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The Mitsubishi HF-KP053BG7121 is an AC gearmotor from the HF Series known for its efficiency and precision. Operating at a supply voltage of 200VAC, this unit has a rated power of 50W, delivering robust performance in various applications.
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| Manufacturer | Mitsubishi |
|---|---|
| Product Line | HF Series |
| Part Number | HF-KP053BG7121 |
| Weight | 4.00 lbs (1.81 kg) |
| Supply Voltage Class | 200VAC Class |
| Rated Current | 0.9 A |
| Rated Active Power | 50 W / 0.05 kW |
| Rotational Speed | 3000 rpm |
| Mounting Mode | 60 x 60 mm Flange Mounting |
| Enclosure Rating | IP44 |
| Maximum Rotational Speed | 4500 rpm |
| Maximum Current | 2.7 A |
| Reduction Gear | Precision Application Reduction Gear (Shaft Output) |
| Gearhead | 1/21 High-Precision Gearhead |
| Motor Capacity | Small Capacity |
| Inertia Type | Low Inertia |
| Brake | Electromagnetic Brake |
| Nominal Torque | 0.16 Nm |
| Product | AC Gearmotor |
The Mitsubishi HF-KP053BG7121 is designed for precision control in various applications. This AC gearmotor functions efficiently within a supply voltage class of 200VAC. It provides rated power output of 50W, equivalent to 0.05 kW, making it suitable for small capacity tasks. This unit operates at a rated current of 0.9 A, with the ability to handle peak current levels of 2.7 A.
The motor's rotational speed averages at 3000 rpm, but it can achieve a maximum rotational speed of 4500 rpm, offering a broad range for different operational needs. It is mounted using a 60 x 60 mm flange, ideal for compact installations. The IP44 enclosure rating indicates that it is protected against some ingress of dust and water, suitable for a variety of environments.
Equipped with a precision application reduction gear on the shaft output, this gearmotor incorporates a 1/21 high-precision gearhead, ensuring accurate motion control. The nominal torque output of 0.16 Nm adds to its functionality. Additionally, the design includes an electromagnetic brake that enhances stop control. The low inertia characteristics of this motor also contribute to its responsiveness, making it an effective choice for systems requiring quick and precise adjustments.