General Electric (GE) menawarkan rangkaian lengkap produk otomasi industri. Portofolionya meliputi PACSystems RX3i/RX7i, modul Genius I/O, pengontrol Mark VIe, dan sistem PLC. Produk-produk GE menjamin keandalan operasional, otomatisasi yang terukur, dan dukungan jangka panjang untuk aplikasi industri di seluruh dunia.
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DescriptionThe General Electric IC693MDL931 is an 8-point isolated relay output module designed for the Series 90-30 Programmable Logic Controller (PLC) system. This module provides high-flexibility switching for a variety of industrial loads, supporting both AC and DC output voltages. It features 8 isolated relay outputs, configured as 4 normally-closed (NC) and 4 Form C (SPDT) relay circuits, allowing for independent control of diverse field devices such as motor starters, solenoids, and indicators.Features
8-point isolated relay output module for Series 90-30 PLC systems.
Supports 4 normally-closed and 4 Form C relay circuits.
High-voltage capability: 5-30 VDC or 5-250 VAC.
Maximum load capacity of 8 Amps per output (resistive).
Each relay is electrically isolated with a separate common power terminal.
Integrated LED status indicators for each point (top row).
Color-coded red edge on the door insert to signify high-voltage operation.
Technical Specifications
Product Model
IC693MDL931
Outputs per Module
8 isolated outputs
Output Voltage Range
5-30 VDC / 5-250 VAC (50/60 Hz)
Maximum Load
8A resistive per output; 20A max per module
Minimum Load
10 mA
Response Time
15 ms maximum (On/Off)
Isolation
1500V (field to logic); 500V (between groups)
Internal Power Consumption
45mA (5V bus); 100mA (24V relay bus)
Operating Temperature
Standard Series 90-30 environmental ratings
Applications
Packaging and Material Handling: Conveyor coordination and sensor monitoring.
Water and Waste Management: Pump status monitoring and tank level alarms.
Manufacturing: AC signaling for injection molding and mining equipment.
Building Infrastructure: HVAC monitoring and elevator control systems.
Installation Guidelines
Power Down: This module is NOT hot-swappable. Always disconnect backplane power before inserting or removing the module to prevent electrical damage.
Mounting: Compatible with any I/O slot in a 5-slot or 10-slot Series 90-30 or RX3i baseplate.
Wiring: Refer to the wiring diagram located on the inside of the hinged module door. Note that this is a high-voltage module; ensure proper insulation and separation of field wiring.
Fusing: This module does not contain internal fuses. External fusing is required based on the connected load requirements.
Grounding: Ensure the baseplate is properly grounded in accordance with standard industrial PLC installation practices to minimize EMI.
FAQWhat is the IC693MDL931?The GE IC693MDL931 is an 8-point isolated relay output module used in the Series 90-30 PLC family to interface with various field loads.Does this module require external power?Yes, the user must provide the appropriate AC or DC power source for the field devices connected to the relay outputs.Can I swap this module while the PLC is running?No, the IC693MDL931 does not support hot-swapping. The system power must be cycled off during installation or removal.
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Pengiriman dalam waktu 48 jam, bayar setelahnya
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DescriptionThe GE Fanuc IC693APU300H is a high-speed counter (HSC) module designed for the Series 90-30 Programmable Logic Controller (PLC) system. This module is engineered to handle high-frequency pulse inputs, providing precise counting and timing capabilities required for industrial motion control, flow metering, and high-speed production line monitoring.Features
Twelve (12) positive logic input channels for versatile signal acquisition.
Four (4) positive logic output channels for control and signaling.
Supports a wide input signal voltage range from 5 VDC to 30 VDC.
High-speed counting performance with rates up to 200 kHz.
Integrated LED indicators for Board OK and Configuration OK status monitoring.
Galvanic isolation rated at 250 Volts AC for enhanced system protection.
Powered directly from the PLC backplane at 5 VDC.
ApplicationsThis module is typically utilized in industrial automation environments requiring high-speed pulse processing, such as:
Rotary encoder interfacing for position control.
High-speed turbine or flow meter pulse counting.
Batch counting and conveyor speed monitoring.
Synchronization of high-speed manufacturing processes.
Technical Specifications
Model
IC693APU300H
Manufacturer
General Electric (GE Fanuc)
Series
Series 90-30
Input Channels
12 (Positive Logic)
Output Channels
4 (Positive Logic)
Max Count Rate
Up to 200 kHz
Input Voltage
5 VDC, 10-30 VDC
Output Voltage Range
10-30 VDC (at 500 mA) / 4.75-6 VDC (at 20 mA)
Backplane Power
250 mA at 5 VDC
Isolation
250 Volts AC
Installation Guidelines
Ensure the PLC system is powered down before inserting or removing the module from the rack.
Install the module in an appropriate Series 90-30 I/O slot, ensuring the backplane connector is fully seated and the module is secured with the provided mounting screws.
Use shielded cabling for high-speed pulse inputs to minimize electromagnetic interference (EMI).
Maintain proper grounding practices for the PLC chassis to ensure signal integrity and safety.
Ensure the operating environment is within the specified temperature ranges and free from excessive dust or corrosive gases.
FAQWhat is the primary function of the IC693APU300H?The IC693APU300H is a specialized I/O module for the GE Series 90-30 PLC that counts high-frequency pulses from external devices like encoders or sensors and provides high-speed output control based on those counts.Is this module compatible with all Series 90-30 racks?Yes, this module is designed for standard Series 90-30 PLC backplanes. Please ensure your specific CPU and rack configuration support the power requirements of this module.
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DescriptionThe General Electric IC660BBA023 is a thermocouple input module from the Genius I/O product series. This block is designed to interface thermocouple sensors directly with a Genius I/O network, providing reliable data acquisition for industrial temperature monitoring applications. It supports multiple input channels and is engineered for robust performance in demanding plant environments.Features
Six isolated thermocouple input channels.
Compatible with 24/48V DC block power supply.
Integrated status LEDs for Unit OK and I/O Enable monitoring.
High isolation ratings for signal integrity and protection.
Designed for integration within the Genius I/O distributed control architecture.
Technical Specifications
Product Model
IC660BBA023
Module Type
Thermocouple Input Module
Number of Inputs
6
Block Power
24/48 VDC
Voltage Measurement Range
-25 mV to 150 mV
Heat Dissipation
9 Watts
Block to Block Isolation
1500 Volts
Group to Group Isolation
300 Volts
Accuracy
8 Hz
Manufacturer
General Electric
Installation Guidelines
Ensure the power supply is disconnected before installing or removing the module from the I/O network.
Mount the module in a location that allows for adequate ventilation to manage the 9W heat dissipation.
Use shielded thermocouple cabling to minimize electromagnetic interference (EMI) in industrial environments.
Verify that the block power supply matches the 24/48V DC specification before energizing.
Ensure proper grounding of the module chassis to the system common ground to maintain signal integrity.
Handle with care to prevent electrostatic discharge (ESD) damage to the internal circuitry.
FAQWhat type of sensors does the IC660BBA023 support?This module is specifically designed for thermocouple inputs, supporting a voltage measurement range of -25 mV to 150 mV.What do the status LEDs indicate?The module features Unit OK and I/O Enable LEDs, providing immediate visual feedback on the operational status and communication health of the block.Is this module compatible with other Genius I/O blocks?Yes, the IC660BBA023 is part of the Genius I/O series and is designed to communicate over the standard Genius I/O bus alongside other compatible blocks.
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DescriptionThe General Electric IC693BEM331E is a Genius Bus Interface module designed for the Series 90-30 Programmable Logic Controller (PLC) system. This module serves as a communication gateway, allowing the Series 90-30 controller to interface with the Genius I/O bus network. It facilitates robust data exchange between the PLC backplane and remote Genius I/O blocks, supporting complex distributed control architectures.Features
Designed for seamless integration with the GE Series 90-30 PLC backplane.
Provides Genius Bus interface capabilities for distributed I/O management.
Equipped with two diagnostic LEDs (OK and COMM OK) for real-time status monitoring.
Supports up to 31 I/O devices on the Genius bus.
Maximum data throughput capacity of 128 bytes.
Compact module design with an IP20 ingress protection rating.
