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The HC202S AC servo motor from Mitsubishi operates at a voltage rating of 138 volts and is configured for a current rating of 11 Amps. It can handle frequencies of 50 and 60 Hz, delivering an output power of 2 kW.
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| Manufacturer | Mitsubishi |
|---|---|
| Product Type | AC Servo Motor |
| Product Line | MELSERVO HC |
| Part Number | HC202S |
| Weight | 27.00 lbs (12.25 kg) |
| Voltage Rating | 138V |
| Current Rating | 11A |
| Frequency | 50/60 Hz |
| Output Power | 2 kW |
| Rated Rotational Speed | 2000 RPM |
| Operating Temperature | 0 to 40 degrees Celsius |
| Storage Temperature | -15 to 70 degrees Celsius |
| Maximum Ambient Operating Humidity | 80% RH Without Condensation |
| Maximum Ambient Storage Humidity | 90% RH Without Condensation |
The Mitsubishi HC202S is an AC servo motor specifically designed to provide reliable performance for various applications. Its nominal voltage is set at 138 volts, allowing it to operate efficiently under appropriate electrical conditions. The device is rated for a maximum current of 11 Amps, suitable for powering standard industrial operations. This motor supports both 50 and 60 Hz frequency operations, making it versatile for diverse systems.
This motor produces an output power of 2 kW, delivering adequate energy for demanding tasks. Additionally, it maintains a rated rotational speed of 2000 RPM, facilitating smooth and efficient motion control.
The operating temperature range for the HC202S spans from 0 to 40 degrees Celsius, ensuring optimal functionality in various environments. For storage, it can endure temperatures between -15 and 70 degrees Celsius, allowing for flexible placement and management in different operational scenarios.
Humidity management is also a critical feature for the HC202S. It can operate in ambient conditions with humidity levels reaching up to 80% without condensation, ensuring lasting performance in challenging environments. Furthermore, the motor can be stored in conditions where humidity levels do not exceed 90%, providing added assurance in terms of environmental adaptability.