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Mitsubishi HF Series HF-SP102G5133

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HF-SP102G5133

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The HF-SP102G5133 from Mitsubishi is a servo motor featuring a precision application reduction gear with a gear ratio of 1/33. This model operates efficiently across a voltage range of 200 to 230 volts AC, providing a rated output power of 1 kW and a rated speed of 2000 RPM, while reaching maximum speeds of up to 3000 RPM.

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Technical specifications for HF-SP102G5133

ManufacturerMitsubishi
Product LineHF Series
Part NumberHF-SP102G5133
Weight30.00 lbs (13.61 kg)
Reduction GearPrecision Application Reduction Gear
Shaft TypeStraight Shaft
Gear Ratio1/33
Rated Current5.3 Amps
Maximum Current15.9 Amps
Rated Speed2000 RPM
Maximum Speed3000 RPM
Voltage200 to 230 Volts AC
MountingFlange Mounting
Rated Output Power1 kW
Rated Torque4.77 Nm
Maximum Torque14.3 Nm
InertiaMedium Inertia
Motor CapacityMedium Capacity
Motor TypeServo Motor

The Mitsubishi HF-SP102G5133 is a servo motor distinguished by its precision application reduction gear, featuring a gear ratio of 1/33. Capable of operating at voltages ranging from 200 to 230 Volts AC, it ensures compatibility with standard industrial power supplies. This motor provides a rated output power of 1 kW, effectively serving various automated applications.

Operating at a rated speed of 2000 RPM, the HF-SP102G5133 can achieve a peak performance speed of 3000 RPM, allowing it to adapt to dynamic operational requirements. The rated current is set at 5.3 Amps, yet the motor can handle an impressive maximum current of 15.9 Amps when necessary, providing additional power for demanding tasks.

In terms of torque, it delivers a rated torque of 4.77 Nm, with the capability to handle a maximum torque of 14.3 Nm for applications requiring more force. Its medium inertia profile allows for efficient acceleration and deceleration, making it responsive to control commands. For mounting, it employs a flange design, simplifying installation in various setups while maintaining stability during operation. The straight shaft type further enhances ease of integration with existing machinery, ensuring reliable performance.