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GE IS215UCVGH1AC UCVG H1A Control & Communication Processor Module

GE IS215UCVGH1AC UCVG H1A Control & Communication Processor Module

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Brand:GE Fanuc PLC
Item No.:GE IS215UCVGH1AC
Product Origin:USA
Product Dimensions:160 × 33 × 125 mm
Product Weight:1.5 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 IS215UCVGH1AC-1GE IS215UCVGH1AC-3GE IS215UCVGH1AC-4GE IS215UCVGH1AC-2

The GE IS215UCVGH1AC is a UCVG H1A VME-based Control and Communication Processor Module used in GE Mark VI Speedtronic turbine control systems. It is designed to act as a system-level control and communication interface, handling real-time data exchange between turbine controllers, I/O networks, and supervisory control systems.

This module is widely used in industrial power generation environments where stable communication, deterministic processing, and high system availability are essential.


Technical Specifications — Control Hardware & Communication Architecture

CategorySpecification
ManufacturerGeneral Electric (GE)
Product SeriesMark VI Speedtronic
Module TypeUCVG H1A Control & Communication Module
Functional CodeIS215UCVGH1AC
Main FunctionTurbine control processing & system communication
ProcessorIntel Ultra Low Voltage Celeron 650 MHz (typical configuration)
Memory128 MB SDRAM + 128 MB Flash
Communication InterfacesDual Ethernet (10/100 Mbps), RS-232/485, VME bus
Protocol SupportEthernet Global Data (EGD), Modbus, SNP (system dependent)
I/O ArchitectureVME backplane integration
Operating SystemQNX Real-Time OS (typical Mark VI platform)
Operating Temperature-40°C to +70°C
Power Supply5V DC VME backplane
PCB DesignIndustrial multilayer VME board
Mounting TypeSingle-slot VME rack module
DimensionsApprox. 160 × 33 × 125 mm
WeightApprox. 0.5 – 1.5 kg (variant dependent)

The module integrates Ethernet connectivity, real-time processing, and redundant industrial communication pathways to ensure stable turbine operation under continuous load conditions.


Recommended Related Models — GE System Integration Ecosystem

The IS215UCVGH1AC is typically deployed with:

  • IS215UCVFH2A — Universal Control Unit processor module
  • IS215UCVEH2AF — VME controller module
  • IS215ACLEH1C — Application control layer module
  • IS215GFOIH1A — Fiber optic communication module
  • IS210BPPCH1AD — I/O processor board

These modules collectively form the control, communication, and signal processing backbone of GE Mark VI turbine systems.


Popular GE Mark VI Modules — Industrial Automation Components

Commonly used GE turbine control modules include:

  • IS210AEBIH2BE — Wind turbine interface module
  • IS200VVIBH1C — Vibration monitoring module
  • IS200EGDMH1A — Ethernet diagnostic gateway module
  • IS200TRLYH1B — Relay output module
  • IS200TBAIH1C — Terminal board assembly

These components are widely adopted in global energy systems for their reliability and long service life.


Applications — Industrial Power & Turbine Control Systems

The IS215UCVGH1AC is used in:

  • Gas turbine control systems
  • Steam turbine automation platforms
  • Combined-cycle power plants
  • Industrial distributed control systems (DCS)
  • High-reliability power generation networks

It provides essential communication bridging and control processing between field devices and central turbine logic.


Advantages — Why This Module Is Widely Used

  • Stable dual Ethernet communication architecture
  • Real-time deterministic control processing capability
  • Industrial-grade VME hardware design
  • High compatibility with GE Mark VI systems
  • Strong EMI resistance for harsh industrial environments

These features make it a reliable backbone component for turbine control and automation systems.


Technical FAQs — Engineering Insights

1. What is the IS215UCVGH1AC used for?
It is a VME control and communication module used in GE Mark VI turbine systems.

2. What is its main function?
Processing turbine control data and managing communication between system modules.

3. What processor does it use?
Typically an Intel Ultra Low Voltage Celeron 650 MHz processor.

4. How much memory does it have?
128 MB SDRAM and 128 MB Flash memory.

5. What communication interfaces does it support?
Dual Ethernet, serial ports, and VME backplane communication.

6. What systems use this module?
GE Mark VI gas and steam turbine control systems.

7. What is the operating temperature range?
Approximately -40°C to +70°C.

8. Is it a controller or communication module?
It functions as both a control processor and communication interface.

9. Is it still used today?
Yes, mainly in installed GE turbine fleets and industrial maintenance systems.

10. Why is this module important?
Because it ensures stable communication and real-time processing in turbine control architectures.


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