SGMAV-10A3ABE Original Yaskawa Ultra low inertia servo motor SGMAV-10A3ABE
Yaskawa SGMAV-10A3ABE: Precision and Performance Redefined
Introducing the Yaskawa SGMAV-10A3ABE, an ultra-low inertia servo motor that’s engineered for excellence in high-performance applications. This distinguished model from the Sigma-V series offers a unique combination of robust reliability and outstanding efficiency, making it the preferred choice for advanced motion control tasks across various sectors. With its richly featured specification, the SGMAV-10A3ABE stands as a testament to Yaskawa’s commitment to delivering cutting-edge technology.
Product Overview
The Yaskawa SGMAV-10A3ABE is not merely a servo motor; it is a sophisticated device designed to elevate your operational capabilities. Whether you’re working in semiconductor manufacturing, robotics, or food processing, this motor meets diverse requirements with ease. Below are the detailed specifications and features that distinguish this model:
Feature | Specification |
---|---|
Brand | Yaskawa |
Model | SGMAV-10A3ABE |
Rated Output | 1.0 kW |
Power Supply Voltage | AC200V |
Max Speed | 6000 r/min |
Maximum Torque | 300% Rating |
Vibration Level | V15 |
Protection Mode | IP65 (Fully Enclosed) |
Enhanced Safety and Compatibility
Moreover, the SGMAV-10A3ABE integrates advanced safety features in accordance with IEC61800-5-2 standards, ensuring a secure operational environment. With Torque Off Safe (STO), Stop Safe 1 (SS1), and Stop Safe 2 (SS2) functionalities, users can enjoy peace of mind while maintaining optimum functionality. The motor interface supports MECHATROLINK-III communication, enhancing interoperability with various devices.
Conclusion
Yaskawa Electric has a long-standing reputation as a pioneer in motion control technology. The SGMAV-10A3ABE is a prime example of their innovation, offering superior response times and efficiency that substantially reduce operational delays. As businesses seek to enhance automation and precision, the Yaskawa SGMAV-10A3ABE emerges as a vital player in shaping the future of motion control.