Technical Specifications
Product Model
IC693BEM331E
Series
Series 90-30
Module Type
Genius Bus Interface
Power Supply
5V DC (sourced from backplane)
Current Consumption
<300mA at 5V DC
Max I/O Devices
31
Max Data Rate
128 bytes
IP Rating
IP20
Installation Guidelines
Ensure the PLC rack power is disconnected before installing or removing the module to prevent electrical damage.
Slide the module into the designated slot on the Series 90-30 backplane and secure it using the integrated mounting screws.
Ensure proper grounding of the PLC rack to minimize electromagnetic interference (EMI).
Verify that the Genius bus cabling is routed away from high-voltage lines or sources of electrical noise.
Check the status LEDs after power-up to confirm the module is communicating correctly with the bus.
FAQWhat is the primary function of the IC693BEM331E?This module acts as a Genius Bus Controller, enabling a Series 90-30 PLC to communicate with and control remote Genius I/O blocks across a distributed network.How is the module powered?The module draws its required 5V DC power directly from the Series 90-30 PLC backplane upon which it is mounted.What do the status LEDs indicate?The module features two LEDs: 'OK' indicates the module is functioning correctly, and 'COMM OK' indicates successful communication over the Genius bus network.
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Description
The GE IS200TDBTH2ACD is a Programmable Discrete Input/Output (PDIO) terminal board designed for the GE Mark VIe Speedtronic turbine control system. It functions as the critical physical interface between field-mounted discrete devices and the Mark VIe distributed I/O architecture. This board is engineered for TMR (Triple Modular Redundant) applications, ensuring high reliability in turbine control and protection functions.
Features
Designed for Mark VIe PDIO I/O packs (IS220PDIOH1A/H1B).
Supports 24 group-isolated discrete contact inputs.
Provides 12 Form-C relay outputs for field device control.
Supports external wetting voltages of 24 V DC, 48 V DC, or 125 V DC.
Robust DIN-rail mounting configuration.
Integrated surge and high-frequency noise protection via onboard shield strips.
Applications
Oil & Gas Refineries: Controls compressors and ESD flame/pressure switches in hazardous areas.
Chemical Processing Plants: Manages isolated discrete signals protected against high-frequency interference and surges.
Automotive Manufacturing: Coordinates large-scale robotic assembly lines within the Mark VIe ecosystem.
Electronics & Semiconductor Fabs: Supports automated assembly processes requiring high uptime.
Pharmaceutical Production: Facilitates high-precision processing with safety-critical interlocks.
Technical Specifications
Model
IS200TDBTH2ACD
Discrete Inputs
24 channels (group-isolated)
Relay Outputs
12 Form-C
Input Voltage Range
16–32 V DC
Input Current Limiting
2.5 mA
Relay Contact Rating
Up to 5 A
Operating Temperature
-30 degC to +65 degC (-22 degF to +149 degF)
Installation Guidelines
Mounting: Designed for standard DIN-rail installation within the control cabinet.
Wiring: Each terminal accepts two 3.0 mm² (#12 AWG) wires. Use spade or ring-type lugs, or terminate bare wires directly using the provided captive clamps.
Grounding: Field wiring must be routed near the shield strips located on the left side of the metal base to ensure effective surge and noise suppression.
Handling: Ensure power is disconnected before installing or removing the board or associated I/O packs to prevent electrical damage.
Redundancy: This board is intended for TMR configurations and requires the appropriate number of PDIO packs for correct operation.
FAQ
What is the primary function of the IS200TDBTH2ACD?
It acts as a terminal interface for digital signals (on/off states) between external sensors and the turbine control system, providing 24 group-isolated contact inputs and 12 Form-C relay outputs.
Can it operate with a single I/O pack?
No. The IS200TDBTH2ACD is designed for redundancy and typically requires three PDIO packs for Triple Modular Redundant (TMR) configurations.
What wetting voltages are supported?
The board supports nominal external wetting voltages of 24 V DC, 48 V DC, or 125 V DC.
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DescriptionThe General Electric IC693CHS392E is a 10-slot expansion baseplate designed for the Series 90-30 PLC system. This unit provides the necessary physical mounting and electrical backplane connectivity to extend the I/O capacity of a Series 90-30 control system. It is specifically engineered to house I/O and option modules, allowing for scalable system architecture in industrial automation applications.Features
Provides ten (10) slots for I/O and option modules.
Includes a dedicated slot for a power supply module.
Equipped with a 25-pin D-shell female connector for expansion cable connectivity.
Designed for seamless integration with Series 90-30 PLC backplane communication.
Robust construction suitable for standard industrial panel mounting.
ApplicationsThis expansion baseplate is utilized in GE Series 90-30 PLC systems where additional I/O density is required beyond the capacity of the CPU baseplate. It is commonly found in manufacturing, process control, and machine automation environments where modular I/O expansion is necessary to accommodate increased sensor and actuator counts.Technical Specifications
Model
IC693CHS392E
Series
Series 90-30
Slots
10 I/O Slots
Power Supply Slot
Included
Internal Power Consumption
150 mA at 5 VDC
Expansion Interface
25-pin D-shell female connector
Mounting
Panel Mount
Installation Guidelines
Ensure the power is disconnected from the system before installing or removing any modules from the baseplate.
Mount the baseplate in an indoor environment, ensuring adequate clearance for ventilation and cable routing.
Use appropriate grounding techniques to minimize electromagnetic interference (EMI) and ensure signal integrity.
Secure the baseplate firmly to the panel using the provided mounting holes to prevent vibration-related issues.
When connecting the expansion cable, ensure the 25-pin D-shell connector is fully seated and the locking screws are tightened.
Handle modules with care to prevent electrostatic discharge (ESD) damage to the backplane pins.
FAQDoes this baseplate support a CPU module?No, the IC693CHS392E is an expansion baseplate and does not contain a slot for a CPU. It is intended to be used in conjunction with a CPU-capable baseplate to expand the total I/O count of the system.What is the power requirement for this baseplate?The baseplate consumes 150 mA at 5 VDC from the power supply module installed in the designated power supply slot.
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DescriptionThe General Electric IS230SNAOH2A is a terminal board designed for use within the Mark VIe control system. This component serves as a critical interface for analog output signals, providing reliable connectivity and signal routing for industrial control applications. As a core part of the Mark VIe series, it ensures high-performance signal integrity and system-wide compatibility.Features
Designed for the GE Mark VIe control series
Supports 8 analog output channels
Analog output current range: 0-20 mA
Customer load resistance capacity: Up to 900 Ohms
Utilizes surface mount technology for compact and reliable operation
Operating temperature range: -30 to 65 degC
Technical Specifications
Product Model
IS230SNAOH2A
Spare Model
IS200STAOH2AAA
Number of Channels
8
Output Current
0-20 mA
Max Load Resistance
900 Ohm
Operating Temperature
-30 to 65 degC
Technology
Surface mount
Installation Guidelines
Ensure the control system is powered down before installing or removing the terminal board to prevent electrical damage.
Handle the board using proper ESD (Electrostatic Discharge) protection measures to avoid damaging surface-mounted components.
Ensure the board is securely seated in the designated Mark VIe rack slot to maintain proper electrical contact.
Verify that all field wiring is properly terminated and shielded to minimize EMI/RFI interference.
Maintain adequate ventilation around the control cabinet to ensure the operating temperature remains within the specified -30 to 65 degC range.
FAQWhat is the primary function of the IS230SNAOH2A?The IS230SNAOH2A is a terminal board used in the Mark VIe system to facilitate 8 channels of analog output, typically used for controlling external actuators or process instruments.Is the IS230SNAOH2A compatible with the IS200STAOH2AAA?Yes, the IS200STAOH2AAA is listed as a spare or alternate model for this terminal board.What is the maximum load resistance for this board?The board supports a customer load resistance of up to 900 Ohms.
