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The HC-SF102G1H129 is a robust solution from Mitsubishi’s MELSERVO HC series. This servo motor has a power rating of 1 kilowatt and delivers a speed of up to 2,000 RPM, making it suitable for various applications requiring precision and reliability.
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| Manufacturer | Mitsubishi |
|---|---|
| Product Line | MELSERVO HC |
| Part Number | HC-SF102G1H129 |
| Weight | 32.00 lbs (14.51 kg) |
| Speed Rating | 2,000 RPM |
| Reduction Gear | General Industrial Machine Reduction Gear (Leg Type) |
| Reduction Ratio | 1/29 |
| Braking Unit | None |
| Power Rating | 1 kilowatt |
| Enclosure Type | IP65 |
| Inertia | Middle Inertia |
| Capacity | Middle Capacity |
| Cooling Method | Self-Cooled |
| Shaft Shape | Straight Shaft (Standard) |
| Accessories | Oil Seal |
| Rated Torque | 4.78 N-m |
| Insulation Class | Class F |
| Maximum Torque | 14.4 N-m |
Mitsubishi's HC-SF102G1H129 motor, part of the MELSERVO HC series, delivers efficiency and reliable performance. Operating with a maximum speed of 2,000 RPM, it is ideal for systems that require consistent speed control. The motor has a power output of 1 kilowatt, making it suitable for a variety of applications.
It incorporates a general industrial machine reduction gear with a reduction ratio of 1/29. Its enclosure rating of IP65 provides a solid defense against dust and moisture, facilitating operation in various environments. The unit’s Class F insulation offers good thermodynamic performance.
With an approximate weight of 15.4 pounds (7 kg), this motor is manageable while still providing middle inertia and capacity to meet numerous industrial demands. The rated torque stands at 4.78 N-m, with a maximum torque rating of 14.4 N-m, which contributes to its capability in handling diverse tasks. The design includes a straight shaft, standardized for compatibility and ease of integration into existing systems. A self-cooling method ensures that the motor can maintain performance without additional cooling systems. An oil seal is included, promoting enhanced durability and operational reliability.