Product image is representative; revision or series may vary. Contact us to request a specific version.
The SGMAH-08AAAYU41 model from Yaskawa’s Sigma II series is a low-inertia rotary servomotor that excels in precise motion applications. It operates at a rated voltage of 230 volts and provides a power output of 0.75 kW, delivering reliability and performance in various settings.
We sell industrial automation parts backed by our free 2-Year DO Supply Warranty.
Same-day domestic and fast international shipping with UPS, FedEx, DHL, and more.
AMEX, Visa, MasterCard, Discover, wire transfer, net terms, and more.
Repairs and exchanges are available for all automation products.
Drop shipping, blind shipping, and account shipping with no extra fees.
| Manufacturer | Yaskawa |
|---|---|
| Product Type | Low-inertia Rotary Servomotor |
| Product Line | Sigma II |
| Part Number | SGMAH-08AAAYU41 |
| Rated Voltage | 230 V |
| Rated Power | 0.75 kW |
| Rated Torque | 2.39 Nm |
| Rated Speed | 3000 RPM |
| Minimum Frequency | 50 Hz |
| Maximum Frequency | 60 Hz |
| Rated Current | 4.4 A |
| Encoder Type | Incremental Encoder |
| Encoder Resolution | 13-bit |
| Shaft Diameter | 16 mm |
| Shaft Length | 22 mm |
In the realm of precision motion control, the Yaskawa SGMAH-08AAAYU41 low-inertia rotary servomotor stands out for its efficiency. It is engineered for operation at a rated voltage of 230 V, enabling power delivery of 0.75 kW. This servomotor can generate a rated torque of 2.39 Nm while achieving speeds up to 3000 RPM.
Supporting both minimum and maximum frequency operations of 50 Hz and 60 Hz respectively, it is designed for a wide range of applications. The rated current for this motor stands at 4.4 A, ensuring stable and robust performance during its operation.
This model employs an incremental encoder with a resolution of 13 bits, which enhances its positional accuracy during operation. For physical specifications, the motor features a shaft diameter of 16 mm and a shaft length of 22 mm, making it suitable for various mounting and integration scenarios.