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DescriptionThe General Electric IC660TBA023 is a terminal assembly designed for the Genius I/O system. This component serves as a critical interface for field wiring, facilitating reliable signal distribution within the Genius I/O architecture. It is engineered to support 24/48 VDC operations and provides robust electrical isolation to ensure signal integrity in industrial environments.Features
Designed for integration with the GE Genius I/O product series
Supports 24/48 VDC power supply configurations
Provides 1500 Volts of electrical isolation for system protection
Compact design optimized for standard industrial panel mounting
Engineered for consistent performance in demanding control environments
Technical Specifications
Product Model
IC660TBA023
Manufacturer
General Electric
Series
Genius I/O
Voltage Rating
24/48 VDC
Isolation
1500 Volts
Power Dissipation
9 Watts
Operating Temperature
0 to 60 degC
Tariff Code
8537101190
Installation Guidelines
Ensure the control system is powered down before installing or removing the terminal assembly to prevent electrical shock or equipment damage.
Mount the unit in a clean, dry environment within an industrial enclosure to protect against dust, moisture, and extreme temperatures.
Maintain proper clearance around the module to allow for adequate heat dissipation and airflow.
Use appropriate wire gauges and ensure all terminal connections are tightened to the manufacturer's specified torque to prevent loose connections or signal degradation.
Follow standard ESD (Electrostatic Discharge) handling procedures when touching internal components or connectors.
Route signal cables away from high-voltage lines and sources of electromagnetic interference (EMI) to maintain signal accuracy.
FAQWhat is the primary function of the IC660TBA023?The IC660TBA023 is a terminal assembly module used within the GE Genius I/O system to facilitate field wiring connections.What is the operating temperature range for this module?This module is designed to operate within a temperature range of 0 to 60 degC.Is this module compatible with other Genius I/O components?Yes, the IC660TBA023 is specifically designed for the Genius I/O series. Please verify your specific system configuration and backplane compatibility before installation.
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DescriptionThe General Electric IC693CHS391H is a 10-slot expansion baseplate designed for the Series 90-30 Programmable Logic Controller (PLC) system. This modular baseplate provides the necessary physical mounting and electrical interconnects for a CPU module and up to nine additional I/O or specialty modules. It is engineered to support robust communication and power distribution across the 90-30 rack architecture.Features
Ten total slots: One dedicated CPU slot and nine slots for I/O or specialty modules.
Modular design: Facilitates easy expansion and maintenance of the PLC rack configuration.
Integrated power distribution: Operates at 5 Volts DC with a current requirement of 420 mA.
Connectivity: Includes a 25-pin female connector for system expansion and communication.
Compatibility: Fully compatible with the GE Fanuc Series 90-30 product ecosystem.
ApplicationsThis expansion baseplate is utilized in industrial automation environments where additional I/O capacity is required beyond the primary CPU rack. It is commonly found in manufacturing, process control, and machine automation systems where the Series 90-30 PLC platform is deployed to manage distributed I/O modules.Technical Specifications
Model Number
IC693CHS391H
Total Slots
10
CPU Slots
1
I/O Slots
9
Voltage
5V DC
Current
420 mA
Connector Type
25-Pin Female
Installation Guidelines
Ensure the power supply is disconnected before installing or removing any modules from the baseplate.
Mount the baseplate securely to a flat, vibration-resistant surface within an industrial enclosure.
Maintain adequate clearance around the baseplate to ensure proper airflow and cooling for the modules.
Handle modules using proper ESD (Electrostatic Discharge) protection practices to prevent damage to internal circuitry.
Verify that all modules are fully seated in their respective slots and that the backplane connectors are aligned correctly.
Route communication cables away from high-voltage power lines to minimize electromagnetic interference (EMI).
FAQWhat is the primary function of the IC693CHS391H baseplate?The IC693CHS391H serves as a mounting and communication interface for a Series 90-30 CPU and up to nine additional I/O or specialty modules, allowing for the expansion of the PLC system.Can this baseplate be used as a standalone rack?Yes, it functions as a standard baseplate in the 90-30 system, providing the necessary backplane bus for the CPU and I/O modules to communicate.What type of connector is used for expansion?The unit features a 25-pin female connector for system expansion purposes.
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DescriptionThe GE IS215VPROH2BC is a critical Turbine Emergency Trip Board designed for the General Electric Mark VI and Mark VIe Speedtronic turbine control systems. This VME-based protection assembly functions as an independent safety layer, providing essential emergency overspeed protection (EOS) and emergency stop functionality for gas, steam, and wind turbines. It operates as a high-speed processor to ensure turbine integrity by monitoring speed signals and executing trip commands.Features
Triple Redundant Architecture: Supports Triple Modular Redundancy (TMR) with independent X, Y, and Z sections for hardware voting and fault tolerance.
Comprehensive Protection: Provides emergency overspeed detection, emergency stop processing, and backup synchronization checking.
Integrated Diagnostics: Continuously monitors relay status, power supplies, terminal board identification, solenoid circuits, thermocouple inputs, and analog signals.
Onboard Power Conversion: Accepts 125 VDC input and internally generates 5 VDC and 28 VDC for electronics and solenoid drivers.
High-Speed Processing: Operates at a frame rate of up to 100 Hz with rapid solenoid response times.
Applications
Power Generation: Prevents catastrophic turbine failure in combined-cycle plants and utility grids.
Oil & Gas: Protects large compressors and pumps driven by industrial gas turbines.
Turbine Safety: Acts as a dedicated safety layer for emergency shutdown (ESD) and overspeed protection.
Technical Specifications
Model
IS215VPROH2BC
Manufacturer
General Electric
Power Supply
125 VDC
Internal Power
5 VDC and 28 VDC
Frame Rate
Up to 100 Hz
MPU Input Sensitivity
Min 27 mV peak at 2 Hz
MPU Frequency Range
2 Hz to 20 kHz
Memory
16 MB DRAM
VME Slot Occupancy
2 Slots
Operating Temp
0 degC to +50 degC
Storage Temp
-40 degC to +70 degC
Installation Guidelines
ESD Precautions: Always use a grounded wrist strap when handling the board to prevent electrostatic discharge damage to sensitive components.
Power Down: Ensure the 125 VDC power source is disconnected from the PDM before inserting or removing the module from the VME rack.
Wiring: Connect the 125 VDC power input to the J7 connector. Use 40-pin ribbon cables for connections to TPRO/TREG terminal boards via front-panel latching connectors (J3-J6).
Environment: Ensure the cabinet provides adequate ventilation to maintain operating temperatures between 0 degC and 50 degC.
Grounding: Verify that the VME rack is properly grounded to the cabinet chassis to minimize EMI and ensure signal integrity.
FAQWhat is the primary function of the IS215VPROH2BC?It acts as the primary Emergency Overspeed (EOS) protection for industrial turbines, monitoring speed and tripping solenoids if dangerous conditions are detected.Does the board support TMR operation?Yes, it supports Triple Modular Redundancy (TMR) architecture, where three independent processors perform hardware voting to improve system availability.Can this board support a second TREG terminal board?No, the H2B variant is designed as a lower-power version that does not support a second TREG terminal board.
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DescriptionThe General Electric IC670GBI102 is a Powered Genius Bus Interface Unit (BIU) belonging to the Field Control series. This module acts as a critical communication node, interfacing Field Control I/O modules to a host GE CPU via the Genius bus network. It is designed to facilitate distributed I/O architecture, allowing for scalable and reliable data exchange in industrial automation environments.Features
Supports primary and secondary daisy-chain configurations for network redundancy.
Selectable transmission speeds ranging from 38.4 Kbaud to 153.6 Kbaud.
Provides 256 bytes each for I/O, AI, and AQ data.
Includes redundant termination resistors (75, 100, 120, and 150 ohm options).
Features a 9-pin D-shell monitor port for Hand-Held Programmer (HHP) connectivity.
Built-in overvoltage protection and inrush current management.
ApplicationsThis module is typically utilized in distributed control systems where remote I/O nodes must communicate with a central controller over a Genius bus. It is commonly found in manufacturing, power generation, and process control applications requiring robust, long-distance communication between the CPU and field-level sensors or actuators.Technical Specifications
Model
IC670GBI102
Input Power
115 VAC / 125 VDC
Power Consumption
48 VA (115 VAC) / 24 W (125 VDC) at full load
Inrush Current
20 A peak (max 3 ms)
Input Frequency
47 to 63 Hz
Transmission Speeds
38.4, 76.8, 153.6 Kbaud (standard/extended)
Operating Temperature
0 degC to 55 degC
Output Voltage (Internal)
6.5 VDC
Holdup Time
20 ms
Installation Guidelines
Environment: Ensure the module is installed in an environment within the 0 to 55 degC temperature range.
