Description
Designed for industrial motion control applications requiring stable load matching and robust torque output, the HC-SF202K is a high-performance AC servo motor manufactured by Mitsubishi Electric. This unit is part of the MELSERVO HC-SF series, engineered specifically to address mid-range inertia and capacity requirements in automated machinery. It provides precise speed regulation and reliable dynamic response across its operating envelope.
Equipped with a keyed shaft configuration, this servo motor ensures secure mechanical coupling and slip-free torque transmission in high-torque demand environments. The electrical and mechanical design makes it suitable for integration with compatible Mitsubishi Electric servo drives, serving as a reliable actuator in transfer systems, material handling units, and specialized manufacturing machinery.
Features
- Middle inertia design optimizes load control for systems with variable or heavy load ratios.
- Robust 2 kW rated output accommodates demanding industrial processing tasks.
- Straight shaft with keyway ensures secure torque transmission and simplifies mechanical alignment.
- High-density winding technology provides compact physical dimensions relative to output capacity.
Applications
- Packaging and labeling systems requiring precise positioning.
- Material handling and conveyor systems with variable loads.
- CNC machine axes and metalworking machinery.
- Automated assembly systems and industrial robotics.
Technical Specifications
Manufacturer
| Mitsubishi Electric |
Model
| HC-SF202K |
Series
| HC-SF Series (Middle Inertia, Middle Capacity) |
Product Type
| AC Servo Motor |
Rated Output
| 2.0 kW |
Rated Speed
| 2000 r/min |
Shaft Type
| With keyway (With key) |
Mass
| 12.0 kg (26.5 lb) |
Installation Guidelines
To ensure optimal operation and prolong the service life of the motor, observe the following engineering guidelines during installation:
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Alignment: Ensure precise alignment between the motor shaft and the driven load. Misalignment can lead to premature bearing wear and shaft failure. Use flexible couplings where appropriate.
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Environmental Protection: Mount the motor in an environment free from excessive moisture, oil mist, and conductive dust. Provide adequate ventilation around the motor housing to facilitate natural heat dissipation.
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Wiring: Route power and feedback (encoder) cables separately to minimize electromagnetic interference. Ensure all connections are secure and properly insulated.
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Grounding: Ensure the motor frame is securely grounded to the main protective earth terminal of the control cabinet.