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The IC600CP610 is a CPU module from the Series Six Plus by GE Fanuc Emerson, offering versatile mounting options and robust specifications. This module supports battery-backed CMOS memory and functions effectively across a wide voltage range.
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| Manufacturer | GE Fanuc Emerson |
|---|---|
| Product Line | Series Six |
| Part Number | IC600CP610 |
| Weight | 6.00 lbs (2.72 kg) |
| Series | Series Six Plus |
| Product | CPU Module |
| CMOS Memory | Battery-Backed |
| Number of Slots | 8 Slots |
| Power Supply | 95-260V AC |
| Rack Mounting | Supported |
| Panel Mounting | Supported |
| Expanded I/O Mode | Supported |
| Maximum Input Capacity | 16,000 Inputs in Expanded I/O Mode |
| Maximum Output Capacity | 16,000 Outputs in Expanded I/O Mode |
| Humidity | 5 to 95%, Non-Condensing |
| Operating Temperature Range Outside of Rack | 0°C to 60°C |
The GE Fanuc Emerson IC600CP610 functions as a versatile CPU module that belongs to the Series Six Plus family. This module is built for reliable performance and features a battery-backed CMOS memory structure, ensuring data retention during power interruptions. It accommodates a total of 8 slots, allowing for extensive connectivity and expansion capabilities within a control system.
Operating on a voltage supply range of 95-260 volts AC, this unit interfaces well with diverse power systems. Both rack and panel mounting options are supported, providing installation flexibility depending on the application requirements. In its expanded I/O mode, the IC600CP610 can achieve a maximum input capacity of 16,000 inputs and a maximum output capacity of 16,000 outputs, which supports large-scale automation applications.
This CPU module is engineered to tolerate environmental challenges, functioning effectively at an operating temperature range of 0°C to 60°C when placed outside of its designated rack. Furthermore, it retains functionality in environments with relative humidity levels spanning from 5% to 95%, as long as it remains non-condensing. The design quality of the IC600CP610 ensures that it can perform reliably in various operational settings.