DIYables DIYables 2WD Smart Robot Car Chassis Kit Pre-Assembled Dual DC Motor with Encoder for Arduino ESP32 Raspberry Pi RC Robot, No Soldering Required

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Pre-assembled 2WD smart robot car chassis kit with dual DC motors and encoders Click to zoom
Pre-assembled 2WD smart robot car chassis kit with dual DC motors and encoders2WD robot car chassis bottom view showing dual gear motors and caster wheel2WD robot car chassis with pre-soldered motor and encoder lead wires2WD robot car chassis kit packaging showing pre-assembled parts ready to useAssembled 2WD robot car with ESP32 board and motor driver wiring exampleComparison chart showing benefits of a pre-assembled versus unassembled robot car kit

Quick Overview

This DIYables 2WD smart robot car chassis kit arrives fully pre-assembled with a durable acrylic frame, dual DC gear motors, and a battery holder, ready to use right out of the box. There's no assembly step, no missing parts to track down, and no soldering required, so you can start wiring and programming your robot car right away with Arduino, ESP32, ESP8266, or Raspberry Pi.

Both DC motors include built-in speed encoders that provide real-time feedback for precise motion control, making the chassis suitable for line-following, autonomous driving, and RC robot applications. Motor wires come pre-soldered and all acrylic parts are pre-drilled with standard mounting holes, so you can mount a motor driver, microcontroller, and sensors directly onto the chassis.

Perfect for STEM education, robotics learning, and Arduino or ESP32 programming projects. Step-by-step tutorials are available online, making it easy for beginners and students to go from chassis to a working RC robot car quickly.

Key Features

  • Pre-Assembled Chassis — Fully built 2WD chassis with dual DC motors, ready to use out of the box
  • Motors with Speed Encoders — Built-in encoders on both motors for real-time speed feedback and precise motion control
  • No Soldering Required — Motor wires come pre-soldered for fast setup and easy installation
  • Pre-Drilled Acrylic Frame — Standard mounting holes for motor drivers, microcontrollers, and sensors
  • Complete Out of the Box — Includes battery holder, power switch, wheels, and caster wheel, avoiding missing components
  • Wide Voltage Compatibility — Works with 3.3V and 5V microcontroller boards
  • Wide Compatibility — Works with Arduino, ESP32, ESP8266, Raspberry Pi, and other microcontrollers
  • Tutorial Support — Step-by-step tutorials available for Arduino, ESP32, ESP8266, and Raspberry Pi
  • Versatile Applications — Ideal for line-following robots, autonomous driving, and RC robot projects
  • STEM Ready — Great for robotics learning, coding practice, and classroom projects

SPECIFICATION

Specification Value
Product Type 2WD Smart Robot Car Chassis Kit
Assembly Pre-assembled (motors, wheels, battery holder, switch pre-installed)
Drive Type Two-wheel drive (2WD)
Motor Type Dual DC gear motors with speed encoder
Soldering Not required, motor wires pre-soldered
Chassis Material Acrylic (pre-drilled mounting holes)
Wheels 2 rubber wheels + 1 caster wheel (pre-mounted)
Battery Holder 4 x AA (pre-installed)
Power Switch On/off switch (pre-installed)
Operating Voltage 3V to 6V DC (motor supply)
Compatibility Arduino, ESP32, ESP8266, Raspberry Pi
Applications Line following, autonomous driving, RC robots, STEM education

PACKAGE

A package includes:

Qty Items
1 Pre-assembled 2WD acrylic chassis
2 DC gear motors with speed encoders (pre-installed)
2 Rubber wheels (pre-mounted)
1 Caster wheel (pre-mounted)
1 4 x AA battery holder (pre-installed)
1 On/off power switch (pre-installed)

COMPATIBLE HARDWARE

  • Arduino boards (UNO, Mega, Nano, etc.) — Requires a motor driver such as L298N for motor control
  • Arduino Uno R4 WiFi/Minima — Compatible with a motor driver shield or module
  • ESP32 development boards — WiFi/Bluetooth controlled robot car projects
  • ESP8266 boards (NodeMCU, Wemos D1, etc.) — WiFi-enabled robot car control
  • Raspberry Pi (all models) — Advanced robotics with camera and sensor integration
  • Raspberry Pi Pico — GPIO-based motor and encoder control
  • Arduino Nano ESP32 — Compact WiFi robot car control
  • L298N or similar motor driver — Required to drive the dual DC motors
  • Any 3.3V or 5V microcontroller with digital I/O — For encoder pulse reading and motor control