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The HG-KR43BG71-33 is a specialized AC gearmotor from Mitsubishi's HG Series, designed for precision applications. With a maximum load capacity of 245 N radially and 98 N axially, this motor operates efficiently within a 200V AC voltage class.
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| Manufacturer | Mitsubishi |
|---|---|
| Product Line | HG Series |
| Part Number | HG-KR43BG71-33 |
| Weight | 15.00 lbs (6.80 kg) |
| Maximum Radial Load | 245 N |
| Maximum Axial Load | 98 N |
| Rated Current | 2.6A |
| Maximum Current | 9.1A |
| Reduction Gear | Precision Application Reduction Gear (Shaft Output) |
| Gearhead Option | 1/33 High-Precision Gearhead |
| Capacity | Small Capacity |
| Inertia | Low Inertia |
| Rated Torque | 1.3 Nm |
| Maximum Torque | 4.5 Nm |
| Brake | Electromagnetic Brake |
| Rated Speed | 3000 RPM |
| Voltage Class | 200V AC Class |
| Maximum Speed | 6000 RPM |
| Motor Type | AC Gearmotor |
The Mitsubishi HG-KR43BG71-33 AC gearmotor is engineered for optimal performance in precision applications. Designed to handle maximum radial loads of 245 N and axial loads of 98 N, this motor efficiently supports smaller scale operations. It operates with a rated current of 2.6 A and can handle a peak current of 9.1 A.
This gearmotor includes a high-precision gearhead with a gear ratio of 1/33, which aids in the accurate management of torque and speed. The rated torque of this unit measures at 1.3 Nm, with a maximum torque capability of 4.5 Nm. It achieves rated speeds of 3000 RPM while also being capable of reaching maximum speeds of up to 6000 RPM, providing versatility in various operational scenarios.
Additionally, the unit boasts low inertia characteristics, which enhance its responsiveness to control inputs, vital for dynamic applications. An electromagnetic brake is integrated into the design, contributing to improved safety and control over the motor's operation. The voltage rating class is standardized to 200V AC, ensuring compatibility with typical industrial power systems. Overall, the HG-KR43BG71-33 is a reliable choice for applications that demand precision and efficiency.