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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.

1313 products

  • Sale -50% GE Multilin G60-G01-HCH-F8F-H67-M8F-P6D-U6D-W6C Generator Protection System GE Multilin G60-G01-HCH-F8F-H67-M8F-P6D-U6D-W6C Generator Protection System

    General Electric GE Multilin G60-G01-HCH-F8F-H67-M8F-P6D-U6D-W6C Generator Protection System

    17 in stock Delivery within 48 hours, pay afterwards  Mid weeks
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    GE Multilin G60-G01-HCH-F8F-H67-M8F-P6D-U6D-W6C Generator Protection System The GE Multilin G60-G01-HCH-F8F-H67-M8F-P6D-U6D-W6C, also cataloged as the G60 Generator Protection System, operates as a dedicated hardware component for generator protection, control, metering, and fault signal processing within GE Multilin Universal Relay (UR) platforms. Hardware Specifications Parameter Specification Model G60-G01-HCH-F8F-H67-M8F-P6D-U6D-W6C Brand GE Multilin Origin General Electric Grid Solutions Dimensions 19-inch rack format Universal Relay enclosure Operating Temp -40 deg C to +60 deg C Product Series UR Series Universal Relay G60 Generator Protection Power Supply 125-250 VDC / 120-240 VAC high voltage supply option Protection Functions Generator differential, stator ground, field ground, loss of excitation, overexcitation V/Hz, power swing blocking, out-of-step tripping AC Input Modules Configurable CT and VT input modules supporting generator current and voltage measurement circuits Digital I/O Configurable contact inputs and Form-A/Form-C output relay modules Communication Protocols IEC 61850 Ed. 1 and Ed. 2, DNP 3.0, Modbus RTU/TCP, IEC 60870-5-104, IEEE 1588 User Interface Front panel LCD interface with RS232 communication port Cybersecurity Functions CyberSentry functions including RBAC, RADIUS authentication, Syslog, and audit trail logging PLC/DCS Communication and Modular Architecture The GE Multilin G60 platform uses a modular Universal Relay architecture with configurable CPU, power supply, communication, and I/O assemblies. The hardware configuration supports deterministic substation communication through IEC 61850 networks and integration with protection control systems. The UR backplane structure provides module-to-module communication between protection processing units and field interface assemblies. Firmware flash compatibility supports controlled configuration updates for installed hardware revisions. The G60 design supports I/O density scaling through selectable CT, VT, digital input, and output relay modules. Ethernet communication interfaces provide integration capability with substation automation systems and distributed control system networks. Frequently Asked Questions Q: Does the G60 support hot-swappable hardware modules?A: The UR Series uses field-replaceable modular assemblies. Hot-swap operation limitations depend on the installed module type and system configuration. Power isolation and approved maintenance procedures are required before module replacement. Q: Which communication interfaces are supported by the G60-G01-HCH-F8F-H67-M8F-P6D-U6D-W6C configuration?A: The configuration supports Ethernet-based IEC 61850 communication and additional protocols including DNP 3.0, Modbus RTU/TCP, IEC 60870-5-104, and IEEE 1588 time synchronization. Q: How are generator measurement signals connected to the relay?A: Generator current and voltage signals are connected through configurable CT and VT input modules. Digital status and trip signals are handled through installed contact input and output relay modules. Field Installation Guidelines Install the relay in the specified 19-inch rack mounting structure with adequate mechanical support. Verify power supply wiring polarity and voltage range before energizing the unit. Use shielded wiring for low-level CT, VT, and communication signal circuits where required by site practices. Connect cable shields according to the grounding method defined for the protection panel design. Separate high-voltage wiring paths from communication and low-level measurement wiring to reduce electrical interference. Verify CT polarity, VT phase references, and digital input contact logic before commissioning. Confirm Ethernet network addressing, protocol configuration, and time synchronization settings before system integration.

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  • Sale -50% GE Multilin F650BABF1G0HI Feeder Protection Relay and Digital Bay Controller GE Multilin F650BABF1G0HI Feeder Protection Relay and Digital Bay Controller

    General Electric GE Multilin F650BABF1G0HI Feeder Protection Relay and Digital Bay Controller

    17 in stock Delivery within 48 hours, pay afterwards  Mid weeks
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    GE Multilin F650BABF1G0HI Feeder Protection Relay and Digital Bay Controller The GE Multilin F650BABF1G0HI, also cataloged as the F650 Feeder Protection Relay and Digital Bay Controller, operates as a dedicated hardware component for feeder protection, breaker control, and substation automation data exchange within GE Multilin F650 protection platforms. Hardware Specifications Parameter Specification Model F650BABF1G0HI Brand GE Multilin Operating Temp -20 deg C to +60 deg C Power Consumption 30 W / 30 VA nominal Device Type Feeder Protection Relay and Digital Bay Controller Power Supply 110-250 V DC / 110-240 V AC Phase Current Inputs 1 A or 5 A CT configurable Ground Current Inputs 1 A or 5 A CT configurable Voltage Inputs Up to 300 V AC nominal VT input Frequency Rating 50 Hz / 60 Hz Display Interface Graphical LCD with configurable SLD display Mounting Type Flush mount / draw-out case structure Front Communication Isolated RS232 setup port Rear Communication 10/100Base-T Ethernet RJ45 and RS485 Supported Protocols IEC 61850, DNP3.0, Modbus RTU, Modbus TCP, IEC 60870-5-103/104 Profinet / Ethernet Communication and Firmware Compatibility The GE Multilin F650BABF1G0HI integrates Ethernet-based substation communication interfaces with deterministic data exchange requirements for protection and control networks. The rear Ethernet 10/100Base-T interface supports IEC 61850 communication services, while RS485 communication supports serial protocol integration. Firmware flash compatibility allows configuration updates through approved GE Multilin engineering tools. Communication parameters, protection logic settings, and programmable control functions are stored within the relay configuration environment for controlled commissioning procedures. Frequently Asked Questions (FAQ) Q: What current transformer inputs are supported by the F650BABF1G0HI?A: The relay supports configurable phase and ground current inputs for 1 A or 5 A nominal CT applications. Q: Does the F650BABF1G0HI support hot-swapping of hardware modules?A: The available documentation does not specify hot-swap capability. Hardware replacement should follow approved isolation and maintenance procedures for protection relay equipment. Q: Which communication interfaces are available for system integration?A: The unit provides an isolated RS232 front setup port, Ethernet 10/100Base-T rear port, and RS485 serial communication interface supporting IEC 61850, DNP3.0, Modbus, and IEC 60870 communication protocols. Field Installation Guidelines Install the F650BABF1G0HI in a suitable protection panel or control cabinet using the specified flush-mount or draw-out case arrangement. Maintain separation between CT/VT signal wiring, communication cables, and high-voltage switching conductors to reduce electromagnetic interference. Terminate CT secondary wiring according to protection relay wiring practices and verify polarity before energizing the protection circuit. Use shielded communication cables where required and connect cable shields according to the substation grounding design. Before commissioning, confirm power supply polarity, communication addressing, CT/VT scaling parameters, breaker control wiring, and trip circuit supervision connections. Verify protection settings and logic operation through approved relay test equipment before placing the device into service.

    17 in stock Delivery within 48 hours, pay afterwards  Mid weeks
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  • Sale -50% GE Multilin F650NFLF2G5HIP6E Feeder Protection Relay and Digital Bay Controller GE Multilin F650NFLF2G5HIP6E Feeder Protection Relay and Digital Bay Controller

    General Electric GE Multilin F650NFLF2G5HIP6E Feeder Protection Relay and Digital Bay Controller

    17 in stock Delivery within 48 hours, pay afterwards  Mid weeks
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    GE Multilin F650NFLF2G5HIP6E Feeder Protection Relay and Digital Bay Controller The GE Multilin F650NFLF2G5HIP6E, also cataloged as the F650 Feeder Protection Relay and Digital Bay Controller, operates as a dedicated hardware component for feeder protection, circuit breaker control, and substation automation within GE Multilin 650 series protection systems. Hardware Specifications Parameter Specification Model F650NFLF2G5HIP6E Brand GE Multilin Origin General Electric, USA Dimensions Standard 19-inch rack / flush-mount drawout or fixed case construction Operating Temp -20 deg C to +60 deg C Auxiliary Supply Voltage 110-250 V DC / 110-230 V AC Phase Current Inputs 1 A / 5 A selectable Ground Current Inputs 1 A / 5 A nominal Voltage Inputs 50-240 V AC nominal phase-to-neutral Frequency Range 50 Hz / 60 Hz configurable Current Input Burden < 0.2 VA at 5 A Communication Protocols IEC 61850 Ed.1/Ed.2, Modbus RTU/TCP, DNP3.0, IEC 60870-5-103/-104 Ethernet Interface Dual Ethernet RJ45/Fiber optic with HSR, PRP, RSTP support depending on board assembly Time Synchronization IEEE 1588 PTP, IRIG-B, SNTP Recording Function Oscillography up to 128 samples per cycle, COMTRADE format Event Storage Timestamped event recorder, up to 512-1024 events Industrial Control and Communication Architecture The GE Multilin F650 platform incorporates digital signal processing, programmable FlexLogic control, and configurable communication interfaces for protection and automation functions. The F650NFLF2G5HIP6E configuration includes expanded I/O capability, IEC 61850 communication support, and redundant Ethernet hardware options for integration with substation control networks. The relay supports deterministic Ethernet communication structures through IEC 61850 messaging and synchronized data exchange. The hardware configuration supports Ethernet redundancy functions including HSR, PRP, and RSTP where applicable, allowing network topology adaptation within protection and control systems. Firmware flash compatibility is managed through the GE EnerVista 650 Setup software environment, providing configuration access, relay logic programming, event extraction, and maintenance functions. Frequently Asked Questions Q: Does the F650NFLF2G5HIP6E support hot-swapping of internal hardware modules?A: The F650 is designed as a fixed protection relay assembly. Module replacement and servicing should follow GE maintenance procedures with the relay isolated from auxiliary power and field circuits. Q: What communication interfaces are available for SCADA integration?A: The relay provides front USB/RS232 access and rear communication interfaces including Ethernet and RS485. Supported protocols include IEC 61850, Modbus, DNP3.0, and IEC 60870 series protocols. Q: How is firmware compatibility handled during configuration updates?A: Firmware and configuration management are performed through compatible GE EnerVista 650 Setup software. The installed firmware version must match the supported relay hardware configuration. Field Installation Guidelines Install the relay in a suitable protective enclosure using the specified rack or flush-mount mechanical arrangement. Connect auxiliary supply wiring according to the rated 110-250 V DC or 110-230 V AC input range. Maintain separation between CT/VT signal wiring, communication cables, and high-energy switching circuits to reduce electromagnetic interference. Ground cable shields according to substation grounding practices, with shield termination applied consistently at the designated grounding points. Verify CT polarity, phase sequence, and grounding circuit connections before energizing protection functions. Confirm Ethernet fiber or copper communication routing meets site network requirements before enabling IEC 61850 services. Perform functional verification of protection elements, breaker control logic, and communication channels after installation.

