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General Electric

General Electric (GE) offers a comprehensive range of industrial automation products. Its portfolio includes PACSystems RX3i/RX7i, Genius I/O modules, Mark VIe controllers, and PLC systems. GE products ensure reliable operation, scalable automation, and long-term support for industrial applications worldwide.

701 products

  • Sale -50% GE IC200PWR002 VersaMax Expanded 3.3V Power Supply Module GE IC200PWR002 VersaMax Expanded 3.3V Power Supply Module

    General Electric GE IC200PWR002 VersaMax Expanded 3.3V Power Supply Module

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    Product Description The IC200PWR002 is a VersaMax-series DC power module designed by GE Fanuc / Emerson to support extended low-voltage backplane requirements in modular PLC architectures. It converts a 24 VDC field supply into regulated logic voltages, with enhanced 3.3 VDC capacity for modern controller and communication modules requiring higher digital processing power. This unit can function either as a primary rack power source or as an auxiliary supply when integrated into a booster carrier configuration. Operational Characteristics Provides regulated backplane power for CPU, NIU, and distributed I/O modules Enhanced 3.3 VDC rail capacity for higher-load logic subsystems Supports dual installation modes: direct mount or booster carrier integration Designed for scalable VersaMax rack expansion Maintains continuous power stability across segmented backplane architectures Electrical Performance Input Voltage Range: 18–30 VDC Nominal Input: 24 VDC industrial supply Input Power Consumption: approx. 11 W Inrush Current: 20 A at 24 VDC 25 A at 30 VDC Holdup Time: ~10 ms Output Characteristics 5 VDC regulated backplane rail 3.3 VDC extended logic rail Total Output Current: up to 1.5 A 3.3 VDC Rail Capacity: up to 1.0 A maximum 5 VDC Rail: remaining current after 3.3 VDC load allocation Isolation: non-isolated output architecture Protection & Electrical Safeguards Short-circuit protection on output rails Overload current limiting and shutdown behavior Reverse polarity input protection Designed for continuous industrial duty operation Mechanical Construction Weight: 0.26 lb Mounting Method: DIN rail or direct attachment to VersaMax CPU/NIU/carrier Terminal Type: screw-clamp field wiring interface Housing Design: ventilated industrial enclosure with labeling for diagnostics Compact plug-in structure optimized for rack density Environmental & Safety Ratings Maximum Ambient Temperature: 60°C Hazard Classification: Class I, Division 2, Groups A–D (when properly installed) Temperature Code: T4A Installation Requirement: power must be isolated before servicing Suitable for enclosed control cabinet environments Engineering Notes Expanded 3.3 V rail supports newer-generation VersaMax modules with higher digital logic demand Load balancing between 5 V and 3.3 V outputs is required to maintain rated capacity In booster carrier configurations, the unit functions as a distributed power node within segmented racks Fully compatible with VersaMax CPU and NIU backplane systems Application Scenarios High-density PLC rack power distribution Modernized VersaMax systems with increased 3.3 V logic demand Expansion of existing I/O architectures Retrofit of legacy systems requiring upgraded logic power support FAQ What is the difference between IC200PWR001 and IC200PWR002?The IC200PWR002 provides expanded 3.3 VDC output capacity, supporting newer modules with higher logic power requirements. Can this unit be used as a standalone power supply?Yes, it can operate as the primary power source for a VersaMax station. Does it require a booster carrier?No, but it can be installed on a booster carrier when used as a supplemental supply in extended systems.

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  • Sale -50% GE IC200PWR001 VersaMax Power Supply Module GE IC200PWR001 VersaMax Power Supply Module

    General Electric GE IC200PWR001 VersaMax Power Supply Module

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    Overview The IC200PWR001 is a VersaMax-series DC power module developed by GE Fanuc / Emerson for supplying internal backplane voltages in modular PLC systems. It converts a 24 VDC industrial input into regulated logic rails required by CPUs, network interface units, and distributed I/O assemblies. The unit may operate as a primary station power source or as an auxiliary supply when integrated through a booster carrier in expanded rack architectures. Functional Characteristics Provides regulated backplane power for VersaMax controllers and I/O modules Supports dual-output architecture for logic rails (5 VDC and 3.3 VDC) Can be deployed as main rack power or secondary expansion supply Designed for direct mounting on CPU, NIU, or compatible carrier base Includes internal protection logic for abnormal electrical conditions Electrical Performance Input Voltage Range: 18–30 VDC (24 VDC nominal system supply) Input Power Consumption: approximately 11 W Inrush Current: 20 A at 24 VDC 25 A at 30 VDC Holdup Time: ~10 ms Output Stage 5 VDC regulated backplane rail 3.3 VDC logic rail Total Output Current: up to 1.5 A combined 3.3 VDC Output Limit: 0.25 A maximum 5 VDC Output: remaining current capacity after 3.3 VDC load allocation Protection & Reliability Functions Short-circuit protection on both output rails Overload shutdown with automatic recovery behavior Reverse polarity protection on input terminals Designed for continuous industrial duty cycles Mechanical Construction Housing Width: ~49 mm Height: ~133.4 mm Depth: ~39 mm (excluding carrier interface) Mounting: snap-fit installation on VersaMax CPU, NIU, or power carrier Weight: 0.24 lb Design: compact modular plug-in architecture for rack integration Environmental & Safety Ratings Operating Temperature: up to 60°C ambient (T4A classification in hazardous setups) Hazardous Location Approval: Class I, Division 2, Groups A–D (when installed per certification rules) Requires power isolation during installation or replacement Suitable for cabinet-mounted industrial environments Engineering Notes Output capacity must be balanced across 5 V and 3.3 V rails to avoid derating In multi-module racks, load distribution planning is required for stable backplane performance When used with booster carriers, acts as a distributed power node for segmented systems Compatible with standard VersaMax CPU and NIU backplane architecture Application Areas PLC backplane power generation in modular control systems Distributed I/O rack powering in machine automation Retrofit upgrades of legacy VersaMax installations Systems requiring compact dual-voltage logic power supply FAQ What is the main role of the IC200PWR001?It generates regulated 5 VDC and 3.3 VDC power for VersaMax backplane operation. Can it be used as the only power supply in a rack?Yes, it can serve as the primary supply in a single VersaMax station. Does it support hazardous environments?Yes, it is rated for Class I Division 2 when installed according to Emerson guidelines.

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  • Sale -50% GE IC200PWB001D VersaMax Power Booster Carrier Module GE IC200PWB001D VersaMax Power Booster Carrier Module

    General Electric GE IC200PWB001D VersaMax Power Booster Carrier Module

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    Overview The IC200PWB001D from GE Fanuc VersaMax series is a dedicated power expansion carrier designed to support additional power supply integration in modular PLC I/O systems. It is installed within a VersaMax rack to segment and extend backplane power distribution when system load exceeds the primary supply capacity. This module does not directly control I/O but functions as an infrastructure component to ensure stable voltage delivery across expanded configurations. System Function Provides a mounting and connection point for an auxiliary VersaMax power supply Segments backplane power so downstream modules receive isolated and stable supply Transfers power to all I/O modules positioned to the right until another power source is encountered Supports scalable rack design in distributed control systems Ensures controlled power injection in high-density I/O assemblies Electrical Specifications Input Voltage: 24 VDC external supply Backplane Output: 5 VDC logic power distribution (system dependent) Maximum Current Capacity: up to 10 A (revision D configuration) Power Dissipation: approx. 2.5 W Isolation Strength: 1500 VAC galvanic isolation between input and backplane Backplane Compatibility: GE Fanuc VersaMax PLC architecture Mechanical Details Mounting: 35 mm DIN rail installation Installation Orientation: horizontal rack mounting inside control cabinet Terminal Type: spring-clamp connectors, approx. 10-point interface Terminal Torque: 1.1–1.4 Nm Weight: 0.31 lb  Housing: industrial-grade corrosion-resistant enclosure Protection Rating: IP20, cabinet use only Environmental Conditions Operating Temperature: −20°C to +70°C Storage Temperature: −40°C to +85°C Humidity: 5–95% non-condensing Designed for vibration-resistant industrial control environments Diagnostics & Indicators PWR LED: indicates presence and health of booster power input OK LED: confirms system-level communication and proper backplane operation Engineering Considerations Must be installed on grounded DIN rail to maintain EMC compliance Power segmentation planning is required to avoid overload of a single backplane section Typically used in extended VersaMax racks with multiple I/O clusters Works in combination with GE Fanuc VersaMax CPUs and NIU modules Application Scenarios Extended PLC I/O rack expansion Distributed process control cabinets High channel-count automation systems Retrofit upgrades requiring additional backplane power capacity FAQ What role does this module play in a PLC system?It acts as a power distribution and segmentation carrier rather than a control or I/O module. Does it increase system I/O points?No, it only enables expansion by supplying additional power capacity. Is it required in all VersaMax systems?No, it is only used when system power demand exceeds a single supply capacity.

