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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% General Electric DS200TCEAG1BSF Emergency Overspeed Board GE Mark VIe DS200TCEAG1BSF Emergency Overspeed Protection Board

    General Electric GE Mark VIe DS200TCEAG1BSF Emergency Overspeed Protection Board

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    Overview The DS200TCEAG1BSF Emergency Overspeed Protection Board is a GE‑engineered safety module used within the Mark VIe and legacy Mark V turbine control platforms. It provides independent overspeed monitoring, trip logic processing, and auxiliary safety‑related signal handling to ensure reliable turbine shutdown under abnormal operating conditions. Functional Role This board receives and conditions high‑priority signals such as overspeed pickup, flame detection, and emergency trip commands. It executes hardware‑based protection logic to guarantee deterministic response times, independent of the main control processor. The DS200TCEAG1BSF also interfaces with system communication modules and contributes to the overall protection chain of gas and steam turbine installations. Environmental and Electrical Characteristics Engineered for harsh industrial environments, the module supports extended operating conditions and robust electrical isolation. Its design ensures stable performance in turbine enclosures where temperature, vibration, and electrical noise are common. Key electrical and environmental parameters include: Operating temperature range: −40°C to +70°C Relative humidity tolerance: 5%–95% non‑condensing Input power: 24 VDC ±10% Power consumption: approximately 8 W Isolation rating: 1500 VAC for signal protection Mechanical Details The board is compact and lightweight, simplifying installation in existing Mark VIe or Mark V racks. Its construction follows GE’s industrial‑grade PCB standards for long‑term reliability. Parameter Specification Model DS200TCEAG1BSF Product Type Emergency Overspeed Protection Board Brand GE Series Mark VIe Dimensions 25.4 × 10.2 × 3.5 cm Weight 0.38 kg Origin USA HS Code 8537101190 Condition New Availability In Stock System Compatibility DCS / Turbine Control Minimum Order 1 unit Communication Support Ethernet‑based supervisory communication Discontinuation Status Active Application Scenarios Gas turbine overspeed protection Steam turbine emergency trip systems Flame detection and safety interlock processing Redundant protection architectures in power generation plants Retrofit and maintenance of GE Mark VIe/Mark V systems FAQ Q: Does the board operate independently of the main controller?  A: Yes. Overspeed and trip logic are executed in hardware to ensure deterministic protection. Q: Can this module replace earlier overspeed boards in Mark V systems?  A: It is primarily intended for Mark VIe but may be used in Mark V systems when system compatibility is confirmed. Q: What isolation level does the board provide?  A: It offers 1500 VAC isolation for enhanced signal integrity and safety.

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  • Sale -50% General Electric DS200FCGDH1BBA Gate Distribution and Status Board GE Mark VIe DS200FCGDH1BBA Gate Distribution and Status Board

    General Electric GE Mark VIe DS200FCGDH1BBA Gate Distribution and Status Board

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    Overview The DS200FCGDH1BBA Gate Distribution and Status Board from GE’s Mark VIe control platform is engineered for power‑conversion systems requiring precise gate firing, current feedback processing, and real‑time diagnostic monitoring. This board is supplied in brand‑new condition and is suitable for direct replacement or system expansion within GE LCI‑based drive architectures. Key Features and Functions The board serves as the primary interface between the control processor and the power bridge. Its responsibilities include decoding firing commands, distributing synchronized gate pulses, and collecting operational status signals. Designed to operate in 6‑pulse, phase‑controlled, non‑reversing bridge configurations, the board ensures stable and coordinated switching performance. The DS200FCGDH1BBA is installed in a 6U VME rack and typically operates alongside the DSPC module, enabling centralized control and high‑speed signal exchange. A six‑layer PCB structure with components mounted on both sides enhances thermal stability and electrical noise immunity. Electrical and Control Capabilities Integrated current‑feedback conditioning circuits compatible with CTs or LEM‑type sensors Conversion of raw current signals into IA, IB, and IC phase‑current feedback VCO‑based processing for frequency regulation and switching stability Dedicated test points for maintenance, calibration, and signal verification Hardware‑level overcurrent protection requiring manual reset after fault clearance LED indicators for gate status, fault conditions, and diagnostic monitoring Technical Specifications Parameter Specification Model DS200FCGDH1BBA Product Type Gate Distribution and Status Board Brand GE Product Series Mark VIe Dimensions 25.4 × 10.2 × 3.5 cm Weight 0.38 kg PCB Structure 6‑layer, double‑sided SMD System Compatibility DCS / LCI drive systems Origin USA HS Code 8537101190 Condition New Availability In Stock Communication Support Ethernet‑based supervisory communication Minimum Order 1 unit Discontinuation Status Active Application Scenarios Large‑capacity synchronous motor drives Static frequency converters Turbine starter systems Industrial power‑conversion bridges requiring precise gate timing GE Mark VIe‑based retrofit or maintenance projects FAQ Q: Is the board compatible with older Mark V systems?  A: It is designed for Mark VIe architecture. Compatibility with Mark V requires system‑level verification. Q: Does the board include built‑in protection?  A: Yes. It incorporates hardware overcurrent protection that must be manually reset after a fault. Q: Can this board be used in reversing bridge applications?  A: No. It is intended for non‑reversing 6‑pulse bridge configurations.

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  • Sale -50% General Electric IS200WETAH1AHC Mark VI System GE Mark VI IS200WETAH1AHC Terminal Board Module

    General Electric GE Mark VI IS200WETAH1AHC Terminal Board Module

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    Overview The IS200WETAH1AHC Terminal Board Module is a GE Mark VI interface component designed to terminate, route, and condition industrial I/O signals within turbine control systems. Built for demanding gas turbine environments, this module provides stable electrical connections, robust mechanical durability, and long‑term reliability in high‑vibration and high‑temperature applications. Functional Characteristics This terminal board serves as a wiring interface between field devices and Mark VI controllers. It supports 24 VDC operation and maintains signal integrity across a wide operating temperature range from −40°C to +70°C. The IS200WETAH1AHC is engineered for hazardous‑location compliance, making it suitable for installations where explosive atmospheres or extreme mechanical stress are present. Key features include: High‑density terminal points for multiple I/O signals Electrical isolation for noise‑sensitive applications Rugged PCB construction with protective coating DIN‑rail mounting for simplified installation Vibration‑resistant mechanical design Compatibility with Mark VI and Mark VIe architectures Its design ensures reliable signal distribution for turbine monitoring, protection, and control subsystems. Mechanical and Electrical Specifications Parameter Specification Model IS200WETAH1AHC Product Type Terminal Board Module Brand GE Series Mark VI Dimensions 36.3 × 28 × 3.8 cm Weight 0.84 kg Origin USA HS Code 8537101190 Condition New Availability In Stock Operating Voltage 24 VDC Operating Temperature −40°C to +70°C Mounting DIN‑rail Environmental Rating Hazardous‑location compliant System Compatibility DCS / Mark VI / Mark VIe Minimum Order 1 unit Integration and System Role The IS200WETAH1AHC is used to: Terminate field wiring for turbine sensors and actuators Provide organized signal routing to Mark VI controllers Maintain electrical isolation and noise immunity Support turbine protection and monitoring architectures Its backward‑compatible design allows seamless integration into existing Mark VI installations while supporting modernized control requirements. Application Scenarios Gas turbine control cabinets Steam turbine monitoring systems Hazardous‑area turbine enclosures Power plant I/O distribution panels Mark VI system upgrades and retrofits FAQ Q: Is the module suitable for hazardous environments?  A: Yes. It is designed to meet hazardous‑location requirements for turbine installations. Q: What voltage does the board operate on?  A: It operates on a standard 24 VDC industrial supply. Q: Can it be mounted on a DIN rail?  A: Yes. The board includes DIN‑rail mounting hardware for easy installation.

