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  • GE MRP680489 IS200VTCCH1CBB Thermocouple Input Terminal Board
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  • GE MRP680489 IS200VTCCH1CBB Thermocouple Input Terminal Board

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

    GE MRP680489 IS200VTCCH1CBB Thermocouple Input Terminal Board

    • ¥34000.00
      ¥34670.00
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    Weight:3.600KG
    • Quantity:
    • (Inventory: 35)
Description

GE MRP680489 IS200VTCCH1CBB Thermocouple Input Terminal Board


GE MRP680489 IS200VTCCH1CBB Thermocouple Input Terminal Board

DESCRIPTION

This IS200VTCCH1CBB printed circuit board product offering from General Electric was originally designed and produced specifically for placement in the Mark VI Turbine Control System Series, as asserted in this IS200VTCCH1CBB Thermocouple Terminal Board product's originally-available instructional manual materials. The Mark VI Turbine Control System Series that this IS200VTCCH1CBB Thermocouple Terminal Board product belongs to, as you were more than likely able to deduce solely based off of its full extended series name, specifically pertains to the control systems and management systems of General Electric-compatible gas, steam, and wind turbine automated drive assemblies. 

Hardware Tips and Specifications

Model number IS200VTCCH1CBB is one of the Mark VI boards produced by General Electric. This model is designated as a thermocouple input and can accept up to twenty-four thermocouple inputs. The inputs on this model can be wired to either the DTTC or TBTC terminal boards. The TBTC terminal board is the associated terminal board, while the DTTC board is the DIN Euro-size terminal board. Depending on the TBTC model used with the VTCC model, it can be used in two different groups. The TBTCH1C model allows for simplex control, while the TBTCH1B model allows for triple modular redundant (TMR) control. 

There are also two groups of the VTCC models; the IS200VTCCH1CBB model is part of the first group, which indicates that the model can be used with gas turbine control applications. No matter which group the VTCC model is used in, the same terminal boards will be used. Given this IS200VTCCH1CBB Thermocouple Terminal Board product's attribution to the Mark VI Series, it is not surrounded by many instructional manual materials online. With this being the case, the IS200VTCCH1CBB Thermocouple Terminal Board's IS200VTCCH1CBB functional product number itself can be leveraged as a decently-strong source of IS200VTCCH1CBB Board hardware component and component specification information, as it codes for numerous relevant IS200VTCCH1CBB Board details through its characteristic selection of functional naming elements. 

For instance, the IS200VTCCH1CBB functional product number begins with an iteration of the dual-functional IS200 series tag delegating this IS200VTCCH1CBB product's normal Mark VI Series assembly on top of its domestic original manufacture location. Some of the other relevant hardware specifications revealed in this manner include this IS200VTCCH1CBB product's:

VTCC functional product acronym

Group one Mark VI Series product grouping

Conformal PCB coating style

Three-fold revision history

Functional characteristics

Thermocouple Signal Reception:

The terminal board is capable of receiving many types of thermocouple signals, such as E, J, K, S and T type thermocouples, which are widely used in industrial temperature measurement.

High precision signal processing:

The terminal board is internally designed with high precision signal processing circuitry, which can accurately process the received thermocouple signals to ensure the accuracy and stability of temperature data.

Multi-Channel Input:

Provide multiple thermocouple signal input channels to support simultaneous monitoring of multiple temperature points, to meet the needs of temperature monitoring in complex industrial environments.

Communication interface:

Equipped with communication interface to support data exchange and remote monitoring with other control systems or host computer, convenient to achieve centralised management and control.

Status monitoring and fault alarm:

The terminal board has a status monitoring function, which can monitor the status of input signals in real time. When abnormal signals or faults are detected, an alarm can be issued to remind the operator to deal with them in time.

High reliability and stability:

Adopting high-quality raw materials and advanced production technology, it has high reliability and stability, and can operate stably in harsh industrial environments.

Application Areas

GE MRP680489 IS200VTCCH1CBB Thermocouple Input Terminal Board is widely used in areas requiring high precision temperature monitoring and control, including but not limited to:

Power plants: used to monitor the temperature of generators, transformers and other equipment to ensure the normal operation and safety of the equipment.

Oil and gas industry: used to monitor the temperature of pipelines, storage tanks and other equipment during oil and gas extraction, processing and transport to prevent safety accidents such as fires and explosions.

Chemical industry: In the process of chemical reaction, temperature is an important factor affecting the reaction rate and product quality. The terminal board can be used to monitor the temperature of reaction kettles, distillation towers and other equipment to ensure the smooth progress of chemical reactions.

Iron and steel industry: In the process of iron and steel smelting and processing, temperature has an important impact on product quality and process efficiency. The terminal board can be used to monitor the temperature of blast furnace, converter and other equipment to ensure the quality and production efficiency of steel products.

Installation and Maintenance

Installation Requirements:

Installation should be carried out in accordance with the installation guide provided by the manufacturer to ensure that the terminal board is correctly connected and fixed in the appropriate position.

Environmental factors such as temperature, humidity and electromagnetic interference should be taken into account during installation to ensure that the terminal board works under the recommended environmental conditions.

Maintenance Recommendations:

Periodically inspect and maintain the terminal block, including cleaning the connectors and checking the integrity of the cables.

If any malfunction or abnormality is found, contact the manufacturer or professional maintenance personnel for repair or replacement.

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