Original Industrial Spare Part
GE IC200UEX211-C Safety-Reliable 28-Pt Relay Output Module
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- SKUIC200UEX211-C 28
- CategorySIS Safety & Redundancy Systems
- BrandGE Automation
- SupportAvailability, lead time, condition, and shipping coordination
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GE IC200UEX211-C Safety-Reliable 28-Pt Relay Output Module for Critical Control Sites
The GE IC200UEX211-C is a ruggedized 28-point relay output expansion module engineered for the GE VersaMax distributed I/O platform. Designed to operate reliably in the most demanding industrial environments — including high electromagnetic interference, heavy vibration, extreme temperature cycling, and moisture-laden atmospheres — this module delivers the output switching performance and signal integrity that critical control applications demand. Whether deployed in a continuous process plant, a safety interlock loop, or a high-density relay control cabinet, the IC200UEX211-C provides the dependable discrete output capacity that keeps production running and personnel safe.
In industrial automation, unplanned output failures are not merely inconvenient — they represent real safety risks. A relay module that misfires, drifts, or fails open under surge conditions can trigger cascading shutdowns, equipment damage, or hazardous process deviations. The IC200UEX211-C addresses these risks through its ruggedized relay contact design, reinforced PCB construction, and full compatibility with the VersaMax expansion bus architecture, ensuring that every output command from the GE IC200CPE010 or IC200CPUE05 CPU is faithfully executed — even under adverse field conditions.
Safety Reliability Table
| Parameter | Specification |
|---|---|
| Part Number | IC200UEX211-C |
| Platform | GE VersaMax Distributed I/O |
| Module Type | Relay Output Expansion Module |
| Output Points | 28 relay output points |
| Output Type | Relay contact (Form A / NO) |
| Rated Load Voltage | 24 VDC / 120–240 VAC |
| Max Switching Current | 2 A per point (resistive load) |
| Isolation | Optical isolation between logic and field side |
| Operating Temperature | 0°C to +60°C (ruggedized variant) |
| Storage Temperature | -40°C to +85°C |
| Relative Humidity | 5% to 95% non-condensing |
| Vibration Resistance | IEC 60068-2-6 compliant |
| EMC Protection | EN 61000-4 series (ESD, EFT, surge, conducted immunity) |
| Surge Protection | Built-in transient suppression on output circuits |
| Backplane Compatibility | VersaMax expansion bus (IC200CHS series carriers) |
| Dimensions | Standard VersaMax module form factor |
| Certifications | UL Listed, CE Marked, cUL |
| Warranty | 12 Months — covers manufacturing defects and functional failure under normal operating conditions |
| Pre-Shipment Testing | Full functional output verification and relay contact continuity test performed before dispatch |
Control Cabinet Risk Reduction Strategy
In a well-engineered relay output control cabinet, the IC200UEX211-C does not operate in isolation. Its 28 relay points are typically distributed across motor starter circuits, solenoid valve actuators, alarm annunciators, and safety interlock outputs — all of which depend on a stable, noise-free power and communications environment to function correctly.
On the power supply side, the GE IC200PWR002 and IC200PWR001 VersaMax power supply modules provide the regulated 24 VDC backplane power that the IC200UEX211-C requires. Pairing these with a quality DIN-rail mounted surge protection device — such as those in the GE SURTD series — protects the entire I/O rack from upstream voltage transients caused by motor switching, capacitor bank switching, or lightning-induced surges on field wiring. Without adequate surge suppression, relay coil back-EMF and inductive load switching can introduce noise that corrupts the backplane communication bus, leading to spurious output toggling or module faults.
For communication integrity, the IC200UEX211-C expansion module connects to the VersaMax network interface unit — typically the GE IC200BEM003 (Profibus-DP) or IC200BEM104 (DeviceNet) bus expansion module — which bridges the local I/O rack to the plant-wide fieldbus network. In high-EMI environments such as arc furnace control rooms or variable frequency drive (VFD) enclosures, shielded Profibus cables and proper cable segregation between power and signal wiring are essential to prevent communication timeouts that could cause the CPU to place outputs in a safe (de-energized) state unexpectedly.
Discrete input verification is equally critical. The GE IC200MDL650 32-point 24 VDC input module, when used alongside the IC200UEX211-C, enables closed-loop confirmation of relay output states — verifying that contactors have actually pulled in and that field devices have responded as commanded. This feedback loop is a fundamental element of safety interlock design in SIL-rated control systems.
For analog process variables that feed into the logic controlling these relay outputs, the GE IC200ALG320 analog input module provides 4–20 mA and 0–10 V signal conditioning with high common-mode rejection, ensuring that process measurements from pressure transmitters, flow meters, and temperature sensors remain accurate even in the presence of ground loops or induced interference. Inaccurate analog inputs feeding relay output logic are a leading cause of nuisance trips and missed safety responses.
