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Designed to facilitate effective communication in FANUC Series 6M CNC systems, the A16B-1200-0270 printed circuit board acts as a remote buffer, adept at handling DNC and drip-feed functions. It features a flanged mounting type and weighs just 0.21 kg, ensuring ease of integration into existing setups.
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| Manufacturer | FANUC |
|---|---|
| Product Type | Printed Circuit Board |
| Product Line | Series 16 |
| Part Number | A16B-1200-0270 |
| Weight | 0.50 lbs (0.23 kg) |
| Compatibility | FANUC Series 6M CNC systems |
| Function | Remote buffer for DNC and drip-feed operations |
| Mounting Type | Flanged Mount |
| Protection Class | IP20 |
| Enclosure Rating | NEMA 1 |
| Maximum Ambient Temperature | 40 degrees Celsius |
| Minimum Ambient Temperature | 0 degrees Celsius |
| Maximum Operating Humidity | 80% (non-condensing) |
| Maximum Storage Humidity | 80% (non-condensing) |
| Maximum Altitude | 1000 m above sea level |
The A16B-1200-0270, a printed circuit board from FANUC's Series 16, is engineered to integrate seamlessly with the Series 6M CNC systems. This component provides a remote buffering capability, crucial for DNC and drip-feed operations, enhancing efficiency in data transmission.
Constructed with a flanged mounting design, this board is 0.21 kg, allowing for straightforward installation in designated racks or panels. It maintains IP20 protection class and meets NEMA 1 enclosure specifications, securing it from dust and other particulate ingress while operating in low-risk environments.
The board is suitable for ambient temperatures ranging from 0 degrees Celsius to a maximum of 40 degrees Celsius. It can also operate effectively in environments with a maximum humidity of 80% without condensation, ensuring reliable function under various conditions. For storage, the humidity and temperature limits remain the same, providing a consistent performance standard. Furthermore, the component is designed to function up to an altitude of 1000 meters above sea level, making it adaptable for installations at higher elevations.