    17 in stock Delivery within 48 hours, pay afterwards  Mid weeks
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  • Sale -50% GE Multilin F650BFEF2G0HIC Feeder Protection Relay GE Multilin F650BFEF2G0HIC Feeder Protection Relay

    General Electric GE Multilin F650BFEF2G0HIC Feeder Protection Relay

    17 in stock Delivery within 48 hours, pay afterwards  Mid weeks
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    GE Multilin F650BFEF2G0HIC Feeder Protection Relay The GE Multilin F650BFEF2G0HIC, also cataloged as the F650 Feeder Protection Relay, operates as a dedicated hardware component for feeder circuit protection, measurement, control, and communication within electrical distribution protection systems. Hardware Specifications Parameter Specification Model F650BFEF2G0HIC Brand GE Multilin Origin GE Multilin F650 Series Operating Temp -20 deg C to +60 deg C Power Consumption < 25 W typical, < 45 VA Power Supply 110-250 VDC / 110-230 VAC Current Inputs 5 A nominal phase and neutral CT inputs, 50/60 Hz Voltage Inputs 3 phase voltage inputs plus neutral/auxiliary voltage input Digital Inputs Opto-isolated dry/wet contact inputs Output Relays Form-A and Form-C trip, close, and alarm outputs Protection Functions 50P/51P, 50G/N/51G/N, 67P/67G/N, 27P/59P, 81O/81U, 49, 79, 50BF, 25 Communication Ports Rear RS485, Ethernet RJ45, front USB/RS232 maintenance port Communication Protocols Modbus RTU, Modbus TCP/IP, IEC 60870-5-103, DNP 3.0, IEC 61850 optional Front Protection Rating IP54 Firmware, Communication and Protection Logic The GE Multilin F650BFEF2G0HIC incorporates programmable protection logic through the F650 platform FlexLogic engine. The relay processes current transformer and voltage transformer signals for feeder protection functions including phase overcurrent, ground fault detection, directional protection, breaker failure monitoring, and automatic reclosing sequences. The communication architecture supports RS485 and Ethernet-based data exchange for integration with substation control networks. The relay supports deterministic protection data transfer through configured protocols including Modbus RTU, Modbus TCP/IP, IEC 60870-5-103, DNP 3.0, and optional IEC 61850 interfaces. The hardware configuration includes 5 A CT measurement inputs, voltage measurement channels, isolated digital inputs, and configurable output contacts for breaker control and alarm circuits. The conformal-coated circuit board option provides additional protection for operation in environments requiring coated electronic assemblies. Frequently Asked Questions Q: What type of current transformer input does the F650BFEF2G0HIC support?A: The relay uses 5 A nominal phase and neutral current transformer inputs for feeder current measurement and protection calculations. Q: Does the relay support Ethernet communication?A: Yes. The F650BFEF2G0HIC configuration includes Ethernet RJ45 communication capability with support for configured industrial protection protocols. Q: What are the installation considerations for the conformal-coated hardware option?A: The conformal coating protects the circuit board assembly from environmental contaminants. Field wiring practices should maintain proper separation between power circuits, CT/VT signals, and communication wiring. Field Installation Guidelines Install the relay in a suitable protective enclosure with grounding and wiring practices compatible with substation protection equipment. CT secondary wiring should use dedicated twisted pairs where applicable and maintain correct polarity from instrument transformers to relay terminals. VT wiring should be routed separately from high-current switching conductors to reduce electromagnetic interference. Communication cables should maintain shield continuity according to site grounding requirements. RS485 networks should follow standard termination and biasing practices. Ethernet connections should use industrial-grade cabling suitable for the installation environment. Before energizing the relay, verify auxiliary power polarity, CT circuit continuity, VT input levels, digital input contact states, and output relay wiring against the approved protection drawings.

    17 in stock Delivery within 48 hours, pay afterwards  Mid weeks
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  • Sale -50% GE Multilin F650BFEF2G0HI Feeder Protection Relay GE Multilin F650BFEF2G0HI Feeder Protection Relay

    General Electric GE Multilin F650BFEF2G0HI Feeder Protection Relay

    17 in stock Delivery within 48 hours, pay afterwards  Mid weeks
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    Weekends
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    GE Multilin F650BFEF2G0HI Feeder Protection Relay The GE Multilin F650BFEF2G0HI, also cataloged as the F650 Feeder Protection Relay, operates as a dedicated hardware component for feeder protection, breaker control, and electrical measurement within distribution protection systems. Hardware Specifications Parameter Specification Model F650BFEF2G0HI Brand GE Multilin Operating Temp -20 deg C to +60 deg C Power Consumption Not specified in provided documentation Power Supply 110-250 V DC / 110-230 V AC Nominal Frequency 50 Hz / 60 Hz auto-sensing Current Inputs 1 A / 5 A CT inputs, phase and ground configurable Voltage Inputs AC voltage sensing inputs for phase and zero-sequence measurement Digital Inputs Configurable high-density binary inputs Digital Outputs Configurable trip, close, and alarm output relays Protection Functions ANSI 50/51, 50N/51N, 67/67N, 27/59, 81U/81O, 79, 46, 50BF Event Recording Up to 512 event records Local Interface Graphical LCD display, target LEDs, RS232/USB configuration port Communication Protocols Modbus RTU, Modbus TCP/IP, IEC 60870-5-103, IEC 61850 optional Communication Ports RS485 and/or Ethernet RJ45 / fiber optic Front Protection Rating IP54 Rear Terminal Protection Rating IP20 GE Multilin Deterministic Protection and Communication Functions The GE Multilin F650 platform incorporates industrial control functions based on programmable protection logic and deterministic communication interfaces. The relay supports FlexLogic programming for configurable interlocking, breaker operation sequences, alarm processing, and protection coordination. The device provides Profinet / EtherNet-IP deterministic networks compatibility concepts through structured industrial communication design where applicable, while the supplied hardware supports Modbus RTU, Modbus TCP/IP, IEC 60870-5-103, and optional IEC 61850 interfaces. Firmware flash compatibility depends on the installed relay hardware revision and supported software package. The F650 supports I/O density scaling through configurable current, voltage, digital input, and digital output arrangements. Protection execution includes phase overcurrent, ground fault, directional elements, voltage supervision, frequency protection, automatic reclosing, and breaker failure functions. Frequently Asked Questions Q: Does the F650BFEF2G0HI support hot-swap replacement of internal modules?A: The provided documentation does not specify hot-swap capability. Module replacement should be performed with the relay isolated from control power and field wiring according to installation procedures. Q: What communication interfaces are available for configuration and monitoring?A: The relay provides front-panel RS232/USB configuration access and rear communication through RS485 and/or Ethernet interfaces supporting Modbus RTU, Modbus TCP/IP, IEC 60870-5-103, and optional IEC 61850. Q: What protection functions are executed by the relay hardware?A: The relay executes feeder protection functions including phase and ground overcurrent, directional protection, voltage protection, frequency protection, automatic reclosing, negative sequence protection, and breaker failure protection. Field Installation Guidelines Install the F650BFEF2G0HI in a protected control cabinet environment with appropriate mechanical support and clearance for terminal access. Verify CT and VT wiring polarity before energization to prevent incorrect protection element operation. Use shielded communication cables where required by the installation environment. Terminate cable shields according to site grounding practices, avoiding parallel routing with high-current power conductors to reduce electromagnetic interference. Separate low-level communication and measurement wiring from breaker control circuits and high-voltage switching paths. Confirm auxiliary power voltage matches the relay power supply rating before connection. Verify Ethernet, RS485, and serial communication wiring according to the selected protocol configuration. Perform insulation checks and protection setting validation before placing the relay into service.

