SGMVV-4ED3B2C Original Yaskawa Large capacity servo motor SGMVV-4ED3B2C
Yaskawa SGMVV-4ED3B2C: Redefining Performance in Servo Technology
Introducing the Yaskawa SGMVV-4ED3B2C, a premium large capacity servo motor engineered for excellence. In today’s fast-paced industrial environment, precision and reliability are paramount. The SGMVV-4ED3B2C not only meets but exceeds these expectations, delivering unparalleled performance for a broad array of applications. Whether you’re operating in a high-speed automation line or intricate machining, this servo motor serves as the cornerstone of your machinery.
Key Specifications
Feature | Details |
---|---|
Brand | Yaskawa |
Name | Large Capacity Servo Motor |
Model | SGMVV-4ED3B2C |
Rated Output | 45 kW |
Voltage | Three Phase AC 400V |
Encoder Type | 20 Bit Absolute Value |
Rated Speed | 1500 rpm |
Mechanical Structure | Flange Type, Straight Shaft (No Keyway, No Screw) |
Optional Parts | With Hold Brake (DC 24V) |
Enhanced Stability and Response
The SGMVV-4ED3B2C is designed to offer superior performance, allowing immediate operational engagement following installation. Optimized for low inertia, it thrives in applications where load variations are frequent, ensuring stable operation without undesired vibrations. This motor’s full closed-loop control module empowers sophisticated feedback mechanisms, making it an asset in high-precision environments.
Flexibility in Application
With the ability to support a variety of configurations, including a power supply of three-phase AC 200V, and adaptable design sequences, the SGMVV-4ED3B2C stands out as a flexible solution for diverse needs. Compatibility with absolute value encoders and options for brake systems enhance its utility, ensuring it can seamlessly integrate into your existing setup.
Reliability Meets Innovation
The Yaskawa commitment to quality means users benefit from advanced mechanical properties, allowing for a significant reduction in speed fluctuation and smooth operational flow. By leveraging cutting-edge control algorithms, the servo motor’s response times and maintenance intervals are optimized, providing not just efficiency but also reassurance in performance longevity.