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The Mitsubishi HG-JR30K1M4 model is an AC rotary servo motor with a substantial output power of 30 kW. It operates efficiently at a supply voltage of 400 VAC and provides reliable performance with a rated current of 68 A.
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| Manufacturer | Mitsubishi |
|---|---|
| Product Line | HG Series |
| Part Number | HG-JR30K1M4 |
| Weight | 32.00 lbs (14.51 kg) |
| Motor Type | AC Rotary Servo Motor |
| Output Power | 30 kW |
| Supply Voltage Rating | 400 VAC |
| Rated Current | 68 A |
| Rotational Speed | 1500 rpm |
| Nominal Torque | 191 Nm |
| Connection Type | MS-Type Connectors |
| Mounting Flange | 250 x 250 mm Flange |
| Degree of Protection | IP44 |
| Encoder Type | 22-Bit Encoder |
| Inertia | Low Inertia |
| Motor Capacity | Medium/Large Power Capacity |
| Thermistor | Built-In Thermistor |
| Forced Ventilation Cooling | Supported |
The Mitsubishi HG-JR30K1M4 belongs to the HG Series of AC rotary servo motors, delivering 30 kW of output power. It is specifically designed to operate at a supply voltage of 400 VAC. This motor consumes a rated current of 68 A and operates efficiently at a rotational speed of 1500 rpm. The nominal torque provided by this unit is 191 Nm, making it suitable for various applications.
Connectivity options include MS-type connectors, ensuring reliable connections in operational setups. This motor's mounting flange size is 250 mm x 250 mm, making it easy to integrate into existing systems. The HG-JR30K1M4's degree of protection is rated at IP44, providing some resistance to dust and water ingress.
In terms of performance precision, the motor is equipped with a 22-bit encoder that enhances position feedback accuracy, suitable for applications requiring precise motion control. Its low inertia design enables quicker response times, improving the overall dynamic behavior of connected systems.
Built-in thermistor functionality adds layer of safety, monitoring the motor's temperature. Forced ventilation cooling is also supported to enhance thermal management, making it capable of handling extensive workloads in various environments.