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  • GE DS3800HPBC Parallel Line Buffer Board
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  • GE DS3800HPBC Parallel Line Buffer Board

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

    GE DS3800HPBC Parallel Line Buffer Board

    • ¥23650.00
      ¥24520.00
      ¥23650.00
      ¥23650.00
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    Weight:3.600KG
    • Quantity:
    • (Inventory: 35)
Description

GE DS3800HPBC Parallel Line Buffer Board


GE DS3800HPBC Parallel Line Buffer Board

Part Number DS3800HPBC Manufacturer General Electric Country of Manufacture As Per GE Manufacturing Policy Series Mark VI/VIe Function Module Availability In StockDS3800HPBC is a Parallel Line Buffer Board manufactured and designed by General Electric as part of the Mark IV Series used in gas turbine control systems. A Parallel Line Buffer Board is an electronic component or circuit board designed to manage and control parallel data lines. 

In electronics and computing, data can be transmitted in either serial or parallel form. Parallel transmission involves sending multiple bits of data simultaneously over separate lines, which can result in faster data transfer compared to serial transmission. Turbine control systems are used to monitor and regulate the operation of turbines in various applications, such as power generation, aviation, and industrial processes. These systems rely on accurate and timely data transmission to ensure the safe and efficient operation of turbines. FEATURES: Data Aggregation and Distribution: Turbine control systems gather data from various sensors, meters, and monitoring devices. 

These sensors provide real-time information about parameters like temperature, pressure, rotational speed, and fuel levels. The parallel line buffer board collects data from these sources and efficiently distributes it to the relevant processing units. Data Synchronization: In turbine systems, precise timing is critical. The parallel line buffer board ensures that data from different sensors arrives at the processing units with accurate timing. This synchronization prevents errors in turbine operation caused by mismatched or delayed data. Redundancy and Reliability: Turbine systems often employ redundancy for safety and reliability. 

The parallel line buffer board can manage duplicate data streams and implement failover mechanisms. If one data source fails, the board can seamlessly switch to a backup source to ensure uninterrupted control and monitoring. Communication Between Subsystems: A turbine control system consists of multiple subsystems that need to exchange data. The parallel line buffer board facilitates smooth communication between these subsystems by buffering and routing data appropriately. Control Signal Management: Turbine control involves sending control signals to actuators and valves to adjust various parameters. The parallel line buffer board handles these control signals, ensuring they reach the intended actuators accurately and without delays. 

 Real-time Monitoring: Turbine control requires real-time monitoring of critical parameters. The parallel line buffer board ensures that data is processed and delivered promptly to support timely decision-making and intervention.

Main Functions

Power system monitoring and control:

The power interface board can be used for power system monitoring and control equipment to ensure the safe, stable and reliable operation of the power system.

Power plant automation:

In the power plant, it can be used to connect and manage the power supply of the mastering system and monitoring equipment to improve the automation level of the power plant.

Power transformer and distribution:

Applicable to substations and distribution stations, it is used to govern the power supply of transformers, circuit breakers and other equipments to ensure the high efficiency of power transmission and distribution.

Industrial Process Mastering:

In manufacturing and chemical workshops, this power interface board can be used for power management of automation systems, inner and control equipment to enhance productivity and safety.

Building Automation:

It can be used in building automation system, power supply to lighting, air conditioning, security equipment, etc., to achieve intelligent management of building equipment.

Railway flag signal system:

In the railway system, it is used in the power management of railway flag signal equipment and control system to ensure the stable operation of railway signal system.

Smart Grid:

In the smart grid, the power interface board can be used to connect and manage the digital power equipment and promote the intelligent development of the power grid.

Traffic Flag Signal System:

In the traffic flag signal system of routes and intersections, it is used to supply power to the flag master and equipment to ensure the normal display of traffic signals.

Aerospace:

In aviation and aerospace, the power interface board can be used in the control system of aircraft and spacecraft to provide stable and reliable power support.

It is suitable for land initiatives, oilfield equipment and other categories, providing power support for various land engineering equipment.


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