SGMVV-3GDDB2E Original Yaskawa Large capacity servo motor SGMVV-3GDDB2E
Introducing the Yaskawa SGMVV-3GDDB2E Servo Motor
The Yaskawa SGMVV-3GDDB2E stands as a beacon of technological excellence in the realm of large-capacity servo motors. Designed to meet the demands of sophisticated automation tasks, this servo motor combines high output performance with innovative features, ensuring reliability and efficiency. Capable of seamlessly integrating into various mechanical systems, it is perfect for applications requiring precision control and rapid response. This motor embodies Yaskawa’s commitment to excellence and forward-thinking engineering.
Product Specifications
Parameter | Value |
---|---|
Brand | Yaskawa |
Name | Large Capacity Servo Motor |
Model | SGMVV-3GDDB2E |
Rated Output | 37 kW |
Voltage | Three Phase AC 400V |
Serial Encoder | 20 Bit Delta |
Rated Speed | 1500 r/min |
Main Mechanical Structure | Flange Type, Straight Shaft |
Optional Parts | Hold Brake (DC24V), Oil Seal |
Performance and Features
The sophisticated design of the SGMVV-3GDDB2E guarantees high-performance operation. With a rated speed of 1500 r/min and a remarkable ability to adapt to load changes, this servo motor can function stably without significant adjustment. It supports an impressive range of inertia, further enhancing its versatility. In environments where demand fluctuates, the SGMVV-3GDDB2E’s operational reliability shines.
Advanced Control Technology
Equipped with an advanced dual-axis servo drive, the SGD7W, this unit provides exceptional control up to 0.75 kW with a frequency response of 1.6 kHz. Its unique vibration suppression technology allows for a smooth operation without compromising performance, even at high speed or under load. The addition of a free adjustment function means fine-tuning is an effortless process, making the SGMVV-3GDDB2E an ideal choice for dynamic applications.
Innovative Design for Increased Efficiency
The servo motor features automatic identification capabilities, which streamline the configuration of motor parameters based on specific operational requirements. Its smart regenerative design ensures efficient energy usage, making it a sustainable choice for modern industrial applications. With low inertia and high torque characteristics, this motor is engineered for both efficiency and performance, representing a major leap forward in servo motor technology.