Mounting: Designed for standard Field Control rack mounting. Ensure the module is fully seated to maintain proper backplane connection.
Wiring: Use the integrated screw-type terminals for Genius bus wiring. Ensure proper shielding is maintained for the bus cable to prevent EMI interference.
Hot-Swapping: The module supports hot insertion and removal if the specific unit catalog number includes the 'J' suffix. Always verify local safety protocols before performing maintenance on live equipment.
Power-Down: While hot-swapping is supported for specific revisions, it is recommended to power down the specific I/O segment before performing physical installation or removal to prevent electrical arcing or data corruption.
FAQWhat is the IC670GBI102?The GE IC670GBI102 is a Field Control Bus Interface Unit (BIU) designed to act as a node on a Genius I/O network.What is the input power for the IC670GBI102?It is powered by 115 VAC or 125 VDC.How does it differ from the IC670GBI002?The IC670GBI102 uses 115 VAC / 125 VDC power, whereas the IC670GBI002 is designed for 24 VDC power systems.What are the operating temperature ranges?The module is rated for operation between 0 degC (32 degF) and 55 degC (131 degF).
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DescriptionThe General Electric IC660CBB902 is a Genius I/O Bus Controller designed for the Series Six PLC platform. This module serves as a critical interface component, facilitating communication between the PLC CPU and remote Genius I/O blocks. As a Phase B diagnostic-capable unit, it provides enhanced monitoring and error-reporting capabilities for industrial control networks, ensuring reliable data exchange across the distributed I/O architecture.Features
Designed for integration with General Electric Series Six PLC systems.
Supports Genius I/O communication protocols for distributed control.
Integrated diagnostic capabilities (Phase B) for improved system troubleshooting and uptime.
Flexible baud rate settings, allowing for configuration outside of the standard 153.6 Kilobaud rate.
Supports a maximum communication distance of up to 2000 feet (approx. 609 meters).
Compatible with high-capacity Genius I/O blocks supporting over 64 I/O bits.
ApplicationsThis bus controller is typically deployed in large-scale industrial automation environments where remote I/O distribution is required. It is commonly utilized in manufacturing, process control, and material handling systems that rely on the Series Six PLC architecture to manage complex I/O requirements across a facility floor.Technical Specifications
Model
IC660CBB902 (IC660CBB902K)
Manufacturer
General Electric
Product Type
Genius I/O Bus Controller
Max Connection Distance
2000 Feet
Baud Rate
Selectable (excluding 153.6 Kbps standard)
Compatibility
Genius I/O Blocks (>64 I/O bits)
Weight
0.58 kg
Installation Guidelines
Ensure the PLC rack power is disconnected before installing or removing the bus controller module.
Verify that the module is correctly seated in the designated CPU or I/O rack slot to ensure proper backplane connection.
Use shielded communication cabling for the Genius I/O bus to minimize EMI interference, especially over long distances.
Adhere to standard ESD (Electrostatic Discharge) handling procedures when touching the module circuitry.
Ensure proper grounding of the PLC rack to maintain signal integrity across the I/O bus.
FAQIs the GE IC660CBB902 still in production?No, this model has been discontinued by the manufacturer. It is typically sourced through surplus or refurbished industrial inventory channels.What does the Phase B designation mean?The Phase B designation refers to the specific hardware revision of the Genius I/O controller, which includes updated diagnostic features compared to earlier versions, allowing for more detailed status reporting and fault detection.
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DescriptionThe HE693STP104 is a single-axis, intelligent stepper positioning module designed for the GE Fanuc Series 90-30 PLC platform. Often associated with Horner Electric, this module serves as a high-speed motion controller that offloads pulse generation tasks from the main PLC processor. It supports advanced motion profiles, including acceleration and deceleration ramping, and is programmable using ASCII BASIC, allowing for complex motion control strategies.Features
Single-axis stepper motor control.
Supports high-speed pulse output up to 245 kHz.
Integrated RS-232 and RS-485 communication interfaces.
Advanced computational capabilities including floating-point, logarithmic, and trigonometric functions.
Optically isolated switch inputs for enhanced noise immunity.
Compatible with differential or single-ended encoder inputs.
Applications
Automotive manufacturing for robotic positioning and dispensing.
Water treatment facilities for pump and valve flow modulation.
Paper and pulp mills for precise roller speed control.
Chemical and pharmaceutical batch processing.
Technical Specifications
Model
HE693STP104
Manufacturer
General Electric / Horner Electric
Series
90-30
Step Output Frequency
Up to 245 kHz
Encoder Input Frequency
Up to 1.0 MHz
Output Voltage (High)
2.5 VDC
Output Voltage (Low)
0.5 VDC
Operating Temperature
0 to 60 degC
Storage Temperature
-40 to 85 degC
Humidity
5 to 95% RH (non-condensing)
Power Consumption
500 mA at 5 VDC
Installation Guidelines
Power Safety: Always power down the host PLC backplane before inserting or removing the module to prevent electrical damage.
Slot Compatibility: The module can be installed in any I/O slot of a GE Fanuc Series 90-30 PLC (models 311, 321, or 331).
Grounding: The module features optically isolated inputs. The isolated ground for these inputs must be kept separate from the common used for step and direction outputs to prevent ground loops and signal interference.
Wiring: For single-ended drives, ensure the motor output signal state (+/-) matches the drive's input requirements. The emergency stop input requires a normally-closed switch connected to terminal 20.
Configuration: Initial setup is performed using Logicmaster 90 software (version 2.01 or later) or a compatible Hand Held Programmer.
FAQsWhat is the HE693STP104?It is a single-axis, smart, programmable motion control/stepper module designed for the Series 90-30 PLC platform.Which systems is HE693STP104 compatible with?It is designed for the GE Fanuc 90-30 series PLC backplane and is often utilized in systems requiring precise stepper motor control.What are the primary functions of this module?The module processes motion curves, such as acceleration, deceleration, and positioning, enabling the PLC to control stepper motor drivers without directly handling high-speed pulse generation.How is the module configured?Configuration is typically handled via Logicmaster 90 (v2.01 or later) or a standard Hand Held Programmer.
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DescriptionThe 531X111PSHARG1 is a specialized Power Supply and Motor Control Function (MCF) card designed specifically for the GE Speedtronic Mark V control system. This module acts as a critical power distribution node, converting incoming source voltage into the stabilized DC rails required for control electronics and field instrumentation. Engineered for high-reliability environments such as gas turbine control and power generation, the card ensures operational continuity by providing clean, regulated power to the Mark V framework.Features
Designed for seamless integration with the GE Speedtronic Mark V backplane.
Provides stabilized DC voltage rails for control processors and auxiliary I/O modules.
Features hardware enhancements in the ARG1 revision for improved noise immunity and power factor correction.
Supports real-time diagnostic feedback to the central controller for monitoring power health.
Ruggedized PCB construction suitable for demanding industrial utility environments.
ApplicationsThis module is primarily utilized in power generation plants and heavy industrial automation settings. It is a mission-critical component within the Speedtronic Mark V control system, essential for maintaining system integrity and minimizing unplanned downtime in gas turbine control applications.Technical Specifications
Model
531X111PSHARG1
Brand
GE Fanuc
Series
Speedtronic Mark V
Function
MCF / Power Supply Module
Operating Temperature
0 to 60 deg C
Storage Temperature
-40 to 85 deg C
Humidity
5 to 95 percent non-condensing
Cooling
Natural convection or forced air
Installation Guidelines
Ensure the Mark V control system is completely powered down before attempting to insert or remove the module.
Handle the card using ESD-safe practices to prevent damage to sensitive electronic components.
Verify that the card is fully seated in the designated backplane slot to ensure proper electrical contact.
Ensure the cabinet environment is within the specified operating temperature range of 0 to 60 deg C.
Maintain adequate clearance around the module to allow for natural convection cooling as specified.
