Foxboro
Foxboro I/A Series IPM2-P0904HA Industrial Power Supply Module
Manufacturer: Foxboro
Product No.: IPM2-P0904HA
Product Type: Industrial Power Supply Module
Product Origin: USA
Payment:T/T, Western Union
Weight: 3200g
Shipping port: Xiamen
Warranty: 12 months
Description
The Foxboro IPM2-P0904HA is a high-performance Industrial Power Module designed for the I/A Series distributed control system. It provides reliable, regulated DC power to system enclosures, fieldbus modules, and associated control hardware. Engineered for mission-critical applications such as oil refineries, petrochemical plants, and power generation facilities, this module ensures stable power delivery even under fluctuating input conditions, thereby maintaining process continuity and reducing unscheduled downtime.
Features
- Redundant Power Architecture: Supports load-sharing configurations with internal diode-ORing logic to prevent single-module failures from impacting the system bus.
- Hot-Swappable Design: Allows for replacement of the unit without interrupting the process control loop, facilitating easier maintenance.
- Integrated Diagnostics: Provides real-time status feedback to the system controller regarding output voltage and internal temperature.
- Advanced Protection: Features built-in over-voltage and short-circuit protection to safeguard sensitive downstream I/O components.
- Flexible Input: Compatible with a wide range of AC and DC input voltages.
Applications
The IPM2-P0904HA is primarily utilized in Foxboro I/A Series control cabinets to power I/O racks, communication modules, and field instrumentation. It is suitable for any industrial environment requiring high-availability power distribution where system uptime is critical.
Technical Specifications
| Model | IPM2-P0904HA |
| Brand | Foxboro (Schneider Electric) |
| Module Type | Industrial Power Module 2 (IPM2) |
| Input Voltage | 85-265 VAC or 120-370 VDC |
| Output Voltage | 24 VDC |
| Output Current | 18.8 A (nominal) |
| Power Consumption | 530 W (at full load) |
| Operating Temp | 0 to 60 deg C |
| Storage Temp | -40 to +85 deg C |
| Humidity | 5 to 95% (Noncondensing) |
| Cooling | Natural convection or internal fan-assisted |
| Protection Rating | IP 20 |
Installation Guidelines
- Mounting: Ensure the module is securely seated in the designated I/A Series power supply slot within the enclosure.
- Cooling: Maintain adequate clearance around the module to facilitate airflow; ensure vents are not obstructed.
- Grounding: Follow standard industrial grounding practices to ensure chassis ground is connected to the cabinet common.
- Handling: Use ESD-safe handling procedures when installing or removing the module to prevent damage to internal electronics.
- Power Status: While the module is hot-swappable, ensure proper verification of the redundant bus status before extraction in a live system.
FAQ
Is the IPM2-P0904HA compatible with all I/A Series enclosures?
This module is designed specifically for the I/A Series power architecture. Please verify your specific enclosure model and power bus requirements against the module's technical specifications before installation.
Does this module require external cooling?
The module is designed for natural convection or internal fan-assisted cooling. Ensure that the cabinet environment is maintained within the specified operating temperature range of 0 to 60 deg C.
Return policy
We aim to provide reliable products and a smooth purchasing experience. If there is a problem with your order, please contact us and we will assist according to our Refund Policy.
Shipping
We provide international shipping options to meet different delivery requirements. Please review details regarding methods and timelines in our Shipping Policy.
Warranty
We provide a 12-month warranty for all products, subject to normal use and proper installation.
You may also like
Product Guide
Mitigating SCADA Performance Drops During Shift Transitions
Mitigating SCADA Performance Drops During Shift Transitions
Optimizing SCADA Performance: Why Remote Clients Experience Lag
Optimizing SCADA Performance: Why Remote Clients Experience Lag