8006-15 computer-assisted€0.2 … four-quadrant dynamometer/power supply, model 8960, is a...

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LabVolt Series Datasheet 8006-15 Computer-Assisted 0.2 kW Electromechanical Training System Festo Didactic en 220 V - 50 Hz 01/2016

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Page 1: 8006-15 Computer-Assisted€0.2 … Four-Quadrant Dynamometer/Power Supply, Model 8960, is a permanent-magnet dc motor that can operate as a continuous-duty prime mover or as a dynamometer

LabVolt Series

Datasheet

8006-15Computer-Assisted 0.2 kW Electromechanical Training System

Festo Didactic

en 220 V - 50 Hz

01/2016

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Computer-Assisted 0.2 kW Electromechanical Training System, LabVolt Series, 8006-15

2 © Festo Didactic

Table of ContentsGeneral Description_______________________________________________________________________2Measurement Instruments _________________________________________________________________3Courseware______________________________________________________________________________3Modules ________________________________________________________________________________3Power Supply ____________________________________________________________________________3Workstation _____________________________________________________________________________4Storage _________________________________________________________________________________4Machines _______________________________________________________________________________4Electrical Loads __________________________________________________________________________4Mechanical Load _________________________________________________________________________4Connection Leads_________________________________________________________________________5Features & Benefits _______________________________________________________________________5List of Equipment_________________________________________________________________________5List of Manuals___________________________________________________________________________6Table of Contents of the Manual(s) __________________________________________________________6Optional Equipment_______________________________________________________________________7Additional Equipment Required to Perform the Exercises ________________________________________7Optional Manual(s) _______________________________________________________________________8System Specifications _____________________________________________________________________8Equipment Description ____________________________________________________________________9Optional Equipment Description __________________________________________________________ 29

General DescriptionThe Computer-Assisted 0.2 kW Electromechanical Training System (EMS) is a modular program that allows laboratory observations in the study of electric power technology. The program incorporates various techniques used in industry to generate and use electrical energy. The courseware covers power circuits, transformers, and common ac/dc machines. It is presented in two student manuals.

Developed by educators to satisfy educational requirements for industrial applications of electric power technology, this program has been designed for low-power (0.2 kW or ¼ hp) educational equipment that enables students to understand and safely operate industrial-type equipment.

Careful attention to engineering details ensures laboratory results that are easy to understand, data values that are easily observed, and data which, when applied to governing formulas, provides results that verify electrical laws rather than deny them on the basis of large operational-tolerance errors.

As a modular program, course materials provide instructors with complete versatility in selecting and adapting lessons and experiments to fit specific student needs and teaching objectives.

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Measurement InstrumentsAll measurements are performed using the Data Acquisition and Control for Electromechanical Systems (LVDAC-EMS). This modern and versatile system is built around an interface module that provides electrical insulation and performs data acquisition. The interface module connects to a host computer (via a USB 1.1 or 2.0 port connection) that runs the LVDAC-EMS software.

The LVDAC-EMS software consists of a set of conventional and specialized instruments, each instrument appearing as a window on the computer screen. The software uses the acquired data received from the interface module to calculate the values of common parameters such as voltage, current, electrical power (apparent, active, and reactive), power factor, energy, efficiency, complex impedance, frequency, speed, torque, mechanical power, etc.

The values of up to 18 parameters can be displayed simultaneously using a metering window. These values can be recorded to a data table and used to obtain on-screen graphs. Data tables can be exported to any popular

spreadsheet programs (e.g. Microsoft® Excel) for further analysis.

The LVDAC-EMS software includes the following three other instruments (windows) which allow observation and analysis of the various parameters: an eight-channel oscilloscope, a phasor analyzer, and a harmonic analyzer.

CoursewareThe student manuals guide the students through the experiments and provide the necessary theoretical back-ground to allow successful completion of the educational objectives. Manuals are structured in a unit-exercise format. Each exercise approaches the subject matter from a theoretical point of view and uses a hands-on approach to the study of electrical power technology. Students are guided through step-by-step exercise procedures that confirm concepts and theory presented in the exercise discussion. A conclusion and a set of review questions complete each exercise. A 10-question unit test helps evaluate knowledge gained in the courseware unit. The flexibility of this system allows students to use their own initiative during the laboratory sessions. Under the guidance of an instructor, students gain the required competencies for successful employment.

ModulesThe system's modular approach allows instructors to start their EMS laboratory with basic courseware and equipment and to add new modules over time without needless duplication of equipment. All modules can be inserted into standard workstations (table-top or mobile) and are constructed of heavy-gauge steel. Symbols and diagrams specific to each module are clearly silk-screened on the faceplates. Standard, color-coded safety jacks are used to interconnect all system components.

Power SupplyA separate power supply for each workstation provides complete control of the necessary power sources. This allows maximum use of laboratory equipment, and reduces interference with other laboratory experiments being performed at the same time. The power supply module provides all ac and dc power sources, fixed and variable, at each station.

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WorkstationThe Workstation, Model 8134, includes spaces to insert six full-size and three half-size modules, or fifteen half-size modules. The optional Mobile Workstation, Model 8110, has an equivalent area for inserting modules, contains a general storage cabinet and a pull-out work surface at desk height, and is equipped with four swivel casters. The modules are guided into position along stainless-steel guide rails and are held securely in place by a holding mechanism. Front-mounted release levers allow easy removal of modules from the workstation. Safety locking devices prevent students from removing modules from the workstation during lab exercises.

StorageWhen modules are not in use, they can be placed in an optional Storage Cabinet, Model 8150.

MachinesAll machines are mounted in full-size modules equipped with a faceplate fitted with a chrome-plated piano hinge. The faceplate can be lowered for access to the machine, and when closed, it is secured by two quick-lock fasteners. Each machine module is provided with a safety locking device that prevents students from lowering the faceplate during lab exercises.

All machines have open bell housings (front and rear) to allow visual inspection of the internal construction and observation of the machine during operation. Externally mounted components (such as centrifugal switches, capacitors, brushes, slip-rings, and commutators), in addition to the exposed stator windings, squirrel cage and wound rotors, allow students to clearly determine component function and to understand relative position, number of turns, and wire sizes of the machinery.

The shaft of each machine has a concave-slotted end to facilitate the use of tachometers, holding brakes or plugging switches. A geared pulley is fitted on each machine shaft to mechanically couple machines together using a non-slip timing belt. Tension for the timing belt is provided by the idler tensioning ball-bearings mounted on each machine module.

Electrical LoadsResistive, inductive, and capacitive load components are housed in separate half-size modules. They are designed to provide equal load magnitudes for all three types of loads. The load impedance can be varied in steps of equal-unit value by switches provided in all load modules. These characteristics simplify calculations required in the learning process.

Mechanical LoadThe Four-Quadrant Dynamometer/Power Supply, Model 8960, is a permanent-magnet dc motor that can operate as a continuous-duty prime mover or as a dynamometer (i.e., as a mechanical load). A built-in control circuit allows mechanical loading of 0.2 kW machines up to breakdown and stalled conditions. A digital display indicates speed, torque, and mechanical power. Two low-voltage analog output signals proportional to speed and torque, and a shaft encoder digital output signal are also provided.