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  • Sale -50% GE IC200MDL750 VersaMax I/O Output Module GE IC200MDL750 VersaMax I/O Output Module

    General Electric GE IC200MDL750 VersaMax I/O Output Module

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    Overview The IC200MDL750 is a high-density discrete output module designed for the GE Fanuc / Emerson VersaMax I/O system. It provides 32-channel sourcing (positive logic) DC outputs for distributed control applications requiring reliable switching of field devices such as solenoids, relays, indicators, and similar DC loads. The module installs on VersaMax I/O carrier bases and communicates through the backplane while using an external field power supply for load energization. Functional Architecture The output structure is divided into two independent banks of 16 channels, allowing structured field wiring and load separation. Key functional characteristics: 32 sourcing DC output channels Positive logic high-side switching configuration Two isolated 16-point output groups Individual LED status indicators per channel OK and Field Power diagnostic LEDs Backplane-powered control logic with external field supply Electrical Performance Specifications Output Voltage Range: 10.2 to 30 VDC (12/24 VDC nominal systems) Output Current: 0.5 A per channel (resistive load) Inrush Current Capability: up to 2 A for 100 ms per point Backplane Current Consumption: approximately 90 mA at 5 VDC Switching Speed: Turn ON: 0.2 ms Turn OFF: 1.0 ms Output Type: DC sourcing (positive logic only) These parameters support fast-response discrete control in compact I/O architectures. Isolation and Protection Field-to-backplane isolation: 250 VAC continuous Dielectric withstand: 1500 VAC for 1 minute Group isolation between two 16-channel banks No point-to-point isolation Inductive loads should be externally suppressed using flyback diodes, RC snubbers, or equivalent protection methods to ensure long-term reliability. Wiring and System Integration Two field power groups with 16 outputs each Shared DC+ and DC− terminals per group External 12/24 VDC field power required Designed for VersaMax DIN-rail carrier systems (IC200CHS series) Environmental and Mechanical Data Operating Temperature: 0 to 60°C Mounting: DIN-rail via VersaMax I/O carrier base Hazardous Area Rating: Class I, Division 2 (when installed per control drawings) Weight: 0.29 lb Diagnostics 32 individual channel LEDs for output status OK LED indicating module health FLD PWR LED indicating field power availability These diagnostics support fast commissioning and fault identification in the field. Application Scenarios Solenoid valve control in process systems Relay and contactor interposing Industrial panel indicator control Machine-level discrete output expansion Distributed control system I/O architectures FAQ What type of loads can this module drive?It supports DC resistive and inductive loads such as solenoids, relays, and indicator lamps. Does it require external power?Yes, a 12/24 VDC external field power supply is required for operation. Is it suitable for hazardous environments?It is rated for Class I, Division 2 installations when applied according to Emerson installation guidelines.

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  • Sale -50% GE IC200MDL741 16-Point 120VAC Output Module VersaMax GE IC200MDL741 16-Point 120VAC Output Module VersaMax

    General Electric GE IC200MDL741 16-Point 120VAC Output Module VersaMax

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    Product Description The IC200MDL741 by GE Fanuc (Emerson) is a 16-channel 120 VAC discrete output module engineered for reliable AC load control in VersaMax PLC systems. Utilizing triac-based solid-state outputs, this module delivers long operational life, fast switching, and enhanced reliability compared to mechanical relay solutions. Each channel is equipped with a dedicated LED for immediate status monitoring, while the OK and Field Power (FLD PWR) LEDs provide system health diagnostics. Group-to-backplane isolation ensures robust noise immunity and protects the PLC logic from field-side disturbances. The module is compatible with all VersaMax I/O carriers and can be mounted on DIN rails or panels for flexible installation. Electrical Specifications Number of outputs: 16 Output type: Triac-based AC switching (solid-state) Nominal voltage: 120 VAC Operating frequency: 47–63 Hz Maximum load current per point: 0.5 A Isolation: Group-to-backplane for electrical protection Backplane current consumption: 75 mA at 5 VDC Protection: Short-circuit, overcurrent, and free-wheeling diodes Mechanical & Environmental Specifications Module dimensions: ~30 × 80 × 60 mm Weight: 0.22 lbs Mounting: VersaMax I/O carrier (DIN-rail or panel) Operating temperature: 0 °C to 60 °C Storage temperature: –40 °C to +70 °C Relative humidity: 5%–95% non-condensing Indicators & Diagnostics One LED per output channel for ON/OFF status OK LED for module health FLD PWR LED for field power availability Key Features 16 solid-state 120 VAC output points Triac-based design ensures fast switching and long lifespan Individual output LEDs for quick diagnostics Group-to-backplane isolation for electrical safety Ideal for AC solenoids, contactors, lamps, and general-purpose AC loads Compact VersaMax form factor for dense installations Applications Control of AC-powered relays, solenoids, lamps, and small actuators Industrial machinery and automation Utility and building system AC control Retrofit and expansion for existing VersaMax PLC setups FAQ Q: Can this module drive inductive loads?A: Yes, but use external snubbers or suppression circuits to protect the triac outputs. Q: Does the module require external power for logic operation?A: No, all logic power is supplied via the VersaMax backplane; field power is only needed for load operation. Q: What type of isolation does this module provide?A: Group-to-backplane isolation protects PLC logic from noise and voltage spikes on the output channels.

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  • Sale -50% GE IC200MDL730 Discrete DC Output Module GE IC200MDL730 Discrete DC Output Module

    General Electric GE IC200MDL730 Discrete DC Output Module

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    Product Description The IC200MDL730 from GE Fanuc (Emerson) is an 8-channel 24 VDC discrete output module, designed for reliable control of field devices in industrial automation systems. It supports positive‑logic (sourcing) outputs, allowing the module to supply current directly to loads such as relays, solenoids, indicator lamps, and small actuators. Each output point is protected against short circuits and overcurrent conditions, ensuring both module and field wiring safety. Integrated LEDs for every channel, plus OK and Field Power (FLD PWR) indicators, provide fast diagnostics and operational status monitoring. The module mounts on any VersaMax I/O carrier and supports both DIN‑rail and panel installation, offering flexible deployment in compact control cabinets. Output Channel Configuration Total outputs: 8 points, single group Output type: Positive‑logic, sourcing Load current capacity: 2.0 A per output Nominal output voltage: 24 VDC (range 17.5–30 VDC) Maximum switching frequency: 10 Hz Protection & Reliability Short-circuit protection on each output Overcurrent protection Fault indication via amber LED Detected faults reported to VersaMax CPU These features ensure safe operation and quick fault identification in demanding industrial environments. Power & Electrical Requirements Backplane supply: 5 VDC Backplane current draw: 50 mA max External field power: 18–30 VDC nominal The module operates entirely from the VersaMax backplane for logic power, while driving external loads from a dedicated 24 VDC field supply. Indicators & Diagnostics One LED per output channel for status monitoring OK LED for module health FLD PWR LED for field power availability Amber fault LED for overcurrent or short circuit These visual indicators simplify troubleshooting and maintenance. Mechanical & Environmental Specifications Dimensions: 110 × 66.8 × 50 mm Weight: 0.38 kg Mounting: VersaMax I/O carriers (DIN-rail or panel) Operating temperature: 0°C to 60°C Storage temperature: –40°C to +70°C Relative humidity: 5%–95% non-condensing Key Features 8 discrete sourcing outputs at 24 VDC High load handling: 2 A per point Built-in short-circuit and overcurrent protection Individual point LEDs, plus OK and FLD PWR indicators Fast response: ~0.5 ms Compact VersaMax form factor Applications Control of relays, solenoids, and lamps Small actuator and motor control Machine automation requiring reliable digital outputs Retrofit or expansion of existing VersaMax systems FAQ Q: Can this module drive inductive loads?A: Yes, but external protection (flyback diodes or snubbers) is recommended for inductive devices. Q: Does the module require external power for logic operation?A: No. Logic power is supplied via the VersaMax backplane; external 24 VDC is only needed for the outputs. Q: What happens if a short circuit occurs?A: The affected output is protected by the built-in overcurrent circuit, and an amber fault LED is illuminated.

