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The FANUC A06B-6127-H105 is a servo amplifier module within the Alpha i series, specifically the AISV-80HV model. It operates with an input voltage range of 565 to 679 VAC, delivering a power output of 5.8 kW, designed for precise motion control applications.
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| Manufacturer | FANUC |
|---|---|
| Product Type | Servo amplifier module (Alpha i series AISV-80HV) |
| Product Line | A06B |
| Part Number | A06B-6127-H105 |
| Weight | 8.75 lbs (3.97 kg) |
| Input Voltage | 565–679 VAC |
| Rated Current | 18.2 A |
| Power Output | 5.8 kW |
| Frequency | 50/60 Hz |
| Cooling | Forced-air cooling |
| Protections | Overcurrent, overvoltage, overtemperature |
| Isolation | Galvanic isolation |
| Drive Topology | PWM Inverter with IGBT Technology |
| Feedback System Compatibility | Supports Absolute/Incremental Encoders, Resolvers |
| Overcurrent Protection | Dynamic Short-Circuit Current Limiting |
| Overvoltage Protection | DC Bus Overvoltage Clamping |
| Operating Temperature Range | 0°C to 55°C (32°F to 131°F) |
The A06B-6127-H105 from FANUC is a robust servo amplifier module categorized under the Alpha i series (AISV-80HV). Designed for high-performance applications, this module requires an input voltage between 565 and 679 VAC and maintains a rated current of 18.2 A. Capable of delivering 5.8 kW of power, it operates effectively on a frequency spectrum of 50 to 60 Hz.
This specific amplifier module utilizes a PWM inverter design equipped with IGBT technology, ensuring efficient performance during operations. Thermal management is facilitated through forced-air cooling, enhancing reliability under high loads. The operating temperature ranges from 0°C to 55°C (32°F to 131°F), allowing versatility across various environmental conditions.
In terms of feedback compatibility, the A06B-6127-H105 supports both absolute and incremental encoders, in addition to resolvers, making it adaptable for different setups. Protection mechanisms are integral to its design: it includes dynamic short-circuit current limiting for overcurrent protection and DC bus overvoltage clamping for safeguarding against voltage spikes. This ensures stable performance and longevity in demanding applications.