SGMVV-2BD3B2B Original Yaskawa Large capacity servo motor SGMVV-2BD3B2B
Product Overview
The Yaskawa SGMVV-2BD3B2B model represents a pinnacle of engineering excellence in large capacity servo motors. Designed for seamless integration and adaptability, this motor promises robust performance while delivering unmatched precision. With a variety of applications suited for both industrial and commercial settings, it is an essential component for businesses looking to enhance operational capabilities.
Product Specifications
Feature | Description |
---|---|
Brand | Yaskawa |
Model | SGMVV-2BD3B2B |
Rated Output | 22KW |
Voltage | Three-phase AC 400V |
Encoder Type | 20-bit absolute value type |
Rated Speed | 1500 r/min |
Main Structure | Flange type, straight shaft (no keyway or screw) |
Optional Parts | Hold brake (DC 90V) |
Vibration Level | V15 |
Insulation Resistance | DC 500V, 10M or above |
Ambient Temperature | 0 ~ 40 degrees C |
Protection Mode | Fully enclosed, self-cooling type IP67 (except shaft) |
Connection Mode | Direct connection |
Rotation Direction | Clockwise (CCW at load side) |
Enhanced Performance Features
The SGMVV-2BD3B2B motor stands out with its advanced capabilities, including low inertia and high responsiveness to variable loads. This motor can swiftly adapt to load changes without compromising stability, thus minimizing vibration and ensuring smooth operation. Its environment-friendly design is complemented by a heat resistance grade of F, safeguarding against thermal challenges in demanding operations.
Applications
Key applications for the Yaskawa SGMVV-2BD3B2B include:
- Machine Tool Operations
- Transport Machinery
- Handling Machinery
- Food Processing Equipment
Conclusion
The Yaskawa SGMVV-2BD3B2B is more than just a servo motor; it is a testament to reliable technology and innovation in motion control. Ideal for a plethora of industrial uses, this motor combines exceptional performance with superior engineering, making it the preferred choice for manufacturers looking for durability, precision, and efficiency.