SGMGV-30D3A2E Original Yaskawa Rotary servo motor SGMGV-30D3A2E
Introducing the Yaskawa SGMGV-30D3A2E Rotary Servo Motor
Elevate your automation projects with the Yaskawa SGMGV-30D3A2E Rotary Servo Motor, a stellar addition to the Sigma-V series. This motor is engineered for high performance and reliability, making it suitable for a variety of applications ranging from machine tools to transport and food processing machinery. Its modern design incorporates state-of-the-art technology, ensuring seamless integration into your existing systems.
Technical Specifications
Feature | Specification |
---|---|
Brand | Yaskawa |
Model | SGMGV-30D3A2E |
Rated Output | 2.9 kW |
Power Supply Voltage | AC 400V |
Serial Encoder | 20 bit absolute type (standard) |
Shaft End | Straight shaft, without keyway (standard) |
IP Protection | IP67 |
Vibration Level | V15 |
Heat Resistance Grade | F |
Environment Humidity | 20 ~ 80% (non-condensing) |
Key Features
The SGMGV-30D3A2E boasts various optional enhancements such as an oil seal and a DC24V brake. Designed with a straight shaft and a high-resolution 20-bit encoder, this servo motor ensures precise control and positioning accuracy. Featuring a fully enclosed self-cooling type, it operates efficiently even in demanding environments, making it the optimal choice for continuous application.
Operational Excellence
With a rated continuous operation time and a robust insulation resistance of DC500V, 10M or above, this motor performs reliably within a temperature range of 0 to 40 degrees Celsius. The excitation mode of permanent magnet type further enhances its operational capabilities, allowing you to achieve superior mechanical performance and efficiency in your operations.
Application Versatility
Yaskawa’s servo motors are widely deployed in semiconductor manufacturing, liquid crystal production, and electronic component packaging. The SGMGV-30D3A2E stands out not just as a product, but as part of a broader revolution in mechatronics, making it a pivotal component in advanced automation systems.