DS200GHDQF1AAB - Software PROM Set

DS200GHDQF1AAB -  Software PROM Set DS200GHDQF1AAB -  Software PROM Set

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SPECIFICATIONS

Part Number: DS200GHDQF1AAB
Manufacturer: General Electric
Series: Mark V
Product type: Software PROM Set
Availability: In Stock
Country of Manufacture: United States (USA)

Functional Description

DS200GHDQF1AAB is a software PROM set designed and developed by GE. It is a part of the Mark V control system. EPROM (Erasable Programmable Read-Only Memory) serves as a variant of PROM (Programmable Read-Only Memory) and possesses unique characteristics. EPROMs retain stored data even when the power supply is turned off, distinguishing them as non-volatile memory. This feature ensures that data remains intact even during power loss, making EPROMs reusable for storing and retrieving information multiple times.

Features

  • Once programmed, EPROMs can be erased for reprogramming by exposing the memory chip to intense ultraviolet (UV) light emitted from sources like a mercury-vapor lamp. This erasure process resets the memory cells, allowing new data to be written onto the chip.
  • It comprise an array of individually programmed floating-gate transistors. These transistors are programmed by an electronic device using higher voltages compared to standard digital circuits. The unique structure of EPROMs enables the retention of programmed data until specifically erased.
  • EPROMs are recognizable by a distinct resin (in later models) or transparent fused quartz window (in earlier models) positioned on the top of their package. This window allows visibility of the silicon chip within. Its purpose is to permit exposure to UV light necessary for the erasure and deletion of stored data.

Multi-Unit Control and Monitoring

  • The Mark V system boasts robust capabilities tailored to adapt and customize control strategies according to individual site requirements. One of its prominent functionalities includes the ability to control and monitor multiple turbines using one or more operator interfaces concurrently.
  • Each operator interface within the Mark V system possesses the capability to oversee and manage up to eight turbines simultaneously. This feature empowers operators to handle and supervise a significant number of turbines efficiently and effectively from a centralized interface.
  • The system allows the creation of a hierarchical control structure by integrating multiple operator interfaces. This hierarchical arrangement enables a structured and layered approach to control, facilitating the delegation of varying levels of authority or control over the turbines among the interfaces.
  • Provides scalability by accommodating the monitoring and control of multiple turbines, making it suitable for applications ranging from smaller setups to more extensive industrial operations.
  • Operators can customize and allocate specific control responsibilities to different operator interfaces within the hierarchy. This allows for tailored control strategies aligned with operational needs and preferences.
  • The use of multiple interfaces establishes redundancy and backup. In the event of an issue with one interface, others within the hierarchy can continue to manage the turbines, ensuring uninterrupted operation and control.
  • By leveraging multiple operator interfaces to establish a hierarchy of control, the Mark V system offers enhanced adaptability, flexibility, and efficiency in managing and controlling a cluster of turbines, thereby catering to diverse industrial and operational requirements across various sites.

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FREQUENTLY ASKED QUESTIONS

What is DS200GHDQF1AAB?
It is a Software PROM Set designed and developed by GE

What advantages does this hierarchical control structure provide?
The hierarchical setup offers scalability, allowing the monitoring and control of numerous turbines, catering to applications ranging from smaller setups to extensive industrial operations. Operators can customize and allocate specific control responsibilities to different interfaces, aligning control strategies with specific operational needs and preferences.

How does the system ensure operational continuity in case of interface issues?
The use of multiple interfaces establishes redundancy and backup within the system. In case of issues with one interface, others within the hierarchy continue managing the turbines, ensuring uninterrupted operation and control.

How does the Mark V system benefit from leveraging multiple operator interfaces for turbine control?
By utilizing multiple operator interfaces to form a hierarchy of control, the system enhances adaptability, flexibility, and efficiency in managing a cluster of turbines. This capability caters to diverse industrial and operational requirements across various sites, ensuring optimized turbine control and monitoring.