 GND Signal Ground4 nc not connected5 nc not connected6 /DO Data Out Reverse7 /DI Data In Reverse8 nc not connected9 nc not connected

Connector in the terminal: 9-pin SubminD female connector strip for Remotebus Out

Assignment:Pin Designation Function1 DO Data Out2 DI Data In3 GND Signal Ground4 nc not connected5 +5 V Power Supply +5 VDC6 /DO Data Out Reverse7 /DI Data In Reverse8 nc not connected9 RBST Remote Bus Status

A shielded cable with twisted pairs (Cable type LiYCY-TP) is used. The maximum cable lengthdepends on the usage within the InterBus topology.

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2.5.3 Pin Assignment X2.1 /X2.2 SUCOnet K

To integrate the unit into a network topology of the SUCOnet K it can be equipped with the specialinterfaces for SUCOnet K instead of the standard interfaces TTY / 20 mA and RS422 / RS485. Theconnectors are 9-pin SubminD female and male connectors. The pinning of either connectors isidentical.

Termination:Activate the termination of the physically first (master) and last station in the network at all times.The termination of the stations located in between remains inactivated. To activate the termination, thetermination switch RD/TD must be set to ON.

Connector in the operating terminal: 9-pin SubminD female/male connector strip

Pin Designation Function1 nc not connected2 nc not connected3 TA/RA Transmit- / Receive Channel A4 GND Signal Ground5 nc not connected6 nc not connected7 TB/RB Transmit- / Receive Channel B8 GND Signal Ground9 nc not connected

A shielded cable with twisted pair wires (cable type LiYCY-TP) must be used.The maximum cable length depends on the data transmission rate that is used.For a transmission rate of 187.5 kbps the maximum cable length is 600 m, for a transmission rate of 375kbps a cable length of 300 m should not be exceeded. If longer cable length are required, repeaters mustbe used for signal conditioning. Self-controlled repeaters may be used for this process.

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2.5.4 Pin Assignment X2 PROFIBUS-DP

To integrate the unit into a network of the PROFIBUS-DP it can be equipped with the special interfacefor PROFIBUS-DP connection instead of the standard interfaces TTY / 20 mA and RS422 / RS485.A 9-pin SubminD female connector strip is used as a connector.

Connector on the operating terminal: 9-pin SubminD female connector strip

Assignment:Pin Designation Function1 nc not connected2 nc not connected3 RxD/TxD-P Transmit / Receive Data Plus4 CNTR-P Control Signal Repeater Plus5 DGND Data Transmission Potential6 VP Power Supply of the Matching Resistors Plus7 nc not connected8 RxD/TxD-N Transmit / Receive Data Minus9 CNTR-N Control Signal Repeater Minus

Principally, all cable types specified in EN 50170 as cable type A can be used.This allows the following cable lengths (depending on the baud rate):

Baud Rate (bps) Cable Length (m)9 600 1200

19 200 120093 750 1200

187 500 1000500 000 400

1 500 000 20012 000 000 100

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2.5.5 Pin Assignment X2 MPI

To integrate the unit into a network of the Siemens MPI Bus it can be equipped with the special interfacefor Siemens MPI connection instead of the standard interfaces TTY / 20 mA and RS422 / RS485. A9-pin SubminD female connector strip is used as a connector.

The Termination of the bus cable is in the connector.

Termination for point-to-point connection:For operation with point-to-point connection the termination must always be activated.

Termination for multipoint connection:For operation with multipoint connections only the termination at the cable end must be activated.

Termination for spur lines:For spur lines the termination must always be deactivated.

