• IS200ESYSH1AAA    | Servo terminal board  | Mark VI/Mark VIe control system,jlplc
  • IS200ESYSH1AAA    | Servo terminal board  | Mark VI/Mark VIe control system,jlplc

IS200ESYSH1AAA | Servo terminal board | Mark VI/Mark VIe control system


The GE IS200ESYSH1AAA is a servo terminal circuit board designed by General Electric as part of its Mark VI or Mark VIe family of control systems. This type of circuit board is commonly used in gas turbine or steam turbine control to handle the distribution of servo valve drive and control signals. 
  • IS200ESYSH1AAA    | Servo terminal board  | Mark VI/Mark VIe control system,jlplc

Desciption


The GE IS200ESYSH1AAA is a servo terminal circuit board designed by General Electric as part of its Mark VI or Mark VIe family of control systems. This type of circuit board is commonly used in gas turbine or steam turbine control to handle the distribution of servo valve drive and control signals. The following is the detailed description and technical information of the board:

Product overview

Model: IS200ESYSH1AAA

Category: Servo terminal board

Series: Mark VI/Mark VIe control system

Main functions:

A terminal interface is provided to connect the servo drive signal.

Analog signal input/output is supported to achieve precise position control and feedback of the servo valve.


Control functions: IS200ESYSH1AAA This type of controller module is commonly used to perform various control functions, including monitoring process variables, executing control policies, data acquisition, and communication.
Communication interface: The controller module usually has a variety of communication interfaces for communicating with other control devices, sensors and
Data acquisition systems communicate for automation and remote monitoring.
Application Areas: Controller modules are widely used in a variety of industrial and process control applications, including chemical plants, power plants, manufacturing, water treatment, oil and gas production, etc.
Programmable: These controller modules often need to be configured and programmed to suit specific application requirements and integrate with other systems.
Reliability and durability: These modules typically require high reliability and durability to meet the requirements of industrial environments.