SGMGH-20A2B3E Original Yaskawa servo motor SGMGH-20A2B3E
Yaskawa SGMGH-20A2B3E Servo Motor: Engineering Precision Meets Versatile Performance
The Yaskawa SGMGH-20A2B3E servo motor embodies a perfect fusion of engineering excellence and innovative design, making it an invaluable asset for modern automation applications. With its robust construction and advanced features, this servo motor is engineered for performance, ensuring accurate motion control and efficient energy use. Designed to elevate operational efficiency, the SGMGH-20A2B3E promises consistent reliability across diverse applications.
Technical Specifications
Feature | Specification |
---|---|
Brand | Yaskawa |
Model | SGMGH-20A2B3E |
Rated Speed | 1000 r/min |
Power | 2.0 kW |
Power Supply Voltage | Three Phase AC200V |
Serial Encoder | 17 Bit Absolute Value |
Design Sequence | B |
Shaft End Type | Taper 1/10, with Parallel Key |
Optional Parts | With Oil Seal, DC24V Brake |
High Speed Feed Series | Optimized for High Speed Running with No Load |
Enhanced Usability
The Yaskawa SGMGH-20A2B3E servo motor stands out with its impressive features such as the complete separation of the main circuit from the control circuit. This design not only simplifies maintenance but also allows for quick fault recovery. An integrated parameter setting device enables users to effortlessly enter parameters directly from the servo drive body, streamlining operational setup and enhancing overall connectivity.
Innovative Control Capabilities
Employing a serial encoder significantly reduces wiring complexity by halving the number of connections required. Furthermore, the multi-in-one control functionality facilitates versatile operational modes, allowing users to switch seamlessly between torque, position, and speed control without needing extensive reconfiguration.
With the Yaskawa SGMGH-20A2B3E, you are guaranteed a servo motor that not only meets but exceeds international standards, providing a reliable solution that supports your automation needs. Experience a smooth operational flow, where speed fluctuations are minimal and performance is maximized, ensuring the highest levels of precision in every application.