Connector on the operating terminal: 9-pin SubminD female connector strip

Assignment:Pin Designation Function1 nc not connected2 nc not connected3 RxD/TxD-P Transmit / Receive Data Plus4 CNTR-P Control Signal Repeater Plus5 DGND Data Transmission Potential6 VP Power Supply of the Matching Resistors Plus7 nc not connected8 RxD/TxD-N Transmit / Receive Data Minus9 CNTR-N Control Signal Repeater Minus

Principally, all cable with the following parameters can be used:� Loop resistance 110 Ohm/km� Effective capacitance 30 nF/km� Surge impedance 150 Ohm

The maximum length of a segment must be less than 50 meters. In the ,,Installation Manual S7-400, M7-400, C79000-G7000-C400-01� of Siemens you can gather more information about installation.

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2.5.6 Pin Assignment X2.1 / X2.2 CAN-Bus

To integrate the unit into a network topology of the CAN bus it can be equipped with the specialinterfaces X2.1 and X2.2 for CAN Bus. The CAN bus is stated as a high-speed-bus according to ISO-DIS 11898.

Connector: 9-pin SubminD male connector strip X2.1

Pin Designation Function1 nc not connected2 CAN_L CAN_L bus line (dominant LOW)3 CAN_GND CAN Ground4 nc not connected5 nc not connected6 CAN_GND CAN Ground7 CAN_H CAN_H bus line (dominant HIGH)8 nc not connected9 nc not connected.

Connector: 9-pin SubminD female connector strip X2.2

Pin Bezeichnung Funktion1 nc not connected2 CAN_L CAN_L bus line (dominant LOW)3 CAN_GND CAN Ground4 nc not connected5 nc not connected6 CAN_GND CAN Ground7 CAN_H CAN_H bus line (dominant HIGH)8 nc not connected9 nc not connected

All signals of X2.1 to X2.2 are interconnected. The connecting cable has to be connected to all pinsincluding the reserved ones. The intention is, that there shall be no interruption of any of the wires inthe bus cable, assuming a possible future specification of the use of the reserved pins.

A shielded cable with twisted pair wires (cabe type LiYCY-TP) must be used. The CAN bus must beterminated with resistors on both ends of the cable structure.

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2.5.7 Pin Assignment X2 LON-Bus

To integrate the unit as a node into a network topology of the LON bus it can be equipped with the specialinterface X2 for LON.

Connector: 3-pin male connector strip SLA 3/180B 32 SN OR as X2

Pin Designation Function1 Net A Net A2 GND Signal Ground3 Net B Net B

On the rear side of the appliance you are given a service LED a service switch.

The service LED indicates the status of the LON node by different flashing patterns:

� 1 s ON, then 2 s OFF, at last permanent ON LON node without application software� FLASHING in times of 1 s LON node without communication relation� FLASHING ONCE, at last permanent OFF LON node is working correct

The service switch is used to send out a special network management telegram to distribute the neuronID-code. The neuron ID-code can be used to address the LON node while installation.

A shielded cable with twisted pair wires (cable type LiYCY-TP) must be used.

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2.5.8 Pin Assignment InterBus Optical Fibre

To integrate the unit into a network topology of the InterBus optical fibre device net it can be equippedwith the special interfaces for InterBus Optical Fibre.The optical fibre interface is stated as F-SMA type 905.

The connectors for the optical fibres areDO1 and DI1 for Remotebus In andDO2 and DI2 for Remotebus Out.

The connection must conform to �Technical Guideline For Optical Transmission�.

For the optical transmission a dielectrical fibre with refractive index profile, likely a polymer fibre witha diameter of 980 µm of the core and 1000 µm of the coating. The connector of the type F-SMA isaccording to the specifications of IEC 874-2 respectively DIN 47258.The permitted distance between two subscribers of the optical fibre device bus is 1 through 5 m.

The transmitter and receiver units may get unusable by dirt. For transportation,storage and when a unit is not in use, place caps on the plug terminals.

Infrared light can damage the retina of the eye! Never look into the open end ofthe optical fibre! Secure the open ends of the optical fibres and the plugs with caps!Always wear safety glasses!

