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The Siemens 1FK7032-2AK71-1RH0 is a synchronous motor well-suited for precision applications. It reaches a rated speed of 6000 rpm, providing efficient performance with a torque rating of 0.8 Nm and a nominal current draw of 1.3 A.
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| Manufacturer | Siemens |
|---|---|
| Product Line | 1FK7 |
| Part Number | 1FK7032-2AK71-1RH0 |
| UPC | 887621039578 |
| Weight | 3.13 lbs (1.42 kg) |
| Product | Synchronous Motor |
| Rated Speed | 6000 rpm |
| Number of Poles | 6 |
| Rated Torque | 0.8 Nm |
| Rated Current | 1.3 A |
| Static Torque | 1.10 Nm |
| Stall Current | 1.70 A |
| Moment of Inertia | 0.750 kgcm² |
| Efficiency | 88% |
| Torque Constant | 0.67 Nm/A |
| Electrical Time Constant | 3.45 ms |
| Shaft Height | 36 mm |
| Cooling | Naturally Cooled |
| Protection Class | IP64 |
The Siemens 1FK7032-2AK71-1RH0 synchronous motor is designed for reliable functioning in various applications. This motor operates at a rapid rated speed of 6000 rpm and is engineered with six poles. It boasts a rated torque of 0.8 Nm, which allows for effective power generation with a corresponding rated current of 1.3 A.
In terms of performance, the static torque measures at 1.10 Nm, while the stall current can peak at 1.70 A. This performance ensures robust operation even under demanding conditions. The unit has a moment of inertia of 0.750 kgcm², contributing to its dynamic responsiveness. Total efficiency achieves 88%, highlighting its energy-conserving capabilities.
The torque constant is identified as 0.67 Nm/A, which indicates the motor's responsiveness to input current adjustments. Additionally, the electrical time constant stands at 3.45 ms, allowing for rapid changes in performance based on input signals. Weighing 3.1 kg, this motor has a compact build, with a shaft height of 36 mm suited for various installation scenarios.
Natural cooling is employed, facilitating adequate heat dissipation during operation. The IP64 protection class ensures that the motor is tolerant to dust and water splashes, making it suitable for use in harsher environments.