    17 in stock Delivery within 48 hours, pay afterwards  Mid weeks
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  • Sale -50% GE Multilin F650BFEF1G0HI Feeder Protection Relay GE Multilin F650BFEF1G0HI Feeder Protection Relay

    General Electric GE Multilin F650BFEF1G0HI Feeder Protection Relay

    17 in stock Delivery within 48 hours, pay afterwards  Mid weeks
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    GE Multilin F650BFEF1G0HI Feeder Protection Relay Configured for feeder fault protection and measurement execution in substation automation networks, the GE Multilin F650BFEF1G0HI (F650 Feeder Protection Relay) provides direct physical and electrical execution for phase, ground, and sensitive ground current protection functions within distribution power systems. Hardware Specifications Parameter Specification Model GE Multilin F650BFEF1G0HI Brand GE Multilin Origin GE Multilin F650 Series Operating Temp -20 deg C to +60 deg C Power Consumption Nominal < 15 W, Maximum < 30 W Control Power Supply 110-250 VDC / 110-230 VAC Operating Voltage Range 88-300 VDC / 88-264 VAC Current Inputs Phase and ground CT inputs, selectable 1 A or 5 A Rated Frequency 50 Hz / 60 Hz configurable Thermal Current Withstand 20 A continuous, 100 A for 10 s, 500 A for 1 s Digital Inputs Optically isolated configurable voltage threshold inputs Output Contacts Form C trip and alarm relay contacts Break Capacity 30 A make for 0.2 s, 8 A continuous at 250 VAC / 30 VDC Communication Interfaces Dual RJ45 Ethernet, RS232 / USB front port Communication Protocols IEC 61850, Modbus TCP/IP, DNP 3.0, IEC 60870-5-104 Event Recording Up to 512 time-tagged events with 1 ms resolution Mounting Type Panel flush mounting / 19-inch rack installation Protection Class IP54 front panel, IP20 rear terminals EtherNet and Feeder Protection Control Functions The F650BFEF1G0HI integrates deterministic protection logic with Ethernet-based substation communication functions. The dual RJ45 communication interface supports redundant network connection methods using IEC 61850, Modbus TCP/IP, DNP 3.0, and IEC 60870-5-104 protocols. The relay processes phase current, neutral current, and sensitive ground current measurements for ANSI protection functions including 50/51, 50N/51N, 50G/51G, 46, 79, 37, 27/59, 81U/81O, and breaker failure protection (50BF). The high-density I/O configuration provides optically isolated digital inputs and Form C output relay contacts for breaker trip, alarm, and control circuits. The firmware supports configurable protection logic, event recording, waveform capture, and fault analysis data storage. Frequently Asked Questions Q: Does the F650BFEF1G0HI support hot-swappable module replacement?A: The available documentation does not specify hot-swap capability. Installation and replacement should be performed with the relay isolated from control power and external protection circuits. Q: What current input levels are supported by the relay?A: The phase and ground current inputs support selectable nominal CT ratings of 1 A or 5 A. Q: Which communication interfaces are available for system integration?A: The relay provides dual RJ45 Ethernet ports and a front RS232 / USB interface for local configuration and communication. Field Installation Guidelines Install the relay in a panel or rack location that maintains mechanical support and allows access to front configuration ports. Verify CT polarity, phase sequence, and secondary wiring before energizing protection circuits. Use shielded communication cables for Ethernet and serial connections where required by the substation grounding design. Terminate cable shields according to site grounding practices to reduce electrical interference. Separate low-level communication wiring from high-voltage breaker control and power conductors. Confirm auxiliary supply voltage compatibility before applying control power. Verify protection settings, input assignments, and output relay logic through the configuration software before placing the relay into service.

    17 in stock Delivery within 48 hours, pay afterwards  Mid weeks
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  • Sale -50% General Electric IC600YB842 General Electric IC600YB842

    General Electric General Electric IC600YB842 Series Six Analog Input Module

    Out of stock

    DescriptionThe IC600YB842 is an analog input module designed for the General Electric Series Six programmable logic controller (PLC) system. As a component of the Series Six architecture, this module is engineered to process analog signals within industrial automation environments, providing reliable data acquisition for control and monitoring applications.Features Compatible with GE Series Six PLC systems. Analog input functionality supporting a signal range of -10VDC to +10VDC. Designed for integration into standard Series Six I/O rack configurations. Robust construction suitable for industrial control cabinet environments. ApplicationsThis module is typically utilized in legacy industrial automation systems where precise analog voltage monitoring is required. Common applications include process control, instrumentation feedback, and signal conditioning for machinery managed by the Series Six platform.Technical Specifications Manufacturer General Electric Model IC600YB842 Series Series Six Module Type Analog Input Module Input Range -10VDC to +10VDC Weight 0.36 kg Installation Guidelines Ensure the PLC system is powered down before installing or removing the module from the I/O rack. Verify that the module is correctly seated in the backplane connector to ensure proper signal communication. Use shielded cabling for analog signal inputs to minimize electromagnetic interference (EMI) and noise. Maintain proper ventilation within the control cabinet to prevent overheating of the I/O rack components. Handle with care to prevent electrostatic discharge (ESD) damage to the module's internal circuitry. FAQIs the IC600YB842 still in production?No, this module has been discontinued by the manufacturer. We provide refurbished or surplus units to support legacy system maintenance.What is the input range for this module?The IC600YB842 is designed to accept analog voltage signals ranging from -10VDC to +10VDC.

    Out of stock

     

  • Sale -50% GE FANUC IS200BPVCG1BR1 GE FANUC IS200BPVCG1BR1

    GE FANUC GE Fanuc IS200BPVCG1BR1 Mark VI Backplane ASM Board

    9 in stock Delivery within 48 hours, pay afterwards  Mid weeks
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    DescriptionThe IS200BPVCG1BR1 is a specialized Backplane ASM Board designed for the GE Speedtronic Mark VI gas turbine control system. This critical infrastructure component serves as the communication backbone for multi-board rack systems in high-demand industrial sectors such as oil and gas refineries, thermal power plants, and large-scale mining operations. By centralizing data distribution between processing modules and field I/O, it ensures consistent signal integrity and rapid hardware integration. The dual-sided design optimizes cabinet space while facilitating direct operator access to external ribbon cable connections, effectively reducing mean time to repair (MTTR) during hardware upgrades or maintenance cycles.Features Serves as the primary communication bus for Mark VI rack-mounted control modules. Features a high-density dual-sided architecture for efficient signal routing. Equipped with 21 female backplane connectors for secure module seating. Includes 39 external I/O connectors for ribbon cable and field wiring integration. Designed for high-vibration environments typical of gas turbine control cabinets. ApplicationsThis backplane assembly is intended for use within GE Speedtronic Mark VI control systems. It is primarily utilized in power generation, turbine management, and heavy industrial automation environments where reliable, high-speed data communication between I/O modules and processors is required.Technical Specifications Model IS200BPVCG1BR1 Brand General Electric (GE) Series Mark VI Speedtronic Backplane Connectors 21 Female Ports External I/O Connectors 39 Ports Connection Type Ribbon Cable / Multi-pin Interconnect Operating Temperature 0 to 60 deg C Installation Guidelines Ensure the rack chassis is powered down before attempting to install or remove any modules from the backplane. Verify that the backplane is securely mounted to the rack frame to prevent mechanical stress on the connectors. Use ESD-safe handling procedures when touching the board to prevent damage to sensitive electronic components. Ensure all ribbon cables are fully seated and locked into their respective I/O connectors to maintain signal integrity. Route external wiring away from high-voltage power lines to minimize electromagnetic interference (EMI). FAQWhat is the primary function of the IS200BPVCG1BR1?The IS200BPVCG1BR1 acts as the backplane assembly for the GE Mark VI system, providing the physical and electrical interface required to interconnect multiple control modules and external I/O cables.Can this board be used in other GE systems?This board is specifically engineered for the Mark VI Speedtronic series. It is not intended for use in earlier or later generations of GE control systems unless explicitly specified by the manufacturer.How should I clean the connectors if signal issues occur?Use only approved electronic contact cleaner and a lint-free applicator. Ensure the system is powered off and the board is completely dry before re-inserting modules.

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  • Sale -50% General Electric IC693ALG390 General Electric IC693ALG390

    General Electric General Electric IC693ALG390 90-30 Series Analog Output Module

    10 in stock Delivery within 48 hours, pay afterwards  Mid weeks
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    DescriptionThe IC693ALG390 is a high-performance analog output module designed for the General Electric Series 90-30 Programmable Logic Controller (PLC) system. This module provides two independent output channels capable of delivering precise voltage signals in the range of -10 to +10 VDC. It is engineered for demanding industrial environments, facilitating closed-loop control, signal transmission to measuring instruments, and integration with data logging systems.Features Two isolated analog output channels (-10 to +10 VDC). High resolution of 2.5 mV per count. Absolute accuracy of ± 5 mV at 25 degC. 1500 VDC isolation between field wiring and PLC logic circuitry. Fast 5 ms update rate. Supports hold-last-state or 0V default configuration. External 24 VDC power supply input for standby operation. ApplicationsThis module is typically utilized in process control applications where precise voltage-based control is required, including: Closed-loop process control systems. Driving analog actuators and valves. Interfacing with chart recorders and data acquisition systems. Industrial automation test benches. Technical Specifications Model IC693ALG390 Output Channels 2 Output Range -10 to +10 VDC Resolution 2.5 mV Absolute Accuracy ± 5 mV at 25 degC Update Rate 5 ms Isolation 1500 VDC (Field to Logic) External Supply Voltage 18 to 30 VDC (24 VDC nominal) Output Load Capacitance 2000 pF maximum Installation Guidelines Power Down: Always disconnect power from the PLC rack before inserting or removing the module to prevent electrical damage. Mounting: Ensure the module is fully seated in the 90-30 baseplate slot and secured with the integrated locking screws. Wiring: Use shielded twisted-pair cabling for analog signals to minimize EMI interference. Ensure the shield is grounded at the source end only. Isolation: The module provides 1500V isolation; however, ensure external field wiring is routed away from high-voltage AC power lines. Environment: Maintain ambient operating temperatures between 0 and 60 degC. Ensure adequate ventilation within the enclosure. FAQWhat is the IC693ALG390?The GE IC693ALG390 is a 2-channel, isolated analog voltage output module for the Series 90-30 PLC system.What is the voltage output range?It provides a bipolar voltage output range of -10 to +10 VDC.Does this module support current output?No, this module is strictly for voltage output. For current output applications (e.g., 4-20mA), please refer to alternative modules such as the IC693ALG391 or IC693ALG392.

