IS200EMCSG1A - Multibridge Connector Sensor Card

IS200EMCSG1A - Multibridge Connector Sensor Card IS200EMCSG1A - Multibridge Connector Sensor Card

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IS200EMCSG1A - Multibridge Connector Sensor Card is available in stock which ships the same day.

IS200EMCSG1A - Multibridge Connector Sensor Card comes in UNUSED as well as REBUILT condition.

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SPECIFICATIONS

Part Number: IS200EMCSG1A
Manufacturer: General Electric
Series: Mark VI
Product Type: Multibridge Connector Sensor Card
Repair: 3-5 days
Connectors: 6
Dimensions: 4.35 x 2 (in)
Number of Conduction Sensors: 4
Availability: In Stock
Country of Manufacturer: United States (USA)

Functional Description

IS200EMCSG1A is a Multibridge Connector Sensor Card developed by General Electric. It is a part of Mark VI Control system. It is equipped with four conduction sensors for monitoring and controlling power generation processes. The board is powered via two six-position plugs located on its edge. While no longer in production, we offers replacement services for its sensor circuits, ensuring the continued functionality of this critical component in power generation systems.

Features

  • It features four conduction sensors integrated into the board, each meticulously labeled as E1, E2, E3, and E4. These sensors play a crucial role in monitoring and controlling the critical parameters of the system, ensuring precision and reliability in power generation.
  • It is compact, with dimensions of approximately 4.35 inches in length and 2 inches in width. Its relatively small size belies its significant role in the control and monitoring of power generation processes.
  • This board presents a standout feature with two independent sensor circuits, labeled as U1 and U2, positioned between sensors E2 and E3. These circuits enhance the board's ability to monitor and control the power generation process with precision.

Connectors and Sensors

  • To ensure seamless operation, the board relies on a pair of six-position plugs for its power supply.
  • These connectors are strategically located on the edge of the board, facilitating a secure and efficient power supply connection. This design not only enhances stability but also simplifies maintenance and replacement when necessary.
  • The four conduction sensors are crucial in measuring and controlling key parameters within the power generation system. These sensors work in unison to ensure optimal performance and safeguard against potential issues.

Availability

While the board may no longer be in production, WOC remains committed to ensuring its availability. Our dedicated team can efficiently replace the sensor circuits when needed, making it possible to extend the life of this critical component. This commitment to support and maintenance underscores our dedication to the seamless operation of power generation systems.

WOC has the largest stock of Speedtronic control spares. Please contact our staff by phone or email for pricing and availability on any parts and repairs


FREQUENTLY ASKED QUESTIONS

What is IS200EMCSG1A?
It is a multibridge connector sensor card developed by General Electrics.

What is the role of the four conduction sensors on this card?
The four conduction sensors, labeled E1, E2, E3, and E4, play a vital role in monitoring and controlling critical parameters in power generation processes, ensuring precision and reliability.

What is the significance of the two independent sensor circuits (U1 and U2) on this board?
The board features two independent sensor circuits located between sensors E2 and E3. These circuits enhance the board's ability to monitor and control the power generation process with precision, contributing to its reliability.

How is the card powered?
The board is powered via two six-position plugs located on its edge, ensuring a secure and efficient power supply connection.

How can I ensure the continued functionality of the component in the power generation system?
While it is no longer in production, replacement services for its sensor circuits are available. You can contact WOC for support in maintaining the functionality of this critical component.