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TRANSPARENT AND FUNCTIONAL MOTORS APPLICATION - AEL-FTM

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The Transparent and Functional Motors Application "AEL-FTM" has been designed by EDIBON for the formation at theoretical-practical and functional levels about the electric rotating machines.

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The Transparent and Functional Motors Application "AEL-FTM" has been designed by EDIBON for the formation at theoretical-practical and functional levels about the electric rotating machines.

This application offers several study options which will provide the user of the knowledge, at a functional level, of the electric motors. For this purpose, the application includes a specific manual explaining, at theoretical level, the relative aspects to the electric machines. The theme covers from the parts that form different types of electric machines to how their operations are. Furthermore, a set of both optional transparent motors and modules are provided for the study of the same from a practical point of view.

The "AEL-FTM" application offers a series of requered electric transparent motors: DC Independent Excitation Motor-Generator, DC Series Excitation Motor-Generator, DC Shunt Excitation Motor-Generator, DC Compound Excitation Motor-Generator, DC Serie/Shunt/ Compound Excitation Motor-Generator, Independent Excitation 3PH Synchronous Motor-Generator, 3PH Squirrel-Cage Industrial Motor, 3PH Wound Motor Study Kit, Dahlander Motor, 2 speeds, 3PH Squirrel-Cage Motor, 2 speeds, Universal Motor, DC Permanent Magnet Motor, 1PH Squirrel-Cage Motor with Starting Capacitor, 1PH Squirrel-Cage Motor with split phase, 3PH Reluctance Motor, 1PH Squirrel- Cage Motor with Starting Capacitor, 1PH Squirrel-Cage Motor with Starting and Running Capacitor and 1PH Shaded Pole Motor.

In addition, a set of modules are recommended with each electric machine in order to put into operation each one. Besides, it is possible to visualize in dynamic regime the inside of each transparent motor through the stroboscope.

One of the advantages of this application is that is included a stroboscope to visualize the rotor in operation. This technique is employed frequently in the industry to calibrate or repair the unit. In addition, with the modules which are offered in each option, can be done speed regulation tests and in some cases to study the drop voltage produced by the loads.

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Some practical possibilities with Transparent and Functional DC Independent Excitation Motor-Generator Study Kit (EMT1-T-DC-KIT).

  1. Wiring and starting of the DC Independent Excitation Motor-Generator.
  2. Speed control of the DC Independent Excitation Motor-Generator.
  3. Visualization of the rotor rotating.
  4. Visualization of the internal elements of the motor.
  5. Usage of the stroboscope for the static visualization of the rotor.
  6. Change of direction of rotation of the DC Motor-Generator with Independent Excitation.
  7. Excitation current control.

Some practical possibilities with Transparent and Functional DC Series Excitation Motor-Generator Study Kit (EMT2-T-DC-KIT).

  1. Wiring and starting of the DC Series Excitation Motor-Generator.
  2. Speed control of the DC Series Excitation Motor-Generator.
  3. Visualization of the rotor rotating.
  4. Visualization of the internal elements of the motor.
  5. Usage of the stroboscope for the static visualization of the rotor.
  6. Change of direction of rotation of the DC Series Excitation Motor-Generator.
  7. Excitation current control.

Some practical possibilities with Transparent and Functional DC Shunt Excitation Motor-Generator Study Kit (EMT3-T-DC-KIT).

  1. Wiring and starting of the DC Shunt Excitation Motor-Generator.
  2. Speed control of the DC Shunt Excitation Motor-Generator.
  3. Visualization of the rotor rotating.
  4. Visualization of the internal elements of the motor.
  5. Usage of the stroboscope for the static visualization of the rotor.
  6. Change of direction of rotation of the DC Shunt Excitation Motor-Generator.
  7. Excitation current control.

Some practical possibilities with Transparent and Functional DC Compound Excitation Motor-Generator Study Kit (EMT4-T-DC-KIT).

  1. Wiring and starting of the DC Compound Excitation Motor-Generator.
  2. Speed control of the DC Compound Excitation Motor-Generator.
  3. Visualization of the rotor rotating.
  4. Visualization of the internal elements of the motor.
  5. Usage of the stroboscope for the static visualization of the rotor.
  6. Change of direction of rotation of the DC Compound Excitation Motor-Generator.
  7. Excitation current control.

Some practical possibilities with Transparent and Functional DC Serie/Shunt/Compound Excitation Motor-Generator Study Kit (EMT5-T-DC-KIT).

  1. Wiring and starting of the DC Serie/Shunt/Compound Excitation Motor-Generator.
  2. Speed control of the DC Serie/Shunt/Compound Excitation Motor-Generator.
  3. Visualization of the rotor rotating.
  4. Visualization of the internal elements of the motor.
  5. Usage of the stroboscope for the static visualization of the rotor.
  6. Change of direction of rotation of the DC Serie/Shunt/Compound Excitation Motor-Generator.
  7. Excitation current control.

Some practical possibilities with Transparent and Functional Independent Excitation 3PH Synchronous Motor-Generator Study Kit (EMT6-T-AC-KIT).

  1. Checking the main power supply.
  2. Wiring and starting of the Independent Excitation 3PH Synchronous Motor-Generator.
  3. Visualization of the rotor rotating.
  4. Visualization of the internal elements of the motor.
  5. Usage of the stroboscope for the static visualization of the rotor.
  6. Study of drop voltage of Independent Excitation 3PH Synchronous Motor-Generator.

