SGMPH-01A1E4B Original Yaskawa Waterproof motor SGMPH-01A1E4B
Introducing the Yaskawa SGMPH-01A1E4B: The Pinnacle of Servo Motor Technology
In the ever-evolving landscape of industrial automation, the Yaskawa SGMPH-01A1E4B stands out as a beacon of innovation and reliability. This advanced waterproof servo motor is engineered not just to meet the demands of today’s applications, but to exceed them. With its unparalleled performance and robust design, it promises to be the cornerstone of your automated systems, driving both efficiency and precision in every operation.
Product Overview
Feature | Specification |
---|---|
Brand | Yaskawa |
Name | Waterproof Motor |
Model | SGMPH-01A1E4B |
Servo Motor Type | SGMPH (Speed: 3000 r/min) |
Power Output | 0.1 kW |
Power Supply Voltage | Single Phase AC 200V |
Encoder Type | 16-bit Absolute Value |
Design Standard | Waterproof IP67 |
Shaft End Design | Straight Shaft with Key |
Optional Parts | DC90V Brake |
Key Advantages
Outstanding Communication and Flexibility
The SGMPH-01A1E4B leverages advanced MECHATROLINK-III communication, boasting a rapid 125 microsecond cycle. This feature ensures that instruction response times are significantly reduced, allowing for improved track accuracy in dynamic applications. Such capabilities make it an ideal choice for systems requiring high-speed operation with minimal delay.
Robust Design for Diverse Applications
This servo motor is designed for compact installations, making it versatile for integration into various machinery environments. Whether you require single or three-phase power options, the SGMPH series adapts to your needs, ensuring seamless operation across a wide range of applications, from assembly lines to robotic systems.
Conclusion
Embrace the future of motion control with the Yaskawa SGMPH-01A1E4B. Its combination of high performance, flexible user systems, and adherence to international standards positions it as a leading solution in advanced automation. Elevate your product line and reap the benefits of smooth operational execution, significantly reduced speed fluctuations, and an overall enhanced system performance.