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Connection LeadsVarious components of the system are connected with flexible PVC-insulated connecting leads terminated with 4 mm safety banana plugs. These leads allow safe connection of components without danger of electrical shock, with live parts of the plugs concealed and insulated in such a way that they cannot be contacted accidentally. They come in three different lengths, each identified by a distinctive color. A handy storage rack can be attached to the side of the Workstation.

Features & Benefits• Sturdy workstations and modules constructed of heavy-gauge steel, finished in baked enamel• Clear plastic faceplate that can be lowered for access to the machine• Cutaway bell housings to permit visual inspection of the internal construction and observation of the machine during

operation• The shaft of each machine has a concave and slotted end to facilitate the use of tachometers, holding brakes,

plugging switches, and inertia wheels• System conception and load components simplify calculations required in the learning process• Mechanical, inductive, resistive, and capacitive load components are included• Symbols and diagrams representing the electrical components in each module are clearly silk-screened on the front

panel• Safe: all electrical components can be interconnected without electric shock hazard, as all live parts of the plugs are

concealed and insulated• Comprehensive curriculum

List of Equipment

Qty DescriptionModel number

1 Workstation ___________________________________________________________________________ 8134-201 DC Motor / Generator ___________________________________________________________________ 8211-051 Four-Pole Squirrel-Cage Induction Motor ___________________________________________________ 8221-051 Synchronous Motor/Generator ___________________________________________________________ 8241-051 Capacitor-Start Motor ___________________________________________________________________ 8251-051 Universal Motor ________________________________________________________________________ 8254-051 Resistive Load _________________________________________________________________________ 8311-051 Inductive Load _________________________________________________________________________ 8321-051 Capacitive Load ________________________________________________________________________ 8331-051 Fully Protected Transformer ______________________________________________________________ 8341-251 Three-Phase Transformer Bank ___________________________________________________________ 8348-451 Synchronizing Module __________________________________________________________________ 8621-051 Power Supply __________________________________________________________________________ 8821-251 Timing Belt ____________________________________________________________________________ 8942-001 Connection Lead Set ____________________________________________________________________ 8951-001 Four-Quadrant Dynamometer/Power Supply ________________________________________________ 8960-B51 Data Acquisition and Control Interface _____________________________________________________ 9063-B0

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List of Manuals

DescriptionManual number

Power Circuits and Transformers (Student Manual) ______________________________________________ 30328-00Power Circuits and Transformers (Instructor Guide) ______________________________________________ 30328-15AC/DC Motors and Generators (Student Manual) ________________________________________________ 30329-00AC/DC Motors and Generators (Instructor Guide) _______________________________________________ 30329-15Electric Power Technology Training Equipment (User Guide) ______________________________________ 38486-E0Computer-Based Instruments for EMS (User Guide) _____________________________________________ 86718-E0

Table of Contents of the Manual(s)Power Circuits and Transformers (Student Manual) (30328-00)• 1 Fundamentals for Electrical Power Technology• 1-1 Voltage, Current, Ohm's Law• 1-2 Equivalent Resistance• 1-3 Power in DC Circuits• 1-4 Series and Parallel Circuits• 2 Alternating Current• 2-1 The Sine Wave• 2-2 Phase Angle• 2-3 Instantaneous Power• 3 Capacitors in AC Circuits• 3-1 Capacitive Reactance• 3-2 Equivalent Capacitance• 3-3 Capacitive Phase Shift and Reactive Power• 4 Inductors in AC Circuits• 4-1 Inductive Reactance• 4-2 Equivalent Inductance• 4-3 Inductive Phase Shift and Reactive Power• 5 Power, Phasors, and Impedance in AC Circuits• 5-1 Power in AC Circuits• 5-2 Vectors and Phasors in Series AC Circuits• 5-3 Vectors and Phasors in Parallel AC Circuits• 5-4 Impedance• 6 Three-Phase Circuits• 6-1 Balanced Three-Phase Circuits• 6-2 Three-Phase Power Measurement• 6-3 Phase Sequence• 7 Single-Phase Transformers• 7-1 Voltage and Current Ratios• 7-2 Transformer Polarity• 7-3 Transformer Regulation• 8 Special Transformer Connections• 8-1 The Autotransformer• 8-2 Transformers in Parallel• 8-3 Distribution Transformers

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1 Can replace the Workstation, Model 8134.

• 9 Three-Phase Transformers• 9-1 Three-Phase Transformer Connections• 9-2 Voltage and Current Relationships• 9-3 The Open-Delta Connection

AC/DC Motors and Generators (Student Manual) (30329-00)• 1 Fundamentals for Rotating Machines• 1-1 Prime Mover and Brake Operation (Model 8960-B)• 1-2 Prime Mover and Brake Operation (Model 8960-1)• 1-3 Motor Power, Losses, and Efficiency• 2 DC Motors and Generators• 2-1 The Separately-Excited DC Motor• 2-2 Separately-Excited, Series, Shunt, and Compound DC Motors• 2-3 Separately-Excited, Shunt, and Compound DC Generators• 3 Special Characteristics of DC Motors• 3-1 Armature Reaction and Saturation Effect• 3-2 The Universal Motor• 4 AC Induction Motors• 4-1 The Three-Phase Squirrel-Cage Induction Motor• 4-2 Eddy-Current Brake and Asynchronous Generator• 4-3 Effect of Voltage on the Characteristics of Induction Motors• 4-4 Single-Phase Induction Motors• 5 Synchronous Motors• 5-1 The Three-Phase Synchronous Motor• 5-2 Synchronous Motor Pull-Out Torque• 6 Three-Phase Synchronous Generators (Alternators)• 6-1 Synchronous Generator No-Load Operation• 6-2 Voltage Regulation Characteristics• 6-3 Frequency and Voltage Regulation• 6-4 Generator Synchronization

Optional Equipment

Qty DescriptionModel number

1 Mobile Workstation _____________________________________________________________________ 8110-201 Storage Shelves _______________________________________________________________________ 8150-101 Full-Size Blank EMS Module ______________________________________________________________ 8160-001 Half-Size Blank EMS Module _____________________________________________________________ 8161-001 Digital Tachometer _____________________________________________________________________ 8920-401 Speed Sensor / Tachometer ______________________________________________________________ 8931-001 Digital Multimeter ______________________________________________________________________ 8946-101 Computer-Assisted 0.2 kW Electromechanical Training System (Manuals on CD-ROM) _____________ 30328-A0

Additional Equipment Required to Perform the Exercises

1

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2 Refer to the Computer Requirements in the System Specifications section of this datasheet if the computer is to be provided by the end-user.3 Optional training at Festo Didactic Ltd. (Québec, Canada). Transportation, lodging and meals not included. For training at your site, please contact "[email protected]" for an estimate of extra travel fees that will apply.