FAQIs the 531X111PSHARG1 compatible with other Mark V revisions?The ARG1 revision includes specific hardware enhancements for noise immunity and power factor correction. It is designed for use within the Speedtronic Mark V architecture; however, always verify your specific system revision requirements before installation.What is the primary function of this card?This card functions as a power supply and Motor Control Function (MCF) module, responsible for regulating and distributing DC power to the control electronics and instrumentation within the Mark V system.
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DescriptionThe General Electric HE693RTM705 is a Master Communication Module designed for the GE Fanuc Series 90-30 PLC platform. This module serves as a specialized interface for remote terminal unit (RTU) communication, enabling robust data exchange between the PLC system and external serial devices. It is engineered for compatibility with CPU331 processors or higher, providing reliable serial connectivity for industrial automation and control applications.Features
Designed for integration with GE Series 90-30 PLC backplanes.
Supports RS-232 and RS-485 serial communication protocols.
Optimized for RTU (Remote Terminal Unit) master communication tasks.
Standard Series 90-30 module form factor for easy rack mounting.
Low power consumption profile suitable for standard PLC power supplies.
ApplicationsThis module is primarily utilized in industrial environments requiring serial data integration, such as SCADA systems, remote telemetry, and distributed I/O control. It is frequently deployed in water treatment, power distribution, and manufacturing processes where serial-based instrumentation must interface with the Series 90-30 controller.Technical Specifications
Product Model
HE693RTM705
Manufacturer
General Electric
Communication Ports
RS-232 / RS-485
Power Supply
5 VDC
Power Consumption
425 mA @ 5 VDC
Operating Temperature
0 degC to +55 degC
Storage Temperature
-40 degC to +85 degC
Relative Humidity
5 to 95 % RH (non-condensing)
Installation Guidelines
Ensure the PLC rack power is disconnected before installing or removing the module.
Slide the module into the designated slot on the Series 90-30 baseplate until it is firmly seated.
Secure the module using the integrated mounting screws to ensure proper grounding and mechanical stability.
Use shielded communication cables for RS-232/RS-485 connections to minimize electromagnetic interference (EMI).
Route signal cables away from high-voltage power lines and heavy-duty motor starters.
Handle the module using ESD-safe practices to prevent damage to sensitive internal circuitry.
FAQWhat CPU is required for the HE693RTM705?This module is compatible with the GE Series 90-30 CPU331 or larger processor models.Does this module support both RS-232 and RS-485?Yes, the module is designed to support both serial communication standards for versatile field device connectivity.
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GE Multilin MIFPI55E000H00C MIFP Feeder Protection Relay
The GE Multilin MIFPI55E000H00C, also cataloged as the MIFP Feeder Protection Relay, operates as a dedicated hardware component for feeder current protection and fault monitoring within Multilin MIF series power protection systems.
Hardware Specifications
Parameter
Specification
Model
MIFPI55E000H00C
Brand
GE Multilin
Dimensions
Standard MIF series relay case; exact dimensions not specified in available documentation
Operating Temp
-20 deg C to +60 deg C
Power Consumption
< 10 W
Product Type
Feeder Protection Relay
Series
Multilin MIF Series
Application
Feeder, line, and overcurrent protection
Current Inputs
1 A / 5 A configurable phase and ground current inputs
Rated Frequency
50 Hz / 60 Hz
Protection Functions
ANSI 50, 51, 50N, 51N, 37, 46, 86
Communication Ports
RS232 / USB front port, RS485 rear port
Communication Protocols
Modbus RTU, IEC 60870-5-103
Display Interface
Front panel keypad with backlit LCD
Mounting Type
Flush / panel mount
Industrial Control and Protection Integration
The GE Multilin MIFPI55E000H00C applies microprocessor-based numerical processing for phase and ground current evaluation, programmable trip logic execution, and event recording. The relay supports integration into Substation Automation Systems (SAS) and SCADA networks through RS485 serial communication with Modbus RTU or IEC 60870-5-103 protocols.
The MIFP platform incorporates industrial protection functions including instantaneous and time overcurrent elements, neutral earth fault detection, negative sequence current monitoring, and programmable lockout output control. The relay architecture supports firmware-managed configuration, diagnostic monitoring, and fault record storage for maintenance analysis.
Frequently Asked Questions
Q: What current input levels are supported by the MIFPI55E000H00C relay?A: The relay supports configurable phase and ground current inputs rated for 1 A or 5 A secondary current signals depending on the selected configuration.
Q: Does the MIFPI55E000H00C support hot-swap replacement?A: The available documentation does not specify hot-swap capability. Installation and replacement should be performed with the relay isolated from energized circuits according to site procedures.
Q: Which communication interfaces are available for configuration and monitoring?A: The relay provides a front maintenance interface using RS232 / USB and a rear RS485 serial interface supporting Modbus RTU and IEC 60870-5-103 communication.
Field Installation Guidelines
Install the MIFPI55E000H00C in a suitable protective panel enclosure with correct mechanical support and terminal access clearance. Current transformer secondary wiring should maintain proper polarity and separation from control signal wiring to reduce measurement interference.
Use shielded communication cables where required by the installation environment. Cable shields should be terminated according to the grounding practice of the substation protection system. Maintain separation between current input circuits, auxiliary power wiring, and low-level communication lines to minimize electrical noise coupling.
Before energization, verify CT wiring polarity, auxiliary supply voltage range, digital input states, output relay logic configuration, and communication addressing parameters. Confirm protection settings against approved protection coordination documentation before placing the relay into service.
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GE Multilin MIFIIPI11E1RHI00 Digital Feeder Protection Relay
The GE Multilin MIFIIPI11E1RHI00, also cataloged as the MIF II Digital Feeder Protection Relay, operates as a dedicated hardware component for feeder current protection, breaker monitoring, and trip logic execution within GE Multilin MIF II protection platforms.
Hardware Specifications
Parameter
Specification
Model
MIFIIPI11E1RHI00
Brand
GE Multilin
Origin
United States
Dimensions
Compact panel-mount chassis; exact dimensions not specified in available documentation
Operating Temp
Industrial operating range; exact value not specified in available documentation
Product Series
MIF II Series Feeder Protection Relay
Protection Functions
50P/50G instantaneous overcurrent, 51P/51G time overcurrent, 49 thermal overload
Control Power Supply
Universal AC/DC power supply
System Frequency
50/60 Hz
Display Interface
16 x 2 character LCD display with 5-button keypad
Digital Inputs
Programmable contact inputs
Relay Outputs
6 output relays including trip, service, and auxiliary functions
Communication Ports
Isolated RS-232 front port and RS-485 rear port
Communication Protocols
Modbus RTU and IEC 60870-5-103
Event Storage
Up to 32 sequence-of-events records
Fault Records
Last 5 trip records with fault information
Oscillography
Analog and digital waveform capture
Industrial Control Firmware and Communication Functions
The GE Multilin MIFIIPI11E1RHI00 integrates programmable logic, firmware-based protection algorithms, and serial communication functions for feeder control applications. The relay supports deterministic protection execution through embedded processing, with configurable I/O mapping and communication parameters. Firmware flash compatibility allows setting management, diagnostic access, and waveform retrieval through GE EnerVista software.
The relay provides Modbus RTU and IEC 60870-5-103 communication channels through isolated serial interfaces. Programmable inputs and outputs allow integration with breaker control circuits, alarm systems, and station monitoring networks. The internal logic supports automatic recloser functions, cold load pickup handling, and breaker failure detection.
Frequently Asked Questions
Q: Does the MIFIIPI11E1RHI00 support hot-swap replacement during operation?A: The relay is designed as a panel-mounted protection device. Hot-swap replacement capability is not specified in the available documentation. Replacement procedures should follow site isolation and protection maintenance requirements.
Q: What communication interfaces are available for configuration and monitoring?A: The relay provides an isolated RS-232 front communication port for PC connection and an RS-485 rear communication port supporting Modbus RTU and IEC 60870-5-103 protocols.
Q: How are breaker condition functions monitored by the relay?A: The relay includes breaker failure detection logic and I2t wear monitoring functions for evaluating breaker operating conditions through configured protection and control logic.