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  • Sale -50% GE Mark VI IS200WETAH1ADC Analog Input Circuit Board GE Mark VI IS200WETAH1ADC Analog Input Circuit Board

    General Electric GE Mark VI IS200WETAH1ADC Analog Input Circuit Board

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    Overview The IS200WETAH1ADC Analog Input Circuit Board is a GE Mark VI terminal‑level module engineered to condition and route analog signals within turbine control systems. Designed for demanding gas and steam turbine environments, this board provides stable signal processing, rugged field wiring termination, and reliable integration with Mark VI control hardware. Functional Characteristics This module supports sixteen analog input channels and is built with industrial‑grade materials to ensure long‑term performance in high‑vibration, high‑temperature turbine enclosures. The board operates from a 24 VDC supply and maintains signal accuracy across a wide operating range from −40°C to +70°C. Key functional features include: Sixteen analog input points for turbine monitoring Copper‑alloy terminal blocks for enhanced conductivity Vibration‑resistant mechanical design Hazardous‑area compliant components DIN‑rail mounting for simplified installation UL/CE certified construction The IS200WETAH1ADC interfaces directly with Mark VI diagnostic tools and HMI systems, supporting real‑time monitoring and system troubleshooting. Architecture and Connectivity The board includes more than 45 plug‑type connectors ranging from 2‑pin to 20‑pin configurations, enabling flexible integration with Mark VI subsystems. Voltage regulators are positioned along multiple edges of the PCB to ensure stable power distribution, while relays, diodes, and integrated circuits are arranged to optimize thermal performance and signal flow. Technical Specifications Parameter Specification Model IS200WETAH1ADC Product Type Analog Input Circuit Board Brand GE Series Mark VI Dimensions 36.3 × 28 × 3.8 cm Weight 0.84 kg Origin USA HS Code 8537101190 Condition New Availability In Stock Input Channels 16 analog inputs Operating Voltage 24 VDC Operating Temperature −40°C to +70°C Certifications UL, CE, hazardous‑area compliant Mounting DIN‑rail System Compatibility DCS / Mark VI Minimum Order 1 unit Integration and System Role The IS200WETAH1ADC is used to: Terminate and condition analog signals from turbine sensors Interface with Mark VI controllers and diagnostic systems Support monitoring of pressures, temperatures, and other analog parameters Provide stable, noise‑resistant signal paths in turbine control cabinets Its robust PCB design and protective features make it suitable for long‑term deployment in power generation environments. Application Scenarios Gas turbine analog signal acquisition Steam turbine monitoring systems Power plant control cabinet installations Hazardous‑area turbine enclosures Mark VI system upgrades and maintenance FAQ Q: How many analog channels does the board support?  A: Sixteen analog input channels. Q: Is the board suitable for hazardous environments?  A: Yes. It includes components rated for hazardous‑area operation. Q: What mounting method is used?  A: The board is designed for DIN‑rail installation.

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  • Sale -50% General Electric IC695SPF002A RX3i SFP Transceiver Module GE IC695SPF002A RX3i SFP Transceiver Module

    General Electric GE IC695SPF002A RX3i SFP Transceiver Module

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    Overview The IC695SPF002A RX3i SFP Transceiver Module by GE is engineered for high-integrity safety applications. Designed for PACSystems RX3i, this compact unit delivers rapid response and robust diagnostics across 16 fail-safe input channels. Technical Specifications Specification Details Model Number IC695SPF002A Manufacturer GE (General Electric) Module Type RX3i SFP Transceiver Module System Compatibility DCS (PACSystems RX3i) Communication Service Ethernet router Input Channels 16 fail-safe Safety Rating SIL3 (IEC 61508) Voltage Range 3.3V – 5V Response Time <50ms LED Indicators Yes Diagnostics Per-channel Weight 0.28 kg Dimensions 5.8 × 1.3 × 1.2 cm HS Code 8537101190 Origin USA Condition Brand New Lead Time In Stock Discontinued On Active MOQ 1 Features IC695SPF002A supports hot-swapping for uninterrupted system operation. LED indicators provide instant visual feedback for input status. Compact size allows flexible installation in tight control panels. Wide voltage range ensures compatibility with various industrial setups. Built-in diagnostics enhance safety and reduce troubleshooting time. SIL3 certification guarantees compliance with global safety standards.

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  • Sale -50% General Electric IS200TRTDH1B RTD Input Terminal Board GE Mark VIe IS200TRTDH1B RTD Input Terminal Board

    General Electricneral Electric GE Mark VIe IS200TRTDH1B RTD Input Terminal Board

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    Overview The IS200TRTDH1B RTD Input Terminal Board is a GE Mark VIe temperature‑signal interface module designed to terminate and route Resistance Temperature Detector (RTD) inputs to the associated VRTD processor board. It provides reliable wiring, isolation, and signal integrity for up to sixteen 3‑wire RTD channels used in turbine monitoring and protection systems. Functional Characteristics This terminal board serves as the primary field‑wiring interface for RTD sensors in Mark VIe turbine control architectures. It includes barrier‑style terminal blocks for secure field termination and supports a wide range of industrial RTD types commonly used in gas, steam, and wind turbine applications. Key functional features include: Sixteen 3‑wire RTD input channels Shielded terminal blocks for noise‑sensitive environments Dedicated wiring paths to the VRTD processor board High‑integrity copper traces for stable signal transmission Mechanical design optimized for turbine control panels The IS200TRTDH1B is part of the Mark VIe platform, which expands on the capabilities of earlier Mark V systems by supporting broader environmental and application requirements. Mechanical and Electrical Specifications Parameter Specification Model IS200TRTDH1B Product Type RTD Input Terminal Board Brand GE Series Mark VIe Dimensions 33 × 17.8 × 5.5 cm Weight 1.42 kg Origin USA HS Code 8537101190 Condition New Availability In Stock Channels 16 RTD inputs (3‑wire) Mounting Panel‑mount terminal board System Compatibility DCS / Mark VIe Minimum Order 1 unit Integration and System Role The IS200TRTDH1B is used to: Terminate RTD wiring from field sensors Provide clean, organized wiring to the VRTD processor Support temperature monitoring for bearings, windings, casings, and exhaust paths Maintain signal integrity in electrically noisy turbine enclosures Its rugged PCB construction and industrial‑grade components ensure long‑term reliability in high‑vibration and high‑temperature environments. Application Scenarios Gas turbine temperature monitoring Steam turbine thermal protection Wind turbine generator temperature sensing Industrial process temperature acquisition Mark VIe system upgrades and retrofits FAQ Q: How many RTD channels does the board support?  A: Sixteen 3‑wire RTD channels. Q: Is this board compatible with Mark V systems?  A: No. It is designed specifically for Mark VIe architectures. Q: What type of sensors can be connected?  A: Standard industrial 3‑wire RTDs used for turbine temperature measurement.