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  • Sale -50% GE IC200MDL243 VersaMax 16-Point AC Input Module GE IC200MDL243 VersaMax 16-Point AC Input Module

    General Electric GE IC200MDL243 VersaMax 16-Point AC Input Module

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    Product Description The IC200MDL243 is a 120 VAC discrete input module from GE Fanuc (Emerson), developed for the VersaMax I/O platform. It is intended for interfacing AC field signals with PLC systems, offering per-channel isolation to ensure stable signal acquisition in electrically noisy environments. Each input channel is independently isolated and includes its own return path, which minimizes cross-channel interference and improves signal integrity. The module is suitable for applications involving AC-powered devices such as pushbuttons, limit switches, and relay contacts. Input Channel Configuration Total input points: 16 Input type: AC discrete, positive logic Input wiring: Individual return per channel Signal type: 120 VAC field inputs This design allows accurate monitoring of independent AC signals without shared commons, reducing the risk of wiring-related faults. Electrical Characteristics Nominal input voltage: 120 VAC Operating voltage range: 0 to 132 VAC (47–63 Hz) ON state: Voltage range: 70 to 132 VAC Minimum current: 5 mA OFF state: Voltage range: 0 to 20 VAC Maximum current: 2.5 mA Input impedance: ~8.6 kΩ at 60 Hz ~10.3 kΩ at 50 Hz These parameters ensure compatibility with standard industrial AC control circuits. Response Performance Turn-on delay: up to 1 AC cycle Turn-off delay: up to 2 AC cycles The response timing is optimized for typical AC switching applications, balancing noise immunity and signal responsiveness. Isolation Specifications Channel-to-channel isolation: 250 VAC continuous 1500 VAC for 1 minute Field-to-logic isolation: 250 VAC continuous 1500 VAC dielectric withstand Full isolation across all input points enhances reliability in high-interference environments. Power Requirements Backplane supply: 5 VDC Current consumption: up to 100 mA External power supply: not required The module operates entirely from the VersaMax backplane, simplifying installation. Diagnostics and Indicators 16 individual status LEDs (one per input) 1 module OK LED for backplane power indication These indicators provide immediate visibility into input states and module health. Mechanical Details Dimensions: 110 × 66.8 × 50 mm Weight: 0.63 lb Mounting: installs on VersaMax carrier bases (IC200CHS series) Environmental Ratings Operating temperature: 0°C to +60°C Humidity: suitable for non-condensing industrial environments Hazardous locations: Class I, Division 2, Groups A–D compliant (per manufacturer documentation) Key Functional Features 16 independent AC input channels Full electrical isolation per input Designed for 120 VAC field signals No external power required Fast response aligned with AC cycle timing Integrated LED diagnostics Application Scenarios Monitoring AC control panels Industrial machinery with AC sensors Motor control centers (MCC) Process systems using AC discrete signaling Retrofit of legacy AC-based control systems FAQ Q: Does each input require a separate common terminal?A: Yes. Each channel has its own return path, which improves isolation and reduces wiring interference. Q: Can this module be used with DC signals?A: No. It is specifically designed for AC input signals and should not be used with DC inputs. Q: Is external power needed for operation?A: No. The module is powered directly from the VersaMax backplane.

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  • Sale -50% GE IC200MDD840 VersaMax Mixed Discrete I/O Module GE IC200MDD840 VersaMax Mixed Discrete I/O Module

    General Electric GE IC200MDD840 VersaMax Mixed Discrete I/O Module

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    Product Description The IC200MDD840 is a hybrid discrete I/O module from GE Fanuc (Emerson) designed for the VersaMax platform. It integrates both digital inputs and relay outputs within a single module, allowing efficient handling of sensing and control tasks in compact automation systems. This module combines 24 VDC sourcing inputs with electromechanical relay outputs, making it adaptable to both low-voltage control signals and higher-voltage load switching. It is commonly used in machine control panels where space optimization and wiring simplification are required. I/O Configuration Overview Total I/O channels: 32 Digital inputs: 20 channels Relay outputs: 12 channels (Form A, normally open) The mixed configuration reduces the need for separate input and output modules, simplifying system design and reducing installation footprint. Input Characteristics Input type: Positive logic (sourcing) Nominal voltage: 24 VDC Operating range: 0 to 30 VDC Input current (ON state): 2.0 to 5.5 mA Input current (OFF state): up to 0.5 mA Input impedance: ≤10 kΩ Response time: ON: 0.5 ms typical OFF: 10 ms typical These characteristics ensure reliable signal detection from sensors such as proximity switches, pushbuttons, and limit switches. Output Characteristics Output type: Relay contacts (Form A, normally open) Number of outputs: 12 Contact ratings: 2 A at 5–265 VAC (resistive load) 2 A at 5–30 VDC (resistive load) 0.2 A at 31–125 VDC Minimum switching load: 10 mA Output grouping: Two isolated groups of 6 outputs each (typical design architecture) Note: External protection devices (such as snubbers or fuses) are recommended for inductive loads. Electrical Requirements Backplane current draw: up to 375 mA at 5 VDC External supply range: 0–125 VDC (nominal 5 / 24 / 125 VDC) 0–265 VAC (47–63 Hz, nominal 120 / 240 VAC) Diagnostics and Indicators Individual LED indicators for each input and output point Dedicated module status LED (OK indicator) These indicators provide immediate visual feedback for commissioning and troubleshooting. Mechanical Specifications Dimensions: 110 × 66.8 × 50 mm Weight: 0.35 lb Mounting: Compatible with VersaMax carrier bases (IC200CHS series) Environmental Conditions Operating temperature: –20°C to +60°C Relative humidity: 5% to 95% non-condensing Designed for stable operation in industrial control cabinets with typical environmental stress factors. Key Functional Features Combined input and output functionality in one module Supports both DC sensing and AC/DC load switching Relay outputs provide electrical isolation from field loads LED diagnostics for each channel Space-efficient solution for mixed I/O requirements Application Scenarios Packaging and assembly machinery Conveyor and material handling systems OEM equipment panels General-purpose discrete control systems Applications requiring both sensor input and relay-driven output FAQ Q: Can this module drive inductive loads such as solenoids?A: Yes, but external suppression components (e.g., RC snubbers or flyback diodes) are recommended to protect relay contacts. Q: Are the outputs electrically isolated?A: The relay contacts provide isolation from the control electronics, and outputs are typically grouped for load segmentation. Q: Does the module require a separate power supply for outputs?A: Yes. External power must be supplied according to the load voltage requirements.

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  • Sale -50% GE IC200ERM002 VersaMax Expansion Receiver Module GE IC200ERM002 VersaMax Expansion Receiver Module