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2.5.9 Pin Assignment X3 SER1 TTY / 20 mA Current Loop

TTY / 20 mA current loop, passive

Pin Designation Channel Function10 T+ SER1 Transmit Data, Positive Polarity13 R+ SER1 Receive Data, Positive Polarity14 R- SER1 Receive Data, Negative Polarity19 T- SER1 Transmit Data, Negative Polarity

TTY / 20 mA current loop, active

Pin Designation Channel Function10 T+ SER1 Transmit Data, Positive Polarity12 S1+ SER1 Power Source 2, Positive Polarity13 R+ SER1 Receive Data, Positive Polarity14 R- SER1 Receive Data, Negative Polarity16 S2+ SER1 Power Source 1, Positive Polarity19 T- SER1 Transmit Data, Negative Polarity21 S1- SER1 Power Sink 1, Negative Polarity24 S2- SER1 Power Sink 2, Negative Polarity

Termination:When using the channel SER1 as current loop the terminator switches for RS485 must be switchedOFF!

The interface can be connected as either an active or passive current loop depending on the wiring. Thetransmit line and the receive line are provided with separate 20mA power sources. The compliancevoltage is approximately 24 VDC.The maximum baud rate is 19200Bd. The maximum cable length depends on the baud rate and rate oftransmission errors.For longer cable lengths, the 20mA power supply should be fed by the transmitting unit. This candecrease crosstalk on the signal lines considerably.In idle state (signal logical 1) a current loop of 20 mA can be measured on the cable.

Signal logical 1 - Current flow 20mASignal logical 0 - Current flow is interrupted

A shielded cable with twisted pair wires (cable type LiYCY-TP) and a minimum cross section of0.08 mm2 must be used. The maximum cable length is 100 m.

Connect the cable shield to the metal hoods of the connectors over as large a surfaceas possible! Please refer to appendix A.

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2.5.10 Pin Assignment X3 SER1 RS485

The interface RS485 is suitable for point-to-point connections and multipoint connections.

Termination for point-to-point connection:For operation with point-to-point connection the termination must always be activated.

Termination for multipoint connection:For operation with multipoint connections only the termination at the cable end must be activated.

The signals of the interface are electrically isolated.The configuration of the hardware can be adapted to different systems. The associated wires are markedwith �A� and �B�. Some descriptions refer to the pins with �+� and �-�, where the following applies:A = + and B = -. The voltage levels comply with the standards and are defined as follows:

Signal logical 1 - UA - UB <= -0.3 V i.e. (UA < UB)Signal logical 0 - UA - UB >= +0.3 V i.e. (UA > UB)

Pin Designation Channel Function8 T(A) SER1 Transmit Data Channel A9 T(B) SER1 Transmit Data Channel B11 SGND SER1 Signal Ground22 RD(A) SER1 Receive Data Channel A23 RD(B) SER1 Receive Data Channel B

A shielded cable with twisted pair wires (cable type LiYCY-TP) and a minimum cross section of0.34 mm2 (for 400 m) must be used. The maximum cable length is 400 m.

Connect the cable shield to the metal hoods of the connectors over as large a surfaceas possible! Please refer to appendix A.

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2.5.11 Pin Assignment X3 SER1 RS232c

Interface for communication with controller.

Pin Designation Channel Function6 TD SER1 Transmit Data15 CTS SER1 Clear To Send17 RTS SER1 Request To Send18 RD SER1 Receive Data25 SGND SER1 Signal Ground

A shielded cable with stranding in layers (cable type LiYCY) and with a minimum cross-section of0.25 mm2 must be used. The maximum cable length is 15 m.

Connect the cable shield to the metal hoods of the connectors over as large a surfaceas possible! Please refer to appendix A.

2.5.12 Pin Assignment X3 SER2 RS232c

Interface for download, upload, logging printer and scanner.