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  • Sale -50% General Electric IC695PSD140 PACSystems RX3i Power Supply Module GE PACSystems RX3i IC695PSD140 40W Power Supply Module

    General Electricneral Electric GE PACSystems RX3i IC695PSD140 40W Power Supply Module

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    Overview The IC695PSD140 Power Supply Module is a 40‑watt DC power unit designed for GE’s PACSystems RX3i automation platform. It provides regulated power to RX3i controllers and I/O modules, ensuring stable operation in demanding industrial environments. Its compact footprint and high‑efficiency design make it suitable for both standalone and redundant power architectures. Functional Characteristics This module accepts a wide input voltage range of 18–30 VDC and generates three isolated outputs required by RX3i hardware: +5.1 VDC for logic and CPU circuits +24 VDC for relay loads +3.3 VDC for internal module electronics The IC695PSD140 supports redundant configurations when installed with up to three additional power supplies in the RX3i universal backplane. Load‑sharing capability enhances system availability and minimizes downtime in mission‑critical applications. Built‑in protection features include: Overload protection Short‑circuit protection Input voltage fluctuation tolerance Thermal management for continuous operation These safeguards ensure long‑term reliability in harsh industrial settings. Technical Specifications Parameter Specification Model IC695PSD140 Product Type RX3i Power Supply Module Brand GE Series PACSystems RX3i Dimensions 3.5 × 13.5 × 13.5 cm Weight 0.25 kg Origin USA HS Code 8537101190 Condition New Availability In Stock Input Voltage 18–30 VDC Output Power 40 W Output Voltages +5.1 VDC, +24 VDC, +3.3 VDC Redundancy Supports multi‑supply load sharing Protection Overload, short‑circuit, thermal System Compatibility DCS / PACSystems RX3i Minimum Order 1 unit Integration and System Role The IC695PSD140 is used to: Power RX3i CPUs, communication modules, and I/O Support redundant power architectures Maintain stable voltage levels for sensitive logic circuits Provide isolated power rails for mixed‑load systems Its modular design allows quick replacement and simplified maintenance during system upgrades or troubleshooting. Application Scenarios Manufacturing automation Power generation and energy management Process control systems High‑availability industrial networks Redundant control architectures requiring uninterrupted power FAQ Q: Can this module be used in redundant configurations?  A: Yes. Up to four units can be installed in the RX3i backplane for load‑sharing redundancy. Q: What input voltage range does it support?  A: 18–30 VDC, suitable for most industrial DC power sources. Q: What types of loads can the +24 VDC output support?  A: It is designed primarily for relay and discrete output loads.

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  • Sale -50% General Electric IC670CHS003 Terminal Block GE Fanuc Field Control IC670CHS003 Terminal Block Module

    General Electricneral Electric GE Fanuc Field Control IC670CHS003 Terminal Block Module

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    Overview The IC670CHS003 Terminal Block is a GE Fanuc Field Control wiring interface designed to provide secure, high‑density terminations for distributed I/O modules. Built for environments where wiring integrity and rapid module replacement are essential, this terminal block combines connectorized convenience with the durability required for industrial control systems. Functional Characteristics The terminal block includes two keyed 20‑pin male connectors engineered to prevent incorrect mating and ensure consistent electrical contact. It supports field wiring from 16–24 AWG, making it suitable for a wide range of signal and control applications. The IC670CHS003 maintains all core functions of traditional terminal blocks—such as vibration‑resistant mounting and preservation of field wiring during module swaps—while adding the advantages of connectorized installation. It is compatible with AMP D‑3000 series contacts and can be paired with GE’s IC670ACC003 accessory kit for complete connector assembly. Mechanical and Electrical Specifications Parameter Specification Model IC670CHS003 Product Type Terminal Block Brand GE Fanuc Series Field Control Dimensions 5.4 × 8.5 × 8 cm Weight 0.24 kg Origin USA HS Code 8537101190 Condition New Availability In Stock Connector Type Dual 20‑pin keyed male connectors Supported Wire Gauge 16–24 AWG Mounting Screw‑secured, vibration‑resistant System Compatibility DCS / GE Fanuc Field Control Minimum Order 1 unit Integration and System Role The IC670CHS003 is designed for: High‑density wiring in Field Control I/O assemblies Applications requiring frequent module replacement Installations exposed to vibration where screw terminals may loosen Maintaining backplane communication integrity during module changes Its connectorized design reduces wiring errors, improves serviceability, and enhances long‑term reliability. Application Scenarios Distributed I/O panels Power generation control systems Manufacturing automation High‑vibration industrial environments Field Control system expansions or retrofits FAQ Q: What connectors are used on this terminal block?  A: Two keyed 20‑pin male connectors compatible with AMP D‑3000 series contacts. Q: Does the block support dual‑module wiring?  A: Yes. It can accommodate wiring for two modules on a single block. Q: Is it suitable for vibration‑prone installations?  A: Yes. Its screw‑mounted, connectorized design enhances stability and wiring retention.

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  • Sale -50% General Electric IC670GBI002 Interface Module GE Fanuc Field Control IC670GBI002 Interface Module

    General Electricneral Electric GE Fanuc Field Control IC670GBI002 Interface Module

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    Overview The IC670GBI002 Interface Module is a GE Fanuc Field Control Bus Interface Unit (BIU) designed to serve as the communication and power distribution backbone for distributed I/O networks. It provides regulated power, high‑integrity grounding, and stable communication links between Field Control I/O modules and host controllers, ensuring reliable operation in electrically demanding industrial environments. Functional Characteristics This module operates as the primary interface between the Field Control I/O stack and the control processor. It supports a wide input voltage range of 18–30 VDC (24 VDC nominal) and supplies regulated 6.5 VDC power to connected modules. The IC670GBI002 is engineered for noise‑sensitive installations and must be mounted on a grounded conductive DIN rail to maintain proper shielding and signal integrity. Key electrical features include: 1.4 A output current capability 20 ms power‑loss hold‑up time Precision voltage regulation for downstream modules Support for high inrush currents (15–50 A peak) 47–63 Hz frequency tolerance The module’s grounding strip is designed specifically for this BIU version and is not compatible with earlier “A‑series” terminal blocks. Mechanical and Environmental Specifications Parameter Specification Model IC670GBI002 Product Type Interface Module / Bus Interface Unit Brand GE Fanuc Series Field Control Dimensions 16.2 × 10.9 × 10 cm Weight 0.68 kg Origin USA HS Code 8537101190 Condition New Availability In Stock Input Voltage 18–30 VDC Module Output 6.5 VDC ±5% Output Current 1.4 A Power Consumption 16.8 W Inrush Current 15–50 A peak Mounting Conductive DIN rail with grounding strip System Compatibility DCS / GE Fanuc Field Control Minimum Order 1 unit Installation and Integration The IC670GBI002 requires: Conductive DIN rail mounting Grounding screws spaced at 6‑inch intervals Additional #6 screws through mounting ears for vibration resistance These installation requirements ensure mechanical stability and optimal EMI performance in harsh industrial environments. Application Scenarios Distributed I/O networks in manufacturing Power generation control systems High‑noise industrial automation environments Field Control I/O expansion and modernization Mission‑critical applications requiring stable communication and regulated power FAQ Q: Does this module require a specific grounding method?  A: Yes. It must be installed on a conductive DIN rail with a dedicated grounding strip for proper noise immunity. Q: What voltage does the BIU supply to connected modules?  A: It provides regulated 6.5 VDC ±5%. Q: Can it handle power interruptions?  A: The module includes a 20 ms hold‑up time to maintain operation during brief voltage dips.

