Model Number P0916NG0D
Product Line Foxboro I/A Series
Module Type Redundant, Hot-Swappable AC/DC Power Supply Module (New Generation)
Key Function Provides high-wattage, fault-tolerant power for high-density and high-availability I/A Series nodes.
Input Specifications
Input Voltage Wide-range AC input, e.g., 90-264 VAC, automatically sensed.
Input Frequency 47 - 63 Hz (Compatible with 50Hz/60Hz).
Power Factor Correction (PFC) Active PFC (standard for high-power, modern supplies to meet efficiency regulations).
Output Specifications
Output Voltages Provides the standard, isolated DC voltages for the I/A Series backplane:
• +5.1 VDC (Primary logic power)
• +24.8 VDC (Field I/O power)
• ±15.2 VDC (Analog circuit power)
Total Output Power High Capacity, estimated 1600 Watts (based on the "16" suffix).
Redundancy Designed for N+1 Redundancy with current-sharing (load-sharing) operation.
Protections Comprehensive: Over-Current (OCP), Over-Voltage (OVP), Over-Temperature (OTP), and Short-Circuit protection.
Physical & Operational
Mounting Slides into a dedicated bay in a redundant power chassis (e.g., a PSS31 rack).
Hot-Swappable Yes. Designed for insertion and removal under full load.
Cooling Internal, forced-air cooling with fans. Fan speed may be temperature-controlled.
Status Indicators (LEDs) Comprehensive LED indicators for:
• Input AC OK
• Output DC OK
• Unit Failure
• Load Sharing Status
• Replace Indicator
Communication & Monitoring Likely includes advanced communication (e.g., via a serial link or dedicated pin) for detailed status reporting, alarm logging, and performance metrics (e.g., output current, temperature) to the control system.
Environmental
Operating Temperature 0°C to +60°C (with derating at high temperatures).
Efficiency High efficiency, typically > 90% for the "NG" generation, reducing energy loss and heat generation.
The Foxboro P0916NG0D is a High-Capacity, Redundant, Hot-Swappable AC/DC Power Supply Module for the Foxboro I/A Series Distributed Control System (DCS). It is engineered for high-availability systems where maximum uptime is critical.