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EV vehicle electric motor educational trainer MSEM01

EV vehicle electric motor educational trainer MSEM01

AutoEDU
Product number: MSEM01
ASE category: L3
  • Manual crank for simulating rotor rotation and power generation.
  • Integrated LED strip indicating power output through brightness and color change.
  • Three-phase output terminals (U, V, W) for oscilloscope connection and waveform analysis.
  • Cross-section view of rotor, stator, windings, and shaft components.
  • Transparent protective cover over high-voltage terminals and connections.
  • Industrial-grade aluminum frame for stability and classroom durability.
  • Visible EV motor cooling paths.
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Description

Manually operated educational trainer designed to demonstrate the principles of three-phase electric power generation. Built using an original electric motor from a Nissan Leaf EV, this unit allows students to simulate real-world electromagnetic induction by manually rotating the rotor. It combines mechanical interaction, waveform analysis, and clear structural visibility for comprehensive electric drive system training.

Specifications

  • Motor Type: Nissan Leaf EV permanent magnet synchronous motor (PMSM).
  • Simulation Type: Manual rotation with mechanical crank.
  • Voltage Output: Low-voltage three-phase AC (non-powered, safe manual simulation).
  • Terminals: U, V, W – 4mm safety socket type for measurement.
  • Measurement Support: Compatible with oscilloscopes and multimeters.
  • LED Indicator: Color-changing linear strip (visualizes relative power level).
  • Safety: Transparent polycarbonate cover for high-voltage terminal protection.
  • Frame: Aluminum profile with rubber feet for lab stability.
  • Dimensions (approx.): 700 x 500 x 450 mm.
  • Weight (approx.): 25 kg.
  • Product number: MSEM01

Value for Students

  • Physically simulates how mechanical motion converts to electrical energy.
  • Enables real-time observation of three-phase signal generation.
  • Visualizes electrical output in response to user-controlled crank speed.
  • Supports connection of standard diagnostic tools (oscilloscope, multimeter).
  • Reinforces core concepts of EV motor structure and function.

Value for Instructors

  • Clear demonstration of electromagnetic induction in a safe, non-powered format.
  • Allows for waveform comparison between different crank speeds.
  • Durable construction suited for repeated classroom use.
  • Transparent design helps explain internal motor components and wiring.
  • Supports structured experiments and practical lab tasks.

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