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The Mitsubishi HC-LFS52K is a brushless servo motor designed for high-efficiency applications. With a rated operational speed of 2000 RPM, this motor ensures robust performance across various tasks.
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| Manufacturer | Mitsubishi |
|---|---|
| Product Line | MELSERVO HC |
| Part Number | HC-LFS52K |
| Weight | 12.00 lbs (5.44 kg) |
| Product | Brushless Servo Motor |
| Electromagnetic Brake | Not Included |
| Shaft Configuration | Shaft with Keyway (No Key) |
| Rated Operational Speed | 2000 RPM |
| Maximum Operating Speed | 3000 RPM |
| Maximum Allowable Speed for Short Durations | 3450 RPM |
| Nominal Torque Capacity | 2.39 N·m |
| Peak Torque Capacity | 7.16 N·m |
| Rated Current | 3.2 A |
| Peak Current | 9.6 A |
| Moment of Inertia | 3.2 x 10⁻⁴ kg·m² |
| Continuous Output Power | 0.5 kW |
| Power Rating at Continuous Rated Torque | 17.9 kW/s |
The HC-LFS52K brushless servo motor from Mitsubishi provides excellent performance in motion control applications. Its design does not include an electromagnetic brake, ensuring simplicity in operation. The motor features a shaft configured with a keyway, although a key is not provided.
Operating at a rated speed of 2000 RPM, it can reach a peak speed of 3000 RPM under standard conditions. For brief periods, it can tolerate speeds up to 3450 RPM, allowing for enhanced flexibility in varied applications. Equip it with a nominal torque capacity of 2.39 N·m, the HC-LFS52K can deliver a peak torque of 7.16 N·m for demanding tasks.
This unit weighs approximately 6.5 kg, making it manageable for mounting in various systems. The rated current necessary for operation is 3.2 A, while peak currents can rise to 9.6 A under maximum load conditions. The motor exhibits a moment of inertia calculated at 3.2 x 10⁻⁴ kg·m², contributing to its responsive nature.
Continuous output power measures at 0.5 kW, with an efficiency power rating of 17.9 kW/s at continuous rated torque. This blend of attributes ensures that the HC-LFS52K is well-suited for applications requiring both speed and torque in performance.