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The HC-SFS502G1117 servo motor by Mitsubishi is a powerful option, rated at 5 kilowatts and designed for industrial applications. It operates efficiently at two thousand RPM and supports an absolute position detector but does not include a braking mechanism.
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| Manufacturer | Mitsubishi |
|---|---|
| Product Line | MELSERVO HC |
| Part Number | HC-SFS502G1117 |
| Weight | 32.00 lbs (14.51 kg) |
| Rated Output | 5 kilowatts |
| Brake Type | No Brake |
| Absolute Position Detector | Supported |
| Speed Rating | 2,000 RPM |
| Insulation Class | Class F |
| 200V-Compatible | Yes |
| Reduction Gear | Flange-Type Gear for General Industrial Machines |
| Reduction Ratio | 1/17 |
| Rated Current | 26A |
| Maximum Current | 84A |
| Enclosure Rating | IP65 (Fully Enclosed) |
| Oil Seal | Supported |
| Shaft Type | Straight Shaft |
| Motor Type | Middle Inertia AC Servo Motor |
| Cooling Method | Self-Cooled |
The Mitsubishi HC-SFS502G1117 stands out as a middle inertia AC servo motor in industrial automation. With an impressive output rated at 5 kilowatts, it is engineered to handle various demanding applications. This motor achieves a speed of 2,000 RPM, making it suitable for tasks that require consistent performance.
Designed without a braking system, the HC-SFS502G1117 utilizes an absolute position detector, enabling precise control and feedback for various applications. It is classified under Class F insulation, offering robust thermal protection during operation. This servo motor is also compatible with 200V systems, enhancing its adaptability.
The model features a flange-type reduction gear tailored for general industrial machines, with a reduction ratio of 1/17, optimizing torque output for various load conditions. This motor is designed to handle a rated current of 26 Amps and can accommodate a maximum current of 84 Amps, indicating its capability to manage significant operational demands.
For environmental considerations, the HC-SFS502G1117 is housed in an IP65-rated enclosure, ensuring comprehensive protection from dust and moisture. It also supports an oil seal to extend durability and reliability in various settings further. The straight shaft design allows for straightforward installation and integration into existing systems, while the self-cooling method ensures effective heat dissipation during operation.