Field Installation Guidelines
Install the MIFIIPI11E1RHI00 in a suitable panel location with correct mechanical fastening and sufficient clearance for wiring access. Route current transformer inputs, control wiring, and communication cables separately to reduce electrical interference.
Use shielded communication cables where required by the installation environment. Connect cable shields according to the site grounding scheme and avoid parallel routing of low-level communication wiring with high-current conductors.
Verify auxiliary power polarity, input contact wiring, and output relay assignments before energizing the device. Confirm protection settings, communication parameters, and trip logic configuration through the approved engineering software before placing the relay into service.
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GE Multilin MIFIIPI11E10HI00 MIF II Feeder Protection Relay
The GE Multilin MIFIIPI11E10HI00, also cataloged as the MIF II Feeder Protection Relay, operates as a dedicated hardware component for feeder current protection and monitoring within GE Multilin MIF II protection platforms.
Hardware Specifications
Parameter
Specification
Model
MIFIIPI11E10HI00
Brand
GE Multilin
Dimensions
Compact draw-out / panel mount enclosure; dimensions not specified
Series
Multilin MIF II
Product Function
Feeder / Overcurrent Protection Relay
Current Inputs
1 A / 5 A selectable phase current inputs
Auxiliary Power Supply
88-300 VDC / 88-264 VAC
Communication Interface
RS485 serial communication with Modbus RTU protocol
Display Interface
Front panel LCD with LED status indicators and keypad
Mounting Type
Draw-out / panel mount compact case
Protection Functions
Phase overcurrent, earth fault, thermal overload protection
Measurement Capability
RMS phase and neutral current measurement
Event Recording
Time-stamped event and fault current recording
Diagnostics
Continuous hardware and software integrity monitoring
Profinet / EtherNet-IP and Firmware Flash Compatibility
The GE Multilin MIF II platform uses embedded microprocessor-based protection logic with configurable firmware functions for feeder monitoring and protection execution. The MIFIIPI11E10HI00 provides RS485 Modbus RTU communication for SCADA and DCS integration rather than Ethernet-based deterministic industrial networks. Firmware compatibility is managed through the MIF II hardware and software configuration environment, allowing protection parameters, monitoring functions, and relay settings to remain aligned with the installed device configuration.
The relay supports configurable digital inputs and programmable output contacts for electrical control sequences. The selectable 1 A and 5 A CT input configuration allows adaptation to different current transformer secondary ratings in feeder protection circuits.
Frequently Asked Questions (FAQ)
Q: Does the MIFIIPI11E10HI00 support hot-swap replacement?A: The available technical documentation does not specify hot-swap operation. Replacement should follow standard relay isolation procedures, including control power removal and verification of safe electrical conditions before module removal.
Q: What communication protocol is available for system integration?A: The relay provides an RS485 serial interface using Modbus RTU protocol for connection with SCADA and DCS monitoring systems.
Q: What current input ratings are supported by the protection relay?A: The unit supports selectable 1 A and 5 A phase current inputs for connection to compatible CT secondary circuits.
Field Installation Guidelines
Install the relay in a suitable panel enclosure with mechanical support for the draw-out mounting arrangement.
Verify auxiliary power supply wiring before energizing. The HI power supply accepts 88-300 VDC or 88-264 VAC control power ranges.
Use properly shielded communication wiring for the RS485 Modbus RTU interface and terminate the network according to RS485 installation practice.
Separate CT signal wiring from high-current power conductors to reduce electromagnetic interference.
Confirm phase CT polarity and grounding connections before enabling protection functions.
Verify programmable output relay wiring according to the external trip and control circuit requirements.
Perform relay self-diagnostic checks and confirm protection settings after installation.
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GE Multilin G60E00HCLF8FH6PM8FP6CU6CW6C Generator Protection Relay
The GE Multilin G60E00HCLF8FH6PM8FP6CU6CW6C, also cataloged as the G60 Generator Protection Relay, operates as a dedicated hardware component for generator protection signal processing and trip control within the GE Universal Relay (UR) Series platform.
Hardware Specifications
Parameter
Specification
Model
G60E00HCLF8FH6PM8FP6CU6CW6C
Brand
GE Multilin
Dimensions
19 in rack chassis, 19 in W x 8.75 in H x 9.38 in D
Operating Temp
-40 deg C to +60 deg C
Power Consumption
Typically 25-40 W under full operational load
Product Function
Generator protection, control, metering, and monitoring relay
Power Supply
110-250 VDC / 110-230 VAC high range or 24-48 VDC low range
Current Inputs
1 A or 5 A nominal CT inputs
Voltage Inputs
50-240 V AC nominal phase-to-neutral VT inputs
Digital Inputs
Opto-isolated configurable high-speed inputs
Output Relays
High-speed Form-C trip and control relays
Communication Ports
RS485, 100Base-FX fiber Ethernet, 100Base-T copper Ethernet
Communication Protocols
IEC 61850 Ed. 1 and Ed. 2, DNP3.0, Modbus RTU/TCP, IEC 60870-5-104
Time Synchronization
IEEE 1588 PTP, IRIG-B, SNTP
Protection Functions
87G, 87T, 64G, 27TN, 40, 24, 46, 50/51, 21, 78, 32R/32F, 50BF
Ingress Protection
IP40 front panel, IP20 terminal blocks
Industrial Relay Communication and Firmware Features
The GE Multilin G60 uses the Universal Relay (UR) hardware architecture with modular communication and I/O expansion capability. The CPU module supports RS485 communication and redundant Ethernet interfaces for integration with protection networks and station automation systems.
The relay supports IEC 61850 communication services, including Ethernet-based data exchange and time synchronization functions. Firmware flash compatibility allows controlled software maintenance within supported UR platform configurations.
The modular slot structure supports I/O density scaling through CT/VT modules, digital input modules, and output relay modules. Backplane bus communication provides internal data exchange between protection processing, measurement, and interface modules.
Frequently Asked Questions (FAQ)
Q: Does the G60 support hot-swap replacement of hardware modules?A: The G60 uses a modular UR platform, but module replacement procedures must follow GE Multilin installation requirements. Hot-swap operation should not be assumed unless specifically supported by the installed hardware configuration.
Q: What communication interfaces are available on the G60 relay?A: The relay supports RS485 communication, redundant 100Base-FX fiber Ethernet, 100Base-T copper Ethernet, and protocols including IEC 61850, DNP3.0, Modbus RTU/TCP, and IEC 60870-5-104.
Q: What generator protection measurements are processed by the relay?A: The G60 processes CT current inputs, VT voltage inputs, digital status inputs, and protection logic signals for generator differential, ground fault, excitation, overcurrent, distance, reverse power, and breaker failure functions.
Field Installation Guidelines
Install the relay in a compatible 19 in rack enclosure with correct mechanical support and terminal access clearance. Verify power supply voltage range before energizing the unit.
Terminate CT and VT wiring according to protection engineering drawings. Maintain separation between instrument transformer wiring, communication cables, and high-voltage conductors to reduce electromagnetic interference.
Connect fiber Ethernet interfaces using approved optical components and maintain correct grounding practices for the chassis and protective earth connection. Cable shields should be terminated according to site grounding standards.
Verify digital input polarity, output relay wiring, and trip circuit supervision connections before commissioning. Confirm firmware compatibility and configuration files before loading application settings into the relay.
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GE Multilin G60-K03-HLH-F8M-H6G-M8M-P4L-U6T-W6C Generator Protection Relay
The GE Multilin G60-K03-HLH-F8M-H6G-M8M-P4L-U6T-W6C, also cataloged as the G60 Generator Protection Relay, operates as a dedicated hardware component for generator protection, monitoring, and control execution within GE Multilin Universal Relay (UR) protection platforms.
