Original Industrial Spare Part
GE PC2IP3 Service-Ready Spare Part for Industrial Maintenance
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- SKUPC2IP3
- CategoryPLC & Industrial Automation Modules
- BrandGE
- SupportAvailability, lead time, condition, and shipping coordination
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GE PC2IP3 Service-Ready Spare Part for Industrial Maintenance
The GE PC2IP3 is a ruggedized IP communication module engineered for demanding industrial environments where network reliability and system uptime are non-negotiable. As a critical spare part in GE’s PACSystems and Series 90 PLC ecosystems, the PC2IP3 enables Ethernet-based communication between controllers, HMI panels, SCADA systems, and field devices across process and discrete manufacturing installations. Sourced as an original replacement component, this module is pre-tested, documented, and ready for immediate site deployment — minimizing downtime risk during unplanned failures or scheduled maintenance windows.
Maintenance engineers managing aging GE control architectures rely on the PC2IP3 to sustain Ethernet IP connectivity in environments subject to vibration, temperature extremes, and electrical noise. Whether you are executing an emergency swap during a production stoppage or building a proactive spare parts inventory ahead of an annual shutdown, having a verified PC2IP3 on the shelf is a fundamental risk-control measure. Our stock is drawn from authenticated supply channels, subjected to pre-shipment functional testing, and backed by a 12-month warranty — giving procurement teams the confidence to commit to long-term supply agreements without compromising quality assurance standards.
Spare Maintenance Table
| Parameter | Specification / Detail |
|---|---|
| Part Number / SKU | PC2IP3 |
| Brand | GE (General Electric Automation) |
| Series / Platform | PACSystems / Series 90 PLC |
| Module Type | Ruggedized IP Communication Module |
| Communication Protocol | Ethernet IP (EtherNet/IP) |
| Form Factor | Rack-mount, backplane-compatible |
| Operating Temperature | 0°C to 60°C (standard industrial range) |
| Environmental Rating | Ruggedized — suitable for harsh industrial environments |
| Compatibility | GE PACSystems RX3i / RX7i, Series 90-30, Series 90-70 racks |
| Installation | Backplane slot insertion; no external power wiring required |
| Firmware | Factory-loaded; field-upgradeable via GE Proficy Machine Edition |
| Condition | Original spare — pre-shipment tested, fully functional |
| Warranty | 12 months from date of shipment |
| Lead Time | In stock — ships within 2–5 business days |
| Long-Term Supply | Available under blanket order and annual supply programs |
| Origin | United States |
Maintenance Planning for Continuous Operation
When a PC2IP3 communication module fails or is flagged during a control cabinet inspection, the fault rarely exists in isolation. Experienced maintenance engineers treat a communication module replacement as a trigger for a broader system health check across the same rack and electrical circuit. Before returning the system to service, the following associated components should be inspected or staged as co-replacement candidates:
The GE IC695PSD040 power supply module feeding the PACSystems RX3i rack should be load-tested to confirm it is delivering stable DC voltage within specification — a degraded power supply is a common root cause of intermittent communication faults that are initially misdiagnosed as module failures. Similarly, the IC695ETM001 Ethernet interface module, if installed in the same rack, should be checked for firmware currency and port integrity, as both modules share the backplane data bus.
I/O modules in adjacent slots — particularly IC694MDL754 discrete output modules and IC694ALG220 analog input modules — should be visually inspected for connector corrosion, loose terminal blocks, and LED fault indicators. Terminal strips and DIN-rail mounted relay modules connected to the I/O wiring should be torque-checked, as vibration-induced terminal loosening is a leading cause of signal integrity issues in harsh-environment installations.
Communication continuity beyond the rack should also be verified: the IC693CMM302 serial communication module (if used for legacy device integration) and any IC695CMX128 motion control modules sharing the same network segment should be confirmed operational. Managed industrial Ethernet switches feeding the PC2IP3’s network port should be checked for port error counters and duplex mismatch conditions.
For installations where the PC2IP3 interfaces with an HMI — such as a GE QuickPanel+ IC755CxSxxADA series operator panel — the HMI’s Ethernet driver configuration should be validated post-replacement to ensure the IP address and connection parameters align with the replacement module’s settings. Signal isolators on analog loops feeding the controller should also be inspected, as ground loop interference can manifest as communication instability in sensitive IP-based architectures.