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  • Sale -50% GE FANUC DS200SLCCG1AFG GE FANUC DS200SLCCG1AFG

    GE FANUC GE Fanuc DS200SLCCG1AFG Mark V LAN Communication Card

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    DescriptionThe DS200SLCCG1AFG is a critical LAN Communication Board engineered for the GE Mark V Speedtronic turbine control system. This module facilitates high-level data exchange and communication protocols within both Simplex and Triple Modular Redundant (TMR) architectures, managing industrial gas and steam turbine operations. Acting as a bridge for system diagnostics and control signals, this board ensures network integrity and supports reliable operation in power generation and heavy industrial environments. This specific AFG version incorporates three functional revisions to provide enhanced artwork configuration and logic processing capabilities compared to original hardware iterations.Features Integrated 16-position alphanumeric display for real-time status updates and error reporting. Dedicated mounting interface for installation directly onto the SDCC drive control board via standoffs. Includes sockets for U6 and U7 EPROMs (typically shipped empty; requires software transfer or specific configuration). Features KPPL connector for localized operator keyboard interfacing. Configurable jumper settings for RS-422 DLAN driver modification and DLAN circuit isolation. Equipped with a protective PCB coating to enhance resistance to environmental wear. ApplicationsThe DS200SLCCG1AFG is designed for use within the GE Mark V Speedtronic control system, primarily serving gas and steam turbine control applications in power plants, industrial energy facilities, and utility-scale generation systems.Technical Specifications Model DS200SLCCG1AFG Brand GE Fanuc Series Mark V Speedtronic Module Type LAN Communication Card Display Type 16-character Alphanumeric Mounting Standoff mount to SDCC board Operating Temperature 0 to 60 deg Celsius Storage Temperature -40 to 85 deg Celsius Installation Guidelines Ensure the system is fully powered down before attempting to install or remove the module. Use proper ESD (Electrostatic Discharge) protection when handling the board to prevent damage to sensitive internal components. Mount the board securely to the SDCC control board using the provided standoff points. Ensure the four protective posts (ST1-ST4) are correctly positioned to shield the alphanumeric display glass. Verify jumper configurations (such as J19 for crystal logic) match the specific requirements of the control cabinet architecture before commissioning. FAQDoes this board come with pre-installed firmware?No, the U6 and U7 EPROM sockets are typically shipped empty. Users must transfer existing software from their previous module or obtain the appropriate firmware configuration for their specific turbine application.Is this module compatible with all Mark V systems?This module is designed for Group 1 Mark V systems and is backwards compatible with earlier revisions of the SLCC board. Always verify your specific system revision requirements before installation.

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  • Sale -50% General Electric IC600LX624 General Electric IC600LX624

    General Electric General Electric IC600LX624 Series Six Memory Module

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    DescriptionThe General Electric IC600LX624 is a memory module designed for the GE Series Six programmable logic controller (PLC) system. This module provides essential memory capacity for logic and register storage, ensuring the reliable execution of control programs in industrial automation environments. It is often associated with the IC600FP608K and IC600LX624L component identifiers within the Series Six architecture.Features Designed specifically for GE Series Six PLC systems. Provides 16K of logic memory capacity. Provides 8K of register memory for data storage. Robust construction suitable for industrial control cabinet mounting. ApplicationsThis memory module is utilized in legacy GE Series Six PLC systems, commonly found in manufacturing, power generation, and process control industries where reliable, high-capacity memory is required for complex logic sequences and data logging.Technical Specifications Product Model IC600LX624 (IC600FP608K / IC600LX624L) Manufacturer General Electric Product Type Memory Module Logic Capacity 16K Register Capacity 8K System Compatibility Series Six Tariff Code 8537101190 Installation Guidelines Ensure the PLC system power is completely disconnected before attempting to install or remove the memory module. Handle the module by the edges to prevent electrostatic discharge (ESD) damage to the internal components. Ensure the module is firmly seated in the designated Series Six backplane slot to maintain proper electrical contact. Verify that the module is correctly aligned with the chassis guides before applying pressure. Maintain a clean, dry, and vibration-free environment within the control cabinet to ensure long-term operational stability. FAQWhat is the primary function of the IC600LX624 module?The IC600LX624 serves as a memory expansion or replacement module for the GE Series Six PLC, providing 16K of logic memory and 8K of register memory to support control program execution.Is this module compatible with other GE PLC series?No, this module is specifically engineered for the GE Series Six architecture and is not cross-compatible with newer GE Fanuc or Emerson PLC platforms.

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  • Sale -50%Last stock! General Electric IC660BBR100 General Electric IC660BBR100

    General Electric General Electric IC660BBR100 Genius I/O Relay Output Block

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    DescriptionThe GE Fanuc IC660BBR100 is a 16-point Relay Output Block belonging to the Genius I/O product series. This module is designed to provide reliable discrete output control in industrial automation environments, facilitating the interface between a controller and field devices. The unit features a robust design capable of handling both AC and DC voltage applications, offering flexibility for various control system architectures.Features 16 isolated relay outputs configured in 4 groups of 4 outputs each. Normally Closed (NC) output contact configuration. Supports CPU redundancy for high-availability control applications. Compatible with the Genius I/O communication network. Designed for industrial environments requiring reliable switching of field loads. Technical Specifications Manufacturer General Electric (GE Fanuc) Series Genius I/O Part Number IC660BBR100 Product Type Relay Output Block Number of Outputs 16 Output Configuration 4 Groups of 4 Outputs Output Voltage Type AC or DC Power Requirements 87 mA at 115 VAC Redundancy Supported Installation Guidelines Ensure the control system is powered down before installing or removing the module from the I/O rack. Mount the block in a location that allows for adequate ventilation to prevent overheating during operation. Use appropriate shielded cabling for communication and I/O connections to minimize electromagnetic interference (EMI). Verify that all field wiring is properly secured to the terminal blocks and that the voltage ratings of the connected loads do not exceed the relay specifications. Follow standard ESD (Electrostatic Discharge) precautions when handling the module to prevent damage to internal circuitry. FAQWhat is the primary function of the IC660BBR100?The IC660BBR100 is a Genius I/O relay output block used to interface a PLC or controller with field devices, providing 16 discrete outputs for control operations.Does this module support AC and DC loads?Yes, the IC660BBR100 is designed to handle both AC and DC voltage types for its relay outputs, providing versatility in industrial control applications.Is this module compatible with redundant CPU systems?Yes, the IC660BBR100 supports CPU redundancy, making it suitable for critical control processes where system uptime is essential.

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  • Sale -50% GE Multilin F650BABF1G0HIC Feeder Protection Relay GE Multilin F650BABF1G0HIC Feeder Protection Relay

    General Electric GE Multilin F650BABF1G0HIC Feeder Protection Relay

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    GE Multilin F650BABF1G0HIC Feeder Protection Relay Configured for feeder protection, control, and bay-level monitoring in substation automation systems, the GE Multilin F650BABF1G0HIC (F650 Feeder Protection Relay) provides direct physical and electrical execution of protection logic, measurement processing, and communication functions within GE Multilin F650 series platforms. Hardware Specifications Parameter Specification Model F650BABF1G0HIC Brand GE Multilin Origin GE Grid Solutions Operating Temp -40 deg C to +70 deg C Power Consumption Not specified in available technical data Device Type Digital Feeder Protection Relay / Bay Controller Mounting Type Rack/panel mounting chassis Current Inputs 1 A / 5 A field selectable Voltage Input Rating Up to 300 V AC nominal System Frequency 50 Hz / 60 Hz Protection Functions 50P, 51P, 50G, 51G, 67P, 67N, 27, 59, 81O/U, 49, 79, 50BF Communication Interfaces RS232, redundant RS485, 10/100 Base-TX RJ45 Ethernet Communication Protocols DNP3.0 Level 2, Modbus RTU, Modbus TCP, IEC 60870-5-103, IEC 61850 optional/model dependent Front Protection Rating IP54 Profinet / EtherNet Deterministic Networks and Industrial Control Integration The GE Multilin F650 platform applies industrial communication architecture for feeder data acquisition and substation automation integration. The F650BABF1G0HIC supports Ethernet and serial communication channels for deterministic data exchange with SCADA and DCS systems. The processing hardware executes programmable FlexLogic equations for interlocking, control schemes, and automated switching sequences. The relay architecture supports firmware-managed configuration compatibility, allowing protection settings, logic equations, and communication parameters to be maintained within the defined F650 hardware environment. Digital I/O expansion and high-density signal processing allow scaling of feeder monitoring functions according to application requirements. Frequently Asked Questions (FAQ) Q: What communication interfaces are available on the F650BABF1G0HIC?A: The unit provides front RS232 configuration access, rear redundant RS485 serial communication, and rear 10/100 Base-TX RJ45 Ethernet communication interfaces. Q: Does the F650BABF1G0HIC support programmable control logic?A: Yes. The relay includes FlexLogic programmable equations for custom interlocking, control sequences, and protection scheme operations. Q: What type of protection elements are executed by this relay hardware?A: The relay executes feeder protection functions including phase and ground overcurrent, directional overcurrent, voltage protection, frequency protection, thermal protection, autoreclose, and breaker failure functions. Field Installation Guidelines Install the F650BABF1G0HIC in a suitable rack or panel mounting location with appropriate mechanical support and environmental protection. Current transformer and voltage transformer wiring should follow protection relay installation practices, including correct polarity verification, separation of measurement circuits from high-noise power cables, and secure terminal connections. Communication cable routing should maintain separation from high-voltage switching conductors. Shielded communication cables should be terminated according to site grounding practices to reduce electromagnetic interference. Before energizing the relay, verify auxiliary power wiring, CT/VT input connections, digital I/O termination, communication addressing, and protection setting parameters. Firmware and configuration files should match the installed hardware revision.

