SGMAV-10A3A6S Original Yaskawa Ultra low inertia servo motor SGMAV-10A3A6S
Introducing the Yaskawa SGMAV-10A3A6S Servo Motor
The Yaskawa SGMAV-10A3A6S servo motor represents the pinnacle of precision engineering and high performance, ideal for a variety of applications. Designed as part of the acclaimed Sigma-V series, this ultra-low inertia motor is engineered to deliver extraordinary responsiveness and stability. Perfectly suited for environments ranging from semiconductor manufacturing to food processing machinery, the SGMAV-10A3A6S provides unparalleled torque and speed capabilities that meet the demands of modern automation.
Product Overview
Specification | Details |
---|---|
Brand | Yaskawa |
Name | Ultra Low Inertia Servo Motor |
Model | SGMAV-10A3A6S |
Rated Output | 1.0 kW |
Power Supply Voltage | AC 200V |
Max Speed | 6000 r/min |
Torque Rating | 300% Instantaneous Maximum Torque |
Technical Parameters
This servo motor features a high-resolution 20-bit absolute value serial encoder and is designed with a permanent magnet excitation mode. Operating under ambient temperatures ranging between 0 to 40 degrees Celsius, the SGMAV-10A3A6S embodies reliability and durability with its fully enclosed self-cooling type IP65 protection (excluding shaft entry). Furthermore, its intricate design includes a straight shaft with a keyway and optional oil seal for added versatility.
Application Versatility
Incorporating advanced engineering and superior design, the Yaskawa SGMAV-10A3A6S is highly adaptable across various applications. Whether utilized in robotics, PCB punching systems, or handling machinery, it ensures both efficiency and precision, significantly enhancing productivity.
Conclusion
With its impressive specifications, advanced features, and wide applicability, the Yaskawa SGMAV-10A3A6S servo motor is your partner in achieving exceptional operational performance. This motor is not just a component; it is the heartbeat of your technology, promising reliability, efficiency, and remarkable results in all your automation needs.