SGMGH-09A2D61 Original Yaskawa Motor for high precision machine tool SGMGH-09A2D61
Introducing the Yaskawa SGMGH-09A2D61 Servo Motor
The Yaskawa SGMGH-09A2D61 represents a pinnacle of innovation in motion control technology, specifically designed to enhance the performance of high-precision machine tools. With its superior engineering, this servo motor caters to a wide range of industrial applications where efficiency, stability, and accuracy are paramount. Built to last, this model promises not just reliability but also seamless integration into existing systems.
Key Product Information
Attribute | Details |
---|---|
Brand | Yaskawa |
Model | SGMGH-09A2D61 |
Rated Speed | 1000 r/min |
Power | 0.9 kW |
Power Supply Voltage | Three Phase AC 200V |
Encoder | 17 Bit Absolute Value |
Shaft Design | Straight Shaft with Screw Key |
Optional Features | No Brake or Oil Seal |
High Speed Feed | High Speed Running When No Load |
Maintenance Convenience | Separate Control and Main Circuits |
Technical Highlights
This servo motor excels with its innovative features including the complete separation of the main and control circuits, allowing for efficient maintenance. The parameter configuration is user-friendly, enabling direct entry through the servo drive body. Additionally, the Yaskawa SGMGH-09A2D61 reduces wiring complexity by utilizing a serial encoder, leading to a 50% reduction in wiring count compared to prior models.
The SGMGH-09A2D61 also includes multi-control capabilities, showcasing versatility in torque, position, and speed management without compromising functionality. Designed with a focus on high precision, this motor ensures stability and performance, making it an exceptional choice for various high-speed applications.
Versatile Applications
Transform your machinery with the reliability and precision of the Yaskawa SGMGH-09A2D61. This advanced servo motor is ideal for machine tools, handling equipment, and complex transport systems. It operates seamlessly in diverse environments, effectively bridging the gap between requirements and performance.