Hardware Specifications
Parameter
Specification
Model
G60-K03-HLH-F8M-H6G-M8M-P4L-U6T-W6C
Brand
GE Multilin
Origin
Canada
Operating Temp
-40 deg C to +60 deg C
Product Type
Generator Protection Relay
Series
Multilin Universal Relay (UR) Series
Rated Frequency
50 Hz / 60 Hz auto-tracking
AC Voltage Inputs
1-260 V AC continuous
AC Current Inputs
1 A / 5 A dual-rated CT inputs
Control Power Supply
110-250 V DC / 110-230 V AC
Front Panel Protection
IP54
Rear Terminal Protection
IP20
Communication Interface
Dual 10/100 Base-T Ethernet or fiber optic interface
Communication Protocol
IEC 61850 with GOOSE messaging support
Digital Output Module
H6G Form-A / Form-C digital output configuration
Digital Input Module
M8M 8-channel configurable digital input module
AC Input Module
P4L three-phase CT and VT input module
DSP / Analog Interface
W6C DSP and analog I/O transducer interface
Profinet / EtherNet-IP Network and Firmware Compatibility
The GE Multilin G60-K03-HLH-F8M-H6G-M8M-P4L-U6T-W6C uses a modular hardware architecture based on the Universal Relay platform. The U6T communication module provides Ethernet connectivity for IEC 61850 substation automation communication, including GOOSE messaging for protection interlocking and trip signal exchange.
The modular configuration supports I/O density scaling through selectable slot assemblies. The H6G digital output module, M8M digital input module, P4L phase measurement module, and W6C DSP interface module provide hardware expansion according to generator protection requirements.
Firmware flash compatibility must be verified against the installed hardware revision and configured option package before firmware replacement. Protection settings, communication parameters, and logic configurations require validation after firmware maintenance operations.
Frequently Asked Questions
Q: Does the G60-K03-HLH-F8M-H6G-M8M-P4L-U6T-W6C support hot-swap module replacement?
A: The relay uses a modular UR hardware design. Module replacement procedures must follow GE Multilin maintenance instructions, including removal of control power and verification of configuration compatibility before exchanging hardware assemblies.
Q: What type of communication interface is provided by the U6T module?
A: The U6T module provides dual 10/100 Base-T RJ45 Ethernet or fiber optic communication capability with IEC 61850 protocol support.
Q: What input signals are processed by the P4L module?
A: The P4L module processes three-phase AC measurement signals through CT and VT inputs for generator voltage and current protection functions.
Field Installation Guidelines
Install the relay in a protected control cabinet with sufficient clearance for rear terminal wiring and front panel access. Maintain separation between CT/VT signal wiring, communication cables, and high-energy switching conductors to reduce electromagnetic interference.
Use shielded communication and analog signal cables where required by the installation environment. Connect cable shields according to site grounding practices and protection system requirements.
Verify CT polarity, VT phase sequence, and terminal assignments before energizing the relay. Confirm control power voltage compatibility with the installed F8M power supply module. After installation, perform configuration verification, input signal checks, output contact tests, and communication diagnostics before placing the protection system into service.
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GE Multilin G60-N03-AKH-F8L-H6G-M8L-P67-U67-WXX Generator Protection Relay
Configured for generator protection execution in GE Multilin Universal Relay (UR) Series platforms, the GE Multilin G60-N03-AKH-F8L-H6G-M8L-P67-U67-WXX (G60 Generator Protection Relay) provides direct physical/electrical execution for generator protection, control, monitoring, and power system diagnostic functions.
Hardware Specifications
Parameter
Specification
Model
G60-N03-AKH-F8L-H6G-M8L-P67-U67-WXX
Brand
GE Multilin / GE Vernova (Grid Solutions)
Origin
Canada / United States (GE Multilin product family)
Dimensions
19 inch rack mount, 4RU chassis
Operating Temp
-40 deg C to +60 deg C
Product Series
Universal Relay (UR) Series - G60 Generator Protection
Frequency Rating
50 Hz / 60 Hz configurable
Enclosure Type
Modular rack-mount protection relay chassis
Communication Interfaces
Dual 100Base-FX fiber-optic / Ethernet interfaces
Analog Inputs
High-speed CT / VT analog input module
Digital I/O
Programmable digital inputs and high-speed contact outputs
Protection Functions
87G, 50/51, 50G/51G, 27TN/59TN, 64G, 32/32R, 40, 46, 24, 81O/U, 27/59
Profinet / EtherNet-IP Deterministic Network and I/O Architecture
The G60 platform uses a modular hardware structure with dedicated processing, communication, analog acquisition, and digital I/O sections. The F8L option provides dual 100Base-FX fiber-optic Ethernet communication interfaces, while the H6G module supports high-speed CT and VT measurement channels for protection calculations.
The relay architecture supports deterministic data exchange between protection logic, measurement processing, and external control systems. The programmable FlexLogic(TM) engine allows configuration of internal signal processing paths without external auxiliary relays.
The modular I/O design supports application-specific scaling through additional digital input, relay output, and RTD interface modules. Firmware feature compatibility is controlled through the selected hardware option matrix and revision configuration.
Frequently Asked Questions
Q: Does the G60-N03-AKH-F8L-H6G-M8L-P67-U67-WXX support hot-swap replacement of modules?A: The G60 uses a modular UR chassis design. Module replacement procedures must follow GE Multilin maintenance instructions, and power isolation requirements must be observed before removing hardware modules.
Q: What type of input signals are processed by the H6G module?A: The H6G module provides high-speed AC current transformer (CT) and voltage transformer (VT) analog inputs for generator protection measurement and calculation functions.
Q: Which protection elements are executed by the G60 relay processor?A: The processor executes generator differential protection, overcurrent protection, stator ground protection, reverse power protection, loss of excitation protection, negative sequence protection, volts-per-hertz protection, frequency protection, and voltage protection elements.
Field Installation Guidelines
Install the relay in a compatible 19 inch rack enclosure with appropriate mechanical support for the 4RU chassis.
Verify auxiliary power wiring polarity and voltage range before energizing the protection relay.
Use shielded wiring for CT, VT, and low-level signal circuits to reduce electromagnetic interference.
Maintain separation between analog measurement wiring, communication cables, and high-voltage power conductors.
Ground cable shields according to site electrical grounding standards and protection system requirements.
Verify CT polarity, VT phase connections, and protection settings before commissioning.
Confirm fiber-optic communication routing, connector cleanliness, and optical link continuity before system integration.
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GE Multilin G60-E00-HCH-F8L-H6T-M8N-P6C-U6C-W6C Generator Protection Relay
The GE Multilin G60-E00-HCH-F8L-H6T-M8N-P6C-U6C-W6C, also cataloged as the G60 Generator Protection Relay, operates as a dedicated hardware component for generator protection, measurement, and trip control within GE Universal Relay (UR) protection platforms.
Hardware Specifications
Parameter
Specification
Model
G60-E00-HCH-F8L-H6T-M8N-P6C-U6C-W6C
Brand
GE Multilin
Origin
General Electric Universal Relay (UR) Family
Dimensions
Horizontal mount UR chassis; exact dimensions not specified in available technical data
Product Type
Generator Protection Relay / Intelligent Electronic Device (IED)
Power Supply
High-range supply module, 110-250 V DC / 110-230 V AC
CPU Communication
RS485 serial communication with Modbus RTU / DNP3.0; redundant 10Base-F fiber Ethernet interfaces
AC Input Module
F8L CT/VT module with 4 CT and 4 VT channels; 1 A / 5 A nominal CT inputs
Additional CT/VT Module
H6T CT/VT expansion module for additional protection and metering channels
Digital I/O Configuration
M8N, P6C, U6C, W6C digital input and relay output expansion modules
Protection Functions
87G, 27/59, 40, 32, 46, 59N/27TN, 50/51, 50BF, 81O/81U
Control Logic
FlexLogic programmable protection and automation logic engine
Recording Functions
Oscillography, event records, sequence-of-events timestamping
GE Multilin UR Series Industrial Control Integration
The GE Multilin G60-E00-HCH-F8L-H6T-M8N-P6C-U6C-W6C uses UR modular architecture with configurable I/O allocation, communication processing, and programmable protection logic. The relay supports deterministic network integration through redundant fiber Ethernet communication channels and serial interfaces for supervisory control systems.
The platform supports Profinet / EtherNet-IP deterministic networks through industrial communication gateways where applicable in the plant control architecture. Firmware flash compatibility and configuration data management are handled through the GE EnerVista UR Setup software environment.
The relay provides generator electrical protection processing including stator differential protection, field failure monitoring, reverse power detection, negative sequence current supervision, breaker failure logic, and frequency protection functions.