    General Electric GE IC200ERM002 VersaMax Expansion Receiver Module

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    Product Description The IC200ERM002 is a VersaMax expansion receiver developed by GE Fanuc (Emerson) to extend the I/O capacity of PLC or NIU-based systems. It functions as the interface between the main rack and additional expansion racks, enabling scalable system architectures without compromising communication integrity. This module is designed for distributed installations where multiple I/O bases must be interconnected. Using differential signaling over a dedicated expansion bus, it maintains reliable data transfer across extended distances while supporting flexible rack configurations. Expansion Architecture and System Capacity Maximum expansion racks: 7 Modules per expansion rack: up to 8 I/O or specialty modules Total system scalability: up to 56 additional modules The module supports both compact single-rack extensions and multi-rack distributed layouts, depending on application requirements. Communication Interface Expansion ports: 2 × 26-pin D-sub (female) connectors One for incoming connection, one for daisy-chain or termination Signaling method: RS-485 differential expansion bus Data transmission rate: 2.765 Mbps 5 Mbps (depending on system configuration) This communication design ensures stable performance even in electrically noisy environments. Cable Configuration Options Single-ended configuration: Maximum cable length: 1 meter (3.3 ft) Does not require expansion transmitter (ETM) Multi-rack configuration: Maximum cable length: 15 meters (50 ft) Requires IC200ETM001 expansion transmitter module Electrical Characteristics Backplane current consumption: 5 V DC: 70 mA 3.3 V DC: 20 mA Power supply: Provided via system backplane External power distribution handled through associated power supply modules Mechanical Specifications Dimensions: 66.8 × 128 × 69.1 mm Weight: 0.49 lb Installation position: Slot 0 (leftmost position) of expansion rack Mounting method: DIN rail or panel mounting Diagnostics and Indicators LED indicators include: Power status Expansion port activity (EXP1 / EXP2) Module health These indicators assist with commissioning and troubleshooting in multi-rack systems. Compatibility and Integration Compatible with VersaMax PLC CPUs and NIUs Supports all standard VersaMax I/O modules Some analog or specialty modules may require specific hardware revisions Key Functional Features Enables multi-rack expansion for VersaMax systems Dual-port design supports daisy-chain topology Reliable RS-485 communication for extended distances Supports both short-distance and distributed configurations Compact form factor aligned with VersaMax mechanical standards Application Scenarios Distributed control systems with remote I/O panels Large machinery with segmented control cabinets Process plants requiring scalable I/O expansion Infrastructure systems with physically separated control zones FAQ Q: Is an expansion transmitter always required?A: No. For short connections (≤1 meter), the receiver can operate without a transmitter. For longer or multi-rack setups, an ETM module is required. Q: Where should this module be installed in the rack?A: It must be installed in the first slot (slot 0) of the expansion rack to ensure correct communication. Q: Does this module provide electrical isolation?A: No. The IC200ERM002 is a non-isolated expansion receiver, so grounding and proper installation practices are important.

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  • Sale -50% GE IC200CPUE05 VersaMax Ethernet PLC CPU Module GE IC200CPUE05 VersaMax Ethernet PLC CPU Module

    General Electric GE IC200CPUE05 VersaMax Ethernet PLC CPU Module

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    Product Description The IC200CPUE05 is an advanced CPU module in the GE Fanuc (Emerson) VersaMax family, integrating high-speed processing with built-in Ethernet connectivity. It is designed for mid-level automation systems that require deterministic control, network communication, and scalable I/O expansion within a compact PLC architecture. This processor combines logic execution, communication services, and memory management into a single unit, making it suitable for distributed control systems, machine automation, and plant-level integration where Ethernet-based data exchange is required. Processing Capability and Memory Architecture Configurable user memory: 128 KB (application logic, registers, and analog data areas) Execution performance: 0.8 ms per 1K Boolean instructions Floating-point operations: Supported Auto-configuration: Supported for system setup The CPU uses non-volatile flash memory for firmware and application storage, complemented by battery-backed RAM for runtime data retention. I/O Expansion and System Capacity Maximum supported I/O modules: 64 Discrete Inputs: 2048 points Discrete Outputs: 2048 points Internal discrete memory: 1024 bits Temporary bits: 256 Global memory bits: 1280 This capacity allows the CPU to manage distributed I/O topologies across multiple racks. Communication Interfaces Serial Interfaces: 1 × RS-232 1 × RS-485 Ethernet Interface: 10 Mbps, half/full duplex RJ-45 connector Supported Protocols: SNP Slave Modbus RTU (Master/Slave depending on firmware) Serial I/O SRTP (Service Request Transport Protocol) EGD (Ethernet Global Data) UDP-based Station Manager NTP time synchronization EGD Data Exchange Capacity: Up to 32 exchanges 100 data variables per exchange Maximum 1400 bytes per exchange Memory Retention and Backup System Program storage: Non-volatile flash memory Working memory: Battery-backed RAM Real-time clock: Integrated RTC accuracy: ±100 ppm (approximately ±9 seconds/day) Backup mechanisms: Supercapacitor: Maintains memory for up to 1 hour after power loss Battery backup: Retains data for up to 6 months Battery shelf life: Approx. 5 years Power Requirements Backplane current consumption: 5 V DC: 220 mA 3.3 V DC: 570 mA Mechanical Characteristics Dimensions: 126 × 128 × 69.1 mm Weight: 0.63 lb Mounting options: DIN rail or panel installation Integrated controls: RUN/STOP switch Ethernet restart pushbutton LED indicators for diagnostics and communication status Environmental Specifications Operating temperature: 0°C to +60°C (typical VersaMax rating) Storage temperature: –40°C to +85°C Designed for industrial environments with standard vibration and EMC requirements Key Functional Features Integrated Ethernet and dual serial communication ports High-speed processing for time-critical control tasks 128 KB memory supporting complex applications Multi-protocol support including EGD and Modbus Dual backup system (battery + supercapacitor) Compatible with VersaMax EZ Program Store Application Scenarios Distributed PLC systems with Ethernet communication Manufacturing lines and automated machinery Utilities and water treatment control Process industries requiring real-time data exchange OEM equipment with remote monitoring capability FAQ Q: Does this CPU support Ethernet-based communication protocols?A: Yes. It supports SRTP, EGD, UDP communication, and time synchronization via NTP, enabling integration into industrial Ethernet networks. Q: What happens if power is lost?A: The supercapacitor maintains memory temporarily (up to 1 hour), while the battery preserves program and data for extended periods. Q: How does this model compare to IC200CPU002?A: The IC200CPUE05 offers significantly higher memory (128 KB vs 42 KB), faster execution, and built-in Ethernet, making it more suitable for networked and complex systems.

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  • Sale -50% GE IC200CPU002 VersaMax PLC CPU Module GE IC200CPU002 VersaMax PLC CPU Module

    General Electric GE IC200CPU002 VersaMax PLC CPU Module

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    Product Description The IC200CPU002 is a higher-capacity CPU module within the GE Fanuc (Emerson) VersaMax family, developed for modular control systems requiring more memory and expanded communication flexibility than entry-level CPUs. It integrates processing, memory management, and serial communications into a compact unit suitable for distributed and standalone PLC architectures. With increased user memory and support for both Modbus master and slave communication, this CPU is well suited for applications involving data exchange with multiple field devices, operator interfaces, and supervisory systems. Processing Performance and Memory User-configurable memory: 42 KB (program logic, registers, and analog data) Execution rate: 1.8 ms per 1K Boolean instructions Floating-point capability: Supported Runtime overrides: Available The system uses non-volatile flash for firmware storage combined with battery-backed RAM for application data retention, ensuring continuity during power interruptions. I/O Handling Capacity Discrete Inputs: 2048 channels Discrete Outputs: 2048 channels Internal Discrete Memory: 1024 bits Temporary Logic Bits: 256 Global Memory Bits: 1280 This configuration supports medium-scale automation systems with distributed I/O structures. Communication Interfaces Built-in ports: 1 × RS-232 1 × RS-485 Supported communication protocols: SNP Slave Modbus RTU Master and Slave Serial I/O The addition of Modbus Master capability allows this CPU to actively poll and control external devices such as drives and instrumentation. Memory System and Data Retention Program storage: Embedded flash memory Working memory: Battery-backed RAM Real-time clock: Integrated Time accuracy: ±2 seconds/day at 30°C Up to ±9 seconds/day across full temperature range Battery life: Typically up to 5 years under normal conditions Power Requirements Backplane current consumption: 5 VDC: 40 mA (base) / up to 140 mA with expansion devices 3.3 VDC: 100 mA Mechanical Characteristics Weight: 0.99 lbs Mounting: Installs on VersaMax carrier base Status Indicators: Integrated LED diagnostics for system and communication status Mode Selection: Physical RUN/STOP switch Environmental Specifications Operating temperature: 0°C to +60°C Storage temperature: –40°C to +85°C Designed for industrial environments with standard vibration and electrical noise tolerance Key Functional Features Expanded 42 KB memory for more complex control strategies Dual serial ports with Modbus RTU Master/Slave capability Battery-backed clock and memory retention Integrated diagnostics and hardware mode selector Compatible with full VersaMax I/O range Application Scenarios Distributed I/O control systems Packaging and assembly automation Water treatment and utilities OEM equipment with serial device integration Process control systems requiring Modbus master communication FAQ Q: What is the main difference between IC200CPU001 and IC200CPU002?A: The IC200CPU002 provides larger memory (42 KB vs 34 KB) and adds Modbus RTU Master functionality, making it more suitable for complex and communication-intensive applications. Q: Can this CPU communicate with multiple Modbus devices?A: Yes. Using the RS-485 port in Modbus Master mode, it can poll and manage multiple slave devices on the same network. Q: Does the module retain data after power loss?A: Yes. Battery-backed RAM preserves program and runtime data, and the real-time clock continues operating.

