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The Siemens 1FT6102-1AC71-1EH1 is a synchronous AC servomotor designed for high performance in various applications. It operates at a rated speed of 2000 RPM and features an IP65 protection rating, ensuring effective service in diverse environments.
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| Manufacturer | Siemens |
|---|---|
| Product Type | AC Servomotor |
| Product Line | 1FT6 |
| Part Number | 1FT6102-1AC71-1EH1 |
| UPC | 662643012835 |
| Weight | 70.00 lbs (31.75 kg) |
| Radial Eccentricity | N |
| Connector Outlet Direction | Transverse, right |
| Type of construction | IM B5 (standard) |
| Rated Speed | 2000 RPM |
| Cooling Method | Natural Cooling |
| Number of Poles | 1 |
| Frame Size | 10 |
| Motor Type | Electric |
| Synchronous/Asynchronous Motor | Synchronous |
| Vibration Severity Grade | N |
| Degree of Protection | IP65 |
| Holding Brake | With |
| Shaft Type | Standard |
| Shaft Key | With key |
The Siemens 1FT6102-1AC71-1EH1 serves as an AC servomotor, optimized for precise motion control. It operates with a synchronous motor design, achieving a rated speed of 2000 RPM, making it suitable for rapid cycles in automation tasks. Its natural cooling system enhances durability while maintaining performance efficiency. The device is constructed as an IM B5 type, ensuring standard mounting compatibility for ease of integration into existing systems.
Protection against external contaminants is assured with an IP65 rating, allowing operation in environments with potential exposure to dust and moisture. The motor has a single pole configuration, which contributes to its functionality in various configurations.
Additionally, it features a holding brake that enhances operational safety during position holding, preventing unwanted movement. The shaft is constructed in a standard format and includes a key for effective fixation during assembly and operation. The connector outlet is designed to be transverse and directed to the right, facilitating efficient cable management during installation. With a vibration severity grade of N, this motor exhibits stable performance, making it effective for continuous-duty operations.