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  • GE ds200tcqbg1a Extended Analog I/O Board
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  • GE ds200tcqbg1a Extended Analog I/O Board

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

    Extended Analog I/O Board

    • ¥22000.00
      ¥24520.00
      ¥22000.00
      ¥22000.00
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    Weight:3.600KG
    • Quantity:
    • (Inventory: 36)
Description

Extended Analog I/O Board


Extended Analog I/O Board

Part Number ds200tcqbg1a Manufacturer General Electric Country of Manufacture As Per GE Manufacturing Policy Series Mark VI/VIe Function Module Availability In StockDS200TCQBG1A is an RST Extended Analog I/O Board manufactured and designed by General Electric that functions as a processor board as part of the Mark V Series used in gas turbine control systems. Both a programmable logic device and EPROM modules are included in the board. The GE RST Extended Analog I/O Board additionally contains 15 jumpers, 1 OK LED that can be seen from the side, and 1 50-pin connector. 

When the OK LED on the side is lighted, it indicates that the board is receiving power. It also shows whether or not the board is processing. If the OK LED is off and the drive is powered on, it could be the first sign that there is a problem. DS200TCQBG1A Functional Description The following functions are defined by the TCQB configuration: Proximitor inputs Inputs for LVDT/LVDR 2 outputs for regulator milliamps LM input vibrations When proximitors are needed, the card is used on Steam Simplex and in some TMR applications. Proximitor Types RF devices known as proximitor types generally measure the separation between an object and the device itself, such as the separation between a turbine shaft and a proximitor.

 A voltage signal that is inversely proportional to this distance is the device's output. Changes in the AC component of the voltage are perceived as vibration, whereas changes in the DC component are interpreted as changes in position. Proximitor Shaft Location The input shaft speed for an algorithm is specified by Proximitor Shaft Location Assignments. The three different shaft rotation speeds have different vibration frequency spectra. To obtain the first and second order vibration signal components, sampling is done at a frequency that is eight times the fundamental frequency. 

 Peak to Peak Vibration The Proximitors use the AC signal component to indicate vibration. Only this AC component is measured by the vibration inputs. Transducer Sensitivity The transducer determines the sensitivity of the transducer, which is measured in Volts/mil of vibration. Generic Bently Nevada Position/Proximitor Probes or Differential Expansion Probes are the two different types of transducers. These values are prescribed by the Gas Turbine department. Proximitor Low Limit Diagnostics & Proximitor High Limit Diagnostics The operating range of the Bently Nevada proximitors is 0 to 20 V. The probes, however, are only linear between 2 and 16 V. When used to detect vibration, any value outside of this range is non-linear and the device is regarded as failing.

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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