Pin Designation Channel Function1 SER2 Low-noise Earth2 TD SER2 Transmit Data3 RD SER2 Receive Data4 RTS SER2 Request to Send5 CTS SER2 Clear To Send7 SGND SER2 Signal Ground20 DTR SER2 Data Terminal Ready

A shielded cable with stranding in layers (cable type LiYCY) and with a minimum cross-section of0.25 mm2 must be used. The maximum cable length is 15 m.

Connect the cable shield to the metal hoods of the connectors over as large a surfaceas possible! Please refer to appendix A.

2.6 Shielding

The shield must be connected to the metal hoods of the connector housings at both ends and over aslarge a surface as possible. It should be noted that a potential equalization line with a minimum cross-section equal to 10 times that of the shield may be necessary as a result of the grounding on both sides.

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2.7.1 Display Contrast- / Brightness Setting

2.7 Display

The display in the TP35N consists of a high-resolution, color TFT module or a high-resolution,monochrome STN module.The display has a resolution of 640 x 480 dots (VGA) and is capable of displaying up to 3200 charactersof the font �Normal�at once.The characters of the normal font are displayed by a matrix of 8 x 12 dots.The format allowes 40 lines with 80 characters each. In addition any other font of windows is displayed.The touch panel has an optimum viewing angle of approximately 90°.In the operating mode �standard mode� the brightness can be adjusted at operating time by means ofa system variable.

Display for the TP35N (monochrome/color) at a glance:

Type : STN-Module TFT-ModuleResolution: 640 x 480 Dots 640 x 480 DotsDisplayable Colors: 16 Greyscales 256 ColorsBachlight: CFL CFLLifetime LCD: 50000 h 50000 hLifetime Backlight: 25000 h 40000 hGraphics Capability: Full Graphics Full Graphics

Lines (Font Normal): 40 40Characters/Line (Font Normal): 80 80Character Height: 3.3 mm 3.3 mm

Visible Front Cutout (H x W): 162 mm x 215 mm 162 mm x 215 mm

If the display is damaged, do not swallow or breathe in the liquids or gases beingemitted and avoid direct contact with skin.Danger of Poisoning! Could Result in Burns!

The contrast for the monochrome display, respectively the brightness for the color display can beadjusted by means of the software. This requires the system variable LCDContrast to be set up in anI/O mask of the application. The value can then be modified using any editor that can handle integernumbers.The limit values for the editor must be set to

Lower level (Monochrome/Color): -40 / 0 (dark)Upper level (Monochrome/Color): +70 / +70 (bright)

If this variable is not defined in the menus or the value is out of the range of values, the default value25 for the monochrome and 0 for the color display will be loaded when the system is initialized.

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2.7.2 Default Contrast- / Default Brightness Setting

If the contrast or brightness of the display should be such that the masks are no longer legible, the defaultcontrast / brightness setting can be restored using the user mode switch.

Position of the switch to restore the contrast:

S1 ONS2 OFFS3 OFFS4 ON

This switch position coincides with �activating download by hardware�. The contrast will be resetbefore the warning is displayed. The warning will be displayed in a legible manner.How to setup the default contrast / brightness:� Switch off the unit� Set the DIP-switches to the above decribed switch positions� Switch on the unit� Upon display of a warning, switch off the unit� Set the switch S4 to the OFF-position� Switch on the unit again.The application data is not lost.

2.7.3 Character Attributes

By preselecting an attribute, any characters can be displayed as follows:� normal� flashing� underlined� foreground- / background color / grey scaleand in any combination.

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2.7.4 Font Normal

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2.7.5 Font Zoom

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2.7.6 ASCII Character Set Table

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2.8 User-Mode Switch

The user-mode switch is accessible from the underside of the unit. The switch levers can be accessedby using a pen or a small screwdriver.

The switches S5 to S8 can be used by the operator as needed. The switch positions are stored atinitialization time and afterwards they can be overtaken to the controller.