Finally, the GE IC200CPU001 VersaMax CPU — or its ruggedized equivalent — executes the ladder logic and function block programs that govern all 28 relay outputs on the IC200UEX211-C. Maintaining a spare CPU module alongside spare relay output modules as part of a structured critical spare parts program is a recognized best practice in IEC 62443-compliant industrial cybersecurity and reliability frameworks. NINERMAS maintains stock of IC200UEX211-C modules with documented pre-shipment testing records, supporting rapid mean-time-to-repair (MTTR) targets for critical production assets.
Critical Industrial Safety Applications
The GE IC200UEX211-C relay output expansion module is deployed across a wide range of safety-critical and production-critical industrial applications where output reliability directly impacts process safety and operational continuity.
Petrochemical and Refinery Plants: In hydrocarbon processing facilities, relay output modules control emergency shutdown (ESD) valve actuators, flare ignition systems, and pump motor starters. The IC200UEX211-C’s ruggedized construction and optical isolation make it suitable for Zone 2 classified control room panels where transient voltages from field instrumentation are common. Its relay contacts provide the galvanic isolation required to interface safely with high-voltage field devices without risking backplane damage.
Electric Power Generation and Substation Automation: In thermal power plants and hydroelectric stations, relay output modules manage turbine auxiliary systems, cooling water pump starters, and protection relay trip circuits. The IC200UEX211-C withstands the high-frequency electromagnetic interference generated by high-voltage switching equipment and bus bar proximity, maintaining output state integrity during fault clearance events.
Mining and Mineral Processing: Underground and surface mining operations subject control equipment to extreme vibration, dust ingress, and wide temperature swings. The ruggedized (-C suffix) variant of the IC200UEX211-C is specifically rated for these conditions, making it the preferred choice for conveyor belt control panels, crusher motor starters, and ventilation fan interlock systems where standard commercial-grade modules would fail prematurely.
Water and Wastewater Treatment: Municipal and industrial water treatment facilities rely on relay output modules to control submersible pump starters, chemical dosing pump contactors, and UV disinfection system enables. The IC200UEX211-C’s resistance to high humidity and condensation — common in pump station environments — ensures long service life without contact oxidation or insulation degradation.
Metallurgy and Steel Production: In electric arc furnace (EAF) and continuous casting operations, relay output modules must withstand intense electromagnetic fields generated by furnace transformers and bus bars carrying tens of thousands of amperes. The IC200UEX211-C’s EMC-hardened design and robust relay contacts handle the demanding switching cycles of electrode positioning systems, ladle transfer car controls, and cooling water interlock circuits.
Port and Marine Terminal Automation: Ship-to-shore crane control systems, automated stacking crane (ASC) panels, and vessel mooring system controls require relay output modules that can operate reliably in salt-laden, high-humidity coastal environments. The IC200UEX211-C’s sealed construction and corrosion-resistant design support long-term deployment in these challenging maritime industrial settings.
Safety and Quality FAQ
Q1: What warranty coverage does the IC200UEX211-C carry when purchased from NINERMAS?
All IC200UEX211-C modules supplied by NINERMAS are covered by a 12-month warranty from the date of shipment. This warranty covers manufacturing defects, relay contact failure under rated load conditions, and backplane communication faults attributable to the module itself. Warranty claims are supported by our pre-shipment test documentation, which provides a baseline functional record for each unit dispatched.
Q2: What pre-shipment testing is performed on each IC200UEX211-C module?
Each module undergoes a structured functional verification process before dispatch: all 28 relay output points are individually energized and de-energized under a resistive test load to confirm contact closure and opening; backplane connector integrity is verified; and the module is powered up in a live VersaMax rack to confirm correct enumeration and communication with the network interface unit. Test results are documented and available upon request for quality audit purposes.
Q3: Is the IC200UEX211-C compatible with all VersaMax carrier and CPU configurations?
The IC200UEX211-C is designed for use with the GE VersaMax distributed I/O platform and is compatible with standard VersaMax expansion carriers (IC200CHS series), VersaMax network interface units (IC200BEM series), and VersaMax CPUs (IC200CPU series). It is not compatible with VersaMax Micro or VersaMax Nano standalone controllers, which use a different I/O bus architecture. If you are unsure about compatibility with your specific system configuration, contact our technical team with your CPU and carrier model numbers for confirmation.
Q4: Can NINERMAS support long-term supply of IC200UEX211-C for ongoing maintenance programs?
Yes. NINERMAS operates a structured long-term spare parts supply program for GE VersaMax I/O modules, including the IC200UEX211-C. We maintain buffer stock to support planned maintenance shutdowns, emergency replacements, and multi-year spare parts agreements. For facilities managing lifecycle extension programs on GE VersaMax-based control systems, we recommend establishing a standing supply arrangement to ensure availability of critical spare modules without lead-time risk. Contact us at sale@ninermas.com to discuss volume commitments and supply terms.
| Product Series | VersaMax |
|---|---|
| Country of Origin | US |
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