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The FANUC A06B-6112-H045#H550 is a spindle amplifier module designed for efficient control within various systems. It operates on an input voltage range of 283 to 339 volts, delivering a maximum output of 240 volts AC with a rated output current of 198 amperes.
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| Manufacturer | FANUC |
|---|---|
| Product Line | A06B |
| Part Number | A06B-6112-H045#H550 |
| Weight | 45.00 lbs (20.41 kg) |
| Product | Spindle Amplifier Module |
| Minimum Input Voltage | 283V |
| Maximum Input Voltage | 339V |
| Insulation Class | F |
| Maximum Output Voltage | 240V AC |
| Rated Output Current | 198A |
| Number of Phases | 1 |
| Power Rating | 2 kW |
| Maximum Ambient Temperature | 60 degrees Celsius |
| Minimum Ambient Temperature | 0 degrees Celsius |
| Operating Humidity | 80% (non-condensing) |
| Storage Humidity | 80% (non-condensing) |
| Maximum Operating Altitude | 1000 meters above sea level without derating |
The A06B-6112-H045#H550 from FANUC is a spindle amplifier module, engineered to manage the intricate demands of spindle motors. With a minimum input voltage requirement of 283 volts and a maximum of 339 volts, it provides essential flexibility for various applications. The module's insulation class is noted to be F, ensuring reliable performance under thermal stress.
This product can output a maximum voltage of 240 volts AC while delivering a rated output current reaching 198 amps, indicating its capacity to support significant loads effectively. As a one-phase device, it functions efficiently across various industrial settings. The power rating stands at 2 kW, suitable for diverse operational needs.
Temperature resilience is an important feature of this module, as it can maintain functionality in an ambient temperature ranging from 0 degrees Celsius to a maximum of 60 degrees Celsius. Additionally, it is designed to operate in environments with up to 80% relative humidity, both during operation and while stored. Lastly, this spindle amplifier module can handle altitudes of up to 1000 meters above sea level without derating, signifying its robustness in a variety of installations.