Three 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 Three-Wheeler Electric Vehicle Working Model is designed to demonstrate the complete operation and functioning of an electric three-wheeler vehicle. It provides practical understanding of the interaction between the battery system, motor controller, BLDC traction motor, Battery Management System (BMS), throttle control, braking system, and electrical components. The model simulates actual vehicle operating conditions and helps students understand the operation, maintenance, safety, and troubleshooting of modern electric three-wheelers.
Educational Benefits
- Understanding the architecture and working of electric three-wheelers.
- Practical exposure to BLDC motor operation and control.
- Understanding acceleration and braking systems in three-wheeler EVs.
- Understanding battery charging and energy management.
- Developing practical skills in EV fault analysis and troubleshooting.
- Understanding electrical safety protocols and emergency procedures.
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 safety.
- Suitable/compatible EV charger supplied along with the trainer.
- 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.
- Provision for wireless monitoring of electrical parameters through Bluetooth and/or Wi-Fi connectivity.
- Provision for load simulation under different driving conditions.
Technical Specifications
| Parameter | Description/Specification |
|---|---|
| Vehicle Frame | Open chassis structure of a standard 3-wheeler EV for educational demonstration |
| Motor | BLDC Motor, minimum 1.5 kW, 48V, 3000 RPM |
| Battery Pack | LFP Battery, 48V, minimum 30Ah capacity |
| Controller | 50 A controller |
| DC–DC Converter | 48V–12V, 10 A |
| Battery & Charger | 48V, 30Ah LFP battery (minimum), with charger |
| Electrical Components | Harness, lighting system, indicators, horn, circuit breaker, and throttle |
| Control and Simulation Features | Acceleration, braking, and load simulation under different driving conditions |
| Learning Modules | Hands-on training in motor behavior, fault analysis, safety protocols, and emergency procedures |
| Connectivity | Provision for wireless monitoring of electrical parameters through Bluetooth and/or Wi-Fi connectivity |
| Safety Provisions | Fused connections, visible circuit paths, and manual cut-off options for safe operation |
| Panel Construction | Aluminium profile, 40 × 40 mm |
| Electrical Connections | All connections brought out through 4 mm safety sockets |
| EV Charger | Suitable/compatible EV charger supplied along with the trainer |
Learning Outcomes
The trainer enables students to gain practical experience with the architecture and operation of electric three-wheelers. It facilitates hands-on learning of BLDC motor behavior, controller operation, battery charging and energy management, acceleration and braking, load simulation, electrical safety, fault analysis, troubleshooting, and emergency procedures. The wireless monitoring facility further enables students to understand real-time observation of electrical parameters and EV system performance.

