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The FANUC A16B-1210-0481 is a control mainboard designed specifically for applications that require serial interfacing with Fanuc AC spindle drives and Fanuc Alpha spindle drives. This component features a lightweight design, weighing only 0.32 kg, making it suitable for integration into various systems.
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| Manufacturer | FANUC |
|---|---|
| Product Line | Series 16 |
| Part Number | A16B-1210-0481 |
| Weight | 1.56 lbs (0.71 kg) |
| Product | Control Mainboard |
| Digital Inputs | 64 Channels |
| Digital Outputs | 32 Channels |
| Input Voltage | 24 V DC |
| Ambient Temperature Range | 0 to 40 degrees Celsius |
| Operating Humidity Range | 80% (non-condensing) |
| Storage Humidity Range | 80% (non-condensing) |
| Maximum Operating Altitude | 1000 meters above sea level without derating |
| Intended Use | Run with serial interfaced Fanuc AC spindle drives and Fanuc Alpha spindle drives |
FANUC's A16B-1210-0481 control mainboard represents precision engineering for automation tasks. This unit is designed for effective communication and control when integrated with Fanuc AC spindle drives and Fanuc Alpha spindle drives. Weighing a mere 0.32 kg, this mainboard is compact yet powerful, offering considerable functionality in a lightweight package.
The control board offers a generous configuration of 64 digital input channels, combined with 32 digital output channels, providing extensive control capabilities in various applications. Operating at a stable 24 V DC input voltage, it maintains optimal performance across a specified temperature range of 0 °C to 40 °C. The board is engineered to withstand high humidity levels, operating reliably up to 80% relative humidity without risk of condensation affecting its performance.
Engineers can confidently utilize the A16B-1210-0481 in environments with altitudes reaching 1000 meters above sea level, without any derating. This parameter is crucial for setups located at significant elevations. Furthermore, the control mainboard is designed for seamless integration into systems that utilize serial communication, making it an ideal solution for efficient operation within specialized Fanuc ecosystems.