Versatile R&D Products

for Robotics & Automotive

Empowering Engineers with Modular Development Tools

Backed by 50 years of engineering expertise, CanEduDev provides modular, cost-effective solutions for robotics, control, and automotive development. Our tools simplify prototyping, testing, and integration—cutting costs while driving real-world innovation.

Level 1

Rover Frame – Mounting & Testing Products

A durable aluminum chassis designed for easy mounting and integration of sensors, actuators, and electronic components. Ideal for researchers and developers needing a customizable platform to test mechanical and electronic systems.

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Level 2

Basic Rover – Frame + Powertrain + Steering

Includes the chassis, powertrain, and steering system, creating a fully functional drive platform. Equipped with BLDC motors and power steering,
it enables developers to experiment with motion, maneuverability, and mechanical control.

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Level 3

CAN Rover –
A Fully Programmable Autonomous Platform

The ultimate development tool, featuring a complete CAN-based control system for advanced programming and automation.

Includes:

CanDevEDU12968 2 min

Download the Full Specifications & Compare Models

to find the right solution for your project.

Selected products

The CanEduDev Wheel Speed Module delivers precise, real-time velocity data for research in vehicle dynamics, traction control, and odometry. Designed for direct wheel integration, it ensures accurate CAN-based transmission when paired with CanEduDev’s Servo Board. Ideal for universities, research institutions, and developers working on motion control and traction studies.

The Rover Frame is a lightweight yet durable anodized aluminum chassis, perfect for robotics, autonomous systems, and experimental vehicles. Its modular design enables seamless integration of motors, sensors, and hardware, while corrosion-resistant construction ensures longevity. Ideal for engineers and researchers developing innovative drive and control systems.

The Motor Control Board supports brushed and brushless motors with PWM, Dshot (300, 600), and CAN compatibility. Featuring AM32 firmware, modular PCB design, and XT90 power connection, it ensures reliable, scalable performance for robotics and automotive systems. Seamlessly integrates with CanEduDev’s CPU board for advanced control solutions.

News

Simple control loop

Interacting with the Rover using Simulink

Simulink is a crucial software tool in the automotive realm, offering engineers a visual platform to model vehicle systems via block diagrams. Engineers leverage this versatile software to simulate and refine control algorithms for engines,

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Using the Rover in education

Greetings to all educators, students, and technology enthusiasts! We are excited to present the potential of our Rover, featuring a programmable car as an engaging learning tool in various educational settings. The Rover is designed

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radio connection

How to get started with the Rover

There are various projects that can be realized using the CanEduDev Rover, but the simplest way to get started is to set up the Rover like any regular radio-controlled model car. To start with, you

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FOR FULL SPECIFICATION

please download the Data Sheet