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The HG-KR13G7K1-45 from Mitsubishi is a geared servo motor equipped with a keyway shaft. It does not have an electromagnetic brake and provides a rated torque of 0.32 Nm, capable of achieving a maximum torque of 1.1 Nm.
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| Manufacturer | Mitsubishi |
|---|---|
| Product Line | HG Series |
| Part Number | HG-KR13G7K1-45 |
| Weight | 12.00 lbs (5.44 kg) |
| Shaft Type | Keyway Shaft |
| Brake | No Electromagnetic Brake |
| Rated Torque | 0.32 Nm |
| Maximum Torque | 1.1 Nm |
| Gearhead | 1/45 High-Precision Gearhead |
| Reduction Gear | Precision Application Reduction Gear (Shaft Output) |
| Rated Speed | 3000 RPM |
| Operating Temperature | 0 to +40 °C |
| Maximum Speed | 6000 RPM |
| Efficiency | 48-84% |
| Rated Current | 0.8 Amps |
| Maximum Radial Load | 88 N |
| Maximum Axial Load | 59 N |
| Maximum Current | 2.5 Amps |
| Motor Type | AC Geared Servo Motor |
Within the Mitsubishi HG Series, the HG-KR13G7K1-45 distinguishes itself as an AC geared servo motor. It is characterized by its keyway shaft design, which provides secure coupling in mechanical assemblies. This model operates without the inclusion of an electromagnetic brake, focusing solely on torque performance. At 0.32 Nm, the rated torque capability allows for efficient operation, while the motor can reach a peak torque of 1.1 Nm under optimal conditions.
The precision application reduction gear, featuring a 1/45 high-precision gearhead, further enhances its operational capabilities. Rated to achieve a speed of 3000 RPM, it can push up to a maximum speed of 6000 RPM. Efficiency ratings for this motor range from 48% to 84%, reflecting its effective energy management in various scenarios.
Operating conditions are suitable within a temperature range of 0 to +40 °C, ensuring reliable performance across typical industrial applications. Current requirements are rated at 0.8 Amps, with a maximum current draw of 2.5 Amps during peak loads. Additionally, it supports a maximum radial load of 88 N and an axial load up to 59 N, making it versatile for diverse tasks in automation processes.