Procurement engineers building a comprehensive spare parts kit around the PC2IP3 should consider stocking the associated IC695RMX128 redundancy memory transfer module and a spare backplane connector set, particularly for installations operating in high-vibration environments where connector wear accelerates. Fuse holders and DIN-rail circuit breakers protecting the 24 VDC control power circuit should be included in the annual inspection checklist.
Site Replacement Workflow
Replacing the GE PC2IP3 in a live industrial environment requires a structured approach to minimize downtime and avoid configuration loss. The following workflow is recommended for maintenance teams executing either a planned or emergency replacement:
Step 1 — Pre-Replacement Preparation: Export the current PLC program and communication configuration from GE Proficy Machine Edition before any hardware is disturbed. Confirm the replacement PC2IP3’s firmware version matches or is compatible with the existing rack firmware baseline. Verify the module’s MAC address and IP configuration parameters are documented.
Step 2 — Safe Isolation: Place the controller in STOP mode via the Proficy software or the physical keyswitch. Do not de-energize the rack unless the site safety plan requires it — hot-swap capability varies by rack generation and should be confirmed against the GE hardware manual for the specific rack model in use.
Step 3 — Module Extraction and Inspection: Remove the faulty PC2IP3 by releasing the module locking tabs and sliding it clear of the backplane connector. Inspect the backplane connector pins for damage, oxidation, or debris before inserting the replacement unit. Clean with appropriate contact cleaner if required.
Step 4 — Replacement and Configuration: Insert the new PC2IP3, confirm the locking tabs engage, and restore power if it was removed. Use Proficy Machine Edition to download the communication configuration and verify the module’s IP address, subnet mask, and gateway settings are correctly applied. Confirm EtherNet/IP connections to SCADA, HMI, and peer controllers are re-established.
Step 5 — Functional Verification: Return the controller to RUN mode and monitor the communication status LEDs on the PC2IP3 for a minimum of 15 minutes. Verify all I/O data is updating correctly in the SCADA historian and that no fault codes are present in the PLC fault table. Document the replacement in the site maintenance log with the new module’s serial number and firmware version.
This workflow supports legacy system life extension strategies by ensuring that older GE PACSystems and Series 90 architectures can continue operating reliably without requiring a full controller platform migration — a significant capital cost avoidance for facilities managing long-lifecycle process equipment.
Spare Parts Support FAQ
Q1: Is the PC2IP3 a direct drop-in replacement for older GE IP communication modules in Series 90 racks?
The PC2IP3 is designed for compatibility with GE PACSystems and Series 90 rack architectures. However, compatibility should always be confirmed against the specific rack model, backplane revision, and firmware version in use at your site. Our technical team can assist with compatibility verification prior to order placement to eliminate the risk of a mismatch on arrival.
Q2: What pre-shipment testing is performed on the PC2IP3 before dispatch?
Each PC2IP3 unit undergoes functional power-on testing and communication port verification before shipment. Units are inspected for physical integrity, connector condition, and firmware operability. A test report is available upon request for quality-critical procurement processes. All units ship with a 12-month warranty covering manufacturing defects and functional failures under normal operating conditions.
Q3: Can NINERMAS support long-term or blanket supply agreements for the PC2IP3?
Yes. We support annual supply programs and blanket purchase orders for the PC2IP3 and associated GE PACSystems spare parts. Long-term supply agreements include fixed lead-time commitments, priority allocation from reserved stock, and dedicated account management — designed to support facilities with multi-year maintenance contracts or lifecycle extension programs for aging GE control systems.
Q4: What should I do if the replacement PC2IP3 does not restore communication after installation?
If communication is not restored after following the standard replacement workflow, the fault is most likely in the network infrastructure (switch port, cable, or IP configuration) rather than the module itself. Verify the Ethernet cable continuity, confirm the managed switch port is configured for the correct VLAN and speed/duplex settings, and re-download the communication configuration from Proficy Machine Edition. If the issue persists, contact our technical support team — we provide post-sale application support as part of our spare parts service commitment.
| Product Series | PACSystems |
|---|---|
| Country of Origin | US |
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