SGMGH-75A2A3C Original Yaskawa servo motor SGMGH-75A2A3C
Introducing the Yaskawa SGMGH-75A2A3C Servo Motor
Experience unparalleled precision and reliability with the Yaskawa SGMGH-75A2A3C Servo Motor, a pinnacle of engineering designed for a wide array of industrial applications. This advanced servo motor exemplifies superior performance, marrying cutting-edge technology with practicality. With its sleek design and powerful capabilities, it’s the ideal choice for demanding operations across various sectors, including semiconductor manufacturing, robotics, and food processing machinery.
Key Features:
- Rated Speed: 1500 r/min
- Power: 7.5 kW
- Power Supply Voltage: Three-phase AC 200V
- Encoder: 17-bit absolute value
- Design Sequence: A
- Shaft End: Taper 1/10 with parallel key
- Optional Parts: Includes DC 24V brake
- High Speed Feed Series: Optimized for high-speed running under no load conditions
Technical Parameters
Specification | Value |
---|---|
Rated Output | 7.5 kW (suitable for various applications) |
Insulation Resistance | DC 500V, 10M or above |
Operating Temperature | 0 ~ 40 degrees C |
Protection Mode | Fully enclosed self-cooling type IP65 (except shaft through part) |
Vibration Level | V15 |
Advanced Control Features
Equipped with a high-resolution serial encoder (20-bit), the SGMGH-75A2A3C achieves maximum speeds up to 6000 r/min. Its multi-control capabilities accommodate torque, position, and speed, all while ensuring high-precision synchronization phase control. With the advanced Sigma -V series servo unit SGDV, enjoy real-time communication and significant cost reduction by connecting up to 62 stations via a single communication line. This efficient architecture simplifies wiring, reduces complexity, and enhances performance.
Versatile Applications
From semiconductor manufacturing to robotics, the Yaskawa SGMGH-75A2A3C Servo Motor is an adaptable solution designed to meet the rigorous demands of modern automation. Its robust construction ensures reliability, while its innovative technology optimizes operation efficiency.