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Siemens' 1FT6086-8AF71-3AA2 is an AC servomotor designed for precise control and efficient operation. This synchronous motor operates at a rated speed of 3000 RPM and features an 8-pole configuration.
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| Manufacturer | Siemens |
|---|---|
| Product Type | AC Servomotor |
| Product Line | 1FT6 |
| Part Number | 1FT6086-8AF71-3AA2 |
| UPC | 662643374520 |
| Weight | 56.00 lbs (25.40 kg) |
| Type of Construction | IM B5 (standard) |
| Rated Speed | 3000 RPM |
| Cooling Method | Natural Cooling |
| Number of Poles | 8 |
| Frame Size | 8 |
| Motor Type | Electric |
| Synchronous/Asynchronous Motor | Synchronous |
| Vibration Severity Grade | N |
| Degree of Protection | IP67 |
| Holding Brake | Without |
| Shaft Type | Standard |
| Shaft Key | With key |
| Radial Eccentricity | N |
| Connector Outlet Direction | Axial NDE |
The Siemens 1FT6086-8AF71-3AA2 AC servomotor is a robust solution designed for a variety of industrial applications. Operating at a rated speed of 3000 RPM, this synchronous motor provides precise motion control. It consists of a construction type adhering to the IM B5 standard, ensuring compatibility with various mounting arrangements.
This motor is configured with 8 poles, delivering smooth operation under different load conditions. Utilizing natural cooling, it maintains operational stability without the need for additional cooling systems. The degree of protection rated at IP67 certifies its resilience against dust and moisture, making it suitable for demanding work environments.
Complementing its durability, the motor does not include a holding brake, which may be desirable in applications that do not require static positioning when power is removed. The standard shaft is engineered for reliable coupling, complete with a key for secure attachment. The connector outlet is oriented in the axial direction for the non-drive end (NDE), facilitating straightforward wiring in confined spaces. Overall, this motor is designed to meet high-performance criteria while providing seamless integration into existing systems.