Control System Development for Motors & Actuators
Budget: $250 – $750 USD
I'm seeking a seasoned automation and control systems engineer to assist in developing an advanced control system. The system will manage multiple stepper motors, actuators, and linear guides, all integrated and controlled from a single Raspberry Pi 5, utilizing a PLC or another appropriate controller.
Key Elements of the Project:
Control Multiple Motors and Actuators: The project involves integrating stepper motors and linear actuators, ensuring precise and synchronized operation. Experience with these components is essential.
Implementing Communication Protocols: The control system will utilize EtherCAT, CANopen, and Modbus protocols. Proficiency in configuring and programming these protocols is a must.
Synchronization and Motion Profiles: Develop synchronized motion profiles for up to 8 axes, ensuring real-time performance and precise control.
Raspberry Pi 5 Integration: All components will be controlled via a single Raspberry Pi 5. Expertise in Raspberry Pi programming and integration with PLCs or other controllers is crucial.
Comprehensive System Development: The engineer will be responsible for hardware setup, communication network configuration, control logic programming, and system testing to achieve seamless and reliable operation.
The ideal candidate should possess extensive experience in automation and control systems, particularly with the specified motors, actuators, and communication protocols, and should be adept at programming and optimizing control systems using Raspberry Pi.
Key Elements of the Project:
Control Multiple Motors and Actuators: The project involves integrating stepper motors and linear actuators, ensuring precise and synchronized operation. Experience with these components is essential.
Implementing Communication Protocols: The control system will utilize EtherCAT, CANopen, and Modbus protocols. Proficiency in configuring and programming these protocols is a must.
Synchronization and Motion Profiles: Develop synchronized motion profiles for up to 8 axes, ensuring real-time performance and precise control.
Raspberry Pi 5 Integration: All components will be controlled via a single Raspberry Pi 5. Expertise in Raspberry Pi programming and integration with PLCs or other controllers is crucial.
Comprehensive System Development: The engineer will be responsible for hardware setup, communication network configuration, control logic programming, and system testing to achieve seamless and reliable operation.
The ideal candidate should possess extensive experience in automation and control systems, particularly with the specified motors, actuators, and communication protocols, and should be adept at programming and optimizing control systems using Raspberry Pi.