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The FANUC A16B-3200-0071 is engineered as a high-speed arithmetic CPU board tailored for demanding industrial tasks. Capable of clock rates reaching 3.2 GHz, this component is optimized for fast arithmetic processing, making it suitable for CNC and PLC systems.
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| Manufacturer | FANUC |
|---|---|
| Product Type | High-speed arithmetic CPU board |
| Product Line | Series 16 |
| Part Number | A16B-3200-0071 |
| Weight | 1.56 lbs (0.71 kg) |
| Maximum Clock Rate | Up to 3.2 GHz |
| Processing Throughput | Optimized for rapid arithmetic operations |
| High-speed I/O | Multiple fast interfaces |
| Voltage Level | Designed for a 3.3 V DC supply |
| Energy Efficiency | Low power consumption |
| Temperature Range | Operates from -40°C to +85°C |
| Compatibility | FANUC CNC and PLC systems |
| Thermal Management | Integrated heat dissipation |
| Signal Routing | Precision trace layout |
The A16B-3200-0071 board from FANUC exemplifies state-of-the-art technology in high-speed computing for industrial applications. This product utilizes a maximum clock frequency of 3.2 GHz, facilitating swift arithmetic processes essential in various automation setups. The architecture is fine-tuned for effective data processing, allowing seamless operation within FANUC's CNC and PLC environments.
Engineered for compatibility with a 3.3 V DC supply, the board exhibits low energy consumption without sacrificing performance. It operates efficiently within an extensive temperature range of -40°C to +85°C, making it versatile for harsh industrial conditions. The incorporation of multiple fast I/O interfaces ensures rapid signal exchange, which is crucial for high-performance systems.
Enhanced thermal management is achieved through the integration of heat dissipation features. Signal pathways are designed with precision trace layout techniques to maintain data integrity and performance during operation. With a weight of approximately 2 pounds, the A16B-3200-0071 CPU board strikes a balance between power and efficiency, providing the reliable computational capabilities necessary for demanding applications.