SGMCS-17E3B11 Original Yaskawa Direct drive servo motor SGMCS-17E3B11
Introducing the Yaskawa SGMCS-17E3B11 Direct Drive Servo Motor
The Yaskawa SGMCS-17E3B11 is a premier direct drive servo motor that embodies the pinnacle of technical innovation and reliability. Designed for precision and performance, this small-capacity motor is ideal for applications ranging from semiconductor manufacturing to automated machinery. With cutting-edge features and a robust construction, the SGMCS-17E3B11 is poised to enhance operational efficiency in various industrial settings.
Product Overview and Technical Parameters
Feature | Specification |
---|---|
Brand | Yaskawa |
Model | SGMCS-17E3B11 |
Rated Torque | M / 17N |
Motor Diameter | 290 mm |
Encoder Type | 20-Bit Absolute (Standard) |
Flange Specification | Face C, Reverse Load Side |
Max Torque | 6 ~ 600 N·m |
Max Speed | 250 ~ 500 r/min |
Protection Mode | IP42 (except rotating part) |
Working Temperature | 0 ~ 40 °C |
Vibration Level | V15 |
Key Features and Benefits
This servo motor is equipped with a robust 20-bit high-resolution encoder, ensuring exceptional precision for various applications. Its innovative hollow structure allows for easy wiring and piping, making installation seamless and efficient. The SGMCS-17E3B11 ensures smooth operation, transitioning effortlessly from low to high speeds, thus enhancing productivity without compromising quality.
Applications
Whether you are involved in semiconductor manufacturing, IC inspection, or automated machinery, the versatility of the SGMCS-17E3B11 makes it an invaluable asset. Its durability and performance characteristics, including a continuous rated time and resistance to various environmental conditions, ensure that it meets the demands of any task.
Conclusion
In conclusion, the Yaskawa SGMCS-17E3B11 direct drive servo motor stands out with its combination of features tailored for efficiency, reliability, and precision. Let this exceptional product elevate your manufacturing capabilities and streamline your automation processes.