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The HG-MR43B is an AC servo motor from Mitsubishi’s HG Series. Designed to operate within a 200V class, this unit features a straight shaft and connects via a 4-pin rectangular connector. It provides a rated output of 0.4 kW and supports operation at a rated speed of 3000 r/min, with a small capacity. Its maximum torque reaches 3.8 Nm, with a rated torque of 1.3 Nm.
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| Manufacturer | Mitsubishi |
|---|---|
| Product Line | HG Series |
| Part Number | HG-MR43B |
| Weight | 10.00 lbs (4.54 kg) |
| Device Type | AC Servo Motor |
| Voltage Class | 200V Class |
| Connection Type | 4-Pin Rectangular Connector |
| Shaft Shape | Straight Shaft |
| Rated Torque | 1.3 Nm |
| Maximum Torque | 3.8 Nm |
| Rated Current | 2.6 A |
| Maximum Current | 9 A |
| Inertia | Ultra-Low Inertia |
| Capacity | Small Capacity |
| Rated Output | 0.4 kW |
| Rated Speed | 3000 r/min |
| Brake | Electromagnetic Brake |
| Maximum Speed | 6000 r/min |
Mitsubishi's HG-MR43B is categorized as an AC servo motor suitable for various precision tasks. It operates efficiently at a voltage rating 200V, fitting seamlessly into standard industrial systems. It utilizes a 4-pin rectangular connector for straightforward integration and features a straight shaft design.
The motor delivers a rated output of 0.4 kW, ideal for smaller capacity applications. Its rated torque of 1.3 Nm, with a peak performance torque of 3.8 Nm, facilitates reliable performance under different load conditions. Designed for nimble operation, this motor can reach a speed of 3000 r/min under normal conditions and achieve a maximum speed of 6000 r/min when required.
Its ultra-low inertia design further complements energy efficiency, providing enhanced reaction times essential for applications demanding precision. The motor's rating also allows for a maximum current draw of 9 A, with standard operation at 2.6 A. Including an electromagnetic brake offers safety and control, ensuring the motor stops reliably when power is cut. The HG-MR43B from Mitsubishi represents a compact, efficient solution for modern automation challenges.