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  • Sale -50% General Electric IS200TREGH1B Turbine Emergency Terminal Board GE Mark VIe IS200TREGH1B Turbine Emergency Terminal Board

    General Electricneral Electric GE Mark VIe IS200TREGH1B Turbine Emergency Terminal Board

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    Overview The IS200TREGH1B Turbine Emergency Terminal Board is a GE Mark VIe protection module designed to interface emergency trip solenoids and relay circuits within turbine shutdown systems. It provides the hardwired termination, relay logic, and power distribution required for fast, fail‑safe emergency trip execution in gas and steam turbine applications. Functional Characteristics This terminal board supports three independent emergency trip solenoids and incorporates a relay‑based voting architecture to ensure high‑integrity shutdown performance. A total of twelve relays are installed on the board, with nine arranged into three redundant voting groups. This structure enables triple‑modular protection logic, ensuring that turbine trips occur only under validated emergency conditions. The IS200TREGH1B supplies the positive side of the trip‑solenoid power circuit, while companion TRPG modules provide the negative return path. This separation enhances electrical isolation and improves system reliability. Additional design features include: Redundant 125 VDC power handling Diode‑combined power feeds from JX1/JY1/JZ1 connectors Isolated trip relay circuits Status feedback power supplies for economizer relays LED indicators for relay group status Mechanical and Electrical Specifications Parameter Specification Model IS200TREGH1B Product Type Turbine Emergency Terminal Board Brand GE Series Mark VIe Dimensions 33 × 17.8 × 5.5 cm Weight 2 kg Origin USA HS Code 8537101190 Condition New Availability In Stock Power Input 125 VDC (typical) Relay Count 12 total (3 voting groups) Response Time System Compatibility DCS / Mark VIe Minimum Order 1 unit Integration and System Role The IS200TREGH1B connects directly to: TRPG trip‑relay modules PPRO modules Emergency trip solenoids VME‑based Mark VIe racks Its rugged construction and industrial‑grade components allow it to withstand high vibration, temperature extremes, and electrical noise typical of turbine enclosures. Application Scenarios Gas turbine emergency trip systems Steam turbine overspeed and shutdown protection Combined‑cycle plant safety architectures Hardwired emergency stop circuits Redundant trip logic implementations FAQ Q: What voltage does the board support for trip circuits?  A: It is optimized for 125 VDC trip‑solenoid applications. Q: How many relays are included?  A: Twelve relays, with nine arranged in three redundant voting groups. Q: Does the board provide diagnostic indicators?  A: Yes. LED indicators display relay group status and assist with troubleshooting.

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  • Sale -50% General Electric IS200TTSAG1A Turbine Emergency Trip Board GE Mark VIe IS200TTSAG1A Turbine Emergency Trip Board

    General Electricneral Electric GE Mark VIe IS200TTSAG1A Turbine Emergency Trip Board

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    Overview The IS200TTSAG1A Turbine Emergency Trip Board is a GE Mark VIe temperature‑processing module engineered to acquire and condition thermal signals from critical turbine components. Designed for high‑integrity protection systems, it provides precise measurement, fault detection, and reliable interface capabilities for both gas and steam turbine applications. Functional Characteristics This module supports eight analog input channels, each configurable for multiple thermocouple types (J, K, T, E) or 3‑wire RTDs. With measurement accuracy typically within ±0.1°C, the IS200TTSAG1A ensures dependable temperature monitoring for safety‑related turbine functions. Key features include: Channel‑to‑channel electrical isolation Built‑in diagnostics for sensor health monitoring LED indicators for individual channel status Automatic cold‑junction compensation for thermocouples Lead‑resistance compensation for RTDs Open‑circuit detection for fault identification The board is compatible with TMR (Triple Modular Redundant) architectures, making it suitable for high‑availability protection systems. Environmental and Mechanical Performance The module is designed for harsh industrial environments and includes EMI‑hardened circuitry and a conformal‑coated PCB for long‑term durability. Parameter Specification Model IS200TTSAG1A Product Type Turbine Emergency Trip Board Brand GE Series Mark VIe Dimensions 33 × 17.8 × 5.5 cm Weight 1.42 kg Origin USA HS Code 8537101190 Condition New Availability In Stock Channels 8 analog inputs Supported Sensors Thermocouples (J/K/T/E), 3‑wire RTDs Accuracy ±0.1°C typical Operating Temperature −40°C to +70°C Humidity 5–95% non‑condensing Mounting DIN‑rail System Compatibility DCS / Mark VIe Minimum Order 1 unit Integration and System Role The IS200TTSAG1A is used for: Turbine trip logic temperature inputs Bearing and exhaust temperature monitoring Safety‑critical thermal protection TMR‑based protection architectures High‑speed thermal signal conditioning Front‑accessible terminals and hot‑swap capability reduce maintenance time and simplify field replacement. Application Scenarios Gas turbine protection systems Steam turbine thermal monitoring Power plant safety instrumentation High‑temperature industrial process control Retrofit and modernization of Mark VIe systems FAQ Q: What types of sensors can the module read?  A: It supports thermocouples (J/K/T/E) and 3‑wire RTDs. Q: Is the module suitable for TMR systems?  A: Yes. It is designed for use in triple‑redundant protection architectures. Q: Does the board include built‑in diagnostics?  A: Yes. It provides open‑circuit detection, sensor health monitoring, and LED status indicators.

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  • Sale -50% General Electric IC693CPU350 CPU 350 Module GE Fanuc Series 90‑30 IC693CPU350 CPU 350 Processor Module

    General Electricneral Electric GE Fanuc Series 90‑30 IC693CPU350 CPU 350 Processor Module

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    Overview The IC693CPU350 CPU 350 Processor Module is a compact, single‑slot controller designed for GE Fanuc Series 90‑30 PLC systems. It provides reliable execution of automation logic, communication handling, and system coordination for discrete and process‑control applications. Its architecture is optimized for stable, real‑time operation in industrial environments where deterministic performance is essential. Functional Characteristics At the core of the IC693CPU350 is an Intel 80386EX processor operating at 25 MHz, offering dependable processing capability for medium‑sized control programs. The module includes 32 KB of user memory (RAM and Flash), supporting program storage, data retention, and configuration flexibility. Communication is provided through an integrated RS‑485 serial port, enabling connectivity with HMIs, programming devices, and other Series 90‑30 components. The controller supports a broad range of timers, counters, and logic instructions, making it suitable for complex automation tasks. Power consumption is low—only 5 VDC at approximately 670 mA—allowing efficient operation within compact control racks. Performance and System Capacity The IC693CPU350 supports: Boolean execution speed of approximately 0.9 ms per 1K instructions Up to 20 DSM314 modules (actual capacity depends on memory usage and system configuration) Over 2000 timers/counters Program and configuration storage in shared memory Performance may vary depending on datagram usage, C‑block allocation, and simultaneous program/configuration storage. Separating these functions can improve overall system responsiveness. Technical Specifications Parameter Specification Model IC693CPU350 Product Type CPU 350 Processor Module Brand GE Fanuc Series Series 90‑30 Dimensions 3.5 × 13 × 13.7 cm Weight 0.22 kg Origin USA HS Code 8537101190 Condition New Availability In Stock Processor Intel 80386EX, 25 MHz User Memory 32 KB RAM/Flash Communication RS‑485 serial port Power Requirements 5 VDC, 670 mA Execution Speed 0.9 ms/K Boolean System Compatibility DCS / Series 90‑30 PLC Minimum Order 1 unit Integration and System Role The module functions as the primary controller in Series 90‑30 racks, coordinating: Logic execution Communication with I/O modules Data exchange with supervisory systems Real‑time sequencing and process control Its compact footprint and compatibility with all Series 90‑30 components make it ideal for both new installations and legacy system maintenance. Application Scenarios Manufacturing automation Material handling systems Utility and energy management Process control in chemical and food industries OEM machinery requiring stable PLC control FAQ Q: Is the IC693CPU350 compatible with all Series 90‑30 modules?  A: Yes. It is fully compatible with the entire Series 90‑30 family. Q: What communication options are available?  A: The module includes an RS‑485 serial port for programming and device communication. Q: How much user memory is provided?  A: It includes 32 KB of RAM/Flash for program and data storage.

