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The HG-KN13BJ from Mitsubishi is configured as a low inertia servo motor. Rated to deliver a maximum output of 100 watts, it operates effectively at a motor speed of 3,000 RPM.
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| Manufacturer | Mitsubishi |
|---|---|
| Product Type | Low Inertia Servo Motor |
| Product Line | HG Series |
| Part Number | HG-KN13BJ |
| Weight | 4.00 lbs (1.81 kg) |
| Shaft Type | Straight Shaft |
| Brake Type | Electromagnetic Brake |
| Attachment | Oil Seal |
| Rated Torque | 0.32 Newton-meter |
| TENC Structure | Included |
| Flange Size | 1.57 x 1.57 inches (40 x 40 millimeters) |
| Maximum Torque | 0.95 Newton-meter |
| Rated Motor Speed | 3,000 revolutions per minute (RPM) |
| Current Rating | 0.8 Amperes |
| Enclosure Rating | IP65 |
| Rated Output | 100 Watts |
| Maximum Radial Load | 88 N |
| Maximum Axial Load | 59 N |
| Supply Voltage Class | 200 Volts AC Class |
In the Mitsubishi HG Series, the HG-KN13BJ low inertia servo motor is built for responsive applications requiring moderate power. With its rated output at 100 Watts, it achieves a consistency in performance suited for various automation tasks. The straight shaft design facilitates seamless integration with existing equipment.
The electromagnetic brake is integrated to provide added control during operation, ensuring reliability in stopping and holding positions. This unit boasts a rated torque of 0.32 Newton-meter, which enables effective motion control, while the maximum torque capacity reaches up to 0.95 Newton-meter for dealing with higher load conditions. The motor is capable of sustaining a rated speed of 3,000 revolutions per minute (RPM), allowing it to meet the demands of quick-response applications.
Current consumption is rated at 0.8 Amperes, supporting efficient activity while being powered through a supply voltage class of 200 Volts AC. The unit includes an oil seal as part of its construction, enhancing its robustness in environments that may involve lubrication.
Encased in an IP65 structure, the HG-KN13BJ is protected against dust particles and low-pressure water jets, increasing its adaptability to harsh operational settings. It is designed to bear a maximum radial load of 88 N and a maximum axial load of 59 N, illustrating its capacity to handle diverse operational requirements without compromising performance.