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  • Sale -50% GE IC200CPU001 VersaMax PLC CPU Module GE IC200CPU001 VersaMax PLC CPU Module

    General Electric GE IC200CPU001 VersaMax PLC CPU Module

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    Product Description The IC200CPU001 is a compact central processing unit designed for the GE Fanuc (Emerson) VersaMax PLC platform. It provides deterministic control, integrated serial communications, and scalable I/O handling for distributed automation systems and standalone machine control. This CPU is intended for applications requiring reliable execution of discrete and mixed control logic while maintaining a small system footprint. With built-in communication interfaces and flexible memory allocation, it supports integration with HMIs, SCADA systems, and remote I/O networks. Core Performance and Architecture User-configurable memory: 34 KB (allocated across program, registers, and analog data) Execution performance: 1.8 ms per 1K Boolean instructions (typical scan benchmark) Floating-point operations: Supported Override capability: Enabled for runtime control adjustments The architecture combines system flash for firmware storage with battery-backed RAM to retain user programs and runtime data during power loss. I/O Capacity and Data Handling Discrete Inputs: 2048 points Discrete Outputs: 2048 points Internal Discrete Bits: 1024 Temporary Bits: 256 Global Memory Bits: 1280 This capacity makes the CPU suitable for medium-scale control tasks, especially in distributed I/O configurations using VersaMax modules. Communication Interfaces Integrated Ports: 1 × RS-232 1 × RS-485 Supported Protocols: SNP Slave Modbus RTU Slave Serial I/O These interfaces allow direct connection to operator panels, supervisory systems, and serial field devices without requiring additional communication modules. Memory and Data Retention Memory Type: Flash + battery-backed RAM Data Retention: Program, register values, and system state Real-Time Clock: Integrated with battery backup Accuracy: ±100 ppm (approximately ±9 seconds per day) Power Requirements Backplane Supply Current: 5 V DC: 140 mA (typical with expansion devices) 3.3 V DC: 100 mA Note: Lower 5 V consumption may occur when optional storage modules are not installed. Mechanical Characteristics Weight: 0.25 lb Mounting: Installs on VersaMax I/O carrier base Programming Environment Supported Languages: Ladder Diagram (LD) Instruction List (IL) Engineering Software: Proficy Machine Edition (formerly Logic Developer) Key Functional Features Compact CPU suitable for modular VersaMax systems Integrated serial communication ports reduce need for expansion modules Flexible memory allocation for diverse control strategies Battery-backed clock for event logging and scheduled operations Designed for stable operation in distributed control architectures Application Scenarios Packaging and assembly machines Material handling systems Small process control loops Distributed I/O control panels OEM equipment integration FAQ Q: Does this CPU support Ethernet communication?A: No, the IC200CPU001 provides serial communication only. Ethernet capability requires additional modules or higher-end CPUs. Q: What happens to the program during power loss?A: The program and data are retained in battery-backed RAM. The real-time clock also continues running. Q: Is this CPU suitable for large-scale systems?A: It is best suited for small to medium applications. Larger systems may require higher-performance CPUs with expanded memory and communication options.

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  • Sale -50% GE IC200CHS002 VersaMax Box I/O Carrier Module GE IC200CHS002 VersaMax Box I/O Carrier Module

    General Electric GE IC200CHS002 VersaMax Box I/O Carrier Module

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    Product Description The IC200CHS002 VersaMax carrier from GE Fanuc (Emerson Automation) is a compact box-terminal mounting base designed to host a single VersaMax I/O module. It provides the electrical interface, mechanical support, and backplane connectivity required for reliable PLC system integration. Compared with open barrier-style carriers, this version adopts an enclosed terminal architecture, improving wiring density and protection. The integrated terminal block and hinged cover reduce exposure to contaminants and accidental contact, making it suitable for control panels with limited space or moderate vibration. The carrier incorporates a keyed module interface to prevent mismatched installation and supports online module replacement without disconnecting field wiring, which is critical for maintaining system uptime. Key Technical Specifications General Information Manufacturer: GE Fanuc / Emerson Automation Model: IC200CHS002 Product Type: Box-style I/O carrier Series: VersaMax Mounting Orientation: Horizontal Installation Method: DIN rail or panel mounting Electrical Characteristics Operating Voltage Range: 0 to 264 VAC Surge Withstand: Up to 300 VAC Current Capacity: 2 A per I/O channel 8 A per shared power/ground segment Terminal Type: Integrated enclosed box terminals Conductor Material: Copper (solid or stranded recommended) Terminal & Wiring Details Total Terminals: 36 (labeled A1–A18 and B1–B18) I/O Capacity: 32 signal channels 4 common/power terminals Supported Wire Size: Single conductor: AWG 22 to AWG 14 Dual conductor: up to AWG 18 per terminal Tightening Torque: 0.5–0.61 Nm Field Termination: Direct wiring into integrated terminal block Mechanical Properties Weight: 0.64 lb Mounting Rail: 35 mm DIN rail (EN 50022, 7.5 mm height) Panel Mounting: Recommended where vibration is present Clearance Requirements: Vertical: 50 mm (2 in) Horizontal: 25 mm (1 in) Protection: Transparent hinged terminal cover Environmental Conditions Grounding Requirement: DIN rail grounding recommended for EMC compliance Application Environment: Control cabinets with moderate vibration and high wiring density Design Features and Advantages Enclosed box-style terminals enable compact, organized wiring layouts Hinged cover provides physical protection and quick inspection access Integrated keying avoids incorrect I/O module insertion Supports hot insertion and removal of modules without rewiring Suitable for both discrete and analog VersaMax I/O modules Application Scenarios High-density PLC cabinets OEM machinery control panels Distributed I/O systems with space constraints Installations requiring improved wiring protection and reduced exposure FAQ Q: How does this model differ from IC200CHS001?A: The IC200CHS002 uses enclosed box terminals for higher wiring density and protection, while CHS001 features open barrier terminals for easier access and higher isolation visibility. Q: Can two wires be connected to one terminal?A: Yes, dual wiring is supported up to AWG 18 per terminal, depending on installation practice. Q: Is it suitable for analog modules as well as digital I/O?A: Yes. The carrier supports both analog and discrete VersaMax I/O modules within its current and wiring limits.

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  • Sale -50% GE IC200CHS001 VersaMax Barrier I/O Carrier Module GE IC200CHS001 VersaMax Barrier I/O Carrier Module

    General Electric GE IC200CHS001 VersaMax Barrier I/O Carrier Module

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    Product Description The IC200CHS001 from GE Fanuc (now Emerson) is a locally mounted barrier-style carrier designed for the VersaMax distributed I/O platform. It serves as the physical and electrical interface between field wiring and a single VersaMax I/O module, ensuring stable signal routing and reliable system integration. Engineered for demanding industrial environments, this carrier incorporates high-isolation screw terminals and a robust backplane connector, supporting consistent performance under electrical noise, vibration, and varying load conditions. Its integrated design enables module replacement without rewiring, minimizing downtime during maintenance. Key Technical Specifications General Information Manufacturer: GE Fanuc / Emerson Model: IC200CHS001 Product Type: Barrier-style I/O carrier Series: VersaMax I/O Orientation: Horizontal Mounting Type: DIN rail or panel mount Electrical Characteristics Rated Voltage: 264 VAC (continuous) Surge Tolerance: Up to 300 VAC Current Rating: 2 A per terminal 8 A total across common/power bus Insulation Design: Barrier-separated terminals for enhanced safety Recommended Conductor: Copper wire, 90°C rated Terminal & Wiring Details Terminal Count: 36 screw-type barrier terminals Supported Wire Size: AWG 22–14 (solid or stranded) Maximum I/O Capacity: 32 signal points 4 shared common/power connections Tightening Torque: 0.5–0.68 Nm Mechanical Properties Dimensions (approx.): 110 × 66.8 × 50 mm Weight: 0.40 kg Mounting Options: Standard 35 mm DIN rail (EN 50022) Direct panel mounting Backplane Interface: Slide-in locking connector integrated into carrier Environmental Conditions Operating Temperature Range: 0°C to +60°C Storage Temperature Range: –40°C to +70°C Installation Note: Grounded DIN rail recommended for optimal EMC performance Functional Highlights Barrier-isolated terminals reduce risk of short circuits and cross-channel interference Designed for high-current discrete I/O applications Supports hot module insertion and removal without disturbing field wiring Provides strong mechanical retention for wiring in vibration-prone installations Maintains consistent electrical contact via integrated backplane connector Typical Applications Discrete input/output interfacing in PLC systems Industrial control panels with high wiring density Process automation requiring reliable signal isolation Environments exposed to electrical interference or mechanical vibration FAQ Q: Can field wiring remain connected during module replacement?A: Yes. The carrier allows I/O modules to be removed and installed without disconnecting field wiring, reducing maintenance time. Q: What type of signals is this carrier best suited for?A: It is optimized for discrete I/O signals, especially where higher current capacity and electrical isolation are required. Q: Is shielding or grounding required?A: While not mandatory, grounding the DIN rail is strongly recommended to improve noise immunity and system stability.