Qty DescriptionModel number

1 Personal Computer _____________________________________________________________________ 8990-051 Training on Circuits, Transformers and Electrical Machines, 1.4 days ____________________________ 30329-TF

Optional Manual(s)

Qty DescriptionModel number

1 Computer-Assisted 0.2 kW Electromechanical Training System (Manuals on CD-ROM) _____________ 30328-A0

System SpecificationsParameter Value

Power Requirement

Current 20 A

Service Installation Three-phase, five-wire, wye configuration, including neutral and ground wires

Nominal Power 500 VA (each system)

Computer RequirementsA currently available personal computer with USB 1.1 or 2.0 port, running under

one of the following operating systems: Windows® 7 or Windows® 8.

Physical Characteristics

Intended LocationOn a table able to support the weight of the workstation and installed equipment

Dimensions (H x W x D) 900 x 900 x 470 mm (35.5 x 35.4 x 18.5 in)

Net Weight 214 kg (471 lb)

EMS Modules

Full-Size Dimensions (H x W x D) 308 x 286 x 419 mm (12.1 x 11.3 x 16.5 in)

Half-Size Dimensions (H x W x D) 154 x 286 x 419 mm (6.1 x 11.3 x 16.5 in)

2

3

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Equipment Description

Workstation 8134-20

The Workstation is a fully assembled workstation that serves the same purpose as the Mobile Workstation, Model 8110-2, but has no storage cabinet or pull-out work surface. This workstation is intended for use on a bench (not supplied) and is fitted with wooden feet to protect the bench top. Alternatively, this workstation can be mounted on either a Mobile Storage Cabinet, Model 89117-1, to make a Mobile Workstation, Model 8110-2, or on a Mobile Base, Model 88863, to make a mobile workstation without storage cabinet. In that case, it is possible to mount and lock a second

Workstation, Model 8134-2, on top of the first Workstation to double the space available for EMS modules.

The Workstation consists of three rows of compartments designed to house EMS modules. Two of these rows have full-height compartments while the other row has half-height compartments. Each row of full-height compartments can accommodate up to three full-size EMS modules or six half-size EMS modules whereas the row of half-height compartments can accommodate up to three half-size EMS modules.

Module Installation

The EMS modules are guided into position along stainless steel guide rails. Separators between each bay of the workstation ensure perfect alignment of the EMS modules and allow their easy insertion in the workstation. A holding mechanism ensures that each EMS module stays in place once it is installed in a compartment of the workstation. Front-mounted push levers allow all EMS modules on a single row to be released for easy removal.

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4 This add-on workstation allows modules from the Industrial Controls Training Systems, Models 8036, to be installed in the EMS workstation. Refer to the 8036 datasheet for more information.5 This add-on workstation allows modules from the Industrial Controls Training Systems, Models 8036, to be installed in the EMS workstation. Refer to the 8036 datasheet for more information.

Safety Padlock Bars

Two safety padlock bars on the front of the workstation prevent students from removing EMS modules during laboratory exercises. The bars can be removed and locked to the side of the workstation when the safety lock is not necessary.

Additional Information

Six holes in the rear panel of the workstation allow connection to a power supply, as well as the connection of 2 kW machines to their interconnection modules. Assembly of the workstation before painting ensures that each EMS module in the workstation is correctly grounded.

Manual

DescriptionManual number

Electric Power Technology Training Equipment (User Guide) ______________________________________ 38486-E0

Optional Equipment

Qty DescriptionModel number

1 Industrial Controls Single-Rail Workstation ________________________________________________ 3105-A01 Industrial Controls Double-Rail Workstation ________________________________________________ 3105-B01 Dust Cover for Workstations ______________________________________________________________ 8991-001 Mobile Base __________________________________________________________________________ 88863-001 Mobile Storage Cabinet ________________________________________________________________ 89117-10

Specifications

Parameter Value

Physical Characteristics

Intended LocationOn a table able to support the weight of the workstation and installed equipment

Dimensions (H x W x D) 900 x 930 x 530 mm (35.4 x 36.6 x 20.9 in)

Net Weight 31.8 kg (70 lb)

4

5

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DC Motor / Generator 8211-05

The DC Motor / Generator is a dc machine mounted in a full-size EMS module. It can operate independently as a dc motor or a dc generator. The armature, shunt field, and series field windings are terminated separately on the faceplate to permit long and short shunt as well as cumulatively and differentially compounded motor and generator connections. This machine is fitted with exposed movable brushes to allow students to study the effect of armature reaction and

commutation while the machine is operating under load.

An independent, circuit-breaker protected, shunt-field rheostat is mounted on the faceplate for motor speed control or generator output voltage adjustment. The speed of the DC Motor/Generator can be controlled using the Thyristor Speed Controller in both the open-loop and closed-loop modes of control.

Specifications

Parameter Value

Power Requirement 220/380 V

Rating

Motor Output Power 175 W

Generator Output Power 110 W

Armature Voltage 220 V dc

Shunt Field Voltage 220 V dc

Full-Load Speed 1500 r/min

Full-Load Motor Current 1.3 A

Full-Load Generator Current 0.5 A

Physical Characteristics

Dimensions (H x W x D) 308 x 287 x 440 mm (12.1 x 11.3 x 17.3 in)

Net Weight 14.1 kg (31 lb)

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Four-Pole Squirrel-Cage Induction Motor 8221-05

The Four-Pole Squirrel-Cage Induction Motor is a 0.2 kW squirrel-cage induction machine mounted in a full-size EMS module. The machine stator windings are independently connected (six jacks), allowing connection in either wye or delta configuration. Connections to the machine are made through color-coded safety banana jacks located on the front panel on the module. A tensioner bearing can be ordered as an option.

The front panel of the Four-Pole Squirrel-Cage Induction Motor module can be opened to install a Timing Belt, Model 8942, on the pulley of the machine shaft. This permits mechanical coupling of this machine to the Four-Quadrant Dynamometer/Power Supply, Model 8960. When driven by a prime mover, the Four-Pole Squirrel-Cage Induction Motor operates as a three-phase asynchronous generator.

Specifications

Parameter Value

Power Requirements 220/380 V

Motor

Stator Voltage 220/380 V, 3-phase

Mechanical Power 200 W

Nominal Speed 1364 r/min

Nominal Current 0.55 A

Power Factor 0.78

Generator

Stator Voltage 220/380 V, 3-phase

Mechanical Power 200 W

Nominal Speed 1598 r/min

Nominal Current 0.52 A

Power Factor 0.58

Physical Characteristics

Dimensions (H x W x D) 308 x 291 x 440 mm (12.1 x 11.5 x 17.3 in)

Net Weight 13.5 kg (29.7 lb)

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Synchronous Motor/Generator 8241-05

The Synchronous Motor/Generator is a 0.2 kW three-phase synchronous machine mounted in a full-size EMS module. This machine can be operated either as a three-phase motor or a three-phase generator. Each phase of the machine stator windings is independently terminated and identified on the front panel to allow operation in either wye or delta configuration. The machine rotor is equipped with a squirrel-cage damper. Variable dc excitation to the rotor field

windings is fed through externally mounted slip rings and brushes that are wired to a rheostat and control switch located on the front panel.

Connections to the machine are made through color-coded safety banana jacks located on the front panel of the module. This front panel of the module can be opened to install a Timing Belt, Model 8942, on the pulley of the machine shaft. This permits mechanical coupling of the machine to the Four-Quadrant Dynamometer/Power Supply, Model 8960.

