T-M278 Solar Street Light DIY Learning Kit
The T-M278 Solar Street Light DIY Learning Kit is a hands-on educational project designed to teach students fundamental principles of solar energy, power conversion, and automatic lighting systems. Learners assemble a functional solar-powered street light that automatically turns on in the dark and off in daylight, simulating real-world smart lighting technology used in modern outdoor lighting.
Key Features
- DIY assembly to develop practical electronics and wiring skills
- Educational design that demonstrates solar energy conversion and light sensor control
- Eco-friendly focus to promote renewable energy awareness and sustainability
- Beginner to intermediate circuit complexity, perfect for classroom use
- Includes pre-selected components to simplify learning and testing
Package Includes
- 2 x Solar Panels
- LED Street Light Module
- Wooden or Acrylic Mounting Frame
- Wires and Connectors Set
- Screws and Hardware Accessories
- Instruction Manual with assembly and testing guidance
Specifications
- Operating Voltage: 3-6V DC
- Solar Panel Output: 2V-5V depending on sunlight
- Light Source: High-brightness white LED
- Material: Wooden or acrylic base plus electronic components
- Assembly Time: 45-60 minutes
- Skill Level: Beginner to intermediate
Educational Benefits
- Understand conversion of solar energy into electrical energy
- Learn how light sensors control automatic lighting systems
- Build foundational knowledge of circuits, power conversion, and LEDs
- Encourage creativity, problem solving, and teamwork in STEM activities
- Support environmental education with a focus on renewable energy solutions
Assembly and Classroom Use
The kit is suitable for guided classroom projects, after-school STEM clubs, and science fairs. Recommended assembly steps:
- Unpack components and review the instruction manual.
- Mount the solar panels and LED module on the frame.
- Connect wiring and sensors following the wiring diagram.
- Test the system under daylight and low-light conditions to verify automatic switching.
- Troubleshoot common issues such as loose connections or insufficient sunlight.
Applications
- STEM education and hands-on learning projects
- Science fair demonstrations and displays
- Environmental education and renewable energy workshops
- Hobbyist projects and introductory electronics training
Note: Images are for illustration purposes only.












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