• IS200DAMAG1BCB | Printed Circuit Board (PCB),jlplc
  • IS200DAMAG1BCB | Printed Circuit Board (PCB),jlplc

IS200DAMAG1BCB | Printed Circuit Board (PCB)

No.IS200DAMAG1BCB

Model: IS200DAMAG1BCB
Category: Printed Circuit Board (PCB)
Finish: new, not new,
Stock: Yes
Brand: GE
Size: 17.71 × 13.77 × 7.87 cm
Operating temperature: -30 to 65 degrees Celsius
Series: Mark VIe
  • IS200DAMAG1BCB | Printed Circuit Board (PCB),jlplc

Desciption


Model: IS200DAMAG1BCB
Category: Printed Circuit Board (PCB)
Finish: new, not new,
Stock: Yes
Brand: GE
Size: 17.71 × 13.77 × 7.87 cm
Operating temperature: -30 to 65 degrees Celsius
Series: Mark VIe
Product description

The IS200DAMAG1BCB is a printed circuit board (PCB) designed to be used as a gate drive amplifier/interface board in GE's innovative series of low-voltage 620 frame drive systems. These drives can be used as part of GE's Mark VI Speedtronic system to control gas or steam industrial systems. The MKVI is one of the last Speedtronic systems to be released by the company after decades of development and multiple iterations starting with the Mark I.

The IS200DAMAG1BCB is a neat circuit board that can be used with both legs of the IGBT module. It is connected to the upper phase branch and the lower phase branch IGBT (usually CM1000HA-28 H Powerrex) by direct connection. The board is also connected to the Bridge Personality Interface Board (BPIA). Connection via multiple pins on two connectors, including a 12-pin vertical connector and a 6-pin vertical connector. The GE publication GEI-100262A provides a complete list of each pin and its use and connection routes.



These include:



ToolboxST* application for configuration and diagnostics

WorkstationST* is used to manage the HMI and Historian functions

CIMPLICITY* Graphical user interface

Seamless integration provides a direct connection from the parameters on the operator screen to the corresponding alarm history, trends, logic diagrams, viewing Windows, and browsers.



Advanced Algorithms: Excitation systems provide highly advanced algorithms to address the challenges posed by fundamental changes in the power generation industry and improve the reliability of power generation assets.