Frequently Asked Questions
Q: Does the G60 support hot-swap replacement of installed modules?A: The UR platform uses modular hardware construction, but module replacement procedures must follow GE installation documentation. Power isolation and configuration verification are required before changing hardware assemblies.
Q: What communication interfaces are available on this G60 configuration?A: The configuration includes RS485 serial communication supporting Modbus RTU and DNP3.0 protocols, together with redundant 10Base-F fiber optic Ethernet communication interfaces.
Q: How are protection settings and logic configurations managed?A: Protection parameters, FlexLogic programming, event records, and waveform analysis are configured through GE EnerVista UR Setup software.
Field Installation Guidelines
Install the G60 relay in a suitable panel-mounted rack location with adequate clearance for wiring access, terminal inspection, and maintenance operations.
CT and VT signal wiring should be routed separately from high-current power conductors to reduce electromagnetic interference coupling. Shielded communication cables should follow site grounding practices, with cable shields terminated according to the control panel grounding design.
Verify CT polarity, VT phase sequence, and trip circuit supervision wiring before energizing the protection system. Digital input circuits should maintain proper isolation from external voltage sources, and relay output circuits should be checked against breaker trip and interlock requirements.
Fiber optic communication connections should be inspected for correct connector alignment, optical cleanliness, and secure mechanical retention before network commissioning.
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GE Multilin G60-E00-HUH-F8L-H6U-MXX-PXX-UXX-WXX Generator Protection System
The GE Multilin G60-E00-HUH-F8L-H6U-MXX-PXX-UXX-WXX, also cataloged as the G60E00HUHF8LH6UMXXPXXUXXWXX Generator Protection System, operates as a dedicated hardware component for generator protection, measurement, and control execution within GE Universal Relay (UR) platforms.
Hardware Specifications
Parameter
Specification
Model
G60-E00-HUH-F8L-H6U-MXX-PXX-UXX-WXX
Brand
GE Multilin
Origin
General Electric Universal Relay platform
Dimensions
Horizontal mount, standard 19 inch rack enclosure, 4U height
Product Type
Generator Protection Relay
Rated Frequency
50 Hz / 60 Hz system adaptive
AC Current Inputs
1 A or 5 A CT secondary rating, configurable
AC Voltage Inputs
50 V to 240 V phase-to-neutral nominal VT input
Power Supply Voltage
88-300 VDC or 88-264 VAC at 50/60 Hz
Protection Functions
87S stator differential, 100% stator ground fault, 40 loss of excitation, 24 V/Hz, 32 reverse power, 81R rate of change frequency, 50BF breaker failure
Communication Interfaces
Ethernet and RS485 interfaces through UR CPU module
Recording Functions
Disturbance recording, metering, synchrophasor measurement according to IEEE C37.118
GE Multilin UR Platform Generator Protection Architecture
The G60 operates on the GE Universal Relay modular hardware structure with configurable rack slots for processor, CT/VT acquisition, digital input/output, power supply, and communication modules. The relay processes generator electrical quantities through dedicated current and voltage measurement channels and executes protection logic through the embedded CPU and DSP resources.
The UR platform supports deterministic Profinet / EtherNet-IP style industrial network concepts through dedicated communication modules where configured, while the G60 implementation uses GE-specific Ethernet and serial communication interfaces for protection data exchange, configuration access, and monitoring functions.
The modular architecture allows I/O density scaling through selectable expansion modules, enabling additional contact inputs, trip outputs, transducer interfaces, and auxiliary control circuits without changing the primary relay enclosure.
Frequently Asked Questions
Q: What CT and VT signal ranges are supported by the G60 relay?A: The relay accepts configurable CT secondary inputs of 1 A or 5 A and VT inputs from 50 V to 240 V phase-to-neutral nominal values according to the selected hardware configuration.
Q: Does the G60 support modular I/O expansion?A: Yes. The UR hardware structure provides multiple module slots for digital input, relay output, and auxiliary interface expansion.
Q: What power supply range is available for this model configuration?A: The specified power supply module supports 88-300 VDC or 88-264 VAC at 50/60 Hz.
Field Installation Guidelines
Install the relay in the specified horizontal rack mounting position with appropriate mechanical support for the 19 inch enclosure format. Maintain separation between CT/VT wiring, digital signal wiring, and communication cables to reduce electromagnetic coupling.
Terminate protective earth connections according to the installation grounding scheme. Use shielded communication cables where required, with cable shields connected according to site grounding practice. Verify CT polarity, VT phase sequence, and terminal assignments before energizing measurement circuits.
Confirm the selected power supply input range before connection. During commissioning, verify module seating, backplane connections, communication addressing, and protection element configuration through the relay configuration software.
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GE Multilin G60-N00-HUH-F8L-H6T-M8L-P6C-U6C-W6C Generator Protection Relay
The GE Multilin G60-N00-HUH-F8L-H6T-M8L-P6C-U6C-W6C, also cataloged as the G60 Generator Protection Relay, operates as a dedicated hardware component for generator protection, measurement, and control execution within the GE Multilin Universal Relay (UR) platform.
Hardware Specifications
Parameter
Specification
Model
G60-N00-HUH-F8L-H6T-M8L-P6C-U6C-W6C
Brand
GE Multilin / GE Grid Solutions
Dimensions
19-inch 4U rack mount enclosure
Operating Temp
-40 deg C to +60 deg C
Power Consumption
Not specified in available documentation
Product Series
Universal Relay (UR) G60 Generator Protection System
Power Supply
120-250 VDC / 110-230 VAC, 50/60 Hz high range supply
CT Inputs
1 A / 5 A secondary configurable inputs
VT Inputs
50 V to 240 V phase-to-neutral nominal
Digital Inputs
Opto-isolated high-speed binary inputs
Output Contacts
Form-A high-break and Form-C SPDT relay contacts
Communication Interfaces
RS485, 100Base-FX Ethernet
Communication Protocols
IEC 61850 Edition 2, Modbus RTU/TCP, DNP 3.0, IEC 60870-5-104
Industrial Control Platform Integration
The G60-N00-HUH-F8L-H6T-M8L-P6C-U6C-W6C integrates modular processing, protection I/O, and communication assemblies within the GE Multilin Universal Relay architecture. The F8L CPU and communication module provides processor execution and network interfaces, while H6T CT/VT acquisition hardware processes generator electrical measurement inputs.
The relay supports deterministic protection logic execution including stator differential protection (87G / 87S), stator ground protection (64TN / 27TN), reverse power protection (32), frequency protection (81O / 81U / 81R), voltage restrained overcurrent protection (51PV), and breaker failure logic (50BF).
The modular hardware structure provides I/O density scaling through M8L, P6C, U6C, and W6C expansion modules. The system supports firmware flash compatibility within the UR platform architecture, allowing installed hardware modules and application firmware packages to maintain configuration consistency.
Frequently Asked Questions
Q: Does the G60-N00-HUH-F8L-H6T-M8L-P6C-U6C-W6C support hot-swappable module replacement?A: The UR platform uses modular plug-in assemblies, but module replacement procedures must follow GE Multilin maintenance instructions. Power isolation and configuration verification are required before hardware changes.
Q: What communication networks are supported by the F8L communication module?A: The F8L module supports RS485 serial communication and 100Base-FX Ethernet communication with IEC 61850 Edition 2, Modbus TCP/IP, Modbus RTU, and DNP 3.0 protocol compatibility.
Q: What input signals are processed by the H6T module?A: The H6T module provides CT and VT acquisition channels for generator phase and neutral current and voltage measurement circuits.
Field Installation Guidelines
Install the relay in a suitable 19-inch rack enclosure with adequate clearance for wiring access and ventilation. Verify the supply voltage range before energizing the high-range power supply module.
CT secondary circuits should use dedicated wiring paths with appropriate shorting provisions during maintenance. VT wiring should be separated from high-current conductors to reduce electromagnetic interference.
Communication cables should maintain proper shielding and grounding practices. Ethernet fiber connections through the 100Base-FX interface should be installed according to fiber termination requirements and network grounding standards.
Digital input and output wiring should be separated from power conductors. Confirm terminal assignments, contact ratings, and protection logic settings before placing the relay into generator protection service.
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