Legend of above table:I = Switch position ON- = Switch position OFFX = Switch position irrelevant

S1 S2 S3 S4 S5 S6 S7 S8 Function

I X - - X X X X Standard-Mode with PLC (delivery state)

I X I - X X X X Standard-Mode without PLC

- I - - X X X X Transparent-Mode with start and stop code ofthe keys

- - - I X X X X Transparent-Mode without stop code of the keys

I - - I X X X X Activate download (deletes application memory)und default contrast setting

I - I I X X X X Activate upload

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2.9 Battery

A built-in lithium battery buffers the data in the CMOS-RAM memory and also supplies the real-timeclock with power. The battery provides a lifetime of at least 5 years, even under unfavourable operatingconditions.If the battery is drained the system message �change battery� is generated. We recommend to changethe battery at maintenance in an interval of 4 years. A new battery is supported by Sütron electronic orthe sales representative of your country.When the message �change battery� is recognized too late, for example real-time clock stopped ordisplays wrong date, it is possible that the data in the CMOS-RAM is lost. Therefore you have to checkthe data (changeable passwords, parameters in the system variables, data set of the recipes and theentries in the message system).

Replacing the battery:The battery can be replaced while the operating voltage is connected to ensure that the message dataand time setting are not lost. Mind the safety instructions!� Remove the fastening screws of the enclosure (pos. 1 in rear view) and remove the enclosure� Replace the cable fastener, which is used to hold the battery� Plug off the connector of the battery cable and replace the battery� Plug on the connector of the new battery� Place the new battery onto the plastic carrier on the printed circuit board and fasten it with a new

cable fastener� Place the enclosure on the rear side of the unit� At first fasten the bolts of the field bus connectors (if available) and at last fasten the screws of the

enclosure properlyChanging the battery may only be performed by qualified and authorized personnel!

Sewage and refuse displosal:Dispose only drained batteries into the collection box of the community or of the local dealer. Thebattery is stated as drained when the message �change battery� appears on the display of the appliance.To prevent short circuitry in the collection boxes insulate the poles of each battery with insulation tapeor put each single battery into a plastic bag.

Do not open lithium batteries. Danger of Poisoning!

Do not put lithium batteries in fire or heat them above 100° C and do not rechargethem. Danger of Explosion!

Hazardous voltages can exist inside electrical installations that can pose a dangerto humans. Coming in contact with live parts may result in electric shock!

Electrostatic discharges can damage electronic components! ESD protective measuresmust be observed!

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2.10 Fuse

A semiconductor fuse is used to prevent damage to the operating terminal. Once the fuse has beenactivated, the device must be disconnected from the supply voltage to allow the semiconductor fuse toregenerate. With an ambient temperature of 20 °C, the regeneration takes about 20 seconds. The higherthe ambient temperature, the longer the regeneration period.The semiconductor fuse is not designed to be replaced.

A 4.64 MByte flash memory is used as an application memory for the TP35N with color dislay and a2.64 MByte flash memory for the TP35N with monochrome display. This memory area is available tostore the user application, the loadable protocol driver, the fonts and the recipe data. The advantage ofthe flash memory is that programming and deleting processes can be carried out directly in theappliance.

2.11 Application Memory

On the side of the touch panel a compact flash card can be inserted.With the compact flash card projects can be exchanged between personal computer and the touch panel.Currently compact flash cards with a capacity of 7.5 MByte can be used.

2.12 Compact Flash Card

Arrangement of the diagnosis LEDs:

Indications:

2.12.1 InterBus

Description Color Status Indication

+5 V Green ON Voltage Monitor

RC Green ON Remote Bus Check

BA Green ON Bus Active

RD Red ON Remote Bus Disabled

The diagnosis LEDs are placed on the rear side of the units with field bus interfaces. The LEDs indicatethe status of the bus system.