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  • Sale -50% GE Multilin F650BFBF1G0HICE Feeder Protection Relay GE Multilin F650BFBF1G0HICE Feeder Protection Relay

    General Electric GE Multilin F650BFBF1G0HICE Feeder Protection Relay

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    GE Multilin F650BFBF1G0HICE Feeder Protection Relay The GE Multilin F650BFBF1G0HICE, also cataloged as the F650 Feeder Protection Relay, operates as a dedicated hardware component for feeder protection, breaker control, and electrical measurement execution within GE Multilin 650 series protection networks. Hardware Specifications Parameter Specification Model F650BFBF1G0HICE Brand GE Multilin Origin GE Multilin 650 Series Power Consumption 25 VA nominal, 45 VA maximum Product Type Feeder Protection Relay Auxiliary Power Supply 110-250 V DC / 120-230 V AC high range supply Current Inputs Universal CT inputs, 1 A / 5 A nominal Voltage Inputs AC voltage inputs, 275 V AC maximum nominal input Digital Inputs 16 configurable digital inputs Relay Outputs 8 programmable output relays Ethernet Communication 10/100 Base-TX Ethernet Communication Protocols IEC 61850 Edition 2, Modbus RTU/TCP, DNP3, IEC 60870-5-104 Display Interface 4 lines x 20 characters alphanumeric display PCB Protection Harsh environment conformal coating Front Interface Enhanced display with front USB / serial configuration port Holdup Time Greater than 100 ms typical after supply loss GE Multilin Feeder Protection and IEC 61850 Communication Features The F650BFBF1G0HICE integrates feeder protection logic, bay control functions, and communication processing within the GE Multilin 650 platform. The relay supports deterministic protection processing for ANSI functions including 50/51 phase overcurrent, 50N/51N ground overcurrent, 67/67N directional overcurrent, 27/59 voltage protection, 81 frequency protection, 50BF breaker failure, and 79 autoreclose control. The integrated logic engine supports IEC 61131-3 programmable control functions for interlocking, transfer schemes, load shedding, and breaker control sequences. Communication functions include IEC 61850 Edition 2, Modbus RTU/TCP, DNP3, and IEC 60870-5-104 protocol operation through the configured communication interfaces. Frequently Asked Questions (FAQ) Q: Does the F650BFBF1G0HICE support hot-swap replacement during energized operation?A: The available documentation does not specify hot-swap capability. Replacement should follow standard protection relay isolation procedures with auxiliary supply and field wiring disconnected before removal. Q: What is the digital input and output hardware capacity of this configuration?A: The configuration includes 16 configurable digital inputs and 8 programmable relay outputs. Input filtering and output assignment are configured through the relay settings. Q: Which communication interfaces are supported by this model configuration?A: This model supports IEC 61850 Edition 2, Modbus RTU/TCP, DNP3, and IEC 60870-5-104 communication protocols through its configured Ethernet and serial interfaces. Field Installation Guidelines Install the relay in a suitable protection panel enclosure with controlled grounding, ventilation, and access clearance according to the installation requirements of the GE Multilin 650 series. Terminate CT and VT wiring using dedicated protection terminal blocks. Maintain separation between low-level communication wiring and high-energy current or voltage circuits to reduce electromagnetic interference. Connect the protective earth terminal using an appropriate grounding conductor. Apply shield grounding practices for communication cables according to the selected protocol installation standard. Verify auxiliary supply polarity and voltage range before energization. The HI power supply option accepts 110-250 V DC and 120-230 V AC input ranges within the specified operating limits. Perform secondary injection testing after installation to verify protection elements, trip outputs, breaker control logic, and communication data exchange.

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  • Sale -50% GE Multilin F650BFBF1G0HIC F650 Feeder Protection Relay GE Multilin F650BFBF1G0HIC F650 Feeder Protection Relay

    General Electric GE Multilin F650BFBF1G0HIC F650 Feeder Protection Relay

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    GE Multilin F650BFBF1G0HIC F650 Feeder Protection Relay The GE Multilin F650BFBF1G0HIC, also cataloged as the F650 Feeder Protection Relay, operates as a dedicated hardware component for feeder protection, bay control, and electrical fault monitoring within IEC 61850 substation automation networks. Hardware Specifications Parameter Specification Model F650BFBF1G0HIC Brand GE Multilin Product Type Feeder Protection Relay Series Multilin F650 Feeder Protection System Mounting Type Panel Mount / Standard 19-inch Rack Mount Rated Frequency 50 / 60 Hz selectable CT Inputs 1 A / 5 A phase CT inputs, neutral CT input VT Inputs 50 V - 240 V AC phase-to-neutral Auxiliary Supply 110-250 V DC / 110-230 V AC high range Communication Protocols IEC 61850, Modbus RTU / TCP, DNP3.0, IEC 60870-5-103/104 Communication Interfaces RS485, rear Ethernet RJ45 / fiber optic, front USB / RS232 Display Interface Backlit graphical display with keypad and LED indicators Protection Functions 50/51, 50N/51N, 50G/51G, 67/67N, 27, 59, 81U, 81O, 81R, 49, 46, 50BF Control Functions Circuit breaker open/close, autoreclose, synchronism check, programmable logic Monitoring Functions Metering, SOE records, fault records, waveform capture Industrial Control Network Communication and Firmware Compatibility The GE Multilin F650 platform uses industrial communication interfaces for substation automation and protection system integration. The relay supports IEC 61850 Ethernet communication, Modbus RTU/TCP, DNP3.0, and IEC 60870-5-103/104 protocols for data exchange with protection, SCADA, and control systems. The F650 series architecture supports programmable logic execution, bay control functions, and firmware-based configuration management. Engineering verification should include communication mapping, firmware compatibility, and application configuration validation before integration into existing protection networks. Frequently Asked Questions Q: What electrical measurement inputs are available on the F650BFBF1G0HIC?A: The relay accepts phase current transformer inputs rated for 1 A or 5 A secondary signals, neutral current input, and voltage transformer inputs from 50 V to 240 V AC phase-to-neutral. Q: Which communication interfaces are supported by this relay model?A: The F650BFBF1G0HIC supports RS485, rear Ethernet interfaces with RJ45 or fiber optic options, and front USB/RS232 connection interfaces. Q: Does the relay provide breaker control and protection logic functions?A: Yes. The unit provides circuit breaker open/close control, autoreclose functions, breaker failure protection, synchronism check, and programmable logic equations. Field Installation Guidelines Install the relay in a protected panel or standard rack enclosure according to the mechanical mounting requirements of the installation site. Terminate CT and VT wiring using appropriate protection relay wiring practices. Maintain separation between instrument transformer circuits, communication cables, and high-energy power conductors to reduce electromagnetic interference. Connect communication cable shields according to the site grounding design. Verify Ethernet, RS485, and serial communication wiring polarity before energizing the device. Before commissioning, confirm auxiliary power voltage compatibility, verify CT polarity and phase sequence, test protection settings, and validate breaker control circuits through functional testing.

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  • Sale -50% GE Multilin 750-P5-G1-S5-HI-A20-R-E-H Feeder Management Relay GE Multilin 750-P5-G1-S5-HI-A20-R-E-H Feeder Management Relay