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  • Sale -50% General Electric IS200TH0H1B Terminal board GE Mark VIe IS200TH0H1B Terminal Board Module

    General Electricneral Electric GE Mark VIe IS200TH0H1B Terminal Board Module

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    Overview The IS200TH0H1B Terminal Board is a GE Mark VIe field‑wiring interface designed to route and organize I/O signals between turbine instrumentation and the control processor. Built for high‑performance turbine automation systems, this board provides stable connectivity, fault‑tolerant operation, and reliable signal handling in demanding industrial environments. Functional Characteristics The terminal board serves as a key interface for connecting sensors, actuators, and auxiliary devices to the Mark VIe controller. It supports both Simplex and Triple Modular Redundant (TMR) architectures, enabling flexible deployment in standard and high‑availability turbine control systems. Key functional features include: High‑density terminal points for field wiring Support for Simplex and TMR configurations Fast, accurate signal routing to Mark VIe processors Fault‑tolerant design for continuous operation Industrial‑grade components for harsh environments The IS200TH0H1B is engineered to withstand vibration, temperature extremes, and electrical noise typical of power generation facilities. Mechanical and Electrical Specifications Parameter Specification Model IS200TH0H1B Product Type Terminal Board Brand GE Series Mark VIe Dimensions 33 × 10.2 × 4.8 cm Weight 0.52 kg Origin USA HS Code 8537101190 Condition New Availability In Stock Operating Environment High‑vibration, high‑temperature turbine enclosures Architecture Support Simplex / TMR System Compatibility DCS / Mark VIe Minimum Order 1 unit Integration and System Role The IS200TH0H1B is used to: Terminate field wiring for turbine sensors and actuators Provide organized signal routing to Mark VIe controllers Maintain signal integrity in electrically noisy environments Support redundant control architectures for improved reliability Its layout and labeling simplify installation and maintenance, reducing downtime during turbine servicing. Application Scenarios Gas turbine control cabinets Steam turbine monitoring systems Combined‑cycle plant I/O distribution High‑availability turbine protection systems Mark VIe system retrofits and expansions FAQ Q: Does the board support redundant configurations?  A: Yes. It supports both Simplex and TMR architectures. Q: What environments is the board designed for?  A: High‑vibration, high‑temperature turbine enclosures and industrial power plants. Q: Is the board compatible with earlier Mark VI hardware?  A: Yes. It integrates seamlessly with Mark VI and Mark VIe systems.

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  • Sale -50% General Electric IS200TPROH1B Protective Termination Card GE Mark VIe IS200TPROH1B Protective Termination Card

    General Electricneral Electric GE Mark VIe IS200TPROH1B Protective Termination Card

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    Overview The IS200TPROH1B Protective Termination Card is a GE Mark VIe field‑termination module engineered to interface protection‑related wiring within turbine control systems. Designed for high‑reliability gas and steam turbine applications, this board provides secure termination points, electrical isolation, and robust surge‑protection features essential for safe turbine operation. Functional Characteristics The board includes two high‑density terminal blocks, each offering 24 termination points, enabling reliable connection of trip circuits, protection sensors, and shutdown wiring. Gold‑plated contacts ensure long‑term corrosion resistance and stable signal transmission in high‑vibration turbine enclosures. The IS200TPROH1B incorporates: Isolation transformers for protection‑signal separation MOV‑based surge suppression for transient overvoltage protection EMI‑filtering components to maintain signal integrity Multiple system connectors for integration with Mark VIe control hardware Primary connectors (JX1, JY1, JZ1) handle core protection signals, while auxiliary connectors (JX5, JY5, JZ5) support secondary functions and filtered signal paths. Technical Specifications Parameter Specification Model IS200TPROH1B Product Type Protective Termination Card Brand GE Series Mark VIe Dimensions 33 × 17.7 × 5 cm Weight 0.9 kg Origin USA HS Code 8537101190 Condition New Availability In Stock Termination Points 48 total (2 × 24‑point blocks) Protection Features MOV surge suppression, isolation transformers, EMI filtering Connectors JX1/JY1/JZ1 (primary), JX5/JY5/JZ5 (auxiliary) System Compatibility DCS / Mark VIe Minimum Order 1 unit Integration and System Role The IS200TPROH1B is used to: Terminate turbine trip and protection wiring Provide isolated, surge‑protected signal paths Interface shutdown circuits with Mark VIe controllers Maintain stable operation in electrically noisy environments Its layout and labeling simplify installation and maintenance, reducing downtime during turbine servicing. Application Scenarios Gas turbine emergency trip systems Steam turbine protection circuits Combined‑cycle plant safety architectures High‑vibration turbine enclosures Mark VIe system upgrades and retrofits FAQ Q: What type of signals does the board terminate?  A: Protection, trip, and shutdown‑related wiring for turbine control systems. Q: Does the board include surge protection?  A: Yes. MOV devices and isolation transformers provide transient‑voltage protection. Q: Is the board compatible with earlier Mark VI hardware?  A: Yes. It maintains backward compatibility with previous Mark VI configurations.

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  • Sale -50% General Electric IS200TTURH1B Turbine Protection Input Terminal Board GE Mark VIe IS200TTURH1B Turbine Protection Input Terminal Board

    General Electricneral Electric GE Mark VIe IS200TTURH1B Turbine Protection Input Terminal Board

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    Overview The IS200TTURH1B Turbine Protection Input Terminal Board is a GE Mark VIe field‑termination module engineered to interface critical protection and monitoring signals within gas and steam turbine control systems. Designed for high‑reliability applications, the board provides secure wiring, stable signal routing, and robust environmental performance required in modern power generation facilities. Functional Characteristics This terminal board supports multiple turbine protection inputs, including sensor, actuator, and trip‑related wiring. The IS200TTURH1B incorporates enhanced circuit pathways and improved signal‑conditioning features to ensure accurate transmission of turbine protection data to the Mark VIe controller. Key functional features include: High‑integrity terminal points for protection‑related I/O Redundant circuit paths to minimize single‑point failures EMI‑hardened design for noise‑sensitive environments Backward‑compatible layout for integration with earlier Mark VI revisions Modular construction for simplified installation and maintenance The “H1B” revision includes upgraded components and improved signal isolation, supporting long‑term reliability in harsh turbine enclosures. Mechanical and Electrical Specifications Parameter Specification Model IS200TTURH1B Product Type Turbine Protection Input Terminal Board Brand GE Series Mark VIe Dimensions 33 × 17.7 × 5.5 cm Weight 1.1 kg Origin USA HS Code 8537101190 Condition New Availability In Stock Operating Environment High‑vibration, high‑temperature turbine enclosures Signal Type Protection and monitoring inputs Revision H1B (enhanced reliability) System Compatibility DCS / Mark VI / Mark VIe Minimum Order 1 unit Integration and System Role The IS200TTURH1B is used to: Terminate turbine protection sensor wiring Route critical trip and shutdown signals Provide stable electrical interfaces to Mark VIe controllers Support real‑time turbine protection logic Maintain signal integrity in electrically noisy environments Its rugged PCB design and protective features make it suitable for continuous operation in base‑load, peaking, and combined‑cycle power plants. Application Scenarios Gas turbine overspeed and protection systems Steam turbine trip and monitoring circuits Combined‑cycle plant safety architectures Industrial cogeneration turbine installations Mark VIe system modernization and retrofits FAQ Q: What type of signals does the board support?  A: It supports turbine protection inputs, including sensor and trip‑related wiring. Q: Is the board backward compatible?  A: Yes. The H1B revision maintains compatibility with earlier Mark VI configurations. Q: Does the board include EMI protection?  A: Yes. It features EMI‑hardened circuitry for noise‑sensitive turbine environments.

