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  • GE DS200SDCCF1AOC Drive Control Card
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  • GE DS200SDCCF1AOC Drive Control Card

    110V-380V
    5W-130W
    1A-30A
    1 year
    30
    United States, France, Japan, Viet Nam, Australia, Russia, Germany, Italy, Arabia

    GE DS200SDCCF1AOC Drive Control Card

    • ¥22000.00
      ¥24520.00
      ¥22000.00
      ¥22000.00
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    Weight:2.500KG
    • Quantity:
    • (Inventory: 33)
Description

GE DS200SDCCF1AOC Drive Control Card


GE DS200SDCCF1AOC Drive Control Card

Part Number DS200SDCCF1AOC Manufacturer General Electric Country of Manufacture As Per GE Manufacturing Policy Series Mark VI/VIe Function Module Availability In StockDS200SDCCF1AOC is a Software EPROM Set designed and developed by GE. It is a part of the Mark V control system. While newer iterations of control systems have been introduced since the Mark V, its historical significance and robust performance have made it a notable part of GE's technological legacy in the realm of turbine control and automation. 

 Turbine Unit Control System Features GE has established the initial set of functions termed as the Turbine Unit Control System, encompassing specific functionalities and the requisite input and output devices (I/O) essential for the operation of steam turbines supplied by GE. A prominent attribute of this unit control system lies in its comprehensive integration of essential turbine control and protection functions. 

This integration ensures the turbine's safe operation, even in scenarios where supporting systems may encounter failure. This redundancy guarantees a robust operational framework, enhancing safety and reliability. Moreover, a defining characteristic is the delineation between the "control point" interface and the interface to plant controls. The "control point" interface, maintaining GE's jurisdiction, serves as the interface between the turbine and the control system. Simultaneously, the interface to plant controls occurs at the "data point" level. This level excludes critical and rapidly changing commands and feedback signals, making it more compatible with potential non-GE controls. This separation facilitates interoperability while safeguarding crucial control aspects within GE's scope. Additionally, the unit control functions are tailored to ensure consistent and effective performance. 

They must operate continuously or at high frequencies to maintain satisfactory control standards. Many of these functions involve data sampling and processing using control algorithms, executed up to ten times per second. This rapid sampling and processing are crucial for numerous unit control functions, ensuring real-time responsiveness and precision in controlling the turbine's operations.

The GE Drive Control Board DS200SDCCG1AEC is the primary controller for the Mark V Series automated drive in which it is typically inserted. The Mark V Series to which this DS200SDCCG1AEC Drive Control Board belongs is one of the more recently-developed General Electric Mark product series that still utilizes their patented Speedtronic technology, which was first introduced alongside the rollout of the Mark I Series in the late 1960s. This Mark V Series is a product series centered around steam, gas, and wind turbine control and management system applications, and is considered a General Electric legacy series as it is no longer being actively produced by its original manufacturer. This DS200SDCCG1AEC printed circuit board or PCB for short, while definable as a Drive Control Board, is not the original Drive Control Board product offering that was manufactured for placement in the Mark V Series automated drive assembly; that would be the DS200SDCCG1 parent printed circuit board missing all three of this DS200SDCCG1AEC board's three significant product revisions.

Hardware Tips and Specifications

As with any Mark V Turbine Control System Series product offering available in our catalog of new and reconditioned General Electric printed circuit boards, this DS200SDCCG1AEC Drive Control Board necessitates some relevant hardware component inclusions and component specifications to attain its desired series and drive assembly functionality. The GE Drive Control Board DS200SDCCG1AEC is populated with 3 microprocessors and RAM that can be accessed by multiple microprocessors at the same time. Test points are available on the board. They are metal posts that you can probe with a tester to test the signal paths. The testing procedure for this DS200SDCCG1AEC PCB can only be performed by a trained servicer and the testing equipment must be approved for the purpose and also must be calibrated for the task. Several important hardware elements in the assembly of this DS200SDCCG1AEC Drive Control Board are revealed in the DS200SDCCG1AEC functional product number alone, which was developed to functionally describe many of this PCB;s individualized hardware components. The DS200SDCCG1AEC alphanumeric product number codes for important details such as this DS200SDCCG1AEC Board's:

Normal style of Mark V Series assembly

Domestic location of original product manufacture

SDCC functional product abbreviation

Normal style of printed circuit board protective coating

Group One Mark V Series product grouping

Three-fold revision history

Instructions and warnings related to the operation of the product:

The following specifications must be strictly observed:

 The technical specifications and typical applications of the product system must be strictly observed.

 PERSONNEL TRAINING: Only trained personnel may install, operate, maintain or repair the product system. These personnel must be instructed on the

These personnel must be instructed and briefed on the conditions in the hazardous area.

 Unauthorised modifications: No modifications or structural changes may be made to the product system.

 Maintenance Responsibility: It must be ensured that the product system is used only under appropriate conditions and in a condition fully suitable for use.

 Working environment: The user must fulfil the specified environmental conditions:

Safety regulations

The following safety regulations must be fully observed when (maintenance) work is carried out on the product system:

1 Disconnect completely.

2 Secure to prevent reconnection.

3 Confirm that the installation has been completed.

4 Perform grounding and short-circuiting.


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