
GE Mark V DS200PCCAG7ACB DC Power Connect Board
توضیحات محصول
مشخصات فنی
| Brand Name: | GE Mark V | ||
| Model Number: | DS200PCCAG7ACB | ||
| Alternate Part Number | DS200PCCAG7A | ||
| Condition: | 100% Original | ||
| Dimensions | 3.5x13x13.5cm | Weight | 0.12kg |
| Description | DC Power Connect Board | Warranty: | 12 Months |
| | | | |
The DS200PCCAG7ACB is a Direct Current Power Connect Card developed by General Electric under the Mark V series. It connects the drive to the SCR power bridge and acts as an interface.
The GE Mark V DS200PCCAG7ACB DC Power Connect Board is a critical component within the GE Mark V Turbine Control System. This board is designed to interface with the SCR (Silicon Controlled Rectifier) power bridge, playing a key role in the power distribution and connection within turbine control systems.
Key Features:
DC Power Connect Board:
The DS200PCCAG7ACB is specifically a DC Power Connect Card. It is used to establish connections between the drive system and the SCR power bridge, facilitating the distribution of DC power within the control system.
Interface Functionality:
The board acts as an interface between the drive and the SCR power bridge. This interface is crucial for ensuring that power is delivered effectively and reliably to the drive system.
Integration with Mark V Series:
As part of the Mark V series, this board is designed for use in GE’s turbine control systems, which are used in gas and steam turbines. Its integration into the Mark V system underscores its importance in maintaining the functionality and performance of the turbine control setup.
Specifications Overview:
Model: DS200PCCAG7ACB
Type: DC Power Connect Board (Printed Circuit Board)
System: GE Mark V Turbine Control System
Function: Connects drive to SCR power bridge; acts as an interface for DC power distribution
The GE Mark V DS200PCCAG7ACB DC Power Connect Board is a crucial component for maintaining the operation of the Mark V turbine control systems. Its role in connecting the drive to the SCR power bridge highlights its importance in ensuring reliable power distribution within turbine control applications.
