GE IS200TRLYH1BGF Terminal Relay Card

GE IS200TRLYH1BGF is a terminal relay card designed specifically for GE’s Mark VI series, which is widely used in turbine control systems. It serves as a critical interface between the control system and various electromechanical devices.

Model IS200TRLYH1BGF
Brand GE
Type Terminal Relay Card
The input voltage depends on the system requirements
Operating temperature range: 0 ° C to 60 ° C (operation), -30 ° C to 65 ° C (storage)
Installation method according to system requirements
Dimensions: Width 17.8 cm x Height 33.02 cm
Connect the interface/bus to the system backplane for data transmission
Compliance meets relevant industry standards
The supported protocols are compatible with the protocols used within the Mark VI system

 

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Description

GE IS200TRLYH1BGF is a terminal relay card designed specifically for GE’s Mark VI series, which is widely used in turbine control systems. It serves as a critical interface between the control system and various electromechanical devices.

IS200TRLYH1BGF

IS200TRLYH1BGF

This circuit board is responsible for precise management and execution of relay operations. It has two long black terminal blocks, each with 24 terminals numbered from 1 to 48, making it easy to make a large number of electrical connections. In the center of the circuit board, a series of relays or contactors are arranged vertically, and their transparent plastic casing facilitates visual inspection. On both sides of the relay in the upper half of the circuit board, there are six black transistors, each paired with a red metal oxide varistor (MOV) to prevent voltage spikes. In addition, the circuit board is also covered with numerous integrated circuits, as well as six blue solid-state capacitors arranged in a row on the right side of transistors and metal oxide varistors, all of which work together to ensure stable performance. The card interacts with other components in the Mark VI system, such as sensors and actuators, by receiving control signals from the main controller and accurately switching electrical signals to drive connected devices.

IS200TRLYH1BGF

IS200TRLYH1BGF

Technical specifications:
Model IS200TRLYH1BGF
Brand GE
Type Terminal Relay Card
The input voltage depends on the system requirements
Operating temperature range: 0 ° C to 60 ° C (operation), -30 ° C to 65 ° C (storage)
Installation method according to system requirements
Dimensions: Width 17.8 cm x Height 33.02 cm
Connect the interface/bus to the system backplane for data transmission
Compliance meets relevant industry standards
The supported protocols are compatible with the protocols used within the Mark VI system

 

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Phone:+86 16626708626
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IS200TRLYH1BGF

IS200TRLYH1BGF

Main features and advantages:
The card design is reliable and can withstand the harsh conditions commonly found in industrial environments, ensuring long-term performance stability. For industries such as power generation that require high precision, the accuracy of signal switching is a major advantage. The design of this circuit board is easy to maintain, with clear visual indicators and easy-to-use components. This reduces the time and effort required for troubleshooting and maintenance, thereby minimizing downtime to the greatest extent possible. Its compatibility with the Mark VI series simplifies integration in existing systems, whether for new installations or upgrades. This not only saves engineering costs, but also ensures seamless operation within the overall control architecture.

IS200TRLYH1BGF

IS200TRLYH1BGF

Application areas:
In the field of power generation, it is used for steam turbine and gas turbine control systems. In steam turbine based power plants, it helps to precisely control various valves and actuators that regulate steam flow, ensuring efficient power generation. In gas turbine driven facilities, it plays a critical role in controlling the combustion process by accurately switching signals from components such as fuel injectors and ignition systems. In the manufacturing industry, especially in factories that use turbines for mechanical drive, GE IS200TRLYH1BGF ensures smooth operation of production lines by precisely controlling turbine driven machinery.

IS200TRLYH1BGF

IS200TRLYH1BGF

Related products:
GE IS200TRLYH1BGA – has slightly different functional or performance characteristics, suitable for users with lower requirements or existing systems that are more compatible with this model.
GE IS200TRLYH1BGB – may have improvements in signal processing speed or power consumption, making it a better choice for applications with high requirements for these factors.
GE IS200TRLYH1BGC – With different connector configurations or communication protocols, it provides greater flexibility for integration into different control systems.
GE IS200TRLYH1BGD – designed for specific industries or applications with enhanced features tailored to their unique needs, such as increasing resistance to certain chemicals in petrochemical plants.
GE IS200TRLYH1BGE – equipped with additional diagnostic features that enable deeper monitoring of relay operation and early detection of potential issues.

IS200TRLYH1BGF

IS200TRLYH1BGF

 

 

Installation and maintenance:
Before installing GEIS200TRLYH1BGF, it is essential to thoroughly check the system requirements. Ensure that the input voltage provided to the circuit board is within the range specified in the overall system design. Verify the compatibility of the circuit board with the existing Mark VI system in terms of communication protocol and physical installation. In addition, it is necessary to check the environmental conditions of the installation location to ensure that the temperature and humidity levels are within the operating range of the circuit board.

For daily maintenance, visual indicators on the circuit board should be checked regularly. Observing the status of the relay through its transparent casing can provide valuable insights into the operation of the circuit board. Regularly check the connections on the terminal block for signs of looseness or corrosion. It is also recommended to conduct functional testing at least once a year to ensure that the circuit board is still in optimal operating condition.

 

 

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