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The Siemens 6SE6400-3CC11-7FD0 is a line reactor within the MICROMASTER series, specifically designed to enhance the performance of motor systems. This reactor operates effectively at a voltage range of 200 to 480 volts and supports a rated current of 186 amps.
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| Manufacturer | Siemens |
|---|---|
| Product Type | Micromaster Line Reactor |
| Product Line | MICROMASTER |
| Part Number | 6SE6400-3CC11-7FD0 |
| UPC | 783087661998 |
| Weight | 53.00 lbs (24.04 kg) |
| Rated Current | 186 A |
| Voltage Range | 200-480V AC |
| Effective Power Loss | 280 W (at 50 Hz), 360 W (at 60 Hz) |
| Frequency | 50/60 Hz |
| Phase Type | 3-phase (3AC) |
| Rated Power | 90 kW (125 HP) |
| Mounting Type | Stand-alone |
| Connection Type | For PE conductor |
| Operating Temperature | 0 to 40 degrees Celsius |
| Storage Temperature | 0 to 50 degrees Celsius |
| Maximum Operating Humidity | 80% RH without condensation |
| Maximum Operating Altitude | 1000 meters above sea level without derating |
The 6SE6400-3CC11-7FD0 model from Siemens is a micromaster line reactor designed to improve the operation and reliability of 3-phase AC systems. This reactor can handle voltages spanning 200 to 480 volts AC, with a substantial rated current of 186 amperes, providing robust support for industrial applications. The unit is designed to manage both 50 and 60 Hz frequencies, ensuring versatility across different operational environments.
In terms of power performance, the reactor is rated at 90 kW (125 HP), and it effectively loses 280 watts at 50 Hz, increasing to 360 watts at 60 Hz. This information is crucial for understanding energy efficiency and operational costs.
Weighing in at 24.04 kg, the reactor is suited for stand-alone mounting, making it convenient for installation in various settings. It is designed for a maximum operating temperature of 40 degrees Celsius, with a storage temperature capacity extending to 50 degrees Celsius. Additionally, this unit can operate in relative humidity conditions of up to 80% without the risk of condensation affecting its performance. Moreover, it can be installed at altitudes of up to 1000 meters above sea level without experiencing derating. This flexibility in placement makes it a reliable choice for numerous industrial applications.