Some practical possibilities with Transparent and Functional 3PH Squirrel-Cage Motor Study Kit (EMT7-T-AC-KIT).

  1. Checking the main power supply.
  2. Wiring and starting of the 3PH Squirrel-Cage Industrial Motor.
  3. Visualization of the rotor rotating.
  4. Visualization of the internal elements of the motor.
  5. Usage of the stroboscope for the static visualization of the rotor.
  6. Manual reversing operations of the 3PH Squirrel-Cage Industrial Motor.

Some practical possibilities with Transparent and Functional 3PH Wound Motor Study Kit (EMT8-T-AC-KIT).

  1. Checking the main power supply.
  2. Wiring and starting of the 3PH Wound Motor.
  3. Visualization of the rotor rotating.
  4. Visualization of the internal elements of the motor.
  5. Usage of the stroboscope for the static visualization of the rotor.
  6. Manual reversing operations of the 3PH Wound Motor.

Some practical possibilities with Transparent and Functional Dahlander Motor, 2 speeds Study Kit (EMT9-T-AC-KIT).

  1. Checking the main power supply.
  2. Wiring and starting of the Dahlander Motor, 2 speeds.
  3. Visualization of the rotor rotating.
  4. Visualization of the internal elements of the motor.
  5. Usage of the stroboscope for the static visualization of the rotor.
  6. Manual reversing operations of the Dahlander Motor, 2 speeds.
  7. Manual speed variation of a Dahlander Motor, 2 speeds.

Some practical possibilities with Transparent and Functional 3PH Squirrel-Cage Motor, 2 speeds Study Kit (EMT10-T-AC-KIT).

  1. Checking the main power supply.
  2. Wiring and starting of the 3PH Squirrel-Cage Motor, 2 speeds.
  3. Visualization of the rotor rotating.
  4. Visualization of the internal elements of the motor.
  5. Usage of the stroboscope for the static visualization of the rotor.
  6. Manual reversing operations of the 3PH Squirrel-Cage Motor, 2 speeds.
  7. Manual speed variation of 3PH Squirrel-Cage Motor, 2 speeds.

Some practical possibilities with Transparent and Functional Universal Motor Study Kit (EMT12-T-DC-KIT).

  1. Checking the main power supply.
  2. Wiring and starting of the Universal Motor.
  3. Visualization of the rotor rotating.
  4. Visualization of the internal elements of the motor.
  5. Usage of the stroboscope for the static visualization of the rotor.
  6. Manual reversing operations of the Universal Motor.

Some practical possibilities with Transparent and Functional DC ermanent Magnet Motor Study Kit (EMT15-T-DC-KIT).

  1. Wiring and starting of the DC Permanent Magnet Motor.
  2. Speed control of the DC Permanent Magnet Motor.
  3. Visualization of the rotor rotating.
  4. Visualization of the internal elements of the motor.
  5. Usage of the stroboscope for the static visualization of the rotor.
  6. Change of direction of rotation of the DC Permanent Magnet Motor.
  7. Excitation current control.

Some practical possibilities with Transparent and Functional 1PH Squirrel-Cage Motor with split phase Study Kit (EMT20-T-AC-KIT).

  1. Checking the main power supply.
  2. Wiring and starting of 1PH Squirrel-Cage Motor with split phas.
  3. Visualization of the rotor rotating.
  4. Visualization of the internal elements of the motor.
  5. Usage of the stroboscope for the static visualization of the rotor.
  6. Manual reversing operations of the 1PH Squirrel-Cage Motor with split phas.

Some practical possibilities with Transparent and Functional 3PH Reluctance Motor Study Kit (EMT21-T-AC-KIT).

  1. Checking the main power supply.
  2. Wiring and starting of 3PH Reluctance Motor.
  3. Visualization of the rotor rotating.
  4. Visualization of the internal elements of the motor.
  5. Usage of the stroboscope for the static visualization of the rotor.
  6. Manual reversing operations of the 3PH Reluctance Motor.

Some practical possibilities with Transparent and Functional 1PH Squirrel-Cage Motor with Starting Capacitor (EMT11-T).

  1. Checking the main power supply.
  2. Wiring and starting of the 1PH Squirrel-Cage Motor with Starting Capacitor.
  3. Visualization of the rotor rotating.
  4. Visualization of the internal elements of the motor.
  5. Usage of the stroboscope for the static visualization of the rotor.
  6. Manual reversing operations of the 1PH Squirrel-Cage Motor with Starting Capacitor.

Some practical possibilities with Transparent and Functional 1PH Squirrel-Cage Motor with Starting and Running Capacitor (EMT16-T).

  1. Checking the main power supply.
  2. Wiring and starting of 1PH Squirrel-Cage Motor with Starting and Running Capacitor.
  3. Visualization of the rotor rotating.
  4. Visualization of the internal elements of the motor.
  5. Usage of the stroboscope for the static visualization of the rotor.
  6. Manual reversing operations of the 1PH Squirrel-Cage Motor with Starting and Running Capacitor.

Some practical possibilities with Transparent and functional 1PH Shaded Pole Motor (EMT22-T).

  1. Checking the main power supply.
  2. Wiring and starting of 1PH Shaded Pole Motor.
  3. Visualization of the rotor rotating.
  4. Visualization of the internal elements of the motor.
  5. Usage of the stroboscope for the static visualization of the rotor.
  6. Manual reversing operations of the 1PH Shaded Pole Motor.
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