2.12 Diagnosis LEDs

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Arrangement of the diagnosis LED:

Indications:

2.12.2 SUCOnet K

Color Status Indication

Red ON Communication Error

Arrangement of the diagnosis LED:

Indications:

2.12.3 PROFIBUS-DP

Arrangement of the diagnosis LED:

Indications:

2.12.4 MPI

Color Status Indication

Green ON Communication Active

Color Status Indication

Green Flashing Terminal has the Token

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Arrangement of the diagnosis LED:

Indications:

2.12.5 CAN

Color Status Indication

Green OFF Terminal Disconnected from the Bus

Green ON Communication Active

Green Flashing Sporadic Bus Error

Arrangement of the diagnosis LED:

Indications:

2.12.6 LON

Color Status Indication

Yellow OFF Neuron Chip has an Application and is Configured

Yellow ON Neuron Chip has no Application

YellowFlashingSlowly

Neuron Chip has an Application, but is not Configured

YellowFlashing

OnceNeuron Chip is Reset

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3 Technical Data

Keyboard A Total of 8 Keys, Mechanical with Tactile Feedback8 Function Keys with LEDs and Slide-in Identification Strips

Display Monochrome STN-Module, CFL-Backlight, 16 Greyscales, 640 x 480 Dots (VGA),40 Lines with 80 Characters Each, Display Area 162 x 215 mm (H x W)Lifetime LCD: 50000 hLifetime Backlight: 25000 h

Display Color TFT-Module, CFL-Backlight, 256 Colors, 640 x 480 Dots (VGA),40 Lines with 80 Characters Each, Display Area 162 x 215 mm (H x W)Lifetime LCD: 50000 hLifetime Backlight: 40000 h

Touch Front Resistive Touch-Panel for 10,4� Displays

Interface X3 Variable Baud Rates and Data FormatsSER1 TTY / 20 mA CommunicationSER1 RS485 CommunicationSER1 RS232c CommunicationSER2 RS232c Download/Upload/Scanner/

Logging Printer

Options X2.1/X2.2 InterBus CommunicationX2.1/X2.2 SUCOnet K CommunicationX2 PROFIBUS-DP CommunicationX2 MPI CommunicationX2.1/X2.2 CAN-Bus Communication

Arrangement of the diagnosis LEDs:

Indications:

2.12.7 InterBus Optical Fibre

Description Color Status Indication

+5 V Green ON Voltage Monitor

RC Green ON Remote Bus Check

BA Green ON Bus Active

RD Red ON Remote Bus Disabled

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X2 LON CommunicationDO1/DI1DO2/DI2 InterBus Optical Fibre Communication

Protocols Standard ABB CS31ABB T200AEG KS-FunctionsAEG ModbusAllen BradleyBosch BUEP19/Bosch BUEP19EDIN-Messbus Slave, DIN-Messbus GatewayGE Fanuc SNPIDEC Micro3

Jetter PASE/PCOM5Klaschka YCOM/CMoeller SUCOM 1 (PS306/316)Moeller SUCOM 1 (PS4-201)Mitsubishi FX-Series and A-SeriesOMRON Host-LinkOMRON NT-LinkSiemens Sinec L1 Master LinkSiemens 3964R/RK512Siemens S5 PG (AS511)Siemens S7 PPI

Protocols Field Bus CAN/CANopenInterBusLONMoeller SUCOnet KPROFIBUS-DP

Siemens S7 MPI

Central Unit 386EX, 25MHz, Watchdog-Timer, Real-Time-Clock, ProgrammableInterface Parameters, Temperature Compensation of the Display, Adjust-ment of Contrast, Battery Monitoring, User-Mode Switch

Memory 2.64 MByte Flash Memory Application Memory for Unit with Mono-chrome Display4.64 MByte Flash Memory Application Memory for Unit with ColorDisplay256 kByte stat. CMOS-RAM, Battery-Backed

