GE IS200TREGH1BDB emergency trip terminal board

GE IS200TREGH1BDB is mainly used in GE’s Mark VI turbine control system and is a terminal board designed specifically for emergency trip protection of turbines. It plays a crucial role in the system, responsible for providing stable power supply to the three emergency trip solenoids within the system.

Model Number IS200TREGH1BDB
Brand GE
Type Turbine Emergency Trip Terminal Board
Input Voltage 24 VDC
Operating Temp Range -40°C to 85°C
Mounting Style As per system requirements
Interface/Bus Connects to system backplane for data transfer
Compliance CE, RoHS
Supported Protocols Industry-standard protocols for seamless integration within the Mark VI system

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Description

GE IS200TREGH1BDB is mainly used in GE’s Mark VI turbine control system and is a terminal board designed specifically for emergency trip protection of turbines. It plays a crucial role in the system, responsible for providing stable power supply to the three emergency trip solenoids within the system.

IS200TREGH1BDB

IS200TREGH1BDB

The terminal board is fully controlled by the I/O controller, which precisely processes the positive part of the DC power supply required to operate the trip solenoid. Working in conjunction with it is to ensure coordinated and balanced distribution of power by providing the necessary negative pole of the DC power supply to the solenoid. In actual operation, when the turbine control system detects abnormal conditions, GE IS200TREGH1BDB can quickly respond by controlling the tripping solenoid action to trigger the emergency shutdown program in a timely manner, avoiding the occurrence or expansion of accidents. At the same time, this module supports close communication with other related modules, such as interacting with sensor modules responsible for monitoring turbine operating parameters, real-time acquisition of key data, in order to make accurate trip decisions.

IS200TREGH1BDB

IS200TREGH1BDB

Technical specifications:
Model Number IS200TREGH1BDB
Brand GE
Type Turbine Emergency Trip Terminal Board
Input Voltage 24 VDC
Operating Temp Range -40°C to 85°C
Mounting Style As per system requirements
Interface/Bus Connects to system backplane for data transfer
Compliance CE, RoHS
Supported Protocols Industry-standard protocols for seamless integration within the Mark VI system

 

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IS200TREGH1BDB

IS200TREGH1BDB

Main features and advantages:
It has been carefully designed to have high reliability and can operate stably in complex and harsh industrial environments, which is crucial for ensuring the long-term uninterrupted operation of turbines. Its high-precision power control capability ensures that the tripping solenoid can operate accurately at critical moments, greatly reducing the probability of misoperation and effectively improving the safety of the system. The easy to maintain feature of this module also saves engineers a lot of time and effort. For example, through clear and distinct indicator lights and diagnostic interfaces, the fault point can be quickly located and repaired in a timely manner. Moreover, the standardized design of GE IS200TREGH1BDB makes its integration with other GE Mark VI series modules simple and convenient, reducing the complexity and cost investment in the system integration process.

IS200TREGH1BDB

IS200TREGH1BDB

 

Application areas:
In the power industry, whether it is thermal power generation, hydropower generation, or wind power generation, turbines are the core equipment for power generation. GE IS200TREGH1BDB is capable of real-time monitoring of the operating status of turbines. In case of any abnormalities, it will immediately trigger an emergency trip to ensure the safe and stable operation of power generation equipment and the power grid. In the petrochemical industry, turbines are used to drive various large mechanical equipment such as compressors, pumps, etc. In this environment, the safety requirements for equipment operation are extremely high. GE IS200TREGH1BDB can ensure that emergency shutdown procedures are quickly initiated in the event of equipment failure hazards, preventing accidents and protecting production facilities and personnel safety. In the aerospace field, turbines in ground testing equipment also require reliable emergency protection devices, and GE IS200TREGH1BDB can meet its strict requirements for high precision and high reliability.

IS200TREGH1BDB

IS200TREGH1BDB

 

Related products:
GE IS200TREGH1BEC – superior in signal processing speed or anti-interference ability, suitable for applications with more stringent performance requirements.
GE IS200TREGH1BDC – There may be differences in interface types, quantities, or compatibility with specific devices, providing users with more diverse choices to meet the needs of different system architectures.
GE IS200TREGH1BDA – Compared with GE IS200TREGH1BDB, there are certain differences in functional characteristics or technical parameters, which can be used as an alternative option for users in specific budgets or situations with low functional requirements.
GE IS200TREGH1BDF – Customized design for specific industries or applications, with special considerations in terms of explosion-proof performance, protection level, etc., to meet the usage needs of special environments such as chemical and coal mines.
GE IS200TREGH1BDG – may have enhanced software functionality, such as stronger fault diagnosis and data analysis capabilities, which can help engineers gain a deeper understanding of equipment operation and prevent faults in advance.

 

 

Installation and maintenance:
Before installing GE IS200TREGH1BDB , engineers must carefully check whether the power supply voltage of the system is stable at 24 VDC to ensure it matches the input voltage requirements of the module. At the same time, it is necessary to carefully check the connection method and protocol settings of the communication bus to ensure its compatibility with the entire Mark VI control system. In addition, it is necessary to check the environmental conditions of the installation location to ensure that the temperature, humidity, etc. are within the working range of the module.

In daily maintenance, it is important to regularly check the status of the indicator lights on the module. Under normal circumstances, the indicator lights should show a specific flashing pattern. If they turn on or off abnormally, it may indicate that the module has a fault. Every once in a while, the connection terminals of the module should be checked for looseness, oxidation, and other phenomena, and tightened and cleaned in a timely manner. It is recommended to conduct a comprehensive performance test on the module once a year, including simulating emergency trip tests, to ensure that it can function properly at critical moments.

 

 

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