Two Wheeler EV Working Model
Model No :-
Delivery: EXW
Minimum Order: 1 Set
Supply Ability: 30 Set / month
Country of Origin: Haryana, India
Note :- We provide products customized to your requirements.
Description
Purpose
The Two-Wheeler Electric Vehicle Working Model is designed to demonstrate the complete operation and working of an electric two-wheeler vehicle. It provides practical understanding of the interaction between the battery system, motor controller, traction motor, Battery Management System (BMS), throttle control, braking system, and communication systems. The model simulates real-world vehicle operating conditions and enables students to understand the functioning, monitoring, maintenance, and troubleshooting of modern electric scooters.
Educational Benefits
- Understanding of complete electric vehicle architecture.
- Study of battery, motor, controller, and BMS integration.
- Development of maintenance and troubleshooting skills for electric vehicles.
- Understanding of vehicle acceleration and braking systems.
- Understanding of real-time monitoring and diagnosis of electrical and battery parameters.
- Practical understanding of CAN-based communication between EV subsystems.
Features
- Simulation of real-world driving conditions including start, stop, acceleration, and braking events.
- Demonstration of vehicle acceleration characteristics under varying throttle inputs.
- Fault analysis and troubleshooting facilities.
- Fused electrical connections for enhanced protection.
- Trainer mounted on a panel fabricated from 40 × 40 mm aluminium profile.
- Designed for operation by students in standing position.
- All electrical connections brought out through 4 mm safety sockets.
- Suitable/compatible EV charger supplied along with the trainer.
- Integrated data logging and display for real-time motor and battery diagnostics.
- Provision for wireless monitoring of electrical parameters through Bluetooth and/or Wi-Fi connectivity.
Technical Specifications
| Parameter | Description/Specification |
|---|---|
| Battery Pack | Lithium-Ion Battery, 48V, 50Ah |
| Motor & Loading Mechanism | Hub motor with loading system, minimum 1200W |
| Smart BMS | 13S Smart BMS integrated with Android-based application |
| Controller | 50 Amp controller |
| Monitoring & Display | Data logger with display screen for real-time motor and battery diagnostics |
| Data Acquisition System | PC-based interface with minimum i3 system configuration for graphical analysis |
| Control Interface | Hand throttle, braking system, and acceleration mechanism integrated with test platform |
| Communication Protocols | CAN-based communication between BMS, controller, and display unit |
| Workbench & Structure | Integrated cabinet with rigid platform for secure mounting of all components |
| Connectivity | Provision for wireless monitoring of electrical parameters through Bluetooth and/or Wi-Fi connectivity |
| Panel Construction | Aluminium profile, 40 × 40 mm |
| Electrical Connections | All connections brought out through 4 mm safety sockets |
| Protection | Fused electrical connections |
| EV Charger | Suitable/compatible EV charger supplied along with the trainer |
Learning Outcomes
The trainer enables students to simulate real-world operating scenarios for electric two-wheelers and develop practical skills in EV operation, maintenance, monitoring, and troubleshooting. It provides data-driven insights into battery and motor performance and facilitates hands-on understanding of electric vehicle architecture, control systems, communication, acceleration, braking, and diagnostic techniques.

