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Stoplight 3D Kit

$12.45

The 3D Stoplight Kit with micro:bit by StemAids is an educational STEM kit designed to help students learn block programming, electronic assembly, LED control, soldering, and project-based technology concepts. It demonstrates how a simple position light can be transformed into an automatic stop or brake light using a programmable micro:bit controller.

This kit is suitable for classroom activities where students need to understand how sensors, switches, programmed logic, and LED indicators work together in a real technical system. The 24 RGB LED ring can be programmed to show different light signals, colour effects, alert patterns, and stoplight indications.

The kit includes a micro:bit V2 board, making it suitable for schools that want a ready-to-program learning set. It is supplied ready to assemble and solder, while the required 3D printed body parts are not included and may need to be printed or purchased separately.

Key Features

  • Educational 3D stoplight model for micro:bit-based STEM learning
  • Includes micro:bit V2 board for programming and project control
  • Includes 24 RGB LED ring for programmable light indication
  • Helps students learn block programming and electronic output control
  • Useful for demonstrating automatic stoplight or brake-light logic
  • Includes switch, battery pack, cables, screws, and plexiglass machining
  • Supports hands-on assembly and soldering practice
  • 3D printed parts are not included and may need to be arranged separately
  • Suitable for STEM labs, robotics labs, technology classrooms, and coding workshops

Product Specifications

Product Name 3D Stoplight Kit with micro:bit
Brand StemAids
Product Type Educational Stoplight / Brake-Light STEM Kit
Controller Board micro:bit V2 board included
Lighting Module 24 RGB LED ring
Control Component Switch included
Power Components LR03 battery pack, 9V battery clip, and set of 4 LR06 batteries
Mechanical Material 3 mm plexiglass machining
Assembly Accessories Set of cables and set of screws
3D Printed Parts Not included; required 3D printed parts may need to be printed or purchased separately
Assembly Requirement Delivered ready to assemble and solder
Programming Method Block programming using a micro:bit-compatible coding platform such as MakeCode
Main Function Programmable automatic stoplight or brake-light demonstration model
Learning Concepts Block Programming, LED Control, Switch Input, Electronics Assembly, Soldering, Design Thinking, Project-Based Learning
Recommended Use School STEM Labs, Coding Classes, Technology Workshops, Robotics Labs, Innovation Projects
User Level Beginner to Intermediate, with teacher supervision for soldering

Kit Contents

  • One micro:bit V2 board
  • One 24 RGB LED ring
  • One switch
  • One LR03 battery pack
  • One 9V battery clip
  • One set of 4 LR06 batteries
  • One 3 mm plexiglass machining
  • One set of cables
  • One set of screws
  • Note: 3D printed body parts are not included in the standard kit
  • Note: 3D files or compatible printed models may need to be arranged separately depending on classroom requirements

How to Use 3D Stoplight Kit with micro:bit

  1. Check All Components: Verify the micro:bit V2 board, RGB LED ring, switch, battery pack, 9V battery clip, LR06 batteries, plexiglass part, cables, screws, and assembly accessories.
  2. Prepare the 3D Printed Parts: Since 3D printed body parts are not supplied, print the required parts separately or use compatible printed parts if available.
  3. Assemble the Stoplight Body: Fit the plexiglass, LED ring, switch, and supporting parts into the stoplight structure according to the supplied assembly guide.
  4. Complete Soldering and Wiring: Connect the required wires carefully and complete soldering under teacher or trainer supervision.
  5. Connect the micro:bit Board: Connect the micro:bit V2 board to the stoplight circuit as per the wiring instructions.
  6. Open the Programming Platform: Use a micro:bit-compatible block programming platform such as MakeCode.
  7. Create the Stoplight Program: Program the RGB LED ring to show position light, stoplight, warning light, or automatic brake-light sequences.
  8. Upload the Program: Transfer the program to the micro:bit V2 board and connect the power supply correctly.
  9. Test the Model: Use the switch or programmed condition to check whether the light changes according to the stoplight logic.
  10. Improve the Project: Modify colours, timing, brightness, flashing pattern, and control logic to create different traffic, vehicle-light, or safety-signal demonstrations.

Educational Benefits

The StemAids 3D Stoplight Kit with micro:bit helps students understand how programmable electronics are used in real safety and signalling systems. It combines coding, assembly, soldering, LED control, electrical connection, and project-based problem solving in one classroom activity.

Students can learn how a programmed controller reads input and produces a visible output through LED signals. Teachers can use this kit to explain stoplight logic, brake-light operation, colour-coded warning systems, sequencing, timing control, and technical design improvement.

Applications

  • Automatic stoplight classroom demonstration
  • Vehicle brake-light model project
  • micro:bit block programming activity
  • RGB LED control experiment
  • Switch input and output control learning
  • Traffic signal and safety-light model
  • STEM electronics and soldering project
  • 3D printing and electronics integration activity
  • Technology classroom project-based learning
  • Innovation lab demonstration model

Why Choose StemAids 3D Stoplight Kit with micro:bit?

StemAids provides practical STEM learning products that help schools teach coding, electronics, robotics, design thinking, and technology through working models. The 3D Stoplight Kit with micro:bit by StemAids is designed to make programming and electronics easier to understand through a real-world signalling project.

This kit is valuable for institutions because it includes the micro:bit V2 board and key electronics required for the stoplight activity. Students can assemble the model, program the LED ring, test the stoplight logic, identify wiring or coding errors, and improve the final project. It is a strong choice for STEM labs, coding workshops, technology classes, and innovation-based education.

SEO Keywords

3D Stoplight Kit with micro:bit, StemAids 3D Stoplight Kit, micro:bit Stoplight Kit, micro:bit Brake Light Kit, 3D Stoplight STEM Kit, RGB LED Ring micro:bit Kit, Educational Stoplight Model, micro:bit Programming Kit for Schools, STEM Electronics Kit, Traffic Signal micro:bit Project.

FAQ

1. What is the 3D Stoplight Kit with micro:bit?

It is an educational STEM kit used to build and program a stoplight or brake-light model using a micro:bit V2 board, RGB LED ring, switch, and related electronic components.

2. Which brand offers this product?

This product is offered under the StemAids brand for STEM education, coding, electronics, technology learning, and project-based classroom activities.

3. Is the micro:bit board included?

Yes, this version includes one micro:bit V2 board.

4. What components are included in the kit?

The kit includes one micro:bit V2 board, one 24 RGB LED ring, one switch, one LR03 battery pack, one 9V battery clip, one set of 4 LR06 batteries, one 3 mm plexiglass machining, cables, and screws.

5. Are 3D printed parts included?

No, the 3D printed parts are not supplied in the standard kit. Required parts may need to be printed separately or purchased as compatible printed models.

6. Is soldering required?

Yes, the kit is delivered ready to assemble and solder. Soldering should be completed under teacher or trainer supervision.

7. What can students learn from this kit?

Students can learn block programming, LED control, switch input, stoplight sequencing, electronic assembly, soldering, wiring, troubleshooting, and design improvement.

8. Is this kit suitable for beginners?

Yes, beginners can start with block programming and basic LED control activities. Assembly and soldering should be supervised.

9. Can this kit be used in school STEM labs?

Yes, it is suitable for school STEM labs, technology classes, robotics labs, coding workshops, innovation labs, and project-based learning programs.

10. Which programming platform can be used?

A micro:bit-compatible block programming platform such as MakeCode can be used for beginner-friendly classroom coding activities.

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