Automotive Training Equipment

Automotive Training Equipment

DLQC-XNY03 Solar Electric Vehicle Teaching Board

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MODEL: DLQC-XNY03

1. External Power Supply: AC 220V ±10%, 50Hz

2. Operating Voltage: DC 12V

3. Operating Temperature: -40°C to +50°C

4. Dimensions: 1240 × 600 × 1700 mm (Length × Width × Height)


DLQC-XNY03 Solar Electric Vehicle Teaching Board

Details introduction

Overview

1. The DLQC-XNY03 Solar Electric Vehicle Teaching Board comprehensively demonstrates the solar battery management system of an electric vehicle, dynamically simulating its operational status and working processes.

2. The teaching board panel utilizes 4mm-thick advanced aluminum-plastic composite material that is corrosion-resistant, impact-resistant, stain-resistant, fire-retardant, and moisture-proof. Its surface undergoes a special primer coating process; the panel features permanently printed, fade-resistant color circuit diagrams and schematic diagrams of working principles. Students can visually compare the structural schematic of the EV solar battery management system with the physical components to understand and analyze its operational principles.

3. The teaching board panel incorporates an ignition switch, solar panel, sunlight simulator, solar management module, battery, DA/DA conversion circuit, and control switches.

4. The panel section utilizes a 1.5mm cold-rolled steel plate stamped structure with an aesthetically pleasing design; The base frame utilizes welded steel construction with a spray-coated finish, featuring self-locking casters. The teaching board base includes a 30cm-wide tabletop for placing documents, lightweight testing instruments, etc.

5. The teaching board operates on standard 220V AC power, which is internally transformed and rectified into 12V DC power. No battery is required, eliminating charging hassles. The 12V DC power supply includes short-circuit protection.


Features

1. External Power Supply: AC 220V ±10%, 50Hz

2. Operating Voltage: DC 12V

3. Operating Temperature: -40°C to +50°C

4. Dimensions: 1240 × 600 × 1700 mm (Length × Width × Height)


Training projects

1. Solar Cell Power Generation Principle Experiment

2. Differences in Solar Cell Performance Under Various Light Sources

3. Temperature Effects on Solar Cell Performance

4. Open-Circuit Voltage and Short-Circuit Current at Different Irradiance Levels

5. Series Connection of Solar Cells

6. Shading Effects in Series-Connected Solar Cells

7. Parallel Connection of Solar Cells

8. Shading Effects in Parallel-Connected Solar Cells

9. Voltage-Current Characteristic Curve of Solar Cells

10. Solar Cell/Battery Charge-Discharge Control Experiment

11. Solar Cell/DA-DA Boost Charging for Electric Vehicles Experiment

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