Specifications

Parameter Value

Power Requirement 220/380 V

Motor

Stator Voltage 220/380 V, 3-phase

Rotor Voltage 0-240 V dc

Output Power 175 W

Synchronous Speed 1500 r/min

Full-Load Current 0.36 A

Generator

Stator Voltage 220/380 V, 3-phase

Rotor Voltage 0-240 V dc

Output Power 200 VA

Synchronous Speed 1500 r/min

Nominal Current 0.3 A

Physical Characteristics

Dimensions (H x W x D) 308 x 291 x 440 mm (12.1 x 11.5 x 17.3 in)

Net Weight 14 kg (30.8 lb)

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Capacitor-Start Motor 8251-05

The Capacitor-Start Motor is a 0.2 kW capacitor-start machine mounted in a full-size EMS module. The centrifugal switch and contact points of the machine are mounted externally to allow students to examine their construction and observe their operation. The switch, the starting auxiliary winding, and the main running winding are all independently terminated and identified on the faceplate to facilitate experimentation of various machine connections,

including open- and short-circuit fault conditions. The starting winding is circuit breaker protected against overloads. Because of the open bell housing construction, students can compare the relative size, position, and turns of the starting winding and the main running winding. An externally mounted starting capacitor is also independently terminated and identified on the faceplate to permit experimentation as a split-phase or a capacitor-start single-phase induction motor.

Specifications

Parameter Value

Rating

Line Voltage 220 V

Output Power 175 W

Full Load Speed 1400 r/min

Full Load Current 2.2 A

Physical Characteristics

Dimensions (H x W x D) 308 x 287 x 440 mm (12.1 x 11.3 x 17.3 in)

Net Weight 13.8 kg (30.4 lb)

Universal Motor 8254-05

The Universal Motor is a 0.2 kW universal machine mounted in a full-size EMS module. Its commutator bars and adjustable brushes are exposed to allow students to study the effect of armature reactions and commutation while the machine is running under load. The armature winding, the series field winding, and the compensation winding are terminated independently on the module front panel by 4 mm color-coded banana jacks. Students

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can observe the effects of both inductive and conductive compensation on motor speed and torque for both ac and dc input voltage sources.

Specifications

Parameter Value

Rating

Line Voltage 220 V ac/dc

Output Power 175 W

Full Load Speed 1500 r/min

Full Load Current 1.4 A

Physical Characteristics

Dimensions (H x W x D) 308 x 287 x 440 mm (12.1 x 11.3 x 17.3 in)

Net Weight 14.4 kg (31.7 lb)

Resistive Load 8311-05

The Resistive Load consists of a half-size EMS module housing nine wire-wound power resistors arranged in three identical groups. Each group consists of three resistors connected in parallel that can be switched on or off with toggle switches to obtain various resistance values. This allows

the total (equivalent) resistance of each group to be increased or decreased by steps. Six safety banana jacks on the module front panel provide access to each resistor group. The three resistor groups can be connected separately for operation in three-phase circuits. Also, the three resistor groups can be connected together for operation in single-phase circuits.

The Resistive Load is commonly used in conjunction with other basic load modules, like the Inductive Load, Model 8321, and the Capacitive Load, Model 8331, to experiment with the effects of different types of load on a circuit.

Specifications

Parameter Value

Resistors

Quantity Three identical groups of three resistors

Resistance Values (Each Group) 1100/2200/4400 Ω

Nominal Voltage 220 V ac/dc

Resistance Value Accuracy ± 5%

Load at Nominal Voltage (Group)

Power 11-77 W

Current 0.05-0.35 A

Steps Seven, of equal increment

Current Increment 0.05 A

Physical Characteristics

Dimensions (H x W x D) 154 x 287 x 410 mm (6.1 x 11.3 x 16.1 in)

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Parameter Value

Net Weight 4.5 kg (9.9 lb)

Inductive Load 8321-05

The Inductive Load consists of a half-size EMS module housing nine iron-core power inductors arranged in three identical groups. Each group consists of three inductors connected in parallel that can be switched on or off with toggle switches to obtain various inductance values. This allows the equivalent inductance of each group

to be increased or decreased by steps. Six safety banana jacks on the module front panel provide access to each inductor group. The three inductor groups can be connected separately for operation in three-phase circuits. Also, the three inductor groups can be connected together for operation in single-phase circuits.

A permanently-connected discharge resistor reduces the voltage across the terminals of each group of capacitors to 5% of the applied voltage within 15 seconds after the load is disconnected from the supply. The Capacitive Load may be used with both dc and ac power.

The Inductive Load is commonly used in conjunction with other basic load modules, like the Resistive Load, Model 8311, and the Capacitive Load, Model 8331, to experiment with the effects of different types of load on a circuit.

Specifications

Parameter Value

Inductors

Quantity Three identical groups of three inductors

Inductance Values (Each Group) 3.5/7/14 H

Reactance Values (Each Group) 1100/2200/4400 Ω

Nominal Voltage 220 V – 50 Hz

Inductance Value Accuracy ± 5%

Load at Nominal Voltage (Each Group)

Reactive Power 11-77 var

Current 0.05-0.35 A

Steps Seven, of equal increment

Current Increment 0.05 A

Physical Characteristics

Dimensions (H x W x D) 154 x 287 x 410 mm (6.1 x 11.3 x 16.1 in)

Net Weight 10.1 kg (22.3 lb)

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Capacitive Load 8331-05

The Capacitive Load consists of a half-size EMS module housing nine capacitors arranged in three identical groups. Each group consists of three capacitors connected in parallel that can be switched on or off with toggle switches to obtain various capacitance values. This allows the equivalent

capacitance of each group to be increased or decreased by steps. Six safety banana jacks on the module front panel provide access to each capacitor group. The three capacitor groups can be connected separately for operation in three-phase circuits. Also, the three capacitor groups can be connected together for operation in single-phase circuits.

A permanently-connected discharge resistor reduces the voltage across the terminals of each group of capacitors to 5% of the applied voltage within 15 seconds after the load is disconnected from the supply. The Capacitive Load may be used with both dc and ac power.

The Capacitive Load is commonly used in conjunction with the other basic load modules, the Resistive Load, Model 8311, and the Inductive Load, Model 8321, to experiment with the effects of different types of load on a circuit.

Specifications

Parameter Value

Capacitors

Quantity Three identical groups of three capacitors

Capacitance Values (Each Group) 0.72/1.45/2.89 µF

Reactance Values (Each Group) 1100/2200/4400 Ω

Nominal Voltage 220 V – 50 Hz

Maximum Voltage 440 V

Capacitance Value Accuracy ± 5%

Load at Nominal Voltage (Each Group)

Reactive Power 11-77 var

Current 0.05-0.35 A

Steps Seven, of equal increment

Current Increment 0.05 A

Physical Characteristics

Dimensions (H x W x D) 154 x 287 x 410 mm (6.1 x 11.3 x 16.1 in)

Net Weight 5.7 kg (12.6 lb)

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Fully Protected Transformer 8341-25

The Fully Protected Transformer is fitted with three discrete windings. Any winding can be used as either a primary or a secondary, which increases the number of laboratory applications. Due to its numerous taps, the Fully Protected Transformer can be used with many different input

and output voltages. For this reason, it can be used for impedance matching and other transformer experimentation. By using multiple Fully Protected Transformers, students can explore transformer phasing, distribution transformers, open- and closed-delta transformer configurations, delta-wye, wye-delta, wye-wye, and delta-delta connections. Other specialized transformer connections, such as Scott (three-phase to two-phase), three-phase to six-phase, and zig-zag connections are also possible. To protect each winding, a replaceable time-lag fuse has been placed in series with the windings.

