SGMJV-A5A3AB1 Original Yaskawa Middle inertia rotary servo motor SGMJV-A5A3AB1
Introducing the Yaskawa SGMJV-A5A3AB1 Servo Motor
The Yaskawa SGMJV-A5A3AB1 is a top-tier middle inertia rotary servo motor designed to meet the rigorous demands of modern industrial applications. This motor epitomizes cutting-edge technology, delivering unmatched performance in precision and efficiency. With its robust design and versatile capabilities, it is an ideal choice for various sectors including semiconductor manufacturing, robotics, and food processing machinery.
Technical Specifications
Parameter | Details |
---|---|
Brand | Yaskawa |
Model | SGMJV-A5A3AB1 |
Rated Output | 0.05 kW (50W) |
Power Supply Voltage | AC 200V |
Serial Encoder | 20-bit absolute value |
Maximum Torque | Instantaneous 350% |
Max Speed | 6000 r/min |
Vibration Level | V15 |
Protection Mode | IP65 |
Outstanding Features
This servo motor operates continuously at a rated time with a heat resistance grade of B, and boasts a sophisticated permanent magnet excitation mode. The SGMJV-A5A3AB1 is designed with the user in mind, featuring a fully enclosed self-cooling structure that ensures longevity and reliability. Its advanced serial encoder contributes to high precision in every rotation, making it perfect for applications that require consistent performance.
Applications and Use Cases
From semiconductor fabrication to intricate placement machines, the Yaskawa SGMJV-A5A3AB1 excels in various tasks. It’s also suitable for punching printed circuit boards, handling machinery, and even food processing applications. The versatility of this motor empowers businesses to undertake sophisticated operations with confidence.
Additional Benefits
With an impressive maximum applicable motor capacity, simplified wiring, and compatibility with various control modules, including the INDEXER functionality, the SGMJV-A5A3AB1 provides the flexibility required for contemporary manufacturing settings. Users can easily configure and program the device, making it an invaluable resource in motion control.