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P0916JR0C

Model Number P0916JR0C Product Line Foxboro I/A Series Module Type Redundant, Hot-Swappable AC/DC Power Supply Module Key Feature Provides N+1 redundant, fault-tolerant power for high-availability I/A Series nodes. Input Specifications Input Voltage Likely a wide range, such as 90-264 VAC automatically sensed, or a specific voltage like 120/240 VAC. The "J" code defines this. Input Frequency 47 - 63 Hz (Standard for 50/60 Hz systems). Power Factor Correction (PFC) Active PFC is highly probable for a module of this capacity. Output Specifications Output Voltages Provides multiple isolated DC outputs for the system backplane: • +5.1 VDC • +15.2 VDC • -15.2 VDC • +24.8 VDC (for field instrument power) Total Output Power High Capacity (Estimated 1600W or higher, based on the "16" in the code). This is suitable for large racks. Redundancy True N+1 Redundancy supported. Modules operate in a current-sharing, load-sharing mode. Protections Comprehensive: Over-voltage (OVP), Over-current (OCP), Over-temperature (OTP), and Short-circuit protection. Physical & Operational Mounting Slides into a dedicated bay in a redundant power chassis (e.g., PSS31). Hot-Swappable Yes. Can be inserted or removed under full load. Cooling Internal fan(s) for forced-air cooling. Status Indicators (LEDs) Comprehensive LEDs for AC OK, DC OK, Load Share, Unit Fail, and Replace Indicator. Communication May include a serial communication link for reporting status and alarms to the system. Environmental Operating Temperature 0°C to +60°C (with derating above a certain ambient temperature). Efficiency High efficiency, typically > 85% to reduce heat generation.

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The Foxboro P0916JR0C is a highly specific and critical component within the Foxboro I/A Series Distributed Control System (DCS): a Redundant, Hot-Swappable Power Supply Module. It represents a more advanced and robust power solution compared to standard units like the P0903ZN. This module is designed to be used in pairs within a redundant power system chassis (such as the PSS31 rack) to provide maximum power availability. If one power supply in the redundant pair fails, the other immediately and seamlessly takes over the entire electrical load without any disruption to the control system. Its hot-swappable design allows for the failed unit to be replaced without needing to power down the rack, ensuring continuous operation for critical industrial processes.