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  • Sale -50% GE IC200ALG322D VersaMax 4-Channel 12-Bit ±10 VDC Analog Output GE IC200ALG322D VersaMax 4-Channel 12-Bit ±10 VDC Analog Output

    General Electric GE IC200ALG322D VersaMax 4-Channel 12-Bit ±10 VDC Analog Output

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    Product Description The IC200ALG322D from GE Fanuc / Emerson is a high-precision 4-channel analog voltage output module designed for the VersaMax I/O family. It provides stable ±10.24 VDC outputs with 12-bit resolution, making it ideal for industrial control of actuators, drives, dampers, PID loops, and other process automation devices. This module ensures accurate voltage control with minimal signal noise, featuring robust 250 VAC isolation between outputs and PLC logic. A fast 0.3 ms update rate guarantees responsive control in dynamic systems. Two LED indicators clearly display field-side power status (FLD PWR) and backplane power (OK). An external 18–30 VDC supply powers the output circuits, while logic power is drawn from the backplane, keeping energy consumption low. Its compact form factor mounts directly into a VersaMax I/O rack for seamless integration. Technical Specifications Output Channels Channels: 4 single-ended analog outputs Output range: –10.24 VDC to +10.24 VDC Resolution: 12-bit (≈2.5 mV per step) Update rate: 0.3 ms per module Minimum load: 5000 Ω resistive Power & Consumption External field-side supply: 18–30 VDC (user-supplied) Backplane draw: 50 mA @ 5 VDC Max current: 160–210 mA depending on supply voltage Isolation & Noise Immunity User-side to logic: 250 VAC continuous, 1500 VAC for 1 min Channel-to-channel crosstalk rejection: ≥ 70 dB Ensures noise-immune, stable analog output Indicators & Diagnostics LEDs: FLD PWR (field-side power), OK (backplane status) On fault: module holds last output or defaults to 0 V Detects field-side power loss for safe operation Environmental & Physical Operating temperature: –20°C to +60°C Storage temperature: –40°C to +85°C Dimensions: 110 × 66.8 × 50 mm Weight: 0.55 lbs Mounting: VersaMax I/O rack, 1 slot Applications Control of precision actuators, valves, and dampers Voltage regulation for drives and PID-controlled loops Industrial, manufacturing, and process automation systems requiring stable analog outputs FAQ Q: Can this module output current signals?A: No, IC200ALG322D provides only ±10.24 VDC voltage outputs. For 4–20 mA outputs, use a current output module. Q: What happens if field power is lost?A: The module retains the last output state or defaults to 0 V for safety. Q: How fast can the module update outputs?A: Outputs update every 0.3 ms per module, supporting fast process control loops.

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  • Sale -50% GE IC200ALG321 VersaMax 4-Channel 12-Bit Analog Output Module GE IC200ALG321 VersaMax 4-Channel 12-Bit Analog Output Module

    General Electric GE IC200ALG321 VersaMax 4-Channel 12-Bit Analog Output Module

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    Product Description The IC200ALG321 by GE Fanuc / Emerson is a 4-channel analog output module engineered for the VersaMax PLC system. It delivers precise 0–10.24 VDC signals with 12-bit resolution, enabling control of actuators, valves, VFDs, dampers, and other analog-driven process devices. This module is designed for industrial reliability, with robust isolation between the user-side outputs and the PLC logic, fast 0.3 ms update rate, and built-in diagnostics for detecting field-side power loss. Two front-panel LEDs indicate field power presence (FLD PWR) and backplane status (OK), ensuring clear visual monitoring of operational status. The module requires an external 18–30 VDC supply for output circuitry, while the logic power is fully supported from the VersaMax backplane. Technical Specifications Channels & Output Number of channels: 4 Type: Analog voltage outputs, single-ended Output range: 0–10.24 VDC Resolution: 12-bit (2.5 mV per step) Accuracy: 0.3% typical, ±1% max full scale Load capacity: ≥ 5000 Ω resistive, ≤ 1 µF capacitive Performance Update rate: 0.3 ms per module Response: Fast, suitable for process control loops and precision actuation Output behavior: Hold last state or output 0 VDC on CPU stop or communication loss Power & Isolation External field-side supply: 18–30 VDC nominal (supports 12/24 VDC systems) Backplane consumption: 50 mA @ 5 VDC Isolation: 250 VAC continuous, 1500 VAC for 1 min (user side to logic) Diagnostics & Indicators LEDs: FLD PWR (field-side power), OK (backplane) Detects loss of field-side power Provides safe default or hold-last output states during errors Mechanical & Environmental Dimensions: 110 × 66.8 × 50 mm Weight: 0.30 lbs Mounting: VersaMax I/O rack, occupies 1 slot Operating temperature: 0°C to 60°C Humidity: 5–95% non-condensing Applications Controlling analog valves, dampers, actuators, and motors VFD and speed regulation in process loops Industrial automation requiring precise voltage outputs FAQ Q: Can this module handle current outputs?A: IC200ALG321 is strictly a voltage output module; use a current output module for 4–20 mA applications. Q: Is external power required?A: Yes, 18–30 VDC is needed for the output circuits; logic power is supplied from the backplane. Q: How fast are the voltage updates?A: The module provides an update every 0.3 ms per module, suitable for high-speed control loops.

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  • Sale -50% GE IC200ALG230 VersaMax 4-Channel 12-Bit Analog Input Module GE IC200ALG230 VersaMax 4-Channel 12-Bit Analog Input Module

    General Electric GE IC200ALG230 VersaMax 4-Channel 12-Bit Analog Input Module

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    Product Description The IC200ALG230 from GE Fanuc / Emerson is a 4-channel analog input module designed for the VersaMax PLC platform. It provides precise 12-bit measurement for industrial voltage or current signals and supports flexible single-ended input configurations, making it ideal for process monitoring, control, and automation tasks. Channels can be independently set for voltage (±10 VDC default or 0–10 VDC selectable) or current mode (4–20 mA), allowing adaptation to a wide range of field devices. The module is powered entirely from the VersaMax backplane, requiring no external power, and includes LED indicators for backplane status (OK) and internally generated field power (INT PWR). Technical Specifications Channels & Input Number of channels: 4 analog inputs Input type: Single-ended, one common group Resolution: 12-bit (4096 counts) Voltage mode: ±10 VDC (bipolar) or 0–10 VDC (unipolar jumper-selectable) Current mode: 4–20 mA Input impedance: 126 kΩ (voltage), 200 Ω (current) Accuracy & Performance Voltage/current accuracy: ±0.3% typical @ 25°C, ±0.5% max @ 25°C, ±1% max 0–60°C Filter response: 5.0 ms Update rate: 0.4 ms per module Crosstalk rejection: ≥30 dB Common-mode voltage: 0 V Power & Isolation Backplane current draw: 125 mA @ 5 VDC External power: Not required Isolation: 250 VAC continuous (input to logic), withstand 1500 VAC for 1 min Diagnostics & Indicators LED indicators: OK (backplane power), INT PWR (internal field power) Module error reaction: Hold last state or switch to predefined value Detects loss of internal power automatically Configuration Jumper-selectable: Voltage/current mode, bipolar/unipolar selection Supports 2-row or 3-row terminal block carriers Mechanical & Environmental Weight: 0.31 lbs Mounting: VersaMax backplane Operating temperature: 0°C to 60°C Storage temperature: –40°C to +85°C Applications Industrial process monitoring Analog signal acquisition for automation systems Control loops in manufacturing and utilities FAQ Q: Can I switch between voltage and current modes in the field?A: Yes, IC200ALG230 allows jumper selection for voltage or current input per channel. Q: Does it require external power for operation?A: No, the module draws all necessary power from the VersaMax backplane. Q: How precise is the analog input?A: The module provides 12-bit resolution with ±0.3% typical accuracy at 25°C.

