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The Mitsubishi HG-MR13BD is a brushless servo motor designed for precise performance. With a small power capacity and a rated output of 0.1 kW, it operates efficiently across different applications. The motor reaches a rated speed of 3000 r/min, while its maximum speed can hit 6000 r/min, supporting diverse operational demands.
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| Manufacturer | Mitsubishi |
|---|---|
| Product Line | HG Series |
| Part Number | HG-MR13BD |
| Weight | 10.00 lbs (4.54 kg) |
| Motor Type | Brushless Servo Motor |
| Rated Current | 0.9A |
| Maximum Current | 2.5A |
| Inertia | Ultra-Low Inertia |
| Capacity | Small Power Capacity |
| Rated Output | 0.1 kW |
| Rated Speed | 3000 r/min |
| Electromagnetic Brake | Included |
| Maximum Speed | 6000 r/min |
| Voltage Class | 200V Class |
| Shaft Shape | D-Cut Shaft with Flat |
| Rated Torque | 0.32 Nm |
| Maximum Torque | 0.95 Nm |
The Mitsubishi HG-MR13BD is classified as a brushless servo motor that delivers efficient power in a compact design. The motor is rated for a current draw of 0.9 A under standard operations, reaching a maximum of 2.5 A when required for higher workloads. This brushless design allows for effective performance, particularly in environments where precision is critical.
Operating at a capacity of 0.1 kW, this motor is well-suited for applications that require reliable torque delivery, with a rated torque of 0.32 Nm and a maximum torque of 0.95 Nm. With its rated speed of 3000 r/min, the HG-MR13BD motor can achieve a maximum speed of 6000 r/min, allowing it to adapt to varying engineering load requirements.
This motor's ultra-low inertia characteristic enhances its responsiveness, making it ideal for precise position control in automated systems. It includes an electromagnetic brake to ensure reliable stopping power, facilitating control during operation. The D-cut flat shaft design provides seamless integration and efficient connectivity with compatible components. This servo motor operates within the 200V voltage class, making it compatible with various industrial applications.