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MOTORS, GENERATORS AND TRANSFORMERS CONSTRUCTION APPLICATION - AEL-MGTC

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The Motors, Generators and Transformers Construction Application, "AEL-MGTC" has been designed by EDIBON for theoretical and practical training in the field of electromechanical construction of electrical machines such as DC motors, AC motors, single-phase and three-phase transformers.

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The Motors, Generators and Transformers Construction Application, "AEL-MGTC" has been designed by EDIBON for theoretical and practical training in the field of electromechanical construction of electrical machines such as DC motors, AC motors, single-phase and three-phase transformers.

This application offers various levels of training that will provide the user with essential knowledge and skills on the fundamental principles of the construction and commissioning of electric machines. For this purpose, this application includes a specific manual explaining the design, manufacture, construction and winding of electric motors, generators and transformers. A manual winding machine and different sizes of copper wire are included to perform winding practices on the motors and transformers acquired. The Manual Winding Machine for Motors and Transformers, "MWMT", has several molds for the construction of windings with different sizes. Once the windings have been constructed, the user will proceed to place them in the corresponding electrical machines and verify their operation.

This application provides a variable power supply, a multimeter for the verification of the electrical parameters of the machines, copper wire coils of different sizes and a toolbox for the assembly and construction of the acquired machines. In addition, a compass is provided for the verification of the proper functioning of the magnetic fields after the assembly of the windings. In this way, the user will be involved from the beginning in the design of the electrical machine, from the manufacturing of the windings to its final commissioning.

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  1. Verification of the N-VPS01 variable power supply.

Some possible practices with the MGTC-K1. Construction of a DC Motor-Generator Kit.

  1. Construction of the windings using a manual winding machine.
  2. Arrangement of the windings in the stator.
  3. Start-up of the DC Motor-Generator.
  4. Wiring of the DC electric motor.
  5. Change of direction of rotation of the DC machine.

Some possible practices with the MGTC-K2. Construction of a Three-Phase Asynchronous Motor of Squirrel Cage Kit.

  1. Construction of the windings using a manual winding machine.
  2. Placement of the windings in the stator.
  3. Commissioning of the Three-Phase Squirrel Cage Asynchronous Motor.
  4. Wiring of the Three-Phase Asynchronous Squirrel Cage Motor.

Some possible practices with the MGTC-K3. Construction of a Three-Phase Reluctance Motor Kit.

  1. Construction of the windings using a manual winding machine.
  2. Placement of the windings in the stator.
  3. Start-up of the Three-Phase Reluctance Motor.
  4. Wiring of the Three-Phase reluctance motor.

Some possible practices with the MGTC-K4 Construction of a Three-Phase Asynchronous Motor with Wound Rotor.

  1. Construction of the windings using a manual winding machine.
  2. Placement of the windings in the stator.
  3. Start-up of the Wound Rotor Three-Phase Asynchronous Motor.
  4. Wiring of the Wound Rotor Three-Phase Asynchronous Motor.

Some possible practices with the MGTC-K5. Construction of a Three-Phase Synchronous Motor.

  1. Construction of the windings using a manual winding machine.
  2. Placement of the windings in the stator.
  3. Start-up of the Three-Phase Synchronous Motor.
  4. Wiring of the Three-phase Synchronous Motor.

Some possible practices with the MGTC-K6. Construction of a Three-Phase Transformer Kit.

  1. Construction of the windings using a manual winding machine.
  2. Placement of the windings in the transformer core.
  3. Start-up of the Three-Phase transformer.
  4. Wiring of the Three-Phase transformer according to different configurations.
  5. Transformer ratio calculation according to different configurations.
  6. Voltage drop calculations with resistive, inductive and capacitive loads.

Some possible practices with the MGTC-K7. Construction of a Single-Phase Transformer Kit.

  1. Construction of the windings using a manual winding machine.
  2. Placement of the windings in the transformer core.
  3. Start-up of the Single-Phase transformer.
  4. Wiring of the Single-Phase transformer.
  5. Transformer Ratio Calculation.
  6. Voltage drop calculations with resistive, inductive and capacitive loads.
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