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The Yaskawa SGMG-30A2AAS belongs to the Sigma II series, representing a precise servo motor engineered for various applications. Operating at a rated voltage of 200 V AC, it excels in performance with a rated power output of 2.9 kW and a rated speed of 1500 RPM.
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| Manufacturer | Yaskawa |
|---|---|
| Product Type | Servo Motor |
| Product Line | Sigma II |
| Part Number | SGMG-30A2AAS |
| Rated Voltage | 200 V AC |
| Number of Phases | 3-Phase |
| Rated Speed | 1500 RPM |
| Rated Power | 2.9 kW |
| Rated Torque | 18.6 Nm |
| Rated Current | 23.8 A |
| Encoder Type | Incremental Encoder With 8192 P/R |
| Shaft Type | Oil Seal Shaft |
| Insulation Class | Class F |
| Mounting Design | Flange Type |
| Minimum Temperature Range | 0°C |
| Maximum Temperature Range | 40°C |
| Maximum Humidity | 80% (non-condensing) |
| Maximum Altitude | 1000 m above sea level |
The Yaskawa SGMG-30A2AAS is a servo motor designed for high-efficiency applications in the Sigma II series. This unit operates on a standard 200 V AC supply. With a robust 3-phase configuration, it is capable of delivering a rated output power of 2.9 kW, making it suitable for varied automation tasks. The motor achieves a rated speed of 1500 RPM, critical for applications requiring precise motion control.
It generates a rated torque of 18.6 Nm and requires a rated current of 23.8 A for optimal operation. The incremental encoder integrated into this motor provides a resolution of 8192 p/r, allowing for accurate positioning and feedback essential in advanced control systems. Designed with an oil seal shaft, the SGMG-30A2AAS ensures operational reliability in environments where contamination could be a concern.
The motor conforms to insulation class F, enabling it to operate efficiently within a temperature spectrum from 0°C to 40°C. It is also built to tolerate moderate humidity levels of up to 80% without condensation, making it versatile for various industrial settings. Mounting is accomplished through a flange-type design, providing solid installation options. Furthermore, it is capable of functioning at altitudes reaching 1000 meters above sea level, making it adaptable for different geographic locations.