YASKAWA CACR-IR30SEB
YASKAWA CACR – IR30 Servo Drive Module
Product Description
The YASKAWA CACR – IR30SEB is a high – performance servo drive module, engineered to provide precise and reliable control for servo motors in various industrial automation applications. Widely used in manufacturing, robotics, and CNC machining, this module plays a crucial role in converting electrical energy into mechanical motion with high accuracy, enabling smooth and efficient operation of servo – driven systems.
It is equipped with advanced control algorithms that ensure stable and accurate motor speed and position control. The module can handle a wide range of input signals, such as analog voltage and pulse – train commands, and translate them into appropriate output signals to drive the servo motor. With its high – speed processing capabilities, the CACR – IR30SEB can respond quickly to changes in control commands, making it suitable for dynamic and demanding applications where precise motion control is essential.

The CACR – IR30SEB features a compact and robust design, built to withstand harsh industrial environments. It has excellent electrical isolation and strong electromagnetic compatibility (EMC), protecting it from electrical noise, voltage fluctuations, and electromagnetic interference. The module also comes with comprehensive self – diagnostic functions that continuously monitor its internal components, power supply, and operational status. In case of any faults or abnormal conditions, it immediately generates detailed diagnostic information and alarms, facilitating quick troubleshooting and minimizing system downtime.
This servo drive module supports multiple communication protocols, such as Modbus RTU, CANopen, and Ethernet – based protocols, enabling seamless integration with programmable logic controllers (PLCs), human – machine interfaces (HMIs), and other automation devices. This connectivity allows for real – time monitoring, remote configuration, and centralized control of the servo system, enhancing overall system flexibility and productivity.