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GE DS200UCIAG1ACC Communication Interface Board

GE DS200UCIAG1ACC Communication Interface Board

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Brand:GE Fanuc PLC
Item No.:GE DS200UCIAG1ACC
Product Origin:USA
Product Dimensions:300 × 200 × 45 mm
Product Weight:2.2 kg
Payment:T/T, Western Union, Credit Card
Goods_stock:15
Shipping Port:Xiamen, China
Lead Time:1-3 Days
Condition:Brand New And Original
Warranty:1 Year
Certificate:COO

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GE DS200UCIAG1ACC (2) - 副本GE DS200UCIAG1ACCGE DS200UCIAG1ACC (2)GE DS200UCIAG1ACC (3) - 副本

The GE DS200UCIAG1ACC is a Communication Interface Board designed for GE Mark V Speedtronic turbine control systems. It serves as a key link between control processors and external communication networks, ensuring seamless data exchange and system coordination across the turbine control architecture.

Engineered for reliability, this module supports stable communication pathways essential for real-time monitoring, diagnostics, and control execution.


Technical Specifications

ParameterDetails
ManufacturerGeneral Electric (GE)
ModelDS200UCIAG1ACC
SeriesMark V Speedtronic
Module TypeCommunication Interface Board
FunctionData communication & signal interface
Communication RoleProcessor-to-network interface
Supported InterfacesSerial / proprietary Mark V communication
Data HandlingReal-time signal transmission
PCB TypeMulti-layer industrial-grade board
ConnectorsRibbon cables and multi-pin headers
DiagnosticsStatus monitoring and fault indication
MountingRack-mounted within Mark V cabinet
Operating Temperature0°C to +60°C
Environmental RatingIndustrial-grade

Physical Dimensions & Weight

ParameterValue
Dimensions (L × W × H)300 × 200 × 45 mm
Weight~1.5 – 2.2 kg

The robust PCB layout supports multiple communication interfaces while ensuring stable operation in high-vibration environments.


System Role & Functional Behavior

The DS200UCIAG1ACC operates as a communication bridge within the Mark V system:

  • Facilitates data exchange between control processors and external interfaces
  • Supports real-time monitoring and diagnostic communication
  • Routes signals between system boards and communication modules
  • Maintains stable and synchronized data flow
  • Provides status feedback for communication health
  • Enhances system coordination and control accuracy

It ensures that all parts of the turbine control system remain connected and responsive.


Recommended Related Models

  • DS200SDCC Drive Control Board
  • DS200SLCC LAN Communication Board
  • DS200DSPC Signal Processing Board
  • DS200UPLAG Power Supply Boards
  • DS200TCQAG Terminal Interface Board

Popular GE Mark V Modules

  • DS200TBCAG I/O terminal boards
  • DS200DMC control interface boards
  • DS200EX series excitation modules
  • IS200 series Mark VI upgrade modules
  • GE 531X drive control boards 


Applications

The GE DS200UCIAG1ACC is widely used in:

  • Gas turbine control systems
  • Steam turbine automation systems
  • Power generation control cabinets
  • Industrial drive and excitation systems
  • Oil & gas compressor control systems

It is critical in environments where reliable communication is essential for system performance and safety.


Advantages

  • Stable and reliable communication interface
  • Supports real-time data transmission
  • Strong compatibility with Mark V architecture
  • Durable industrial-grade construction
  • Enhances system coordination and diagnostics
  • Proven performance in turbine control environments


Technical FAQs

1. What is the main function of DS200UCIAG1ACC?
It provides communication and signal interfacing within Mark V control systems.

2. What system is it used in?
GE Mark V Speedtronic turbine control systems.

3. What type of communication does it support?
Serial and proprietary Mark V communication interfaces.

4. Is it a processor module?
No, it is an interface board for communication.

5. Where is it installed?
Inside the Mark V control cabinet rack.

6. What is its operating temperature range?
0°C to +60°C.

7. What is its weight?
Approximately 1.5–2.2 kg.

8. What are its dimensions?
300 × 200 × 45 mm (L × W × H).

9. What industries use it?
Power generation, oil & gas, and industrial automation.

10. Why is it important?
Because it ensures reliable communication between system components, enabling stable and efficient turbine control.


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