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The IC600YB830 from GE Fanuc Emerson is an advanced I/O receiver module designed to facilitate communication between the CPU and I/O modules. It efficiently transmits data, address, and control signals across the system.
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| Manufacturer | GE Fanuc Emerson |
|---|---|
| Product Type | Advanced I/O Receiver Module |
| Product Line | Series Six |
| Part Number | IC600YB830 |
| Weight | 6.00 lbs (2.72 kg) |
| Primary Function | Interface between the CPU and I/O modules; transmits address, data, and control signals |
| Current Draw | 680 mA at 5 VDC |
| Max. Current Rating | 1.2 A |
| Circuit Board Size | 8.15 x 11.0 inches |
| Min. Operating Temperature | 0°C |
| Max. Operating Temperature | 60°C |
| Min. Storage Temperature | -20°C |
| Max. Storage Temperature | 80°C |
| Min. Relative Humidity | 5% (Non-Condensing) |
| Max. Relative Humidity | 95% (Non-Condensing) |
| Installation Altitude | 1000 m |
The IC600YB830 advanced I/O receiver module by GE Fanuc Emerson serves as a critical interface component for communication between the CPU and I/O modules. Designed for performance, it transmits essential address, data, and control signals necessary for operational efficiency. The device requires a current draw of 680 mA when powered at 5 VDC and can endure a maximum current rating of 1.2 A under operational conditions.
Its circuit board has specific dimensions, measuring 8.15 inches in width and 11.0 inches in height. Regarding environmental tolerance, the module operates effectively within a temperature range of 0°C to 60°C, making it suitable for various applications. In terms of storage, it can remain effective at temperatures extending from -20°C up to 80°C, ensuring reliable performance across diverse conditions.
Additionally, the IC600YB830 module operates within a relative humidity range of 5% to 95% (non-condensing), accommodating a wide array of environments without concerns of moisture impact. With a maximum installation altitude of 1000 meters, this module is engineered to meet the operational demands encountered in numerous industrial scenarios.