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The HG-KR13BG51-33 is a compact AC servo motor from Mitsubishi’s HG series. It features a 1/33 high-precision gearhead for accurate control and torque delivery.
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| Manufacturer | Mitsubishi |
|---|---|
| Product Type | AC Servo Motor |
| Product Line | HG Series |
| Part Number | HG-KR13BG51-33 |
| Weight | 12.00 lbs (5.44 kg) |
| Gearhead | 1/33 High-Precision Gearhead |
| Reduction Gear | Precision Application Reduction Gear (Flange Output) |
| Supply Voltage Class | 200V AC Class |
| Current | 0.8 A |
| Rated Active Power | 100 W |
| Rated Speed | 3000 RPM |
| Torque | 0.32 Nm |
| Maximum Torque | 1.1 Nm |
| Maximum Speed | 6000 RPM |
| Maximum Current | 2.5 A |
| Efficiency | 48-84% |
| Brake | Electromagnetic Brake |
| Inertia | Low Inertia |
| Capacity | Small Power Capacity |
The HG-KR13BG51-33 model from Mitsubishi is classified as an AC servo motor. This device includes a high-precision gearhead with a ratio of 1/33, designed to facilitate precision in motion control. The motor is equipped with a precision application reduction gear that offers a flange output, which enhances its integration into various systems.
It operates efficiently at a supply voltage of 200V AC, drawing a rated current of 0.8 A. This servo motor achieves 100 W of active power under normal conditions. The device’s rated speed is set at 3000 RPM, while it is capable of reaching a maximum rotational speed of 6000 RPM.
In terms of torque, the HG-KR13BG51-33 provides a nominal torque of 0.32 Nm and can handle a peak torque of up to 1.1 Nm. The motor features a maximum current of 2.5 A for high-demand scenarios. This model is rated for efficiency levels between 48% and 84%, ensuring effective energy use during operation.
The unit is equipped with an electromagnetic brake, enhancing its stopping capabilities. Its low inertia design allows for quick dynamic response, making it suitable for applications requiring rapid motion adjustments. Overall, this servo motor is characterized by its small power capacity, making it ideal for precise tasks in compact spaces.