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Mitsubishi HG Series HG-KR053BG71-5

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HG-KR053BG71-5

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The HG-KR053BG71-5 from Mitsubishi is categorized as a low inertia servo motor with a small capacity. This motor, offering a rated power output of 0.05 kW, operates effectively at a speed of 3000 r/min, and is equipped with an electromagnetic brake for optimal control.

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Technical specifications for HG-KR053BG71-5

ManufacturerMitsubishi
Product TypeLow inertia/Small capacity Servo Motor
Product LineHG Series
Part NumberHG-KR053BG71-5
Weight12.00 lbs (5.44 kg)
Rated Power Output0.05 kW
Operating Speed3000 r/min
Electromagnetic BrakePresent
Gear Reducer TypeFlange-mounted shaft output for precision applications
Shaft ConfigurationStandard (Straight shaft)
Continuous Duty Rated Torque0.16 N·m
Peak Torque0.48 N·m
Maximum Rotational Speed6000 r/min
Power Output at Continuous Rated Torque11.3 kW/s
Nominal Current1.0 A
Peak Current3.1 A
Moment of Inertia (J)0.0224 × 10⁻⁴ kg·m²
Radial Load Capacity for Shaft88 N
Axial Load Capacity for Shaft59 N

The Mitsubishi HG-KR053BG71-5 is engineered as a low inertia and small capacity servo motor, ideal for applications that demand precision and efficiency. It produces a rated power output of 0.05 kW and functions at an operating speed of 3000 revolutions per minute (r/min). This motor is notably equipped with an electromagnetic brake, enhancing its operational control significantly.

In applications requiring precision, the gear reducer configured as a flange-mounted shaft output is designed specifically to meet those demands. The standard shaft configuration is straight, which contributes to easy installation and alignment within various systems.

For torque specifications, this motor showcases a continuous duty rated torque of 0.16 N·m, while being capable of generating peak torque of up to 0.48 N·m when needed. The maximum rotational speed extends to 6000 r/min, providing flexibility in application performance.

When operating at continuous rated torque, it achieves a power output of 11.3 kW/s, demonstrating its effectiveness in maintaining energy efficiency. The nominal current draw is 1.0 A, with the capacity to peak at 3.1 A under higher load conditions.

The moment of inertia is presented as 0.0224 × 10⁻⁴ kg·m², which aids in maintaining stable performance during operation. Additionally, this motor can handle a radial load capacity of 88 N on its shaft and an axial load capacity of 59 N, making it applicable for various industrial roles where precision control is paramount.