SGMSV-40DDA2B Original Yaskawa servo motor SGMSV-40DDA2B
Introducing the Yaskawa SGMSV-40DDA2B Servo Motor
The Yaskawa SGMSV-40DDA2B is a sophisticated and reliable servo motor engineered for high-performance applications across various industries. With its robust design and advanced technology, this motor excels in both precision and efficiency, making it an ideal choice for modern machinery and automated systems. Whether you’re in manufacturing, food processing, or handling machinery, the SGMSV-40DDA2B establishes itself as a quintessential component in your operational arsenal.
Product Overview and Technical Specifications
Specification | Details |
---|---|
Brand | Yaskawa |
Model | SGMSV-40DDA2B |
Rated Output | 4.0 kW |
Power Supply Voltage | AC 400V |
Serial Encoder | 20-bit Delta (standard) |
Shaft End Design | Straight shaft, without keyway (standard) |
Optional Features | Hold brake (DC90V) |
Insulation Resistance | DC 500V, 10M or above |
Installation Method | Flange type |
Operating Temperature | 0 ~ 40°C |
Enhanced Capabilities
This servo motor is designed for continuous operation and is exceptionally resilient, offering an impressive vibration level of V15. Its IP67 protection ensures that it remains fully enclosed and self-cooling, safeguarding its operations in a wide variety of environmental conditions, with humidity ranging from 20% to 80% (non-condensing).
Versatile Applications
The SGMSV-40DDA2B excels in various applications, including placement machines, printed circuit board punching, and machine tool feeding devices. Its construction allows for seamless integration into diverse systems, ensuring sustained high-performance in demanding operational environments.
Conclusion
Embrace the potential of advanced automation with the Yaskawa SGMSV-40DDA2B servo motor. As an embodiment of precision engineering and cutting-edge technology, it stands poised to enhance your production capabilities while ensuring reliability and efficiency. Elevate your operational processes with the SGMSV-40DDA2B and experience the difference in performance.