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  • GE IS200TRTDH1A Resistance Temperature Device
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  • GE IS200TRTDH1A Resistance Temperature Device

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

    GE IS200TRTDH1A Resistance Temperature Device

    • ¥10569.50
      ¥10216.02
      ¥10569.50
      ¥10569.50
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    Weight:3.150KG
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    • (Inventory: 54)
Description

GE IS200TRTDH1A Resistance Temperature Device


GE IS200TRTDH1A Resistance Temperature Device

Part Number IS200TRTDH1A Manufacturer General Electric Country of Manufacture As Per GE Manufacturing Policy Series Mark VI/VIe Function Module Availability In StockIS200TRTDH1A is an RTD terminal board developed by GE. It is part of the Mark VI series. The Resistance Temperature Device terminal board serves as an interface for accommodating 16 three-wire RTD inputs, each wired to two barrier-type terminal blocks. 

These inputs are crucial for temperature measurement and control within the system. INPUT CONFIGURATION AND WIRING The 16 RTD inputs are intricately wired to ensure optimal functionality and accuracy. The utilization of two barrier-type terminal blocks provides a structured and organized approach for connecting these inputs, enabling efficient management and maintenance. NOISE SUPPRESSION CIRCUITRY To safeguard against potential disturbances, such as surges and high-frequency noise, the RTD inputs incorporate specialized noise suppression circuitry. 

This circuitry acts as a protective measure, ensuring the stability and reliability of temperature readings by mitigating external interference. COMMUNICATION WITH I/O PROCESSORS The TRTD terminal board engages in communication with one or more I/O processors within the system. These I/O processors undertake the vital task of converting the analog RTD input signals into digital temperature values. Subsequently, these digital temperature values are transmitted to the controller for further processing and monitoring. The seamless communication between the TRTD terminal board and the I/O processors streamlines the process of temperature data acquisition and ensures the accurate transmission of temperature values to the controller. 

This integration forms a fundamental part of the system's temperature measurement and control functionality, contributing significantly to its overall efficiency and reliability. INSTALLATION Each RTD is connected to the terminal blocks, ensuring a direct and reliable connection for accurate temperature measurement. These terminal blocks are firmly secured in place using two screws each, providing stability and durability to the wiring setup. The terminal blocks feature 24 terminals, capable of accommodating wires up to 12 American Wire Gauge (AWG) in size. This generous capacity allows for versatile wiring options and supports a range of wire sizes to cater to specific installation needs. 

Adjacent to each terminal block, a shield terminal strip is positioned and connected to the chassis ground. This strip serves as a grounding point, enhancing system stability and mitigating potential electrical interference or noise that could affect the accuracy of the RTD readings. The layout design ensures an organized and structured wiring arrangement, facilitating ease of installation and future maintenance. The use of terminal blocks with multiple terminals allows for neat and orderly wiring, minimizing the risk of cross-connections or disorganized wiring that could lead to operational issues. The meticulous installation of the RTDs onto the terminal board, coupled with the secure mounting of terminal blocks and the inclusion of shield terminal strips for grounding, contributes to a robust and reliable system setup. This installation process emphasizes both precision and stability in wiring connections, ensuring accurate temperature measurement and system integrity.

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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