    General Electric GE Multilin 750-P5-G1-S5-HI-A20-R-E-H Feeder Management Relay

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    GE Multilin 750-P5-G1-S5-HI-A20-R-E-H Feeder Management Relay The GE Multilin 750-P5-G1-S5-HI-A20-R-E-H, also cataloged as the 750 Feeder Management Relay, operates as a dedicated hardware component for feeder protection, current measurement, breaker control, and monitoring within GE Multilin 750/760 Protection System platforms. Hardware Specifications Parameter Specification Model 750-P5-G1-S5-HI-A20-R-E-H Brand GE Multilin Origin GE Multilin 750/760 Protection System Series Weight 14.00 lbs Operating Temp -40 deg C to +60 deg C Power Consumption Not specified in available technical data Device Type Feeder Management Relay Control Power Supply 88-300 VDC or 70-265 VAC, 48-62 Hz Phase Current Input 5 A CT secondary Ground Current Input 5 A CT secondary zero-sequence input Sensitive Ground Input 5 A CT secondary Analog Outputs Eight assignable 4-20 mA DC outputs Display Interface Enhanced 40-character (2 x 20) backlit LCD with keypad navigation Communication Interfaces RS232, RS422/RS485, Ethernet Communication Protocols Modbus RTU, Modbus TCP/IP, DNP 3.0 Enclosure Type Draw-out chassis with conformal coating option Industrial Control and Protection Integration The GE Multilin 750 series relay incorporates feeder monitoring functions through configurable current inputs, analog outputs, and digital communication interfaces. The 750-P5-G1-S5-HI-A20-R-E-H configuration supports 5 A phase current measurement, 5 A ground current sensing, and 5 A sensitive ground measurement channels for feeder protection schemes. The relay configuration supports SCADA and DCS data acquisition through Modbus RTU, Modbus TCP/IP, and DNP 3.0 communication protocols. The A20 option provides eight assignable 4-20 mA outputs for analog signal transmission to external monitoring systems. The relay hardware supports deterministic network communication requirements through Ethernet and serial communication ports. Firmware flash compatibility and configuration management are performed through the GE Multilin relay engineering environment for installed protection system maintenance. Frequently Asked Questions Q: What current input configuration is provided by the 750-P5-G1-S5-HI-A20-R-E-H model?A: The relay provides 5 A phase current inputs, 5 A ground current input, and 5 A sensitive ground current input according to the ordering configuration. Q: Does the relay support hot-swap replacement during feeder operation?A: The unit uses a draw-out chassis design. Removal or insertion procedures must follow site protection maintenance procedures and verify isolation conditions before servicing. Q: Which communication interfaces are available for system integration?A: The relay provides front RS232, RS422/RS485, and Ethernet communication interfaces supporting Modbus RTU, Modbus TCP/IP, and DNP 3.0 protocols. Field Installation Guidelines Install the relay in a compatible protection panel or control cabinet with correct mechanical support for the draw-out chassis. Verify CT secondary wiring polarity and terminal connections before energizing current inputs. Maintain separation between CT wiring, control power wiring, and communication cables to reduce electromagnetic interference. Apply cable shielding and grounding practices according to site electrical installation standards. Confirm the control power supply range before connection: 88-300 VDC or 70-265 VAC at 48-62 Hz. Check communication wiring termination for RS422/RS485 networks before commissioning. Verify analog output loop wiring for correct polarity when connecting 4-20 mA channels to SCADA or DCS equipment. Ensure conformal-coated units are installed according to environmental requirements for moisture and chemical exposure conditions.

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  • Sale -50% GE Multilin 750-P1-G1-S1-HI-A20-R Feeder Management Relay GE Multilin 750-P1-G1-S1-HI-A20-R Feeder Management Relay

    General Electric GE Multilin 750-P1-G1-S1-HI-A20-R Feeder Management Relay

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    GE Multilin 750-P1-G1-S1-HI-A20-R Feeder Management Relay The GE Multilin 750-P1-G1-S1-HI-A20-R, also cataloged as the 750-P1-G1-S1-HI-A20-R Feeder Management Relay, operates as a dedicated hardware component for feeder protection, current monitoring, and control execution within GE Multilin 750/760 feeder management platforms. Hardware Specifications Parameter Specification Model 750-P1-G1-S1-HI-A20-R Brand GE Multilin Origin General Electric Multilin Weight 4.8 kg Dimensions 17.8 cm x 22.9 cm x 17.8 cm Operating Temp -40 deg C to +60 deg C Power Consumption 15 W / 35 VA nominal, 25 W / 45 VA maximum Protection Inputs 1 A phase CT inputs, 1 A ground CT inputs, 1 A sensitive ground input Control Power 88-300 VDC or 88-265 VAC, 45-66 Hz Analog Outputs Eight configurable 4-20 mA DC analog outputs Communications RS232 front port, RS485 rear ports, Modbus RTU support Construction Full drawout relay case for rack mounting or panel installation Frequency Tracking Automatic tracking from 20.0 Hz to 65.0 Hz Deterministic Network and Firmware Compatibility The GE Multilin 750-P1-G1-S1-HI-A20-R uses a microprocessor-based relay architecture with digital signal processing and programmable FlexLogic execution. The firmware environment supports configurable protection logic, event processing, waveform capture, and communication parameter management. The relay integrates industrial control functions through RS232 and RS485 communication interfaces. Modbus RTU communication enables integration with supervisory systems for parameter access, metering retrieval, and relay status monitoring. The drawout construction supports controlled module replacement without disturbing fixed field wiring. The hardware platform provides configurable I/O density scaling through eight 4-20 mA analog outputs assigned to measured electrical quantities including current, voltage, power, and frequency parameters. Frequently Asked Questions Q: Does the 750-P1-G1-S1-HI-A20-R support hot-swap module replacement?A: The relay uses a drawout case design intended for maintenance access and module removal. Field replacement procedures must follow the applicable GE Multilin installation manual and system isolation requirements. Q: What CT input ratings are supported by this relay configuration?A: This model configuration uses 1 A secondary phase current inputs, 1 A ground current inputs, and a 1 A sensitive ground input. Q: Which communication ports are available for system integration?A: The relay provides a front RS232 setup port and rear RS485 communication ports supporting Modbus RTU protocol. Field Installation Guidelines Install the relay in a suitable protective enclosure with sufficient clearance for the drawout mechanism and rear terminal access. Connect CT secondary wiring using dedicated twisted pairs and maintain correct polarity between current transformers and relay terminals. Apply shielded communication cables for RS232 and RS485 connections where required by site electromagnetic compatibility practices. Connect cable shields according to the equipment grounding design to minimize induced noise on measurement and communication circuits. Separate low-level analog signal wiring from high-voltage power conductors to reduce electromagnetic interference. Verify control power voltage range before energizing the relay. Confirm protection settings, CT ratios, output assignments, and communication parameters before placing the feeder protection system into service.

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  • Sale -50% GE Multilin T60N00HUHF8LH6TM8NP6CU6CWXX Transformer Protection Relay GE Multilin T60N00HUHF8LH6TM8NP6CU6CWXX Transformer Protection Relay

    General Electric GE Multilin T60N00HUHF8LH6TM8NP6CU6CWXX Transformer Protection Relay

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    GE Multilin T60N00HUHF8LH6TM8NP6CU6CWXX Transformer Protection Relay Configured for transformer differential protection and substation automation in GE UR (Universal Relay) platforms, the GE Multilin T60N00HUHF8LH6TM8NP6CU6CWXX (T60 Transformer Protection Relay) provides direct physical and electrical execution for transformer fault detection, control, and monitoring functions. Hardware Specifications Parameter Specification Model T60N00HUHF8LH6TM8NP6CU6CWXX Brand GE Multilin Origin GE UR (Universal Relay) Series Operating Temp -40 deg C to +60 deg C Power Consumption Not specified in provided data Protection Function Transformer differential protection, overcurrent protection, thermal overload, overexcitation protection CPU Module N00 Standard CPU/Processor Module Power Supply 88-300 VDC / 88-264 VAC high range power supply CT Inputs 1 A or 5 A secondary current inputs VT Inputs Configurable voltage inputs up to 240 V AC nominal Digital Inputs Opto-isolated configurable inputs Relay Outputs Form-C heavy-duty output contacts Communication Interfaces Dual 100Base-FX fiber optic / 10/100Base-T Ethernet, RS485, RS232 Communication Protocols IEC 61850 Edition 1 and Edition 2, DNP 3.0, Modbus RTU, Modbus TCP, IEC 60870-5-104 Time Synchronization IRIG-B, IEEE 1588 PTP, SNTP/NTP GE UR Series Industrial Control and Communication Features The T60N00HUHF8LH6TM8NP6CU6CWXX uses the GE UR (Universal Relay) platform architecture with configurable I/O modules, Ethernet communication interfaces, and firmware-based protection logic. The relay supports deterministic substation communication through IEC 61850 networks and provides data exchange through fiber optic and copper Ethernet interfaces. The modular design allows I/O density scaling through configurable CT, VT, digital input, and relay output modules. Firmware flash compatibility enables controlled software maintenance procedures while retaining configured protection and communication parameters. The relay incorporates transformer protection algorithms including 87T differential protection with dual-slope restraint characteristics, harmonic restraint for magnetizing inrush conditions, thermal overload modeling based on IEEE C57.91 requirements, and V/Hz overexcitation protection. Frequently Asked Questions (FAQ) Q: Does the T60 support direct transformer differential protection inputs?A: Yes. The T60 supports CT input modules configured for transformer differential applications, including high-current CT input configurations and multi-winding differential protection logic. Q: What communication interfaces are available for substation integration?A: The relay supports dual Ethernet communication using 100Base-FX fiber optic and 10/100Base-T copper interfaces, along with serial communication through RS485 and RS232 ports. Q: Can the relay operate with different auxiliary power sources?A: Yes. The specified high range power supply accepts 88-300 VDC and 88-264 VAC auxiliary power inputs. Field Installation Guidelines Install the relay in a protected control cabinet or relay panel using the specified rack mounting arrangement. Maintain separation between CT/VT wiring, communication cables, and high-energy switching conductors to reduce electromagnetic interference. Connect CT secondary circuits using proper terminal practices and maintain correct polarity for differential protection applications. Apply shielded communication cabling where required and terminate cable shields according to the substation grounding design. Verify auxiliary power polarity, protective earth bonding, and module seating before energizing the unit. Confirm communication settings, time synchronization sources, and protection configuration parameters during commissioning.

