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Mitsubishi's HG-KR13BG71-45 is engineered as part of the HG Series, showcasing an AC geared servo motor configuration. Designed with precision in mind, this model features a straight shaft and utilizes a 22-bit absolute encoder for accurate position feedback, providing up to 100 watts of output power.
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| Manufacturer | Mitsubishi |
|---|---|
| Product Line | HG Series |
| Part Number | HG-KR13BG71-45 |
| Weight | 12.00 lbs (5.44 kg) |
| Brake Type | Electromagnetic Brake |
| Shaft Type | Straight |
| Torque | 0.32 Nm |
| Maximum Torque | 1.1 Nm |
| Encoder Type | 22-Bit Absolute Encoder |
| Connector | 4-Pin Rectangular Connector |
| Reduction Gear | Precision Application Gear (Shaft Output) |
| Operating Temperature | 0 to +40 °C |
| Gearhead | 1/45 High-Precision Gearhead |
| Efficiency | 48-84% |
| Mounting | 90x90 mm Flange |
| Maximum Radial Load | 88 N |
| Maximum Axial Load | 59 N |
| Output Power | 100 Watts |
| Motor | AC Geared Servo Motor |
The Mitsubishi HG-KR13BG71-45 from the HG Series is a highly efficient AC geared servo motor suitable for diverse industrial applications. With its straight shaft design, this motor combines functionality with precision. It incorporates an electromagnetic brake, ensuring reliable stopping power during operation. The device is particularly noted for its 0.32 Nm nominal torque and a peak torque capacity of 1.1 Nm, which highlights its robust capabilities in action.
Equipped with a 22-bit absolute encoder, the motor allows for fine-tuned position control, which is crucial in automated systems. The power output for this model stands at 100 watts, making it appropriate for a variety of tasks. Efficiency ratings range between 48% to 84%, illustrating its performance under different operating conditions.
This motor's reduction gear is a precision application gear that facilitates the precise output while enabling effective torque transmission. The mounting specifications of the motor feature a standard 90x90 mm flange for easy installation. The maximum radial load that can be sustained is 88 N, while the motor can handle an axial load of up to 59 N, showcasing its capacity for handling heavy loads. Operating conditions for this component are specified between 0 to +40 °C, emphasizing its reliability in standard environments.