The Fully Protected Transformer is mounted in a half-size EMS module. The primaries and secondaries are terminated on the module faceplate to 4 mm color-coded safety sockets and are identified by schematic symbol, terminal number, voltage and current.

Specifications

Parameter Value

Rating (Coil 1)

Voltage 220 V ac

Current 0.25 A

Rating (Coil 2)

Voltage 380 V ac

Current 0.15 A

Taps 50% and 86.6%

Rating (Coil 3)

Voltage 220 V ac

Current 0.25 A

Tap 50%

Circuit-Protection Type 6 time-lag fuses

Physical Characteristics

Dimensions (H x W x D) 154 x 287 x 440 mm (6.1 x 11.3 x 17.3 in)

Net Weight 6.5 kg (14.3 lb)

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Three-Phase Transformer Bank 8348-45

The Three-Phase Transformer Bank consists of three independent power transformers enclosed in a half-size EMS module. Safety banana jacks on the module front panel provide individual access to the windings of each power transformer, allowing connection in either wye or delta

configuration. The transformer windings are polarized. The polarity of each winding is indicated by a small dot on the module front panel. Electronic fuses protect the primary and secondary windings of each transformer against overcurrents. Fuse status lamps on the module front panel turn on when the electronic fuses detect an overcurrent condition. When the overcurrent condition is eliminated, the electronic fuses reset automatically and the fuse status lamps turn off.

Specifications

Parameter Value

Rating (Each Transformer)

Primary Voltage 380 V

Secondary Voltage 380/220 V

Power 250 VA

Line Current 0.66 A

Physical Characteristics

Dimensions (H x W x D) 154 x 287 x 440 mm (6.1 x 11.3 x 17.3 in)

Net Weight 13.9 kg (30.6 lb)

Synchronizing Module 8621-05

The Synchronizing Module is a power control device enclosed in a half-size EMS module. The Synchronizing Module is mainly used to synchronize two ac generators. It can also be used to determine the phase sequence in three-phase circuits. The synchronizing Module has three indicator lamps indicating the relative

voltage difference between two circuits. The brightness of the indicator lamps increases with the voltage difference between the two circuits. The Synchronizing Module has a three-phase switch mounted on the module front panel. This three-phase switch is a triple-pole, single-throw switch. Each phase leg of the three-phase switch is protected against overcurrents and short-circuits by a thermal-magnetic circuit breaker.

Specifications

Parameter Value

Rating

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Parameter Value

Each Phase 440 V – 1 A ac

Light Bulbs 130 V – 2.6 W – BA9S

Circuit Breakers 1 A

Physical Characteristics

Dimensions (H x W x D) 154 x 287 x 440 mm (6.1 x 11.3 x 17.3 in)

Net Weight 3.6 kg (7.9 lb); Shipping: 5.2 kg (11.4 lb)

Power Supply 8821-25

The Power Supply is enclosed in a full-size EMS module. It can be used to power most of the EMS modules of the Electricity and New Energy Training Equipment. This Power Supply provides dc power and ac power, both fixed and variable, single-phase and three-phase. Color-coded safety banana jacks provide access to all the power sources in the Power Supply. All these power sources can be used simultaneously, provided that the total current drawn does not exceed the maximum current rating. A built-in

voltmeter with selector switch and liquid crystal display (LCD) indicates the voltage provided by any of the power sources. The inputs and outputs of the Power Supply are protected by independent circuit breakers.

Specifications

Parameter Value

Module Requirements

AC Power Network Installation3 phases (220/380 V – 50 Hz), star (wye) configuration including neutral and ground wires, protected by a 20 A circuit breaker

AC Power Network Connector NEMA L22-20

Maximum Current 10 A

Outputs (*see note)

Three-Phase Fixed AC 220/380 V – 10 A

Three-Phase Variable AC 0-220/380 V – 3 A

Variable DC 0-220 V – 5 A

Fixed DC 220 V – 1 A

Low Power AC 24 V – 3 A

Included Accessories

3 m (10 ft) ac power cord (1)

NEMA L22-20 wall connector with wall plate (1)

Square metal outlet box (1)

Outlet box cover (1)

Outlet box connector (1)

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Parameter Value

Padlock (1)

Physical Characteristics

Dimensions (H x W x D) 308 x 287 x 500 mm (12.1 x 11.3 x 19.7 in)

Net Weight 18.4 kg (40.5 lb)

*Note

The Power Supply cannot supply all the amounts of current indicated by the current ratings on its front panel at the same time. The current indicated for the fixed ac three-phase output section can only be obtained if no current is drawn from any other section, because this section is protected by the main circuit breaker common to every section. If currents flow in other sections, the available current for the fixed ac three-phase output section decreases. The variable ac output section and the variable dc output section are protected by a common set of circuit breakers placed after the fixed ac three-phase output section, which means that the current capacity has to be shared between the two sections. For instance, if current of the variable dc output section is at 70% of its nominal value, current drawn from the variable ac output section should not exceed 30% of its nominal value. The fixed dc output section is also protected by circuit breakers placed after the fixed ac three-phase output section.

Timing Belt 8942-00

The Timing Belt is a high-quality industrial synchro-cog timing belt made of rubber whose teeth exactly mesh with the geared pulley fitted on the shaft of all 0.2 kW EMS machines. The Timing Belt is supplied in a fixed length appropriate for coupling two

adjacent EMS machines together without slippage between them.

Specifications

Parameter Value

Physical Characteristics

Pitch 9.5 mm (0.375 in)

Pitch Length 819 mm (32.25 in)

Number of Teeth 86

Dimensions (H x W x D) 120 x 120 x 20 mm (4.7 x 4.7 x 0.8 in)

Net Weight 0.1 kg (0.2 lb)

Connection Lead Set 8951-00This Connection Lead Set consists of extra-flexible leads terminated with stacking 4 mm safety banana plugs. The leads are supplied in different lengths and are color-coded according to length.

Specifications

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Parameter Value

4 mm Safety Banana Plug Leads Characteristics

Cross Section 2.5 mm² (4934 cmil)

Rated Current 32 A

Rated Voltage 600 V, CAT II

4 mm Safety Banana Plug Leads Quantities

Yellow, 30 cm (12 in) 10

Red, 60 cm (24 in) 15

Blue, 90 cm (36 in) 6

Four-Quadrant Dynamometer/Power Supply 8960-B5

The Four-Quadrant Dynamometer/Power Supply is a highly versatile USB peripheral designed to be used in the Electric Power Technology Training Systems. Two operating modes are available: Dynamometer and Power Supply. A wide variety of user-selectable functions is available in each operating mode.