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  • Sale -50% GE Multilin 369-HI-R-M-0-P-0-E Motor Protection Relay GE Multilin 369-HI-R-M-0-P-0-E Motor Protection Relay

    General Electric GE Multilin 369-HI-R-M-0-P-0-E Motor Protection Relay

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    GE Multilin 369-HI-R-M-0-P-0-E Motor Protection Relay The GE Multilin 369-HI-R-M-0-P-0-E, also cataloged as the 369 Motor Protection Relay, operates as a dedicated hardware component for three-phase motor protection, thermal monitoring, metering, and diagnostic execution within GE Multilin 369 motor protection systems. Hardware Specifications Parameter Specification Model 369-HI-R-M-0-P-0-E Brand GE Multilin / General Electric Origin United States Operating Temp -40 deg C to +60 deg C Power Consumption Not specified in available documentation Control Power Supply 90-300 VDC / 70-265 VAC, 50/60 Hz Phase Current Inputs 1 A or 5 A secondary CT inputs, field selectable Ground Current Inputs 1 A / 5 A CT or 50:0.025 zero-sequence CT Voltage Inputs Up to 600 VAC direct input or VT ratio configuration Frequency Range 20 to 70 Hz RTD Inputs 12 RTD inputs Protection Functions Thermal overload, phase overcurrent, ground fault, undercurrent, voltage protection, stall and acceleration protection Enclosure Protection NEMA 12 / IP54 front panel Environmental Protection Conformal coated PCB construction GE Multilin 369 Thermal Model and Motor Monitoring Functions The GE Multilin 369 series uses a dynamic thermal model with motor thermal capacity utilization (TCU) calculation for overload protection. The relay processes current imbalance, ambient temperature compensation, and motor operating conditions to calculate thermal stress during startup and running states. The relay supports motor condition evaluation through real-time electrical measurement including voltage, current, frequency, power, energy, and power factor values. Optional metering functions provide additional operational data acquisition for motor load analysis. The protection logic includes instantaneous and timed phase overcurrent elements, sensitive ground fault detection through residual or core balance CT connections, undercurrent monitoring for loss-of-load conditions, and stall protection for locked rotor or mechanical jam conditions. Frequently Asked Questions Q: Does the 369-HI-R-M-0-P-0-E support remote display operation?A: Yes. The R suffix indicates a remote display configuration with enhanced faceplate interface and keypad functionality. Q: What current transformer inputs are supported by this relay?A: The relay accepts field-selectable 1 A or 5 A secondary phase CT inputs and supports ground CT configurations including zero-sequence CT connections. Q: Can the relay communicate through industrial protocols?A: The 369 platform supports optional communication interfaces, including PROFIBUS-DP protocol options depending on installed configuration. Field Installation Guidelines Install the relay in a compatible protective relay enclosure with suitable ventilation and environmental control. Verify control power polarity and voltage range before energizing the unit. Terminate CT wiring according to protection relay installation practices. Maintain proper polarity between current transformers and relay input terminals. Use shielded wiring for low-level measurement and communication circuits, with cable shields grounded according to site grounding procedures. Separate power conductors from signal wiring to reduce electrical noise coupling. Verify RTD wiring continuity and sensor identification before commissioning. Confirm relay configuration parameters, motor ratings, CT ratios, and protection thresholds before placing the motor circuit into service.

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  • Sale -50% GE Multilin 750-P5-G1-S1-HI-A20-R Feeder Management Relay GE Multilin 750-P5-G1-S1-HI-A20-R Feeder Management Relay

    General Electric GE Multilin 750-P5-G1-S1-HI-A20-R Feeder Management Relay

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    GE Multilin 750-P5-G1-S1-HI-A20-R Feeder Management Relay The GE Multilin 750-P5-G1-S1-HI-A20-R, also cataloged as the 750 Feeder Management Relay, operates as a dedicated hardware component for feeder protection, measurement, breaker control, and electrical fault analysis within GE Multilin distribution protection systems. Hardware Specifications Parameter Specification Model 750-P5-G1-S1-HI-A20-R Brand GE Multilin Weight 8.5 kg Dimensions 18 cm W x 16.5 cm L x 21.5 cm H Operating Temp -40 deg C to +60 deg C Power Consumption Typical < 15 W, Maximum 35 W Control Power Supply 90-265 VAC, 48-62 Hz / 105-300 VDC Phase CT Input 5 A secondary Ground CT Input 1 A secondary Sensitive Ground Input 1 A secondary Frequency Range 25 to 60 Hz nominal Digital Inputs Up to 12 configurable dry contact inputs Output Relays Up to 8 configurable output relays Analog Inputs 8 DC current inputs, selectable 0-1 mA, 0-20 mA, 4-20 mA Analog Outputs 2 channels, 4-20 mA configurable Communication Interface Dual RS485 Modbus RTU ports, RS232 front port Communication Baud Rate 300 to 19200 baud Display Interface 40-character backlit LCD with LEDs and keypad Enclosure Rating IP54 front panel Mounting Type 19-inch rack mount or panel cutout draw-out case Profinet / EtherNet-IP Network and Firmware Compatibility The GE Multilin 750-P5-G1-S1-HI-A20-R integrates programmable protection logic, digital processing, and communication functions within a modular feeder relay platform. The relay executes FlexLogic control sequences for breaker operation, interlocking, alarm processing, and automation functions. The device supports deterministic protection system communication through dual redundant RS485 interfaces using Modbus RTU protocol. Internal firmware management maintains compatibility between protection logic execution, metering functions, event recording, and configuration software environments. The relay processes waveform capture data including 4 current channels, 3 voltage channels, 14 logic input states, and 8 output relay states for disturbance analysis and system diagnostics. Frequently Asked Questions Q: Does the 750-P5-G1-S1-HI-A20-R support hot-swap replacement of internal modules?A: The relay uses a draw-out case architecture. Module removal and replacement shall follow the manufacturer-defined isolation and de-energization procedures. Live replacement capability is not specified for this model. Q: What communication ports are available for control system integration?A: The relay provides dual redundant RS485 rear communication ports supporting Modbus RTU and an RS232 front port for local configuration and maintenance. Q: What CT input characteristics are provided for protection measurements?A: The unit includes a 5 A phase CT input, 1 A ground CT input, and 1 A sensitive ground input with continuous and short-duration thermal withstand ratings defined by the relay protection specifications. Field Installation Guidelines Install the relay in a suitable panel or rack enclosure with sufficient clearance for wiring access and ventilation. Verify CT polarity, secondary grounding, and terminal identification before energization. Use shielded communication cables for RS485 wiring where required by the installation environment. Connect cable shields according to the site grounding practice to reduce electromagnetic interference. Separate CT circuits, control power wiring, analog signal wiring, and communication cables to minimize coupling between high-energy and low-level signal paths. Confirm control power voltage selection matches the installed HI power supply range before applying auxiliary power. Verify protection settings, input assignments, output logic, and communication parameters during commissioning.

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  • Sale -50% GE Multilin 369-HI-R-M-F-P1-0-E Motor Protection Relay GE Multilin 369-HI-R-M-F-P1-0-E Motor Protection Relay

    General Electric GE Multilin 369-HI-R-M-F-P1-0-E Motor Protection Relay

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    GE Multilin 369-HI-R-M-F-P1-0-E Motor Protection Relay The GE Multilin 369-HI-R-M-F-P1-0-E, also cataloged as the 369 Motor Protection Relay, operates as a dedicated hardware component for motor protection, measurement, and trip control within GE Multilin motor management relay systems. Hardware Specifications Parameter Specification Model GE Multilin 369-HI-R-M-F-P1-0-E Brand GE Multilin Weight 10.00 lbs Operating Temp -40 deg C to +60 deg C Power Consumption 20 W typical, 35 W maximum Power Supply 50-300 VDC / 60-265 VAC, 50/60 Hz Motor Application Three-phase induction and synchronous motor protection Current Inputs 1 A or 5 A secondary phase current inputs Ground Current Input 1 A / 5 A secondary or 50:0.025 core balance CT Voltage Inputs 50 to 240 VAC direct, up to 600 VAC via VT RTD Inputs 12 programmable RTD channels Output Relays 4 output relays Digital Inputs 5 opto-isolated assignable inputs Communication Ports RS232, RS485 Modbus RTU, fiber optic ST port Communication Protocol Modbus RTU, optional Profibus-DPV1 Event Recording Up to 256 events with trip logs and motor history GE Multilin Industrial Control Integration Features The 369-HI-R-M-F-P1-0-E incorporates GE Multilin motor protection functions for current, voltage, thermal, and mechanical condition monitoring. The relay firmware provides ANSI protection elements including 49 thermal overload, 50/51 overcurrent, 37 undercurrent, 46 negative sequence current, 50N/51N ground fault, 66 start supervision, 48/51R stall protection, and 27/59 voltage protection when the metering option is installed. The communication architecture supports deterministic industrial control integration through RS485 Modbus RTU and fiber optic communication using an ST connector. The fiber interface provides electrical isolation from high-noise motor environments. The relay supports firmware flash compatibility for installed feature configurations and maintains recorded operating data including fault reports, trip records, start history, and running hours. Frequently Asked Questions Q: Does the GE Multilin 369-HI-R-M-F-P1-0-E support hot-swap replacement?A: The relay is designed as a panel-mounted motor protection device. Hot-swap operation is not specified. Replacement procedures require verification of control power isolation and field wiring conditions before removal. Q: How are RTD inputs configured on this relay model?A: The P1 option provides 12 programmable RTD inputs supporting 100 ohm Platinum, 120 ohm Nickel, 100 ohm Nickel, and 10 ohm Copper RTD types for motor temperature monitoring. Q: What communication interfaces are available on this configuration?A: This configuration includes RS232 local interface, RS485 Modbus RTU communication, and a fiber optic port with ST connector. Profibus-DPV1 is available as an optional interface. Field Installation Guidelines Install the relay in a protected control enclosure with appropriate clearance for terminal access and communication connections. Verify that current transformer secondary wiring is correctly terminated before energizing the device. Use shielded cables for low-level measurement signals including RTD circuits. Connect cable shields according to site grounding practices to minimize electromagnetic interference from motor feeders and switching equipment. Separate power wiring, CT circuits, voltage sensing conductors, RTD wiring, and communication cables according to industrial control panel routing requirements. Confirm control voltage compatibility before applying the 50-300 VDC or 60-265 VAC supply input. For fiber optic communication, maintain correct ST connector alignment and protect the optical cable from mechanical stress or excessive bending during installation.

