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The FANUC A16B-1600-0320 debug servo control board is engineered for precision in servo system management. Featuring 18 I/O ports, it facilitates extensive connectivity and is capable of handling a maximum output current of 5A.
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| Manufacturer | FANUC |
|---|---|
| Product Type | Debug Servo Control Board |
| Product Line | Series 16 |
| Part Number | A16B-1600-0320 |
| Weight | 0.50 lbs (0.23 kg) |
| Number of I/O Ports | 18 |
| Maximum Output Current | 5A |
| Operating Temperature | 0 to 60 °C |
| PCB Layers | 6 |
| Connector Type | 30-pin Header |
| Debug Capability | Yes |
| Operating Voltage | 24 V DC |
| Communication Protocol | CAN Bus |
| Storage Temperature | -20 to 80 °C |
| Isolation Voltage | 600 V AC |
| Processor Type | 32-bit MCU |
| Mounting Type | Screw Mount |
The FANUC A16B-1600-0320 debug servo control board is a specialized component within the Series 16 range. Designed for effective servo control applications, this board incorporates 18 I/O ports that allow for versatile connectivity. The device supports a maximum output current of 5 amps, making it suitable for demanding control tasks. The board is built to function efficiently within an operating temperature range of 0 to 60 °C, ensuring stability during typical application scenarios. Additionally, it performs well under extreme storage conditions, capable of withstanding temperatures between -20 and 80 °C.
Weighing in at only 0.40 kg, the A16B-1600-0320 maintains a compact profile, aiding in system integration. It is equipped with a 30-pin header connector for seamless attachment to various systems. The design incorporates 6 layers of PCB to effectively support the required circuitry and components. A 32-bit microcontroller unit (MCU) acts as the main processing unit to handle control tasks efficiently. The isolation voltage rating is set at 600 V AC, contributing to safety during operation. Furthermore, the board communicates via a CAN bus protocol, ensuring reliable data transmission in industrial environments.
The debug capability embedded within the A16B-1600-0320 allows for efficient troubleshooting and performance monitoring, critical in maintaining operational reliability. This model exemplifies robust engineering and is a vital component in enhancing servo system functionality.