In the Dynamometer mode, the unit becomes a four-quadrant dynamometer that can act as either a fully configurable brake (i.e., a

mechanical load) or a fully configurable prime mover (i.e., a motor drive). In the Power Supply mode, the unit becomes a four-quadrant power supply that can act as a dc voltage source, dc current source, ac power source, etc.

In each operating mode, key parameters related to the selected function are displayed. Speed, torque, mechanical power, and energy are displayed in the Dynamometer mode while voltage, current, electrical power, and energy are displayed in the Power Supply mode. Optional functions, such as a small wind-turbine emulator, a hydraulic turbine emulator, a solar panel emulator, battery chargers, an SDK (Software Development Kit) etc., can be added to the standard functions to further enhance the training possibilities of the Four-Quadrant Dynamometer/Power Supply.

Two modes are available to control the function which the Four-Quadrant Dynamometer/Power Supply performs: Manual and Computer-Based.

In the Manual control mode, the module operates as a stand-alone unit, and the function performed is selected, set, and monitored using front-panel mounted controls and display. This mode provides access to all basic functions. In the Computer-Based control mode, the function performed by the module is selected, set, and monitored using the LVDAC-EMS software. In this mode, communication between the Four-Quadrant Dynamometer/Power Supply and the host computer running the LVDAC-EMS software is achieved through a USB connection. This mode provides access to all basic functions, as well as to additional advanced functions.

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6 Refer to the Computer Requirements in the System Specifications section of this datasheet if the computer is to be provided by the end-user.

Model 8960-B includes the Four-Quadrant Dynamometer/Power Supply, Model 8960-2, with the following function set activated:

• Standard Functions (Manual Control), Model 8968-1

Additional Equipment Required to Perform the Exercises

Qty DescriptionModel number

1 Personal Computer _____________________________________________________________________ 8990-05

Specifications

Parameter Value

Dynamometer Mode

Magnetic Torque 0 to 3 N·m (0 to 27 lbf·in)

Direction of Rotation CW / CCW

Speed 0 to 2500 r/min

Nominal Power 350 W

Power Supply Mode

DC Voltage 0 to ± 150 V

AC Voltage (RMS) 0 to 105 V (no-load)

DC Current 0 to ± 5 A

AC Current (RMS) 0 to 3.5 A

Maximum Output Power 500 W

AC Frequency 10 to 120 Hz

Control Functions

Activated Set Standard Functions (Manual Control), Model 8968-1

Liquid-Crystal Display (LCD) 76 mm (3 in), monochrome, background-illuminated, 240 x 160 dots

Control Inputs

Command Input 0 to ± 10 V

Thermistor Input 10 kΩ, type 1

Control Outputs

Shaft Encoder Quadrature encoder (A-B) - 360 pulses/revolution - TTL compatible

Torque Output Sensitivity 0.3 N·m/V (2.655 lbf·in/V)

Speed Output Sensitivity 500 r/min/V

Communication Port USB 2.0

Power Requirements 220 V - 3 A - 50 Hz, must include live, neutral, and ground wires

Physical Characteristics

Dimensions (H x W x D) 308 x 287 x 490 mm (12.1 x 11.3 x 19.3 in)

Net Weight 19.5 kg (43.0 lb)

6

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Standard Functions (Manual Control) 8968-10

The Standard Functions (Manual Control) control function set is a package of control functions that can be activated in the Four-Quadrant Dynamometer/Power Supply, Model 8960-2, enabling the module to perform a wide variety of functions in each of its two operating modes (Dynamometer and Power Supply).

The set allows only manual control of the functions. This means that the Four-Quadrant Dynamometer/Power

Supply operates as a stand-alone unit, and the function performed is selected, set, and monitored using front-panel mounted controls and display. The following control functions are available in the set:

Dynamometer operating mode

• Two-Quadrant, Constant-Torque Brake• Clockwise Prime Mover/Brake• Counterclockwise Prime Mover/Brake• Clockwise Constant-Speed Prime Mover/Brake• Counterclockwise Constant-Speed Prime Mover/Brake• Positive Constant-Torque Prime Mover/Brake• Negative Constant-Torque Prime Mover/Brake

Power Supply operating mode

• Positive Voltage Source• Negative Voltage Source• Positive Current Source• Negative Current Source• 50 Hz Power Source• 60 Hz Power Source• Lead-Acid Battery Float Charger

Specifications

Parameter Value

Control Functions

Control Functions Two-Quadrant, Constant-Torque Brake

Clockwise Prime Mover/Brake

Counterclockwise Prime Mover/Brake

Clockwise Constant-Speed Prime Mover/Brake

Counterclockwise Constant-Speed Prime Mover/Brake

Positive Constant-Torque Prime Mover/Brake

Negative Constant-Torque Prime Mover/Brake

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Parameter Value

Positive Voltage Source

Negative Voltage Source

Positive Current Source

Negative Current Source

50 Hz Power Source

60 Hz Power Source

200 V DC Bus

Lead-Acid Battery Float Charger

Two-Quadrant, Constant-Torque Brake

Torque 0-3 N·m (26.55 lbf·in)

Clockwise/Counterclockwise Prime Mover/Brake

Speed 0-2500 r/min

Clockwise/Counterclockwise Constant-Speed Prime Mover/Brake

Speed 0-2500 r/min

Positive/Negative Constant-Torque Prime Mover/Brake

Torque 0-3 N·m (26.55 lbf·in)

Positive/Negative Voltage Source

Voltage 0 V to 147 V / -147 V to 0 V

Positive/Negative Current Source

Current 0 A to 5 A / -5 A to 0 A

50 Hz/60 Hz Power Source

No-Load Voltage 0-140 V

200 V DC Bus

Status On or off

Lead-Acid Battery Float Charger

Float Voltage 0-150 V

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7 Required if power is not supplied by the Power Supply, Model 8821-2.8 Refer to the Computer Requirements in the System Specifications section of this datasheet if the computer is to be provided by the end-user. Note that only one computer is required per station.

Data Acquisition and Control Interface 9063-B0

The Data Acquisition and Control Interface (DACI) is a versatile USB peripheral used for measuring, observing, analyzing, and controlling electrical and mechanical parameters in electric power systems and power electronics circuits. For these purposes, a set of computer-based instruments as well as a variety of control functions are available for the DACI. These instruments and control functions are accessed through the

LVDAC-EMS software. The LVDAC-EMS software, as well as all available upgrades, is free and can be downloaded anytime on the Festo Didactic website.

Together, the DACI and the LVDAC-EMS software allow training in various areas such as electric power technology, ac/dc machines, renewable energy, transmission lines, and power electronics using modern and versatile measuring instruments and control functions. LVDAC-EMS also offers the possibility to use pre-built SCADA interfaces for several applications to ease the view and understanding of the process taking place. The user guide provided allows students to quickly become familiar with the instruments and control functions available.

