DS200GASQF1BGD - Software EPROM Set

DS200GASQF1BGD - Software EPROM Set DS200GASQF1BGD - Software EPROM Set

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SPECIFICATIONS

Part Number: DS200GASQF1BGD
Manufacturer: General Electric
Series: Mark V
Product type: GE Software EPROM Set
Availability: In Stock
Country of Manufacture: United States (USA)

Functional Description

DS200GASQF1BGD is a GE Software EPROM Set designed and developed by GE. It is a part of the Mark V control system. The Mark V system is designed to efficiently control and monitor turbine functions. It oversees critical operations, such as managing fuel flow, regulating speed and load, ensuring proper start-up and shutdown sequences, and safeguarding against potential faults or abnormal operating conditions.

System Direct Sensor Interface Features

  • The Direct Sensor Interface integrated into the Mark V I/O (Input/Output) system stands as a testament to its advanced design, offering direct connectivity to critical turbine and generator devices, including thermocouples, Resistance Temperature Detectors (RTDs), and vibration sensors. This innovative approach facilitates the seamless integration of these sensors, eliminating the need for additional transducers or instrumentation, thereby reducing costs and minimizing potential reliability issues associated with intermediary components.
  • By enabling direct monitoring of these sensors, the Mark V I/O system ensures that all pertinent data from these devices is readily accessible to operators. This visibility is not only accessible through the Mark V interface but also via the Distributed Control System (DCS) through a robust communication link. This comprehensive accessibility to sensor data empowers operators with real-time insights, enabling informed decision-making and proactive maintenance strategies.
  • The functionality of the Mark V steam turbine controls exemplifies this direct interface capability, offering direct connectivity to Proximitors for vibration protection and axial position monitoring for thrust wear. Moreover, it facilitates monitoring of differential expansion and eccentricity through a reference probe and key phasor. Furthermore, the system allows for monitoring of shell expansion via a Linear Variable Differential Transformer (LVDT) input, thereby providing a holistic view of critical parameters for enhanced operational oversight.
  • This direct sensor interface feature not only streamlines the data acquisition process but also ensures the reliability and accuracy of the information obtained. By eliminating intermediary components, potential points of failure are reduced, enhancing overall system reliability while maintaining a comprehensive and integrated approach to monitoring and controlling turbine and generator devices.
  • Direct Sensor Interface within the Mark V I/O system represents a paradigm shift in sensor integration, offering a robust and direct connection to critical devices. This approach not only optimizes operational efficiency but also bolsters reliability, allowing for proactive monitoring and control of key parameters critical to turbine and generator performance.

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FREQUENTLY ASKED QUESTIONS

What is DS200GASQF1BGD?
It is a GE Software EPROM Set designed and developed by GE

What functionalities are exemplified by this direct interface in turbine controls?
The Mark V system directly connects to Proximitors for vibration protection, monitors axial position for thrust wear, tracks differential expansion, eccentricity, and shell expansion, offering a comprehensive view of critical parameters.

How does it enhance operational oversight?
By eliminating intermediary components, the Direct Sensor Interface enhances reliability and accuracy in data acquisition. This reduction in potential points of failure bolsters overall system reliability while providing a holistic approach to monitoring and controlling turbine and generator devices.

What is the significance of this feature in turbine and generator performance?
The Direct Sensor Interface signifies a shift in sensor integration, optimizing operational efficiency and reliability. It empowers proactive monitoring, ensuring the control of key parameters vital to the performance of turbines and generators.