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  • Sale -50% GE IC200ACC201 VersaMax Expansion Terminator Terminal Block GE IC200ACC201 VersaMax Expansion Terminator Terminal Block

    General Electric GE IC200ACC201 VersaMax Expansion Terminator Terminal Block

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    Product Description The IC200ACC201 from GE Fanuc is a compact expansion terminator designed for VersaMax PLC systems. Its primary function is to terminate the expansion bus at the last I/O module, preventing signal reflections that can cause communication errors and ensuring stable data transmission across multiple modules. This plug-in terminator installs quickly without tools and is ideal for system expansions, maintenance, or field upgrades. Constructed from industrial-grade materials and certified for CE, UL, and CSA standards, it guarantees long-term reliability even in demanding industrial environments. Technical Specifications General Model: IC200ACC201 Series: VersaMax Type: Expansion Terminal Block / Terminator Plug Function: Terminates last expansion receiver in a chain to maintain signal integrity Electrical Operating Voltage: 24 VDC (interface only; does not process data) Protection: Electrical safeguards provided by connected modules Mechanical Form Factor: Plug-in module Installation: Tool-free, direct plug-in Dimensions: 50 × 25 × 20 mm Weight: 1.86 lbs Material: Industrial-grade plastic Environmental Operating Temperature: 0°C to +60°C Storage Temperature: –40°C to +85°C Relative Humidity: 5%–95% non-condensing Shock Resistance: 15 g, 11 ms Vibration Resistance: 1 g at 57–150 Hz Compatibility Supports all GE VersaMax PLC controllers and I/O modules Suitable for daisy-chaining multiple I/O modules Not hot-swappable; power must be off during installation Primary Function Terminates the final expansion module in a VersaMax chain Prevents signal reflection and communication faults Ensures stable, error-free communication across modules Applications Distributed control and monitoring systems Manufacturing and process automation Any VersaMax PLC setup requiring stable multi-module expansion FAQ Q: Can I install this module while the system is powered?A: No, the IC200ACC201 must be installed with power off. Q: Is it compatible with all VersaMax I/O modules?A: Yes, it supports the entire VersaMax PLC range. Q: Does it require any special tools for installation?A: No, the module is designed for tool-free plug-in installation.

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  • Sale -50% GE IC694DNM200 PACSystems RX3i DeviceNet Master Module

    General Electric GE IC694DNM200 PACSystems RX3i DeviceNet Master Module

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    Product Description The IC694DNM200 by GE / Emerson is a DeviceNet Master module engineered for PACSystems RX3i and Series 90‑30 PLC platforms. It enables a PLC CPU to interface with DeviceNet networks as a master, supporting up to 63 slave devices. The module handles all standard DeviceNet messaging types, including polled, cyclic, strobe, and change-of-state (COS) connections, and can operate as a DeviceNet slave if required. Designed for single-slot installation on the CPU baseplate, the module provides an RS‑232 service port for firmware upgrades and diagnostic tasks. Three front-panel LEDs indicate network power, module status, and network health for straightforward system monitoring. Technical Specifications Module Type DeviceNet Master with optional slave capability Platform Compatibility PACSystems RX3i (CPU version 3.5 or later) Series 90‑30 (excluding CPUs IC693CPU321/340 with certain firmware versions) Communication Features DeviceNet protocol support Maximum of 63 DeviceNet slave devices Input per slave: 255 bytes Output per slave: 255 bytes Total data capacity: Up to 3972 bytes input / output Baud rates: 125 kbps, 250 kbps, 500 kbps Supported connection types: Polled, Cyclic, Strobe, COS Ports 1 × DeviceNet Master port 1 × RS‑232 service port (firmware, diagnostics) Power Requirements Backplane load: 450 mA @ 5 VDC (~2.25 W) Indicators Network Power LED Module Status LED Network Status LED Environmental Specifications Operating temperature: 0°C to +60°C Storage temperature: –40°C to +85°C Physical Dimensions Dimensions: 89 × 107 × 188 mm Weight: 0.4 lbs Key Features Master for up to 63 DeviceNet nodes Supports explicit messaging and fragmented I/O Configurable behavior on communication loss Firmware upgradeable via RS‑232 port Optional slave operation Compatible with distributed I/O architectures Applications DeviceNet network management for PLC systems Distributed I/O connectivity in manufacturing or process plants Integration with sensors, actuators, and networked devices FAQ Q: How many DeviceNet nodes can the module manage?A: The IC694DNM200 supports up to 63 DeviceNet slave devices. Q: Can it function as a DeviceNet slave?A: Yes, the module can optionally operate as a slave if network topology requires it. Q: What diagnostics capabilities are available?A: RS‑232 service port allows firmware updates, configuration, and network diagnostics.

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  • Sale -50% GE IC693MDL653 Series 90-30 32-Point 24VDC Input Module GE IC693MDL653 Series 90-30 32-Point 24VDC Input Module

    General Electric GE IC693MDL653 Series 90-30 32-Point 24VDC Input Module

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    Product Description The IC693MDL653 from GE Fanuc is a 32-point discrete input module designed for the Series 90‑30 PLC family. Supporting both positive (sourcing) and negative (sinking) logic, this module delivers flexible DC input integration for a variety of 24 V field devices. Its architecture features four isolated groups of eight inputs, each with two shared commons, providing partial isolation and enhanced noise immunity. Field connections are made via a 50‑pin high-density Honda-style connector, with optional pre-wired GE cables for simplified installation. The module does not include individual input status LEDs and can be mounted in any slot of a 5-slot or 10-slot Series 90‑30 baseplate. Technical Specifications Electrical Characteristics Rated Voltage: 24 VDC Input Voltage Range: 19.2–28.8 VDC (+10%, –20%) Input Current: 7.5 mA at rated voltage (average) On-State Voltage: ≥ 15 VDC Off-State Voltage: ≤ 6 VDC On-State Current: ≥ 4.5 mA Off-State Current: ≤ 2 mA Channel & Group Configuration Total Inputs: 32 points Groups: 4 groups of 8 inputs each Commons: 2 per group (internally tied) Logic Support: Positive and Negative Isolation: 1500 V between field side and logic side Response Times ON Response Time: ≤ 2 ms OFF Response Time: ≤ 2 ms Power Consumption Backplane Current Draw: 5 mA @ 5 VDC (16 inputs ON) Maximum Simultaneous Inputs ON: 16 recommended to maintain thermal limits Mechanical & Installation Connector: 50-pin high-density Honda connector Mounting: Any I/O slot in 5-slot or 10-slot Series 90‑30 baseplate Dimensions: 142 × 30 × 130 mm Weight: 0.30 kg Field Device Compatibility Pushbuttons Limit switches Proximity sensors Electronic switches Additional Notes No individual input status LEDs External 24 VDC field power required Pre-wired GE cables available for rapid installation Applications High-density 24 VDC discrete input acquisition Integration with PLC control in manufacturing lines Interface with sensors, switches, and low-power electronic devices FAQ Q: Can the module handle both sourcing and sinking devices?A: Yes, the IC693MDL653 supports positive (sourcing) and negative (sinking) logic inputs. Q: How many inputs can be active simultaneously?A: Up to 16 inputs ON are recommended to avoid thermal overload. Q: Does this module provide individual input LEDs for diagnostics?A: No, the IC693MDL653 does not include input status LEDs.

