Motor Generator Model Experiment Set
Product Code : JL-LEP-10419
The Motor Generator Model Experiment Set (SKU JL-LEP-10419) demonstrates conversion between electrical and mechanical energy, working as a 6–12 V DC motor or, when its armature is turned by the large drive pulley, as a generator. A selectable split-ring and slip-ring commutator lets this motor generator model give DC or AC output without changing rotor direction. It is built on a wooden base with a permanent-magnet stator, and JaincoLab manufactures it in India.
Specifications
The model has a rotor of at least 68 mm diameter on an 8 mm shaft running concentrically in a permanent-magnet stator, a selectable split-ring and slip-ring commutator, labelled motor-input and generator-output binding posts, a 168 mm plastic drive pulley, a 26 mm nickel-plated steel driven pulley, and a wooden base of at least 200 × 300 × 19 mm.
| Product | Motor Generator Model Experiment Set |
| SKU | JL-LEP-10419 |
| Purpose | Demonstrates conversion between electrical and mechanical energy as a motor or a generator |
| Motor mode | DC motor, runs on 6 V to 12 V |
| Generator mode | Generates when the armature is rotated; AC or DC output set by the commutator |
| Commutator | Selectable split-ring and slip-ring commutator; AC or DC output without changing rotor direction |
| Binding posts | Labelled “motor input: 6 V–12 VDC” and “generator output”; no indicator bulbs |
| Rotor and stator | Rotor concentric with the stator for an equal air gap; stator field from a permanent magnet |
| Stator colour | Single colour other than blue or red |
| Armature diameter | 68 mm minimum |
| Armature shaft | 8 mm minimum diameter, rigidly mounted |
| Drive pulley | Plastic, 168 mm minimum diameter |
| Driven pulley | Nickel-plated steel, 26 mm minimum diameter |
| Base | Wooden board, at least 200 × 300 × 19 mm |
| Specification reference | As per DepEd guidelines |
Applications of the motor generator model
The same machine is run first as a motor from a low-voltage DC supply and then as a generator by turning the drive pulley, so students see directly that motors and generators are the same device used in opposite directions.
- Running the model as a DC motor from a 6–12 V supply
- Turning the drive pulley to generate electricity and measure the output
- Switching between split-ring and slip-ring commutators to compare DC and AC output
- Explaining the roles of the armature, stator field and commutator
- Electromagnetism and energy conversion lessons in secondary and college physics
Scope of supply
The listing covers the motor generator model on its wooden base, with both commutators and pulleys, as described in the specification table. Power supply, meters and quantities are confirmed on the quotation.
Packing, MOQ and lead time
The quotation sets the MOQ, lead time and packing for the number of models and the delivery destination. JaincoLab supplies physics laboratories, colleges, TVET centres and export buyers in Africa, the Middle East and South and South-East Asia.
Frequently asked questions
What voltage does the model need as a motor?
It runs as a DC motor on 6 V to 12 V.
How does it work as a generator?
It generates when the armature is rotated by the drive pulley; the output is AC or DC depending on the commutator setting.
Can it give both AC and DC?
Yes. The selectable split-ring and slip-ring commutator gives AC or DC output without changing rotor direction.
What are the key dimensions?
Armature at least 68 mm, shaft at least 8 mm, drive pulley at least 168 mm and wooden base at least 200 × 300 × 19 mm.
What should a quotation request include?
Send the SKU JL-LEP-10419, the number of models and the delivery destination.
Related products
Electromagnetism items often ordered with the motor generator model:
More electromagnetism apparatus is listed in the Laboratory Equipment Products range of JaincoLab, a physics lab equipment manufacturer in India.
Request a quote
To order the Motor Generator Model Experiment Set, send the number of models and the delivery destination through the JaincoLab contact page or email [email protected].
