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The Mitsubishi HG-JR37K1M4 is a robust brushless servo motor designed for demanding applications. It operates efficiently at a supply voltage of 400VAC, offering a significant output power of 37kW and a nominal torque of 236Nm at a rotational speed of 1500rpm.
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| Manufacturer | Mitsubishi |
|---|---|
| Product Line | HG Series |
| Part Number | HG-JR37K1M4 |
| Weight | 32.00 lbs (14.51 kg) |
| Supply Voltage Class | 400VAC class |
| Inertia Type | Low Inertia |
| Output Power | 37kW |
| Rated Current | 79A |
| Rotational Speed | 1500rpm |
| Torque | 236Nm Nominal |
| Maximum Torque | 707Nm |
| Connection Type | MS-Type Connectors |
| Maximum Speed | 2500rpm |
| IP Rating | IP44 |
| Capacity | Medium/Large Capacity |
| Shaft Type | Straight Shaft |
| Built-In Thermistor | Included |
| Cooling Type | Forced Ventilation Cooling |
| Motor Type | Brushless Servo Motor |
The Mitsubishi HG-JR37K1M4 serves as a powerful brushless servo motor characterized by its capacity to deliver up to 37kW of output power. Its design incorporates low inertia, resulting in enhanced responsiveness and efficiency, crucial for various industrial needs. This motor achieves a rated current of 79A and nominal torque of 236Nm, with impressive capability to reach a maximum torque of 707Nm.
Functioning effectively at a rotational speed of 1500rpm, this motor can operate at peak speeds up to 2500rpm, making it suitable for applications requiring rapid dynamic behavior. The HG-JR37K1M4 is equipped with MS-type connectors for easy integration into existing systems. Providing IP44 protection, the motor is safeguarded against dust and water intrusion, ensuring reliability even in challenging environments.
For temperature management, this servo motor includes a built-in thermistor, which allows for precise monitoring of its thermal state during operation. It also utilizes forced ventilation cooling, thereby extending operational longevity by preventing overheating. With its straight shaft design, this medium to large capacity motor meets the rigorous demands of contemporary automation and control systems.