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  • Sale -50% GE Multilin 369-HI-R-M-0-0-H-E Motor Protection Relay GE Multilin 369-HI-R-M-0-0-H-E Motor Protection Relay

    General Electric GE Multilin 369-HI-R-M-0-0-H-E Motor Protection Relay

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    GE Multilin 369-HI-R-M-0-0-H-E Motor Protection Relay The GE Multilin 369-HI-R-M-0-0-H-E, also cataloged as the 369 Motor Protection Relay, operates as a dedicated hardware component for AC motor protection, measurement, and control execution within industrial electrical protection networks. Hardware Specifications Parameter Specification Model 369-HI-R-M-0-0-H-E Brand GE Multilin Weight 10.95 lbs Dimensions 29.6 cm H x 10.7 cm W x 20.5 cm L Operating Temp -40 deg C to +60 deg C Power Consumption Nominal 10-15 W, maximum 25 VA Control Power Input 50-300 VDC or 60-265 VAC, 50/60 Hz Protection Functions Thermal overload, jam/stall, undercurrent, phase reversal, current unbalance, ground fault Current Inputs 1 A or 5 A CT selectable Voltage Inputs 50 to 240 VAC nominal RTD Inputs Up to 12 RTD inputs through external module integration Analog Outputs Configurable 4-20 mA or 0-1 mA outputs Digital Inputs Optically isolated programmable inputs Relay Outputs Form-C SPDT contacts, 10 A continuous at 250 VAC / 30 VDC Communication Interfaces Ethernet 10Base-T RJ45, Modbus TCP/IP, RS485 Modbus RTU, front RS232 Industrial Control and Communication Functions The GE Multilin 369-HI-R-M-0-0-H-E integrates motor management functions with PLC and DCS communication systems through Ethernet and serial communication interfaces. The Ethernet option provides Modbus TCP/IP connectivity for supervisory monitoring and control networks. The relay supports deterministic data exchange for motor status, protection events, metering values, and diagnostic records. The firmware architecture supports configuration storage, event recording, waveform capture, and maintenance diagnostics. The hardware platform includes communication ports for integration with engineering software and industrial control systems. Frequently Asked Questions Q: Does the 369-HI-R-M-0-0-H-E support hot-swap replacement?A: The relay is designed as a panel-mounted protection device. Hot-swap operation is not specified. Power isolation and proper shutdown procedures are required before removal or replacement. Q: What communication protocols are available on this model?A: The unit provides Ethernet 10Base-T communication with Modbus TCP/IP, rear RS485 communication with Modbus RTU, and a front RS232 configuration interface. Q: How are motor thermal and fault conditions recorded?A: The relay stores trip records, alarm logs, motor start records, self-test events, and waveform capture data for diagnostic review. Field Installation Guidelines Install the relay in a suitable protective enclosure with wiring separation between power circuits, CT inputs, voltage sensing circuits, and communication cables. Use shielded communication wiring where required by the installation environment. Terminate cable shields according to the control system grounding design to reduce electrical noise coupling. Verify CT polarity, phase sequence, and voltage input wiring before energizing the relay. Confirm control power compatibility with the selected supply range. For harsh environment installations, inspect the conformal coated electronic assembly condition and maintain enclosure protection against moisture, conductive dust, and corrosive contaminants. Maintain appropriate clearance for rear terminal access and ensure terminal connections are mechanically secured before commissioning.

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  • Sale -50% GE Multilin 369-HI-R-M-0-0-0 Motor Management Relay GE Multilin 369-HI-R-M-0-0-0 Motor Management Relay

    General Electric GE Multilin 369-HI-R-M-0-0-0 Motor Management Relay

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    GE Multilin 369-HI-R-M-0-0-0 Motor Management Relay The GE Multilin 369-HI-R-M-0-0-0, also cataloged as the 369 Motor Management Relay, operates as a dedicated hardware component for motor protection, thermal monitoring, and electrical measurement within GE Multilin motor protection platforms. Hardware Specifications Parameter Specification Model 369-HI-R-M-0-0-0 Brand GE Multilin Weight 4.5 kg Dimensions 29.6 cm x 10.7 cm x 20.5 cm Operating Temp -40 deg C to +60 deg C Power Consumption Not specified Device Type Digital Microprocessor-Based Motor Management Relay Control Power 50-300 VDC / 60-265 VAC, 50/60 Hz Current Inputs 1 A or 5 A secondary CT inputs, field configurable Voltage Inputs Up to 280 VAC phase line voltage via metering option RTD Inputs 12 programmable RTD inputs Digital Inputs 6 optically isolated assignable inputs Analog Outputs 4 configurable outputs, 0-1 mA, 0-20 mA, or 4-20 mA Communication Interface RS232 front port and RS485 rear port with Modbus RTU Mounting Type Standard panel mount GE Multilin Motor Thermal and Power Monitoring Functions The 369-HI-R-M-0-0-0 integrates motor protection algorithms with thermal measurement and power metering functions. The 12-channel RTD package provides direct temperature acquisition for stator windings, bearings, and ambient monitoring. The motor thermal model supports ANSI 49 protection behavior, while current and voltage measurement channels provide monitoring of operating electrical conditions. The integrated metering option provides measurement of kW, kVA, kvar, power factor, kWh, frequency, and additional analog output assignment. Analog channels can be configured for process monitoring or connection to external control systems. Frequently Asked Questions Q: Does the 369-HI-R-M-0-0-0 support hot-swap replacement during operation?A: The relay is designed for panel mounting and fixed wiring installation. Hot-swap operation is not specified for this hardware configuration. Q: Which communication protocol is available through the rear communication port?A: The rear RS485 port supports Modbus RTU communication for connection to supervisory or control systems. Q: How are RTD inputs used in the relay application?A: The 12 programmable RTD inputs acquire motor thermal signals from sensors such as platinum, nickel, and copper resistance temperature devices for temperature-based protection functions. Field Installation Guidelines Install the GE Multilin 369-HI-R-M-0-0-0 in a suitable panel enclosure with adequate clearance for wiring access and heat dissipation. Connect CT secondary wiring according to the required phase and ground current measurement configuration. Use shielded cables for low-level analog and communication wiring where required. Terminate cable shields according to site grounding practices to reduce electrical noise coupling. Separate communication, RTD, and analog signal wiring from high-current motor feeder conductors. Verify control power compatibility before energizing the relay. Confirm CT polarity, VT connections, RTD channel assignments, and communication parameters during commissioning. Firmware compatibility should be checked before performing any configuration or maintenance procedure.

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  • Sale -50% GE Multilin 369-HI-R-0-0-0-0-E Motor Protection Relay GE Multilin 369-HI-R-0-0-0-0-E Motor Protection Relay

    General Electric GE Multilin 369-HI-R-0-0-0-0-E Motor Protection Relay

    17 in stock Delivery within 48 hours, pay afterwards  Mid weeks
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    GE Multilin 369-HI-R-0-0-0-0-E Motor Protection Relay Configured for three-phase motor protection, monitoring, and trip control in industrial motor management systems, the GE Multilin 369-HI-R-0-0-0-0-E (369 Motor Protection Relay) provides direct physical/electrical execution. Hardware Specifications Parameter Specification Model 369-HI-R-0-0-0-0-E Brand GE Multilin Origin General Electric Multilin product family Weight 8 lb Dimensions 11 cm W x 30 cm H x 21 cm L Operating Temp -40 deg C to +60 deg C Power Consumption Nominal 10 W, maximum 20 W Product Type Digital Motor Protection Relay Series 369 Motor Management Relay Control Power Supply 50-300 VDC, 60-265 VAC, 48-62 Hz Phase Current Input 1 A and 5 A secondary CT inputs Ground Current Input Frequency 20 to 100 Hz Communication Interface RS485 Modbus RTU RTD Inputs 3-wire RTD inputs for 100 ohm platinum, 100 ohm nickel, 120 ohm nickel, and 10 ohm copper Output Relays 4 configurable relays for trip, auxiliary, and alarm functions Conformal Coating Environmental option E coating for industrial environments Industrial Control and Firmware Compatibility The GE Multilin 369 series uses microprocessor-based processing for motor protection calculations, event recording, metering, and relay control functions. The relay supports RS485 Modbus RTU communication for integration with industrial control networks. The unit provides deterministic relay operation through embedded protection firmware, including thermal overload modeling, phase current analysis, ground fault detection, locked rotor protection, mechanical jam detection, and undercurrent monitoring. Firmware operation supports configuration storage, self-testing routines, and recorded trip information. Frequently Asked Questions Q: Does the 369-HI-R-0-0-0-0-E support hot-swap replacement during operation?A: The relay is designed as a panel-mounted protection device. Replacement procedures require isolation of control power, current inputs, and field wiring before removal. Q: What current transformer inputs are supported by this relay?A: The relay accepts phase current transformer inputs rated for 1 A or 5 A secondary values with software selection. Q: Which communication protocol is available through the rear communication port?A: The relay provides an RS485 serial interface supporting Modbus RTU communication. Field Installation Guidelines Install the relay in a suitable protective enclosure with access for control wiring, CT wiring, communication connections, and operator interface access. Maintain separation between CT signal wiring, digital input wiring, and high voltage conductors to reduce electrical interference. Apply shield grounding practices according to the installation environment and system grounding requirements. Verify CT polarity, phase sequence, and grounding connections before commissioning. Confirm control voltage compatibility with the selected HI power supply range before energizing the relay. RTD wiring should use appropriate three-wire connection methods and avoid routing alongside high-current motor feeder cables. Configure protection parameters according to motor nameplate data and application requirements before placing the relay into service.

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