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The GE Fanuc IC670ALG240, also cataloged as the IC670 Analog Input Module, operates as a dedicated hardware component for high-density current loop data acquisition within Field Control I/O stations. The sub-assembly samples continuous input transitions natively at the hardware tier to update internal registers across modular expansion frameworks.
| Parameter | Specification |
|---|---|
| Model | IC670ALG240 |
| Brand | GE Fanuc Emerson |
| Origin | USA |
| Weight | 0.56 lbs (0.26 kg) |
| Wiring Configuration | Single-ended, single input group |
| Series | Field I/O control |
| Channel Density | 16 analog input channels |
| Loop Wiring Configurations | ANSI Type 2 2-Wire transmitter / ANSI Type 3 3-Wire transmitter |
| Input Signal Nominal | 0 to 20 mA (supports 4-20 mA configurations) |
| Input Signal Range | 0.0 to 25.0 mA absolute tracking range (0.0 to 20.48 mA nominal tracking band) |
| Maximum Current Input | 35 mA absolute hardware limit |
| Analog-to-Digital Conversion | 16 bits resolution across the 0 to 25 mA span |
| Hardware Filter | Active RC 2nd order hardware filter per channel |
| Advanced Logic Filtering | Programmable input filter, line filter, and averaging filter options |
| Common Mode Rejection | 86 dB channel to ground |
| Line Frequency | 50/60 Hz data acquisition cycles |
| Dielectric Isolation Limit | 1500 VAC for 1 minute / 250 VAC continuous (Ground to logic) |
| External Power Supply | 20 to 28 VDC current loop rating (24 VDC nominal, 10% maximum ripple) |
| BIU Power Consumption | 251 mA maximum current drawn from Bus Interface Unit backplane |
| Temperature Coefficient | +/-0.002% of value per deg C typical; +/-0.005% of value per deg C maximum |
| Internal Diagnostics | High/low channel alarms, underrange/overrange, open wire, calibration faults |
| Product Type | Analog Input Modules |
Q: How can specific channels be modified to eliminate false open-wire alarms on unused points?
A: The module contains an internal Channel Active mode configuration register. Operators can programmatically set any unused channel as inactive through the station database, which prompts the firmware to stop sampling the designated pins and blocks false open-wire or underrange fault logs.
Q: Where are the module calibration values preserved, and can they be overwritten?
A: All factory and user calibration parameters are archived within on-board non-volatile flash memory. The module performs continuous self-diagnostics on this data; if a validation failure occurs, it triggers distinct diagnostic flags such as "module not calibrated" or "calibration data out of range" to notify the central controller.

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