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  • Sale -50% General Electric IS200TSVOH1B Servo Terminal Board GE Mark VIe IS200TSVOH1B Servo Terminal Board Module

    General Electricneral Electric GE Mark VIe IS200TSVOH1B Servo Terminal Board Module

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    Overview The IS200TSVOH1B Servo Terminal Board is a GE Mark VIe interface module designed to terminate, route, and condition servo‑related signals for turbine control systems. It provides the electrical interface between electro‑hydraulic servo valves, LVDT feedback devices, and the Mark VIe I/O processor, enabling precise valve positioning and stable turbine operation. Functional Characteristics This terminal board supports two electro‑hydraulic servo valve channels used for steam and fuel valve actuation. It also accommodates multiple Linear Variable Differential Transformer (LVDT) inputs, which provide high‑resolution positional feedback to the control system. Key functional features include: Two servo valve output channels Multiple LVDT feedback inputs for valve position sensing Dedicated connectors for Simplex and TMR configurations High‑integrity wiring paths for real‑time control signals Termination points for external trip signals The IS200TSVOH1B connects to the VSVO I/O processor through the J5 front‑panel connector and interfaces with the VME rack via J3/J4 connectors, ensuring robust communication and deterministic control performance. Redundancy and Safety Features The board supports: Simplex operation via JR1 Triple Modular Redundant (TMR) operation via JR1, JS1, and JT1 External trip signal inputs through JD1 and JD2 These features enhance system reliability and ensure safe turbine shutdown under abnormal conditions. Mechanical and Electrical Specifications Parameter Specification Model IS200TSVOH1B Product Type Servo Terminal Board Brand GE Series Mark VIe Dimensions 33 × 17.7 × 5 cm Weight 0.85 kg Origin USA HS Code 8537101190 Condition New Availability In Stock Servo Channels 2 electro‑hydraulic servo outputs Feedback Inputs LVDT position feedback Operating Mode Simplex / TMR System Compatibility DCS / Mark VIe Minimum Order 1 unit Integration and System Role The IS200TSVOH1B is used to: Interface servo valves with the Mark VIe control processor Provide accurate LVDT feedback for valve position control Support turbine fuel and steam valve actuation Enable high‑speed, closed‑loop servo control Integrate external trip signals into the protection system Its rugged construction and optimized signal routing make it suitable for high‑vibration turbine enclosures. Application Scenarios Gas turbine servo valve control Steam turbine valve actuation High‑precision LVDT‑based position feedback systems Mark VIe control cabinet installations TMR‑based turbine protection architectures FAQ Q: How many servo valves can the board interface?  A: It supports two electro‑hydraulic servo valve channels. Q: Does the board support TMR operation?  A: Yes. JR1, JS1, and JT1 connectors enable full TMR functionality. Q: What type of feedback sensors are supported?  A: The board accepts LVDT feedback signals for precise valve position measurement.

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  • Sale -50% General Electric IS220PDIAH1B I/O Pack GE Mark VIe IS220PDIAH1B Discrete I/O Pack Module

    General Electricneral Electric GE Mark VIe IS220PDIAH1B Discrete I/O Pack Module

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    Overview The IS220PDIAH1B Discrete I/O Pack is part of GE’s Mark VIe control platform, designed to acquire and process discrete field signals in turbine and power‑generation applications. This module provides a reliable interface between Mark VIe controllers and a variety of compatible terminal boards, enabling flexible system configuration and dependable signal handling in both hazardous and non‑hazardous environments. Functional Characteristics The module supports a nominal 24 VDC power supply (up to 28.6 VDC maximum) and is engineered to withstand demanding industrial conditions. Its discrete input channels accept voltages up to 32 VDC, ensuring compatibility with a wide range of field devices. Key functional features include: Compatible with multiple GE terminal boards (e.g., IS200STCIH1A, IS400TBCIH2C) UL‑certified for Class I, Division 2 and Zone 2 hazardous locations Wide operating temperature range from −30°C to +65°C Rugged enclosure suitable for turbine enclosures and power‑plant environments Designed for continuous operation in high‑vibration and high‑temperature areas The IS220PDIAH1B integrates seamlessly with Mark VIe controllers, providing stable data acquisition and reliable communication for discrete control functions. Technical Specifications Parameter Specification Model IS220PDIAH1B Product Type Discrete I/O Pack Brand GE Series Mark VIe Dimensions 8.2 × 12.2 × 6 cm Weight 0.36 kg Origin USA HS Code 8537101190 Condition New Availability In Stock Input Voltage 24 VDC nominal (28.6 VDC max) Input Range Up to 32 VDC Operating Temperature −30°C to +65°C Certifications UL Class I/Div 2, Zone 2 System Compatibility DCS / Mark VIe Minimum Order 1 unit Integration and System Role The IS220PDIAH1B is used to: Acquire discrete field signals from switches, relays, and protection devices Interface with Mark VIe terminal boards for flexible system design Support hazardous‑area installations requiring certified hardware Maintain reliable operation in turbine control cabinets Its robust design and wide voltage tolerance make it suitable for continuous operation in mission‑critical power‑generation environments. Application Scenarios Gas turbine control systems Steam turbine protection and monitoring Power‑plant auxiliary equipment control Hazardous‑area industrial automation Mark VIe system expansions and retrofits FAQ Q: What terminal boards are compatible with the IS220PDIAH1B?  A: It supports several GE terminal boards, including IS200STCIH1A and IS400TBCIH2C. Q: Can this module be used in hazardous locations?  A: Yes. It carries UL certifications for Class I/Div 2 and Zone 2 environments. Q: What is the maximum input voltage for discrete channels?  A: Up to 32 VDC.

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  • Sale -50% General Electric IC670ALG630 Thermocouple Input Module General Electric FANUC Series IC670ALG630 Thermocouple Input Module

    General Electricneral Electric General Electric FANUC Series IC670ALG630 Thermocouple Input Module

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    Overview The IC670ALG630 thermocouple input module is part of GE’s FANUC Field Control family and provides eight high‑accuracy temperature‑measurement channels for industrial automation systems. Designed for applications requiring precise thermal monitoring, the module supports a wide range of thermocouple types and offers flexible configuration for both direct millivolt acquisition and temperature‑scaled outputs. Signal Processing and Measurement Each channel incorporates cold‑junction compensation and open‑circuit detection to maintain measurement accuracy under varying environmental conditions. A solid‑state, optically isolated multiplexer feeds a 15‑bit plus sign‑bit A/D converter, enabling high‑resolution digitization of low‑level thermocouple signals. When operating in millivolt mode, the IC670ALG630 provides resolution down to 0.01 mV, making it suitable for sensitive low‑voltage sensing tasks beyond standard thermocouple applications. An onboard microprocessor continuously evaluates channel health, detecting out‑of‑range conditions and sensor faults to support reliable system operation. System Integration The module integrates directly with GE’s Genius Bus architecture through compatible Bus Interface Units, ensuring efficient data exchange within distributed control systems. Its rugged construction and diagnostic capabilities make it well‑suited for process industries where temperature stability and measurement integrity are critical. Technical Specifications Parameter Specification Model IC670ALG630 Product Type Thermocouple Input Module Brand General Electric Product Range FANUC Field Control Channels 8 thermocouple inputs Supported Inputs Multiple thermocouple types, millivolt mode Resolution 15‑bit + sign bit ADC; 0.01 mV in mV mode Compensation Cold‑junction compensation Fault Detection Open‑circuit and out‑of‑range monitoring Isolation Optically coupled multiplexer Weight 0.36 kg Dimensions 18.5 × 7 × 5 cm HS Code 8537101190 Minimum Order 1 unit Origin USA Availability In stock Lifecycle Status Active Application Scenarios Precision temperature monitoring in process control Furnace, kiln, and thermal‑processing equipment Distributed I/O systems using Genius Bus Low‑voltage millivolt measurement applications FAQ Q: Which thermocouple types are supported?  A: The module supports a broad range of standard thermocouple types used in industrial applications. Q: Can the module measure raw millivolt signals?  A: Yes. It can operate in millivolt mode with 0.01 mV resolution. Q: Does the module provide fault diagnostics?  A: It includes open‑circuit detection and continuous monitoring for out‑of‑range conditions.

