2WD Assembly Motor Kit With Speed Encoder

 10,500

Fast Shipping

Technical Support

Experienced technical support

Nationwide Delivery

To all 36 States

Description

The 2WD Motor Chassis is a versatile and robust platform designed for building small robotic vehicles. This chassis kit includes two DC motors with wheels and a sturdy frame, providing an excellent foundation for creating custom robots, educational projects, and prototyping. The design allows easy integration with various microcontrollers, sensors, and other electronic components.

Key Features:

  • Sturdy and durable construction
  • Two high-quality DC motors with wheels
  • Easy to assemble and modify
  • Compatible with various microcontrollers and sensors
  • Ample space for mounting additional components
  • Suitable for indoor and outdoor use

Technical Specifications:

  • Material: Acrylic or metal (varies by model)
  • Dimensions: Approx. 170mm x 100mm x 60mm (assembled size may vary)
  • Weight: Approx. 200g (including motors and wheels)
  • Motors: Two DC motors (typically 3V-6V)
  • Wheels: Two rubber wheels, diameter approx. 65mm
  • Chassis Frame: Pre-drilled holes for easy component mounting
  • Power Supply: Varies based on motor specifications (typically 3V-6V)
  • Load Capacity: Suitable for small to medium-sized robots
  • Operating Temperature Range: -10°C to +50°C

Applications:

  • Educational Projects: Ideal for teaching robotics and electronics in schools and universities.
  • Prototyping: Useful for developing and testing robotic designs and concepts.
  • DIY Robotics: Perfect for hobbyists and enthusiasts building custom robots.
  • Obstacle Avoidance Robots: Suitable for creating robots that navigate through obstacles.
  • Line Following Robots: Can be used to build robots that follow predefined paths.

Usage:

  1. Assemble the chassis by attaching the motors and wheels to the frame.
  2. Connect the motors to your microcontroller or motor driver.
  3. Mount any additional sensors, controllers, or electronic components.
  4. Power the motors and program your microcontroller to control the chassis.
  5. Test and adjust the configuration to suit your specific robotic application.

Caution:

  • Ensure proper handling and assembly to avoid damaging the chassis or motors.
  • Verify the power supply voltage and current specifications before powering the motors.
  • Avoid excessive loads that may strain the motors or chassis structure.
  • Follow safety guidelines when working with electronic components and tools.
Reviews (0)

There are no reviews yet.

Only logged in customers who have purchased this product may leave a review.