Model 9063-B includes the DACI, Model 9063, with the following function set activated:

• Computer-Based Instrumentation Function, Model 9069-1

Manual

DescriptionManual number

Computer-Based Instruments for EMS (User Guide) _____________________________________________ 86718-E0

Optional Equipment

Qty DescriptionModel number

1 24 V AC Power Supply _________________________________________________________________ 30004-20

Additional Equipment Required to Perform the Exercises

Qty DescriptionModel number

1 Personal Computer _____________________________________________________________________ 8990-00

Specifications

7

8

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Parameter Value

Insulated Voltage Inputs (4)

Range (Low / High Scales) -80 to +80 V / -800 to + 800 V (user-selectable through software)

Impedance (Low / High Scales) 326.6 kΩ / 3.25 MΩ

Bandwidth DC to 65 kHz (-3 dB)

Accuracy 1% (dc to 10 kHz)

Insulation 800 V

Measurement Category CAT I (network voltage ≤ 240 V)

Insulated Current Inputs (4)

Range (Low / High Scales) -4 to +4 A / -40 to + 40 A (25 A rms)

Impedance (Low / High Scales) 50 mΩ / 5 mΩ

Bandwidth DC to 65 kHz (-3 dB)

Accuracy 1% (dc to 10 kHz)

Insulation 800 V

Measurement Category CAT I (network voltage ≤ 240 V)

Analog Inputs (8)

Voltage Range -10 to +10 V

Impedance > 10 MΩ

Bandwidth DC to 125 kHz

Measured Parameters User-selectable through software

Parameter-to-Voltage Ratio User-determined through software

A/D Converter for Insulated and Analog Inputs (16)

Type Successive approximation

Resolution 12 bits

Integral Non-Linearity ≤ ±1.5 LSB

Differential Non-Linearity ≤ ±1 LSB

Maximum Sampling Rate 600 ksamples/s (one channel)

FIFO Buffer Size 16 ksamples

Analog Outputs (2)

Voltage Range (2) -10 to +10 V

Operational Load Impedance > 600 Ω

D/A Converter for Analog Outputs (2)

Type Resistor string

Resolution 12 bits

Integral Non-Linearity ≤ ±8 LSB

Differential Non-Linearity -0.5 to +0.7 LSB

Digital Inputs (3)

Types Encoder (2), synchronization (1)

Signal Level 0-5 V (TTL compatible)

Maximum Input Frequency 50 kHz

Impedance 5 kΩ

Digital Outputs (9)

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Parameter Value

TypesControl (6 on a DB9 connector and 2 on 2 mm banana jacks), synchronization (1 on a DB9 connector)

Signal Level 0-5 V (TTL compatible)

Maximum Output Frequency 20 kHz (software-limited)

Impedance 200 Ω

Control Functions

Activated Set Computer-Based Instrumentation Function, Model 9069-1

Computer I/O Interface USB 2.0 full speed via type-B receptacle

Power Requirements 24 V - 0.4 A - 50/60 Hz

Accessories

Included Accessories 2 m USB interconnection cable (1)

24 V power cable (1)

2 mm banana plug test leads (3)

DB9 connector control cable (1)

Physical Characteristics

Dimensions (H x W x D) 154 x 287 x 410 mm (6.1 x 11.3 x 16.1 in)

Net Weight 3.9 kg (8.6 lb)

Computer-Based Instrumentation Function 9069-10

The Computer-Based Instrumentation Function, Model 9069-1, includes the following computer-based instruments:

• Metering• Data Table and Graph• Oscilloscope• Phasor Analyzer• Harmonic Analyzer

Specifications

Parameter Value

Metering

Number of Meters 18

Sampling Window 250 ms or user adjusted through software (11.4-819 ms)

Sampling Frequency (each meter) 7.68 kHz or user adjusted through software (1.25-22.4 kHz)

Display Type Digital or analog, user selectable through software

Oscilloscope

Number of Channels 8

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Parameter Value

Vertical Sensitivity 2-200 V/div.

Time Base 0.1 ms/div. to 10 s/div.

Sampling Window 20 x selected time base

Sampling Frequency512 samples per measured parameter per horizontal sweep, up to a maximum of 512 kHz

Phasor Analyzer

Voltage Sensitivity 2-200 V/div.

Current Sensitivity 0.05-5 A/div.

Sampling Window 2-614 ms

Sampling Frequency (Each Phasor) 10-512 kHz)

Harmonic Analyzer

Fundamental-Frequency Range 1-1400 Hz

Number of Harmonic Components 5 to 40, user selectable through software

Vertical Scale (Relative Scale) 0.1-10%/div.

Vertical Scale (Absolute Scale) 0.5-50 V/div., 0.01-1 A/div.

Sampling Window 10 ms to 15 s

Sampling Frequency 120 Hz to 180 kHz

Optional Equipment Description

Mobile Workstation (Optional) 8110-20

The Mobile Workstation is a ready-for-use workstation that consists of two fully assembled modules: a Workstation, Model 8134-2, mounted on a Mobile Storage Cabinet, Model 89117-1. Four rubber-tire swivel casters allow easy movement of the workstation in the laboratory classroom. The lower portion of the workstation serves as a storage cabinet with two hinged panels and a lock handle. Immediately above the storage cabinet is a pullout work surface with a scuff- and burn-resistant laminate finish. The upper portion of the workstation consists of three rows of compartments designed to house EMS modules. Two of these

rows have full-height compartments while the other row has half-height compartments. Each row of full-height compartments can accommodate up to three full-size EMS modules or six half-size EMS modules, whereas the row of half-height compartments can accommodate up to three half-size EMS modules.

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Module Installation

The EMS modules are guided into position along stainless steel guide rails. Separators between each bay of the workstation ensure perfect alignment of the EMS modules and allow their easy insertion in the workstation. A holding mechanism ensures that each EMS module stays in place once it is installed in a compartment of the workstation. Front-mounted push levers allow all EMS modules on a single row to be released for easy removal.

Safety Padlock Bars

Two safety padlock bars on the front of the workstation prevent students from removing EMS modules during laboratory exercises. The bars can be removed and locked to the side of the workstation when the safety lock is not necessary.

Additional Information

Six holes in the rear panel of the workstation allow connection to a power supply, as well as the connection of 2 kW machines to their interconnection modules. Assembly of the workstation before painting ensures that each EMS module in the workstation is correctly grounded.

Manual

DescriptionManual number

Electric Power Technology Training Equipment (User Guide) ______________________________________ 38486-E0

Optional Equipment

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9 This add-on workstation allows modules from the Industrial Controls Training Systems, Models 8036, to be installed in the EMS workstation. Refer to the 8036 datasheet for more information.10 This add-on workstation allows modules from the Industrial Controls Training Systems, Models 8036, to be installed in the EMS workstation. Refer to the 8036 datasheet for more information.

Qty DescriptionModel number

1 Industrial Controls Single-Rail Workstation ________________________________________________ 3105-A01 Industrial Controls Double-Rail Workstation ________________________________________________ 3105-B0

Specifications

Parameter Value

Physical Characteristics

Intended Location On the floor (stands on casters)

Dimensions (H x W x D) 1790 x 940 x 665 mm (70.5 x 37.0 x 26.2 in)

Net Weight 77.1 kg (170 lb)

Storage Shelves (Optional) 8150-10

The Storage Shelves module contains five shelves, each of which can accommodate four full-size EMS modules or eight half-size EMS modules. Stainless steel rails guide the modules on the storage shelves and protect them against wear. The Storage Shelves module requires assembly. A diagram is provided to facilitate assembly.