Expansion Memory Compact Flash Card with 7.5 MByte

Connection System Plug-in Type, via SubminD Female and Male Connector Strips

Supply Voltage 24 V Direct Voltage, Residual Ripple Max. 10%SELV in Accordance to DIN EN 61131Minimum Voltage 19.2 VMaximum Voltage 30.2 V

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Typ. Power Consumption 0.8 APeak Current (10 ms) 4.0 A

Connected Load ~25 W

Fuse Semiconductor Fuse

ReverseVoltage Protection Protection Diode

Noise Immunity EC Electromagnetic Compatibility Directive 89/336/EWGEN 55011 Limit Class A*EN 50081-1 Table A1EN 50082-2EN61000-4-2EN61000-4-4EN61000-4-5EN61000-4-6DIN VDE 0843-3DIN VDE 0843-6

*Caution: This is a class A Product. In residential areas there may be radio dsturbance. Appropriateprotective measures must be taken by the operator.

Environmental Test Operating Temperature 0°C to 50°CStorage Temperature -25°C to 60°CRelative Humidity for:Operation max. 75% Annual AverageStorage max. 75% Annual AverageNon-condensing

Degree of Protection DIN 60259 Mechanical Degree of ProtectionFront: IP65Rear: IP20

Front Panel Aluminium Black Anodized, Circumferential Rubber Sealing on RearSide of Front Panel275.0 x 350.0 x 4.0 mm (H x W x D)

Mounting Cutout 238 x 324 mm (H x W)

Mounting Depth 58.5 mm

Enclosure Zink Coated Steel Plate

Total Weight Approx. 3500 g

Page 46: ELECTRONIC GMBH - suetron.de · ELECTRONIC GMBH Technical Manual TesiMod Touch Panel TP35N TP35NC Version 1.0 issued 12th January 2001 Sütron electronic GmbH Kurze Straße 29 70794

46

TesiMod TP35N

A

Application Memory 40

B

Battery 39

C

Character Set TableASCII 37

Compact Flash Card 40

D

Degree of Protection 17Diagnosis LEDs 40

CAN 42InterBus 40InterBus Optical Fibre 43LON 42MPI 41PROFIBUS-DP 41SUCOnet K 41

Display 33Brightness Setting 33Character Attributes 34Contrast Setting 33Default Brightness Setting 34Default Contrast Setting 34

E

Explanation of Symbols 5

F

FontNormal 35Zoom 36

Front Panel Dimensions 18Front View 6Function Keys 7Fuse 40

K

Keyboard 7

M

Mounting Depth 19Mounting the Touch Panel 17

P

Panel Cutout 20Pin Assignment

InterBus Optical Fibre 29X1.A / X1.B Supply Voltage 22X2 LON-Bus 28X2 MPI 26X2 PROFIBUS-DP 25X2.1 / X2.2 CAN-Bus 27X2.1 / X2.2 InterBus 23X2.1 /X2.2 SUCOnet K 24X3 SER1 RS232c 32X3 SER1 RS485 31X3 SER1 TTY / 20 mA Current Loop 30X3 SER2 RS232c 32

R

Rear ViewCAN-Bus 14InterBus 10InterBus Optical Fibre 16LON-Bus 15MPI 13PROFIBUS-DP 12Standard 9SUCOnet K 11

S

Shielding 32Side View 19Slide-in Identification Strips 7

T

Technical Data 43The Touch Panel TP35N 5

U

User-Mode Switch 38

4 Index

Page 47: ELECTRONIC GMBH - suetron.de · ELECTRONIC GMBH Technical Manual TesiMod Touch Panel TP35N TP35NC Version 1.0 issued 12th January 2001 Sütron electronic GmbH Kurze Straße 29 70794

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Appendix A

A Appendix A

A.1 Shielding of SubminD - Interconnections

1 SubminD Connector2 Shield3 Cord Grip4 Cable

The shield must be pushed back tubularly.By fastening the cable with the cord grip you have to ensure an electrical contact of the shield to thehousing over an area as wide as possible and an appropriate strain relief.