Configured for high-efficiency signal acquisition in Foxboro I/A Series distributed control systems, the Foxboro P0918AH, also cataloged as the P0918AH Analog Input Module, provides direct physical/electrical execution. It serves as a centralized telemetry point that converts incoming analog process signals into digital registers for the system control processors.
| Parameter | Specification |
|---|---|
| Model | P0918AH |
| Brand | Foxboro |
| Origin | USA |
| Weight | 450 g |
| Dimensions | Standard Foxboro field module footprint |
| Operating Temp | 0 to +60 deg C |
| Power Consumption | 24 VDC Nominal |
| Channel Count | 16 single-ended or differential analog inputs |
| Input Types (Current) | 4-20 mA standard, configurable up to +-40 mA |
| Input Types (Voltage) | 0-10 V, +-10 V |
| Resolution | 16-bit A/D conversion (legacy 12-bit compatibility) |
| Accuracy | +-0.1% of full scale |
| Update Time | 250 ms to reach 99% of final value |
| Isolation Rating | 500 VDC minimum, up to 1500-2000 V depending on revision |
| Input Impedance | High impedance for voltage; low burden for current loops |
| Signal Filtering | Integrated noise reduction filters |
The module processes field instrument signals across a 16-channel topology utilizing the 4-20 mA HART loop protocol layer or steady-state voltage configurations. To shield internal analog-to-digital conversion circuits from field-side interference, the architecture enforces a strict channel-to-channel isolation barrier along with channel-to-system opto-decoupling. This configuration attenuates common-mode noise and eliminates ground loop currents across long cable runs, validating data accuracy without inducing near-end cross-talk during parallel, continuous multi-channel scanning cycles.
Q: Can single-ended and differential loops be mixed concurrently across the 16 channels?
A: Configuration is dependent on the backplane baseplate wiring layout and internal jumpers. To maintain the accuracy specification (+-0.1% of full scale) and ensure integrated noise filters operate correctly, channels should be grouped according to signal type to prevent ground reference errors.
Q: What is the maximum continuous current load permitted on the current loops?
A: The input channels feature a low-burden circuit design for normal 4-20 mA operation, but the active components can be configured to tolerate extended current spikes up to +-40 mA without triggering thermal shutdown or degradation of the isolation barrier.
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