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is200emcsg1aamultibridge conduction sensor card-0

For GE

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IS200EMCSG1AA Multibridge Conduction Sensor Card

  • Overview
  • Specifications
  • Description
  • Applications
  • Features
  • System Ethernet GSM features
  • Frequently Asked Questions
  • Recommended Products
Overview

Place of Origin:

USA

Brand Name:

GE

Model Number:

IS200EMCSG1AA

Packaging Details:

Original new Factory Sealed

Delivery Time:

5-7 days

Payment Terms:

T/T

Supply Ability:

In stock

Specifications

Part Number:

IS200EMCSG1AA

Manufacturer:

General Electric

Series:

Mark VI

Product Type:

Exciter Multibridge Conduction Sensor Card

Country of Manufacture:

United States of America (USA)

Operating Temperature:

-30 to 65°C

Dimensions:

Length 4.35 in, Width 2 in

Connectors:

Six-plug

Number of Conduction Sensors:

4 (E1-E4)

Independent Sensor Circuits:

Two circuits U1 and U2 (between E2 and E3)

Power Supply Connectivity:

Two six-plug edge connectors

Alarm and Event:

Ethernet GSM, 25 Hz timestamping

SOE Elimination:

Contact inputs timestamped at 1 ms

Description

IS200EMCSG1AA is an Exciter Multibridge Conduction Sensor Card developed by GE. It is a part of Mark VI control system. It is used in exciter systems to monitor conduction within the exciter system, detecting irregularities, and ensuring optimal performance. Its advanced sensor technology and reliable power supply connectivity make it an essential component for exciter system functionality. This card features advanced capabilities for detecting and analyzing conduction across various points within the exciter.

Applications

Large thermal/nuclear power plants: GE EX2100 excitation systems for 600MW-1000MW units ensure no unit tripping in the event of a single controller failure.

Critical industrial power plants: Synchronous generators requiring 24/7 uninterrupted operation in petrochemical and large steel mills.

Grid peak-shaving units: Supporting logic stability during frequent start-ups and switching processes.

Features

1 Conduction Sensors: The board incorporates four conduction sensors, each identified as E1 through E4, positioned on the bottom edge of the board for comprehensive monitoring.

2 Independent Sensor Circuits: Between sensors E2 and E3, the board includes two independent sensor circuits, designated as U1 and U2, providing redundancy and enhanced monitoring accuracy.

3 Power Supply Connectivity: The board receives its power supply through two six-plug connectors located on its edge, facilitating efficient power distribution for uninterrupted operation.

System Ethernet GSM features

1 Alarm and Event: Ethernet GSM facilitates transmission of alarm and event data with high precision, including local time tags for alarms, system events, and sequence of events (SOE) for contact inputs, timestamped at 25 Hz for accurate monitoring and analysis.

2 Elimination of Separate SOE Systems: Dedicated processors in each contact input board timestamp all contact inputs with 1 ms precision, removing the need for separate SOE systems, reducing costs, and enhancing efficiency and reliability.

Frequently Asked Questions

Q: What is IS200EMCSG1AA?
A: IS200EMCSG1AA is an Exciter Multibridge Conduction Sensor Card developed by General Electric under the Mark VI control system series. It is used in excitation systems to monitor conduction conditions within multibridge configurations.

Q: What drives the RS-232C serial port of IS200EMCSG1AA?
A: The RS-232C serial port is driven by a Universal Asynchronous Receiver/Transmitter (UART) chip. This component manages serial communication by transmitting data in 8-bit bytes, with each byte framed by a start bit, optional parity bit, and one or two stop bits.

Q: What is the significance of the transmission baud rate of IS200EMCSG1AA?
A: The transmission baud rate defines the speed at which data is sent over the serial interface, measured in bits per second (bps). It directly impacts how fast communication occurs between the IS200EMCSG1AA module and connected devices.

Q: What is the purpose of parity in serial communication of IS200EMCSG1AA?
A: Parity is used for error detection in data transmission. By adding a parity bit to each data byte, the system ensures that the total number of bits is either even or odd, allowing the receiver to detect potential transmission errors.

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