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  • Sale -50% General Electric IC693MDL940 Relay Output Module General Electric FANUC Series IC693MDL940 Relay Output Module

    General Electricneral Electric General Electric FANUC Series IC693MDL940 Relay Output Module

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    Overview The IC693MDL940 relay output module is part of the GE FANUC Series 90‑30 I/O family, designed to switch moderate‑power loads through sixteen independent relay channels. Its architecture supports a wide range of electromechanical and control devices, making it suitable for mixed‑voltage output applications in DCS and PLC environments. Output Architecture This module provides sixteen normally‑open relay contacts arranged in four isolated groups. Each group contains four output points and shares a dedicated common terminal, enabling engineers to distribute loads across multiple power sources or isolate circuits for safety and maintenance. Each relay channel supports up to 2 A of switching current, allowing the module to drive solenoids, pilot lamps, contactors, and other inductive or resistive loads. Because the module does not include internal fusing, external protection is recommended when used with high‑inrush or safety‑critical devices. Status Indication and System Integration Every output point is equipped with an individual LED indicator, providing immediate visual confirmation of output state during commissioning and troubleshooting. The module is compatible with any I/O slot in Series 90‑30 or RX3i racks and operates from the +24 VDC backplane supply. Red identification bands on the housing indicate that the module is intended for higher‑voltage switching applications, helping technicians quickly identify module type during installation. Technical Specifications Parameter Specification Model IC693MDL940 Product Type Relay Output Module Brand General Electric Product Range FANUC Series 90‑30 Output Points 16 normally‑open relays Grouping 4 groups, 4 points per group Max Switching Current 2 A per point Output Type Mechanical relay Indicators LED per output Internal Fusing None (external protection required) Backplane Power +24 VDC Weight 0.4 kg Dimensions 3.5 × 13 × 13.5 cm HS Code 8537101190 Minimum Order 1 unit Origin USA Availability In stock Lifecycle Status Active Application Scenarios Control of solenoids, relays, and contactors Mixed‑voltage output systems requiring isolated groups Machine control panels with moderate‑power switching DCS and PLC installations using Series 90‑30 or RX3i hardware FAQ Q: Can the IC693MDL940 switch both AC and DC loads?  A: Yes. Its mechanical relays support a variety of AC and DC load types within rated limits. Q: Does the module include built‑in protection?  A: No. External fuses or breakers should be used where required. Q: Is it compatible with RX3i systems?  A: The module can be installed in RX3i racks using appropriate backplane interfaces.

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  • Sale -50% General Electric IC693CPU351 CPU Module General Electric FANUC Series IC693CPU351 CPU Module

    General Electricneral Electric General Electric FANUC Series IC693CPU351 CPU Module

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    Overview The IC693CPU351 processor module is part of the GE FANUC Series 90‑30 control platform, designed to provide reliable execution performance for mid‑ to large‑scale automation systems. This modular CPU integrates expanded memory resources, multiple communication interfaces, and broad I/O support, making it suitable for demanding industrial control tasks. Architecture and Processing At the core of the IC693CPU351 is an Intel 80386EX processor operating at 25 MHz. Its architecture supports efficient execution of ladder logic, structured block programming, and data‑intensive routines. The module includes 240 KB of user‑available memory, offering significantly more storage capacity than earlier Series 90‑30 CPUs. The CPU supports over 2000 timers and counters, enabling precise sequencing and time‑critical operations across distributed control environments. Communication and I/O Capacity Three onboard serial ports provide flexible connectivity for programming devices, operator interfaces, and external communication modules. The CPU supports large I/O systems, accommodating up to 2048 discrete points and more than 32,000 analog channels when used with appropriate expansion modules. The module operates from a 5 VDC supply at approximately 890 mA, maintaining compatibility with existing Series 90‑30 power supplies and racks. Installation and Grounding For stable operation in electrically noisy environments, GE specifies proper grounding using either the included green grounding wire (44A735970‑001R01) or an optional grounding bracket (44C715646‑001R01). Correct grounding improves noise immunity and ensures consistent communication performance. Technical Specifications Parameter Specification Model IC693CPU351 Product Type CPU Module Brand General Electric Product Range FANUC Series 90‑30 Processor Intel 80386EX, 25 MHz User Memory 240 KB Serial Ports 3 Discrete I/O Capacity Up to 2048 points Analog I/O Capacity Up to 32,640 channels Timers/Counters 2000+ Operating Voltage 5 VDC Current Draw 890 mA Weight 0.3 kg Dimensions 3.6 × 13 × 13.5 cm HS Code 8537101190 Minimum Order 1 unit Origin USA Availability In stock Lifecycle Status Active Application Scenarios Process automation requiring high‑speed logic execution Manufacturing lines with large distributed I/O networks Systems requiring multiple communication channels Upgrades of existing Series 90‑30 installations FAQ Q: Is the IC693CPU351 compatible with older 90‑30 racks?  A: Yes. It is designed to integrate with existing Series 90‑30 hardware. Q: Does the CPU support Ethernet communication?  A: Ethernet capability is available through optional communication modules. Q: What grounding method is recommended?  A: GE recommends using the supplied grounding wire or the optional grounding bracket for optimal noise immunity.

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  • Sale -50% General Electric IC660HHM501 Hand-held Monitor General Electric FANUC Series IC660HHM501 Hand‑Held Monitor

    General Electricneral Electric General Electric FANUC Series IC660HHM501 Hand‑Held Monitor

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    Overview The IC660HHM501 portable monitor from General Electric’s FANUC line is a compact diagnostic and configuration tool designed for Genius I/O networks and DCS‑based control systems. It provides direct access to device parameters, system status, and troubleshooting functions without requiring a connected PLC or programming workstation. Functional Characteristics This handheld unit integrates a four‑line LCD display capable of presenting up to sixteen characters per line, offering clear visibility for configuration data and system feedback. A sealed twenty‑key membrane keypad supports navigation, data entry, and command execution in demanding industrial environments. The monitor supports multilingual operation, including English, German, French, and Italian, making it suitable for globally deployed systems. A built‑in keyswitch provides controlled access to advanced functions, ensuring operational security during commissioning or maintenance. Power and Connectivity The IC660HHM501 can operate from its internal rechargeable battery pack or from external AC power sources (115 V or 230 V). This flexibility allows technicians to perform field diagnostics even in locations without available power outlets. The device supports dual‑bus selection and can interact with Genius I/O modules for configuration, fault reset, and I/O forcing. These capabilities streamline system checkout and validation before full system integration. Technical Specifications Parameter Specification Model IC660HHM501 Product Type Hand‑Held Monitor Brand General Electric Product Range FANUC Condition New System Compatibility DCS / Genius I/O Display 4‑line LCD, 16 characters per line Keypad 20‑key sealed membrane Languages English, German, French, Italian Power Options Internal battery, 115 V AC, 230 V AC Security Operator access keyswitch Weight 0.45 kg Dimensions 20.4 × 9.3 × 3 cm HS Code 8537101190 Minimum Order 1 unit Origin USA Availability In stock Lifecycle Status Active Application Scenarios Field commissioning of Genius I/O networks On‑site diagnostics for distributed control systems Maintenance operations requiring portable configuration tools Pre‑deployment system verification without PLC connectivity FAQ Q: Can the monitor operate without external power?  A: Yes. It includes an internal battery pack for portable use. Q: Does the unit support configuration of Genius I/O devices?  A: It provides full access to device parameters, fault clearing, and I/O forcing. Q: Is the keypad suitable for harsh environments?  A: The sealed membrane design protects against dust and moisture.

