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Mitsubishi’s HF-KP73BJK is a rotary servo motor designed for precise control and versatility. Operating effectively at an output power of 750 Watts, it is suitable for applications requiring efficient performance.
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| Manufacturer | Mitsubishi |
|---|---|
| Product Line | HF Series |
| Part Number | HF-KP73BJK |
| Weight | 12.00 lbs (5.44 kg) |
| Shaft Type | Keyway Shaft with Key |
| Oil Seal | Included |
| Operating Temperature | 32 to 104 degrees Fahrenheit (Non-Freezing) |
| Output Power | 750 Watts |
| Speed Rating | 3,000 revolutions per minute (RPM) |
| Type of Brake | Built-In Electromagnetic Brake |
| Rated Torque | 2.3 Newton-meters |
| Rated Current | 5.2 Amps |
| Encoder | 18-Bit Encoder |
| Storage Temperature | 5 to 158 degrees Fahrenheit (Non-Freezing) |
| Maximum Torque | 7.2 Newton-meters |
| Capacity | Small Capacity |
| Inertia | Low Inertia |
| Maximum Current | 15.6 Amps |
| Device Type | Rotary Servo Motor |
The Mitsubishi HF-KP73BJK is a rotary servo motor engineered for applications that demand both precision and efficiency. It operates at an output power of 750 Watts, making it suitable for small capacity operations.
With a maximum speed of 3,000 RPM, this motor is capable of providing quick and accurate responses to control commands. The built-in electromagnetic brake adds a layer of safety, ensuring that the motor can quickly stop when required.
This unit features a keyway shaft with a key, allowing for stable and secure mechanical connections. Additionally, an oil seal is included to protect the internal components from contaminants, enhancing durability. The rated torque is measured at 2.3 Newton-meters, while the maximum torque reaches up to 7.2 Newton-meters. It operates at a rated current of 5.2 Amps, providing efficient performance that can peak at 15.6 Amps.
The unit employs an 18-bit encoder, offering high-resolution positional feedback to enhance control precision. Functioning optimally at operating temperatures ranging from 32 to 104 degrees Fahrenheit, this servo motor can also be stored within a broader temperature range of 5 to 158 degrees Fahrenheit. The low inertia characteristic of this model contributes to its rapid acceleration and deceleration, making it an excellent choice for a variety of applications requiring quick adjustments.