
The Smart Robotic Car Acrylic Chassis is a lightweight and durable robot platform designed for building DIY robotic cars and educational mobile robots. It provides a structured base for mounting motors, wheels, batteries, microcontrollers, motor drivers, sensors, and other electronic components.
The chassis is made from acrylic material, providing a rigid platform while keeping the overall robot assembly lightweight. Its pre-designed mounting holes and openings make it easier to install commonly used robotics components and create a customized robot configuration.
The platform is suitable for Arduino, Raspberry Pi, ESP32, and other compatible controller-based projects. It can be used to build obstacle-avoiding robots, line-following robots, Bluetooth-controlled cars, Wi-Fi-controlled vehicles, autonomous robots, and other educational robotics projects.
The Smart Robotic Car Acrylic Chassis is suitable for students, makers, hobbyists, robotics enthusiasts, and educational institutions. Components such as motors, wheels, batteries, controller boards, sensors, and motor drivers may need to be purchased separately depending on the chassis kit configuration.
Smart Robotic Car Acrylic Chassis
Lightweight Acrylic Construction
Rigid Robot Platform
Suitable for DIY Robot Cars
Pre-Designed Mounting Holes
Easy Component Mounting
Suitable for DC Gear Motors
Compatible with Robot Wheels
Suitable for Arduino Projects
Compatible with Raspberry Pi Projects
Suitable for ESP32 Projects
Useful for Line Follower Robots
Ideal for Obstacle Avoiding Robots
Suitable for Bluetooth-Controlled Robots
Useful for Wi-Fi-Controlled Robots
Suitable for Autonomous Robotics
Ideal for Educational Projects
Useful for Prototyping
Customizable Robot Platform
Suitable for Makers and Students
Easy to Assemble with Compatible Components
Orders placed before 3 PM IST will be shipped on the same day (excluding Sundays and Public holidays) through our shipping partners. In rare cases, the pickup may get delayed during Public holidays / Bandh / Environmental disturbances.