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  • Sale -50% General Electric IC670CHS002 Terminal Block General Electric | FANUC Series | IC670CHS002 Terminal Block

    General Electricneral Electric General Electric | FANUC Series | IC670CHS002 Terminal Block

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    Overview The IC670CHS002 terminal block from General Electric’s FANUC Field Control family is designed as a durable wiring base for distributed I/O installations. It provides a stable mechanical and electrical interface for Field Control modules, ensuring reliable signal routing and uninterrupted communication within DCS and industrial automation architectures. Key Features Compatible with GE FANUC Field Control I/O modules Three isolated terminal commons (A, B, E) for structured power and signal grouping Supports module replacement without disturbing field wiring Rugged screw‑clamp terminals designed for vibration‑prone environments Optimized for high‑speed backplane communication up to 1 Mbps Suitable for Genius Bus and Ethernet‑based control networks Compact footprint for dense panel layouts Technical Specifications Parameter Specification Model IC670CHS002 Product Type Terminal Block Brand General Electric Product Range FANUC Field Control Condition New System Compatibility DCS / Field Control Communication Support Ethernet‑based routing (system dependent) Terminal Groups A, B, E (isolated commons) Terminals 1–16 for I/O wiring Weight 0.74 kg Dimensions 16.5 × 9 × 10 cm HS Code 8537101190 Minimum Order 1 unit Origin USA Availability In stock Lifecycle Status Active Functional Description The IC670CHS002 serves as the mechanical and electrical foundation for GE Field Control modules. Its isolated A/B/E terminal groups allow engineers to separate power, signal, and specialty wiring to reduce noise and improve diagnostic clarity. The E‑group’s five dedicated common terminals are particularly useful for applications requiring isolated reference points or specialized grounding schemes. The block’s design ensures that modules can be swapped without disconnecting field wiring, reducing downtime during maintenance. Its screw‑mount structure provides strong resistance to vibration, making it suitable for heavy‑duty industrial environments. Application Scenarios Distributed I/O in DCS and PLC systems High‑noise industrial environments requiring clean signal routing Modular control panels with frequent module replacement Process automation, material handling, and manufacturing lines FAQ Q: Can the IC670CHS002 support two modules on one block?  A: Yes. The block accommodates two modules while maintaining independent wiring integrity. Q: Are the terminal commons electrically isolated?  A: The A, B, and E groups are isolated to support flexible wiring schemes and reduce interference. Q: Is this block compatible with Genius Bus networks?  A: It supports Field Control modules that interface with Genius Bus and Ethernet‑based systems.

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  • Sale -50% General Electric PQMII-T20-C-A Power Quality Monitor General Electric PQMII‑T20‑C‑A Multilin Series Power Quality Monitor

    General Electricneral Electric General Electric PQMII‑T20‑C‑A Multilin Series Power Quality Monitor

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    Overview The PQMII‑T20‑C‑A is a compact, high‑precision power quality monitoring module from General Electric’s Multilin product line. Designed for detailed analysis of electrical distribution systems, it captures real‑time voltage, current, power, and energy data across single‑phase and three‑phase networks. Its measurement accuracy and broad diagnostic capabilities make it suitable for facilities that require continuous visibility into electrical performance. Functional Capabilities The monitor supports programmable setpoints and includes four configurable relay outputs, enabling automated responses such as load management, alarm signaling, or power factor optimization. Harmonic measurement capabilities allow the PQMII‑T20‑C‑A to detect distortion levels and identify sources of electrical disturbances, supporting preventive maintenance and equipment protection. Four digital inputs expand the module’s control and monitoring flexibility, allowing integration with external switches, status signals, or interlocking logic. Communication and Integration The device offers multiple communication interfaces for seamless integration into supervisory control systems. Dual RS‑485 ports support Modbus protocol for networked monitoring, while a front‑panel RS‑232 port provides direct access for configuration and data retrieval. The unit also includes four analog outputs (4–20 mA), enabling direct connection to PLCs or SCADA systems without additional transducers. Waveform capture and event recording provide valuable diagnostic data for troubleshooting voltage sags, swells, transients, and harmonic issues. These features make the PQMII‑T20‑C‑A a versatile tool for maintaining electrical system reliability. Technical Specifications Parameter Specification Model PQMII‑T20‑C‑A Product Type Power Quality Monitor Brand General Electric Product Range Multilin Series Measurement Functions Voltage, current, power, energy, harmonics Relay Outputs 4 programmable Digital Inputs 4 Analog Outputs 4 × 4–20 mA Communication Ports Dual RS‑485 (Modbus), RS‑232 front port Diagnostic Features Waveform capture, harmonic analysis Weight 0.04 kg Dimensions 5 × 1.3 × 4.4 cm HS Code 8537101190 Minimum Order 1 unit Origin USA Availability In stock Lifecycle Status Active Application Scenarios Power quality monitoring in industrial plants Energy management and load optimization Harmonic analysis for sensitive electronic equipment Integration with SCADA, PLC, and DCS systems Troubleshooting voltage disturbances and waveform anomalies FAQ Q: Does the PQMII‑T20‑C‑A support harmonic analysis?  A: Yes. It provides detailed harmonic measurement for diagnosing distortion issues. Q: Can the device interface directly with PLCs?  A: The four 4–20 mA analog outputs allow direct PLC integration without external converters. Q: What communication protocols are supported?  A: Modbus via dual RS‑485 ports, plus an RS‑232 port for local configuration.

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  • Sale -50% General Electric IS200TBCIH1B Terminal Contact Board General Electric Mark VIe IS200TBCIH1B Terminal Contact Board

    General Electricneral Electric General Electric Mark VIe IS200TBCIH1B Terminal Contact Board

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    Overview The IS200TBCIH1B terminal contact board is part of GE’s Mark VIe turbine control platform and serves as a communication and signal‑routing interface between field I/O and the control processor. Designed for high‑availability applications, the board supports redundant communication paths and stable data transfer in demanding power‑generation environments. Functional Architecture The board provides a structured interface for contact inputs and backplane communication, ensuring low‑latency signal transmission to the controller. Its design supports both simplex and triple‑modular‑redundant (TMR) architectures, allowing engineers to deploy it in systems with varying reliability requirements. Industrial‑grade connectors and optimized trace routing help maintain signal integrity by minimizing electromagnetic interference. A conformal coating protects the PCB from moisture, dust, and corrosive contaminants, extending service life in harsh turbine enclosures. Mechanical and Operational Features The IS200TBCIH1B incorporates LED indicators that display channel and communication status, enabling quick diagnostics during commissioning or maintenance. The board’s construction supports high vibration and temperature extremes, making it suitable for gas and steam turbine installations. Its hot‑swappable design allows technicians to replace the board without shutting down the system, reducing operational interruptions in critical facilities such as combined‑cycle plants and peaking stations. Technical Specifications Parameter Specification Model IS200TBCIH1B Product Type Terminal Contact Board Brand General Electric Product Range Mark VIe System Compatibility Simplex and TMR architectures Communication Redundant backplane channels Indicators LED status indicators PCB Protection Conformal coating Connectors Industrial/MIL‑grade Weight 0.54 kg Dimensions 33 × 10.2 × 4.8 cm HS Code 8537101190 Minimum Order 1 unit Origin USA Availability In stock Lifecycle Status Active Application Scenarios Gas and steam turbine control systems Combined‑cycle and peaking power plants High‑reliability DCS and turbine protection architectures Installations requiring redundant communication paths FAQ Q: Does the IS200TBCIH1B support TMR systems?  A: Yes. It is compatible with both simplex and TMR Mark VIe configurations. Q: Can the board be replaced without shutting down the system?  A: Its hot‑swappable design allows maintenance during operation. Q: How is the board protected against environmental contaminants?  A: A conformal coating shields the PCB from moisture and airborne particles.

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