GE PACSystems RX3i Modules
GE PACSystems RX3i Series: Comprehensive Module Range and Technical Overview The GE PACSystems RX3i platform is one of the most…
Model: IC695CPE400-AAAA
Product Overview
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Datasheet Preview
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Commercial Path
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Technical Dossier
The GE PACSystems RX3i platform is one of the most widely deployed programmable automation controller (PAC) architectures in global heavy industry. Installed across petrochemical refineries, nuclear power generation facilities, offshore platforms, LNG terminals, and continuous-process chemical plants, the RX3i backplane-based architecture has served as the control backbone for critical infrastructure since its commercial introduction in the early 2000s. The IC695CPE400-AAAA is a high-performance CPU module within this platform, executing ladder logic, function block diagram, structured text, and instruction list programs under IEC 61131-3 compliance. Its 1 GHz processor, 64 MB user memory, and dual Ethernet ports make it the standard selection for applications requiring deterministic scan times and high-volume I/O throughput. The RX3i series is backward-compatible with the earlier Series 90-30 and Series 90-70 I/O hardware, a design decision that has extended its service life across multi-decade plant lifecycles.
GE Fanuc Automation introduced the PACSystems RX3i platform as a successor to the Series 90-70 rack-based PLC in 2003. The architecture was designed around a universal backplane (IC695CHS007, IC695CHS012, IC695CHS016) that accepts both legacy Series 90-30 I/O modules via a dedicated adapter and native RX3i modules, eliminating forced hardware migrations during plant upgrades. Early CPU releases — including the IC695CPU310 and IC695CPU320 — operated at lower clock speeds with limited Ethernet capability. The IC695CPE400 generation introduced embedded dual-port Ethernet, eliminating the need for a separate Ethernet Interface Module (EIM) for basic network connectivity. Subsequent firmware revisions (SV9.50 and above) added EtherNet/IP scanner functionality, enabling direct integration with distributed I/O on Rockwell-compatible networks. The platform entered its mature phase circa 2015, with GE (later Emerson Automation Solutions following the 2018 acquisition) maintaining the product line under long-term availability commitments. As of 2026, the RX3i remains in active production, though several early CPU and specialty communication modules have been discontinued and require aftermarket sourcing.
CPU Modules
Analog & Digital I/O Modules
Communication & Network Modules
Power Supply Modules
Several first-generation RX3i modules — including the IC695CPU310, IC695CPU320, IC695CMM002, and IC695PBM300 — have been discontinued by Emerson Automation Solutions. Lead times for factory-new units of these models are indefinite, and OEM repair programs have been closed. DriveKNMS maintains a dedicated inventory of tested surplus and refurbished RX3i modules to support plants operating on extended maintenance cycles. All sourced units are verified against GE/Emerson firmware compatibility matrices prior to dispatch. For facilities operating under ISA-18.2 or IEC 61511 functional safety frameworks, DriveKNMS provides documentation packages including test records, firmware version confirmation, and traceability reports. Customers requiring long-term supply agreements (LTSAs) for RX3i spare parts can contact DriveKNMS to establish scheduled inventory reservations aligned with planned maintenance outages.
RX3i modules present specific test challenges due to their high-speed backplane bus (operating at 320 Mbps) and the tight timing tolerances required for CPU-to-I/O synchronization. DriveKNMS applies the following verification procedures to all RX3i inventory: (1) Backplane slot insertion test using a reference IC695CHS012 chassis to verify connector integrity and module seating; (2) Power-on self-test (POST) confirmation via USB programming port using Proficy Machine Edition software; (3) Firmware version readback and comparison against GE/Emerson published compatibility tables; (4) For CPU modules: full memory write/read cycle test across the entire user memory address space; (5) For analog I/O modules: signal injection at 0%, 25%, 50%, 75%, and 100% of rated input range with deviation logging; (6) For communication modules: loopback test on all active ports at rated baud rates. Modules that fail any stage are quarantined and not listed for sale. Test records are available upon request for quality-critical procurement processes.
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