Description
The IS200TGENH1A is manufactured as a component of the Mark VI series. Mark VI is a series in the Mark series. These systems are used to control and automate the processes of gas/steam turbines.
The IS200TGENH1A consists of one (1) long black terminal block located on the upper left side of the PCB. Three (3) smaller terminal blocks (also black) are arranged underneath the larger terminal block along the bottom half of the board. Right in the middle of the IS200TGENH1A are four (4) large square components called relays or contactors. These relays are black with a yellow top center. The immediate left side of the relay is a collection of at least six (6) metal oxide varistors or MOV. Each metal oxide varistor is a solid red circle. Three (3) round white inductors (also called coils) are arranged vertically in the lower half of the IS200TGENH1A. These inductors consist of coils covered with white fabric. Three (3) connector ports are arranged along the right border of the IS200TGENH1A. They contain small female connectors and are labeled JT1, JS1, and JR1. The top half of the IS200TGENH1A contains several vertical rows of widgets. Four (4) black semicircular transistors are arranged vertically on the right side. Two (2) rows of four (4) red jumpers are placed in this area. Each jumper is connected to three (3) metal jumper pins.
The IS200TTURH1B is used as the turbine terminal board in the Mark VIe control system. MKVIe is the most complex of the GE Speedtronic systems and the last GE system for managing gas or steam turbine systems.
The IS200TTURH1B has multiple connectors, including two terminal blocks, each with two rows of terminal connection points. These terminals are screw connections and are numbered for easy reference. In addition, the board has male and female D-shell connectors. Other board components include two transformers, multiple relays, capacitors, diodes and resistors. The board also has several variable resistors.
TTUR boards are usually used in conjunction with VTUR or PTUR boards. The relays on the board are designed for use with TMR or simplex systems to provide circuit breaker closure through a coordinated synchronization system. These relays are used in conjunction with other boards. In a TMR system, relays are activated using a <s:1> logical vote. However, in a simplex system, the same relay can be configured to drive from <R> using only jumper Settings.
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