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The A16B-2200-0434 from FANUC is a remote I/O interface board that enables effective communication with digital signals in industrial control systems. This board is designed to manage 32 input and 32 output channels, making it suitable for diverse operational needs.
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| Manufacturer | FANUC |
|---|---|
| Product Type | Remote I/O Interface Board |
| Product Line | Series 16 |
| Part Number | A16B-2200-0434 |
| Communication Type | Remote I/O |
| Interface Type | Ribbon Cable + Header Pins |
| I/O Channels | 32 in / 32 out |
| Status Indicators | LED per Channel |
| Logic Voltage | 5 V DC |
| Mounting Format | Backplane Slot |
| PCB Material | Polyimide Laminate |
| Isolation Method | Optical |
| Connector Count | 4 |
| Operating Temperature Range | 0 – 55 °C |
| Signal Type | Digital |
| Power Consumption | 6 W |
The FANUC A16B-2200-0434 remote I/O interface board serves as a crucial component in managing signal communication for automated systems. Designed for optimal performance, it allows for a seamless connection via ribbon cable combined with header pins. This unit facilitates 32 channels for both input and output of digital signals, enhancing the capability for sophisticated automation tasks.
Each channel includes an LED status indicator, providing immediate visual feedback on operational status. Operating at a logic voltage of 5 V DC, this board ensures compatibility with many digital devices. The isolation method employed is optical, protecting the internal circuits from electrical noise. Structurally, the board is crafted from polyimide laminate, promoting durability and stability in diverse conditions.
For installation, the A16B-2200-0434 fits into a backplane slot, making integration into existing frameworks straightforward. It has an operating temperature threshold ranging from 0 to 55 °C, making it suitable for environments with varying thermal conditions. The total weight of this interface board is 0.38 kg, and it operates with a power draw of 6 watts, providing an efficient solution for remote I/O communications in industrial applications.