Optional Equipment

Qty DescriptionModel number

1 Dust Cover for Model 8150 _______________________________________________________________ 8992-00

Specifications

Parameter Value

Physical Characteristics

Intended Location On the floor

Dimensions (H x W x D) 1980 x 1225 x 480 mm (78 x 48.2 x 18.9 in)

Net Weight TBE

9

10

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Full-Size Blank EMS Module (Optional) 8160-00

The Full-Size Blank EMS Module is used to fill unused locations in a workstation, preventing students from accessing electrical or moving parts inside the other modules. Combined with the use of safety bars to prevent students from removing modules, blank EMS modules ensure student safety during lab exercises.

Specifications

Parameter Value

Physical Characteristics

Dimensions (H x W x D) 308 x 287 x 440 mm (12.1 x 11.3 x 17.3 in)

Net Weight TBE

Half-Size Blank EMS Module (Optional) 8161-00

The Half-Size Blank EMS Module is used to fill unused locations in a workstation, preventing students from accessing electrical or moving parts inside the other modules. Combined with the use of safety bars to prevent students from removing modules, blank EMS modules ensure student

safety during lab exercises.

Specifications

Parameter Value

Physical Characteristics

Dimensions (H x W x D) 154 x 287 x 440 mm (6.1 x 11.3 x 17.3 in)

Net Weight TBE

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Digital Tachometer (Optional) 8920-40

The Digital Tachometer is a high-quality instrument. It indicates motor rotation speed either in a clockwise or counterclockwise direction. The measured speed is automatically indicated on a five-digit display and is updated every second to enable measurement of acceleration and deceleration.

Coupling to the shaft of a motor is accomplished through a rubber tip attached to the Digital Tachometer. The optical sensor can also be used with a reflective tape to read motor

speed. Designed to fit comfortably in either the right or left hand, the tachometer is constructed to withstand years of rugged use.

Specifications

Parameter Value

Direction of Rotation CW and CCW

Speed Range 0.5-20 000 r/min

Accuracy 0.05% + 1 digit

Resolution (up to 999.9 r/min) 0.1 r/min

Resolution (1000 r/min and above)

1 r/min

Sampling Time 1 s (for speeds > 60 r/min)

Display 5 digits

Memory Hold Time 5 minutes after measurement

Power Four 1.5 V AA cells

Accessories IncludedRubber contact tip, rubber contact ring, instruction manual, storage case, reflective tape, and batteries

Physical Characteristics

Dimensions (H x W x D) 80 x 250 x 120 mm (3.1 x 9.8 x 4.7 in)

Net Weight 0.61 kg (1.34 lb)

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Computer-Assisted 0.2 kW Electromechanical Training System, LabVolt Series, 8006-15

34 © Festo Didactic

Speed Sensor / Tachometer (Optional) 8931-00

The Speed Sensor / Tachometer is a high-quality accessory of the 0.2 kW Electric Power/Controls training systems. It is a speed sensor providing a voltage proportional to speed as well as a tachometer indicating the measured speed on an analog scale. The tachometer makes it possible to measure the rotation speed of rotating

machines in any 0.2 kW Electromechanical Training System (EMS). The speed sensor can be used in any closed-loop control circuit that requires speed feedback to maintain the speed of an EMS machine constant.

The Speed Sensor / Tachometer consists of a permanent-magnet tachogenerator and an analog speed meter enclosed in a separate steel case. The tachogenerator is housed in an aluminum case which can be fastened to the front panel of any EMS machine. A mini-plug cable interconnects the tachogenerator to the speed meter through a mini jack mounted on its front panel. The Speed Sensor / Tachometer can measure speed in both directions and has two speed ranges. Two switches on the front panel of the speed meter allow selection of the direction of rotation and the speed range. A pair of 2 mm banana jacks, also on the front panel, provide a voltage proportional to speed (speed sensor output voltage).

Specifications

Parameter Value

Direction of Rotation CW and CCW

Speed Ranges 0-2500 r/min and 0-7500 r/min

Accuracy 2%

Tachogenerator

Output Voltage 7 V/1000 r/min

Armature Resistance 325 ΩInput Voltage Range ±15 V dc

Speed Sensor Output

Sensitivity 500 r/min / V

Voltage Range ±15 V

Impedance Less than 15 kΩPhysical Characteristics

Tachogenerator Dimensions (H x W x D)

51 x 115 x 150 mm (2.0 x 4.5 x 5.9 in)

Meter Case Dimensions (H x W x D) 110 x 102 x 110 mm (4.3 x 4.0 x 4.3 in)

Cable Length 1.8 m (6 ft)

Net Weight 1.0 kg (2.3 lb)

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Computer-Assisted 0.2 kW Electromechanical Training System, LabVolt Series, 8006-15

© Festo Didactic 35

Digital Multimeter (Optional) 8946-10

The Digital Multimeter consists of a Wens 20 Series (Safety Warning DMM) multimeter. It has the following characteristics:

• 40/41 range, 4000 Count Autoranging DMM• Widest (71 x 49 mm, 2.8 x 1.9"), High Visibility

Contrast LCD in its class• Overload protection on all ranges• Auto power off after 30 minutes• Relative mode• Auto/manual range selection mode• Data hold mode

• Temperature with 0.1 resolution, 0.1 measurement• True RMS measurement• High Accuracy, wide bandage frequency measurement (0.5-10 MHz, 0.001 resolution with 0.1% accuracy)• Duty cycle (%) display• Safety warning LCD annunciator displaying proper input holes, fuses blown out, warning messages

Personal Computer (Optional) 8990-05

The Personal Computer consists of a desktop computer running under

Windows® 7. A monitor, keyboard, and mouse are included.

Specifications

Parameter Value

Power Requirements

Current 1.05 A

Service Installation Standard single-phase ac outlet

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Computer-Assisted 0.2 kW Electromechanical Training System, LabVolt Series, 8006-15

36 © Festo Didactic

Reflecting the commitment of Festo Didactic to high quality standards in product, design, development, production, installation, and service, our manufacturing and distribution facility has received the ISO 9001 certification.

Festo Didactic reserves the right to make product improvements at any time and without notice and is not responsible for typographical errors. Festo Didactic recognizes all product names used herein as trademarks or registered trademarks of their respective holders. © Festo Didactic Inc. 2016. All rights reserved.

Festo Didactic SE

Rechbergstrasse 373770 DenkendorfGermany

P. +49(0)711/3467-0F. +49(0)711/347-54-88500

Festo Didactic Inc.

607 Industrial Way WestEatontown, NJ 07724United States

P. +1-732-938-2000F. +1-732-774-8573

Festo Didactic Ltée/Ltd

675 rue du CarboneQuébec QC G2N 2K7Canada

P. +1-418-849-1000F. +1-418-849-1666

www.labvolt.com

www.festo-didactic.com