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The IC660BBS104 from GE Fanuc Emerson is an isolated Genius I/O block developed for reliable interfacing in various control systems. This device supports both AC and DC voltage ratings and features a total of eight circuits, making it a suitable choice for diverse applications.
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| Manufacturer | GE Fanuc Emerson |
|---|---|
| Product Type | Isolated Genius I/O Block |
| Product Line | Genius I-O |
| Part Number | IC660BBS104 |
| Weight | 2.00 lbs (0.91 kg) |
| Rated Voltage (AC) | 115 VAC |
| Rated Voltage (DC) | 125 VDC |
| Number of I/O Points | 8 Circuits |
| Load Current per Point | 2.0 A |
| Inrush Current | 25 A |
| Minimum Operating Temperature | 0 °C |
| Maximum Operating Temperature | 60 °C |
| Minimum Storage Temperature | -40 °C |
| Maximum Storage Temperature | 100 °C |
| Relative Humidity | 5 to 95% (Non-Condensing) |
| Installation Altitude | 1000 m |
The IC660BBS104 is an isolated Genius I/O block part of the GE Fanuc Emerson lineup. Engineered with eight circuits, it allows for versatile connectivity within various automation tasks. The device supports an AC voltage rating of 115 VAC and a DC voltage rating of 125 VDC. Each individual point is rated for a load current of 2.0 A, with an inrush capability of up to 25 A, making it effective in handling transients during operation.
Its operational temperature range is specified from 0 °C to 60 °C, allowing it to be used across a range of environments. For storage, the device can endure temperatures as low as -40 °C and as high as 100 °C, ensuring durability during transportation and in storage scenarios. The IC660BBS104 is also rated to handle relative humidity levels of 5% to 95%, as long as there is no condensation, which allows for operation in humid climates.
Additionally, this I/O module is designed for installation at altitudes up to 1000 meters. Its thoughtful construction helps to maintain consistent performance even in high-altitude locations. Overall, the IC660BBS104 functions as a robust solution for applications that require isolated input and output interfaces.