DS200TCEAG1A Emergency Overspeed Board
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Part Number: DS200TCEAG1A
Manufacturer: General Electric
Series: MKV
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DS200TCEAG1A Emergency Overspeed Board
The DS200TCEAG1A is designed to process the turbine’s overspeed and flame detection trip signals. These ‘flame detection trip signals’ are specific signals that indicate the presence of a flame in the turbine. The board’s sophisticated algorithms analyze these signals and take appropriate action to prevent damage to the turbine, ensuring its safe operation.Â
The board features an Intel 80196 microprocessor, the heart of the DS200TCEAG1A. This microprocessor is responsible for processing the turbine’s overspeed and flame detection trip signals. It analyzes these signals and takes appropriate action to prevent damage to the turbine, ensuring its safe operation.
Type: Emergency Overspeed Board
Model: DS200TCEAG1A
Manufacturer: General Electric (GE)
Series: SPEEDTRONIC™ Turbine Control
Microprocessor: Intel 80196
Location: P core of the MKV panel
Features
Emergency Overspeed Protection: The DS200TCEAG1A provides robust emergency overspeed protection. It continuously monitors the turbine’s speed and compares it to the pre-set safe speed limits. If the turbine’s speed exceeds these limits, the board immediately takes action to prevent further acceleration, thereby ensuring the turbine’s safe operation.
Microprocessor-based Design: The board features an Intel 80196 microprocessor responsible for processing the overspeed and flame detection trip signals.
Part of SPEEDTRONIC™ Turbine Control System: The DS200TCEAG1A is a critical component of the SPEEDTRONIC™ Turbine Control System. It plays a crucial role in detecting and responding to potential overspeed and flame detection issues, thereby ensuring gas turbines’ safe and efficient operation.
Located in the P Core of the MKV Panel: The DS200TCEAG1A is located in the P Core of the MKV panel, which is the main control panel for the turbine.
Compatibility
The DS200TCEAG1A is compatible with a range of GE Mark systems, including:
SPEEDTRONIC™ Turbine Control System: The DS200TCEAG1A is a critical component of the SPEEDTRONIC™ Turbine Control System, which controls and monitors gas turbines.
MKV Panel: The DS200TCEAG1A is located in the P core of the MKV panel, which is the main control panel for the turbine.
Intel 80196 Microprocessor: The board features an Intel 80196 microprocessor responsible for processing overspeed and flame detection trip signals.
Benefits
The DS200TCEAG1A provides several benefits, including:
Improved Safety: The board ensures the turbine’s safe operation by detecting and responding to potential overspeed and flame detection issues.
Increased Reliability: The board is designed to be reliable and can withstand the demands of continuous operation in various environments.
Improved Performance: The board enhances the performance of the SPEEDTRONIC™ Turbine Control system by providing accurate and reliable overspeed protection.
How it Improves Performance of GE Mark Systems
The DS200TCEAG1A improves the performance of GE Mark systems by providing accurate and reliable overspeed protection. This ensures that the turbine operates safely and efficiently, reducing the risk of damage or failure.
Applications
The DS200TCEAG1A is used in a variety of applications, including:
Gas Turbine Control Systems: Gas turbine control systems use the board to protect emergency overspeed and monitor critical parameters.
Power Generation Systems: The board ensures that gas turbines operate safely and reliably in power generation systems.
Industrial Automation Systems: The board is used in industrial automation systems to protect emergency overspeed and monitor critical parameters.
Installation Process
The DS200TCEAG1A is installed in the P core of the MKV panel, the turbine’s main control panel. The installation process involves carefully connecting the board to the turbine and other components of the SPEEDTRONIC™ Turbine Control system. This ensures the board can effectively detect and respond to potential overspeed and flame detection issues, guaranteeing the turbine’s safe operation.
Frequently Asked Questions
What is the purpose of the DS200TCEAG1A?
The DS200TCEAG1A is an emergency overspeed board designed to process the turbine’s overspeed and flame detection trip signals. By detecting and responding to potential overspeed and flame detection issues, the board ensures the turbine’s safe operation.
What is the type of board?
The DS200TCEAG1A is a static-sensitive board requiring careful handling to prevent damage.
What is the location of the DS200TCEAG1A?
The DS200TCEAG1A is located in the P core of the MKV panel, the turbine’s main control panel. It is positioned in a central location within the panel, making it easily accessible for installation, maintenance, or troubleshooting.
What is the microprocessor used in the DS200TCEAG1A?
The DS200TCEAG1A features an Intel 80196 microprocessor.
What is the primary purpose of the DS200TCEAG1A?
The primary purpose of the DS200TCEAG1A is to process the turbine’s overspeed and flame detection trip signals.
Is the DS200TCEAG1A part of a specific system?
The DS200TCEAG1A is part of the GE Speedtronic Mark V gas turbine control system.
What is the description of the DS200TCEAG1A?
The DS200TCEAG1A is an emergency over-speed board featuring one microprocessor and multiple programmable read-only memory (PROM) modules.
What are the PROM modules used for?
The DS200TCEAG1A features multiple programmable read-only memory (PROM) modules. These modules are integral to the board’s operation, as they store the firmware and operating instructions used by the microprocessor. They play a crucial role in ensuring the board’s functionality and reliability.
What are the features of the DS200TCEAG1A?
The DS200TCEAG1A features three fuses, 30 jumpers, and two bayonet connectors.
What is the primary function of the DS200TCEAG1A in the turbine control system?
The primary function of the DS200TCEAG1A is to provide emergency overspeed protection and ensure the turbine’s safe operation by detecting and responding to potential overspeed and flame detection issues.