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The HG-RR153K from Mitsubishi is an ultra-low inertia servo motor designed to deliver high performance in a compact form. With a rated output of 1.5 kW, it achieves a rated speed of 3000 RPM and can reach a maximum speed of 6000 RPM, making it suitable for applications requiring rapid response and precision.
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| Manufacturer | Mitsubishi |
|---|---|
| Product Type | Ultra-Low Inertia Servo Motor |
| Product Line | HG Series |
| Part Number | HG-RR153K |
| Weight | 12.00 lbs (5.44 kg) |
| Rated Output | 1.5 kW |
| Rated Speed | 3000 RPM |
| Rated Torque | 4.8 Nm |
| Rated Current | 8.8 Amps |
| Maximum Speed | 6000 RPM |
| Keyway Shaft | Included |
| Maximum Torque | 11.9 Nm |
| Maximum Current | 23 Amps |
| Oil Seal | Included |
| Insulation Class | Class F |
| Maximum Radial Load | 686 N |
| Maximum Axial Load | 196 N |
| Capacity | Medium Capacity |
| Operating Temperature | 0 to 40 degrees Celsius |
The Mitsubishi HG-RR153K serves as an ultra-low inertia servo motor, functioning effectively under demanding conditions. Rated at an output of 1.5 kW, this motor operates smoothly at a nominal speed of 3000 RPM. For applications requiring swift movement, the motor can attain a peak speed of 6000 RPM.
The rated torque for this unit is 4.8 Nm, providing reliable power transfer to connected machinery. It can manage a maximum torque of up to 11.9 Nm when called upon, enhancing its versatility for different tasks.
Current specifications indicate that it operates at a rated current of 8.8 Amps and can withstand a maximum of 23 Amps. Additionally, it includes a keyway shaft to facilitate secure mounting and an oil seal, ensuring longevity in various operating environments.
The HG-RR153K is designed to handle a maximum radial load of 686 N and an equally significant maximum axial load of 196 N. This capacity positions it well for moderate applications requiring substantial support. The servo motor operates efficiently within a temperature range of 0 to 40 degrees Celsius, confirming its compatibility with typical industrial environments.