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  • Sale -50% GE IC697ACC701 Series 90-70 Lithium Backup Battery GE IC697ACC701 Series 90-70 Lithium Backup Battery

    General Electric GE IC697ACC701 Series 90-70 Lithium Backup Battery

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    Product Description The IC697ACC701 by GE Fanuc is a 3-volt lithium battery designed to maintain critical CPU functions in Series 90‑70 PLC systems, including models IC697CPU731, CPU771, and CPU772. It preserves user memory, the real-time clock (RTC), and calendar functions during power interruptions or system shutdowns, ensuring uninterrupted operation and data integrity. This battery is mounted inside the CPU module, typically in pairs, and features a tool-free snap-in design for fast, safe replacement without specialized tools. Technical Specifications Electrical Characteristics Battery Type: Single-cell Lithium Nominal Voltage: 3 VDC Capacity: 1400–1500 mAh Pulse Current: 250 mA Continuous Current: 15 mA Memory and Clock Support Memory Retention: Approximately 6 months without external power RTC/Calendar Backup: Supported Low Battery Indication: CPU “Module OK” LED turns off Environmental Parameters Operating Temperature: –40°C to +80°C (–40°F to +176°F) Shelf Life: 10 years at ~20°C with low self-discharge chemistry Mechanical Data Diameter: 0.48 in Height: 2.38 in Weight: 1.45 kg Connector: Wire-lead with secure contact Installation: Tool-free snap-in design, two batteries per CPU required Compatibility GE Fanuc Series 90‑70 CPUs Supports IC697CPU731, CPU771, CPU772 Replaces IC697-ACC-701 and CR12600SE-GE batteries VME Supported Applications Memory and RTC backup for PLC CPUs Continuous industrial process control Critical data retention in manufacturing systems FAQ Q: How long does the battery maintain CPU memory without external power?A: The IC697ACC701 retains memory for approximately six months. Q: Can the battery be replaced without shutting down the CPU?A: Yes, its snap-in design allows replacement while maintaining CPU integrity, but always install the new battery before removing the old one. Q: Which CPU models are compatible with this battery?A: It supports Series 90‑70 CPUs including IC697CPU731, CPU771, and CPU772.

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  • Sale -50% GE IC698PSD300 PACSystems RX7i Power Supply Module

    General Electric GE IC698PSD300 PACSystems RX7i Power Supply Module

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    Product Description The IC698PSD300 by GE is a high-capacity industrial power supply module engineered for PACSystems RX7i and selected VersaMax racks. Designed to provide stable, regulated DC power, this module supports CPUs, communication modules, and I/O assemblies in demanding industrial applications. Technical Specifications Electrical Input Options AC Input Version (VersaMax) Voltage: 85–264 VAC, 50/60 Hz Power Factor: ≥0.95 Efficiency: Up to 92% DC Input Version (RX7i) Voltage: 125 VDC nominal (range 100–150 VDC) Maximum Current: 4 A at full load Low-Voltage DC Input (RX7i) Voltage: 18–30 VDC Output Capabilities Single-Output VersaMax Version Voltage: 24 VDC Current: 10 A (240 W) Multi-Output RX7i Version +5 VDC: 10 A +12 VDC: 2 A –12 VDC: 1 A Total Output Power: 300 W RX7i 125 VDC Input Version Outputs: +5 VDC, +24 VDC, +12 VDC auxiliary Total Output Power: 300 W Protection Features Overcurrent, overvoltage, and short-circuit protection Overtemperature shutdown Reverse-polarity protection (DC versions) Industrial-grade reliability Mechanical & Environmental Operating Temperature: 0°C to +50°C (AC), 0°C to +60°C (RX7i) Storage Temperature: –40°C to +85°C Relative Humidity: 5–95% non-condensing Cooling: Internal fan or forced-air depending on version Hot-Swap Capable: Yes Mounting: RX7i or VersaMax racks Physical Dimensions Dimensions: 101.6 × 152.4 × 76.2 mm Weight: 4.87 lbs Applications Oil & Gas automation Power generation control systems Manufacturing process automation Mission-critical industrial control networks FAQ Q: Can the IC698PSD300 be hot-swapped without shutting down the rack?A: Yes, all variants support hot-swap operation for uninterrupted system maintenance. Q: Which output configuration is suitable for high-density I/O systems?A: The multi-output RX7i version is recommended for racks requiring +5 VDC, +12 VDC, and –12 VDC simultaneously. Q: Is this module compatible with VersaMax AC and RX7i DC racks?A: Yes, specific versions are designed for each platform. Ensure correct input type selection.

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  • Sale -50% GE IC694MDL231 RX3i 8-Point 240 VAC Isolated Input Module GE IC694MDL231 RX3i 8-Point 240 VAC Isolated Input Module

    General Electric GE IC694MDL231 RX3i 8-Point 240 VAC Isolated Input Module

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    Product Description The IC694MDL231 is a precision-engineered 8-channel AC input module for the PACSystems RX3i platform, designed to handle high-voltage 240 VAC signals with individual channel isolation. Each input point has its own common terminal, allowing independent power sources and enhanced protection for complex industrial applications. Key Features 8 discrete AC inputs, each fully isolated for independent operation Positive logic configuration; ON state detected when voltage is present Reactive RC input circuitry for noise suppression and stable signal acquisition Green LED per channel for immediate status monitoring Hot-swappable in any standard RX3i I/O slot (excluding CPU/power supply slots) Red high-voltage warning bands for safety compliance Electrical Specifications Rated Input Voltage: 240 VAC Voltage Range: 0–264 VAC Operating Frequency: 50/60 Hz ON-State Voltage: 148–264 VAC (guaranteed) OFF-State Voltage: 0–40 VAC (guaranteed) Typical Input Current: 15 mA per channel Minimum ON-State Current: 6 mA Maximum OFF-State Current: 2.2 mA Response Time: ≤ 30 ms ON / ≤ 45 ms OFF Isolation: 250 VAC continuous (field-to-backplane and channel-to-channel), 1500 VAC for 60 seconds (field to frame) Input Circuit: Reactive RC filtering Mechanical and Environmental Dimensions: 34 × 145 × 140 mm Weight: 0.82 lbs Operating Temperature: 0–60°C Mounting: Standard RX3i rack Certifications: UL 508, CSA, Class I Div 2 (Groups A–D) Power Requirements Backplane Current Draw: 60 mA @ 5 VDC (all channels active) Applications The IC694MDL231 is suitable for interfacing with 240 VAC field devices such as pushbuttons, limit switches, relays, and contactors. Ideal for process automation, factory control systems, and distributed monitoring applications where independent channel isolation is critical. FAQ Q: Can this module be used with lower-voltage AC signals?A: No, it is designed specifically for 240 VAC operation. Q: Is hot-swapping supported?A: Yes, hot insertion and removal are supported on RX3i universal backplanes. Q: How is channel isolation implemented?A: Each input has its own isolated common terminal, with 250 VAC continuous isolation and 1500 VAC temporary field-to-frame isolation.

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  • Sale -50% GE IC694MDL260 PACSystems RX3i 32-Point Discrete Input Module GE IC694MDL260 PACSystems RX3i 32-Point Discrete Input Module

    General Electric GE IC694MDL260 PACSystems RX3i 32-Point Discrete Input Module

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    Product Description The IC694MDL260 is a high-performance 32-channel AC discrete input module engineered for the PACSystems RX3i platform. It provides reliable 120 VAC signal detection for a wide range of industrial control applications, offering robust isolation and diagnostic feedback. Key Features and Functionality 32 discrete input points organized into 4 isolated groups, 8 channels per group Positive logic: ON state recognized when voltage is applied High isolation between groups: 1500 VAC typical; shared common reference within groups Hot-swap capable on RX3i Universal Backplane Individual LEDs for each input channel plus red/green terminal block status indicators Supports diagnostic reporting of field-side terminal block presence Electrical Specifications Nominal Input Voltage: 120 VAC Input Voltage Range: 0–132 VAC Input Frequency: 47–63 Hz ON-State Voltage: 70–132 VAC OFF-State Voltage: 0–20 VAC Typical Input Current: 7 mA per channel at rated voltage Response Time: ~30 ms ON / 45 ms OFF Input Filter Times: 20–2540 ms, configurable in 20 ms increments Backplane Current Draw: 220 mA @ 5 VDC Environmental Specifications Operating Temperature: 0–50°C Weight: 0.95 lbs Compatibility Platform: PACSystems RX3i Required Firmware: Version 3.50 or later Terminal Blocks (sold separately): IC694TBB032, IC694TBB132 (box-style); IC694TBS032, IC694TBS132 (spring-style) Applications Ideal for AC sensor interfaces, switch monitoring, contactor state detection, and other binary input systems in manufacturing, process automation, and industrial control. FAQ Q: Can this module be used with Series 90-30 PLCs?A: No, the IC694MDL260 is exclusive to PACSystems RX3i CPUs. Q: Does it support hot swapping?A: Yes, hot insertion and removal are fully supported on the RX3i Universal Backplane. Q: How is input isolation handled?A: Each group of 8 inputs shares a common reference, while isolation exists between groups for up to 1500 VAC.

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