Description
Product Overview
The GE DS200TCEAG1ACB is a turbine control module specifically designed for use in industrial power generation systems.Part of GE’s Mark V and Mark VI control systems,this module is engineered to provide precise control and monitoring of turbines and generators,ensuring stable operation and efficient performance in critical industrial environments.
Built for high-performance and reliability,the GE DS200TCEAG1ACB ensures real-time data acquisition and system control,helping to optimize energy efficiency and operational safety.The module integrates seamlessly into GE’s turbine control systems,offering full compatibility with other components and ensuring smooth operation across large,complex systems.
Whether used in power plants,oil and gas facilities,or manufacturing plants,the DS200TCEAG1ACB provides exceptional reliability for turbine protection,power generation monitoring,and real-time system diagnostics.With its ability to manage high-speed processes,the DS200TCEAG1ACB is an essential component in any critical power generation system that requires precision and high availability.
The GE DS200TCEAG1ACB is designed to operate in harsh industrial environments and offers exceptional robustness,ensuring that turbine and generator systems remain protected and efficiently managed.
Technical Specifications
Parameter Name Parameter Value
Product Model GE DS200TCEAG1ACB
Manufacturer General Electric(GE)
Product Type Turbine Control Module
Supply Voltage 24V DC
Communication Interface Serial(RS-232/RS-485)
Operating Temperature Range-20°C to+70°C
Input Type Analog/Digital
Output Type Analog/Digital
Mounting Type Rack-mounted
Dimensions 7.5 in x 4.5 in x 1.5 in(19.05 cm x 11.43 cm x 3.81 cm)
Weight 1.0 kg
Protection Rating IP20
Power Consumption 20W
Compatibility GE Mark V,Mark VI Control Systems
Status Indicators LED Indicators for Status and Diagnostics
Data Processing Speed High-Speed Data Acquisition
Main Features and Advantages
High-Speed Real-Time Control:The GE DS200TCEAG1ACB is designed for real-time data acquisition and high-speed control.This ensures that turbine systems and generators operate efficiently,maintaining high performance and reducing the risk of system downtime.
Seamless Integration:This module is designed to integrate easily with GE’s Mark V and Mark VI control systems,offering plug-and-play compatibility for turbine control applications.The GE DS200TCEAG1ACB works flawlessly in complex automation systems,ensuring smooth communication with other control and monitoring components.
Robust Protection and Monitoring:With built-in turbine protection functions,the DS200TCEAG1ACB helps safeguard both the turbine and generator equipment from potential damage caused by overloads,underloads,or operational anomalies.It enhances safety and ensures continuous operation in demanding environments.
Industrial-Grade Reliability:Designed for harsh industrial conditions,the GE DS200TCEAG1ACB ensures reliable operation in extreme temperatures and challenging environments.Its IP20 rating provides adequate protection for most industrial control room applications,ensuring long-term functionality.
Comprehensive Data Acquisition:The GE DS200TCEAG1ACB excels in data acquisition,offering precise monitoring of system parameters,such as temperature,pressure,and vibration levels in real-time.The collected data can be used for diagnostic analysis,performance optimization,and predictive maintenance.
Advanced Communication Protocols:Equipped with RS-232 and RS-485 interfaces,the DS200TCEAG1ACB ensures seamless integration with a wide variety of industrial networks.This ensures that data from turbines and generators is transmitted quickly and securely to central control systems.
Application Field
The GE DS200TCEAG1ACB is widely used in industries where high-performance turbine control and generator management are essential for operational stability and efficiency.Key applications include:
Power Generation Plants:The GE DS200TCEAG1ACB is crucial for controlling gas turbines,steam turbines,and generators.It monitors and controls critical power generation processes,ensuring that plants operate safely and efficiently.
Oil and Gas:In oil rigs,refineries,and petrochemical facilities,the GE DS200TCEAG1ACB ensures precise control over turbine generators,safeguarding equipment from failure and maintaining power generation reliability.
Manufacturing Plants:The module is also used in industrial manufacturing systems to manage backup power systems,process turbines,and energy recovery systems.
Renewable Energy:In wind energy and hydropower plants,the GE DS200TCEAG1ACB is used for controlling turbines and ensuring optimal energy output while maintaining system safety and protection.
Utilities and Infrastructure:The module plays a key role in critical infrastructure,ensuring that power systems run smoothly and safely.It is part of distributed control systems(DCS)used in grid management and energy distribution.
Related Products
GE DS200TCEAG1AC-A similar model in the Mark V series,offering slightly lower functionality for less demanding turbine control applications.
GE DS200TCEAG1ADD-A related model offering advanced diagnostics and redundant communication features for more complex turbine control systems.
GE DS200TCEB-A turbine control module with additional I/O capabilities,providing broader integration with PLC systems.
GE DS200FECBG1ACB-An I/O expansion module for the Mark V series,expanding control capabilities for larger turbine systems.
GE DS200FECAG1ACB-A turbine monitoring and control module with additional signal processing features,ideal for use in large-scale power plants.
Installation and Maintenance
Pre-installation preparation:Before installing the GE DS200TCEAG1ACB,ensure the CPCI rack or mounting space is properly prepared.Verify compatibility with your existing GE Mark V or Mark VI control system.Ensure all electrical connections and interfaces are securely wired,and check for any short circuits or wiring issues before powering up the system.
Maintenance recommendations:Periodically inspect the GE DS200TCEAG1ACB for signs of wear,especially the connectors and communication ports.Regularly update software and firmware to ensure compatibility with new control systems.Monitor data acquisition parameters for anomalies that could indicate the need for recalibration or other adjustments.
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