The Foxboro P0926JMA, also cataloged as the P0926JMA Baseplate, operates as a dedicated hardware component for physical module mounting and backplane power distribution within I/A Series Distributed Control System platforms. The hardware establishes direct physical and electrical execution for structural power routing, interconnecting raw input voltages to feed active Fieldbus Modules and system controllers.
| Parameter | Specification |
|---|---|
| Model | P0926JMA |
| Brand | Foxboro (Schneider Electric) |
| Origin | USA |
| Weight | 0.2 kg |
| Dimensions | 102.2 cm x 12.4 cm x 12.6 cm |
| Operating Temp | -40 to +70 deg C |
| Power Consumption | Pass-through backplane distribution infrastructure |
| Input Voltage | 100-240 V AC (+/-15%) system feed input |
| Output Voltage | 24 V DC regulated backplane rail distribution |
| Output Current | 5 A continuous capacity |
| Output Power | 120 W maximum rated distribution load |
| Efficiency | >90% (at 230 V AC) |
| Voltage Regulation | +/-1% line and load regulation |
| Protections | Overload (110-150%), short-circuit auto-recovery, over-voltage (27-30 V DC) |
| Enclosure Rating | IP20 (cabinet installation required) |
| Storage Temp | -40 to +85 deg C |
The baseplate assembly forms the primary structural backplane backbone, featuring integrated channel-to-channel and subsystem isolation paths to mitigate electromagnetic cross-talk and ground loop interference. The physical circuit traces are engineered to handle continuous multi-channel 4-20 mA HART loop protocol routing and distributed DC power distribution. Embedded power conditioning circuits suppress high-frequency ripple noise below 150 mVp-p, preserving the absolute analog measurement accuracy of attached input/output modules under dynamic load variations.
Q: What type of cooling is required for this baseplate when populated with modules under maximum load?
A: The physical structure relies entirely on natural convection cooling. Populated assemblies must be enclosed within a climate-controlled IP20 cabinet that permits unobstructed vertical airflow to maintain ambient conditions between -40 and +70 deg C.
Q: How does the baseplate infrastructure handle localized electrical faults?
A: The integrated backplane architecture incorporates automated protection loops. Upon encountering an electrical short-circuit or an overload condition between 110% and 150% of rated capacity, the distribution rail engages auto-recovery logic to prevent transient damage to adjacent system components.
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