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Quanser Home
The Quanser Difference
Comparison Chart
Quanser Engineering Blog

Control Experiments
Linear
Rotary
 - Position Servo
 - Rate Servo
 - Ball & Beam
 - Flexible Link
 - Flexible Joint
 - Multi-DOF Torsion
 - Gyro/Stable Platform
 - Rotary Inverted Pendulum
 - Self-erecting IP
 - Double IP
 - 2 DOF IP
 - 2 DOF Robot Module
 - 2 DOF Rotary Gantry
 - 2 DOF Ball Balancer

Specialty
Mechatronics
Unmanned Vehicle Systems

QUARC 2.2

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Quanser

Quanser's Rotary Motion Challenges

Quanser’s rotary motion challenges are designed to bring a range of control issues to light including: robotics, vibration and dynamics, position control, non-minimum phase control, rate control, adaptive control, flexible structures, and more. The universal challenge is to design, implement and test your control system of choice. Each system is supplied with a state feedback controller, the complete mathematical modelling as well as detailed system parameters to help streamline the control system implementation of your choice.

All the rotary motion challenges are based on the SRV02, SRV02-E and SRV02-ET Rotary motion fundamental modules. All four modules are constructed of precisely machined aluminum and use high quality motors, gearboxes, tachometers, potentiometers and optical encoders. For more insight into the differences between the various SRV0X models and their applications please see each models’ full feature / function descriptions.



Ready to buy?

Every customer requirement for the Quanser range is unique and we offer pre-sales support to ensure your purchase fully meets the project requirements.

For more information about Quanser Control Challenges and to discuss your project contact our Quanser team at your local office.

Latest Downloads

MapleSim and Quanser Case Study - Using MapleSim in Unmanned Aerial Vehicle Models
Quanser Case Study - Rehab Robot Helps Stroke Victim Recover
Quanser Article: Preparing Effective Global Engineers for Success
Quanser Case Study: University of Central Florida - Accelerating Research by Allowing Two Programming Languages to Talk
Quanser Case Study: University of Victoria Driving Haptic-Based Rehabilitation Further and Faster

Latest News

MapleSim and Quanser Case Study - Using MapleSim in Unmanned Aerial Vehicle Models
Quanser Case Study - Rehab Robot Helps Stroke Victim Recover
"In one week I installed QUARC...
"I spoke with people who had these devices in their labs...
Quanser Case Study: University of Central Florida - Accelerating Research by Allowing Two Programming Languages to Talk
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