• GE IS200VAICH1C VME Analog Input Card
  • GE IS200VAICH1C VME Analog Input Card
  • GE IS200VAICH1C VME Analog Input Card
  • GE IS200VAICH1C VME Analog Input Card
Product Overview The GE IS200VAICH1C VME Analog Input Card is a high-performance data acquisition module designed for GE Mark VI turbine control systems. It is responsible for converting analog field si……
GE IS200VAICH1C VME Analog Input Card
  • GE
  • IS200VAICH1C
  • VME Analog Input Card
  • USA
  • 280 x 150 x 25 mm
  • 0.8 kg
  • Xiamen, China
  • New & In Stock
  • T/T, PayPal, Western Union
  • 1 Year
  • 1-3 Working Days
  • DHL, UPS, TNT, FedEx and EMS.
  • 24-Hour Service
  • COO
  • 8

Our advantage

GE IS200VAICH1C VME Analog Input Card

Global Logistics

We have a 10-year logistics and express cooperation agreement, so our products can be shipped to any place in the world.

GE IS200VAICH1C VME Analog Input Card

Brand new and original

Our products are imported in bulk from the place of origin. Because of the cooperative relationship, our products are all original and 100% new.

GE IS200VAICH1C VME Analog Input Card

24-hour service

We provide 7*24 hours service to our customers. We will be there whenever you need us.

GE IS200VAICH1C VME Analog Input Card

Price advantage

All our products are priced very favorably because we have our own warehouse and supply.


Company Information
E-mail [email protected]
Mobile +8615980777398
Whatsapp +8615980777398
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Product Overview

The GE IS200VAICH1C VME Analog Input Card is a high-performance data acquisition module designed for GE Mark VI turbine control systems. It is responsible for converting analog field signals into digital data for processing within the control system.

This card plays a critical role in monitoring turbine and generator operating conditions, ensuring accurate measurement of key process variables such as temperature, pressure, vibration, and voltage.


Technical Specifications

Parameter Details
Manufacturer GE
Model IS200VAICH1C
Product Type VME Analog Input Card
Function Analog signal acquisition and conversion
Input Signal Type Analog (voltage/current)
System Compatibility GE Mark VI Control System
Architecture VME bus-based module
Interface Type VME backplane interface
Mounting Type Rack-mounted control cabinet
Dimensions 280 × 150 × 25 mm
Weight 0.8 kg
Operating Environment Industrial turbine control systems
Application Category Analog data acquisition module

Function and Working Principle

The IS200VAICH1C operates as an analog-to-digital signal interface within turbine control systems.

Its working principle includes:

  • Receiving analog signals from field sensors and transmitters
  • Conditioning input signals for accuracy and stability
  • Converting analog data into digital format using internal A/D conversion
  • Transmitting processed data to the control system via VME bus
  • Ensuring noise reduction and signal integrity in industrial environments

This allows precise monitoring and real-time control of turbine operations.


Role in Industrial Control Systems

Within GE Mark VI systems, the IS200VAICH1C serves as a primary analog signal acquisition interface.

It is responsible for:

  • Collecting critical process data from field instrumentation
  • Supporting turbine performance monitoring and control
  • Enabling real-time condition assessment of generator systems
  • Feeding accurate data into control algorithms
  • Enhancing system stability and operational efficiency

It is essential for accurate turbine diagnostics and performance optimization.


Industrial Applications

The GE IS200VAICH1C is widely used in:

  • Gas turbine control systems
  • Steam turbine monitoring systems
  • Combined cycle power plants
  • Industrial generator control systems
  • Process monitoring and automation systems
  • High-precision industrial measurement systems

It is ideal for environments requiring reliable analog data acquisition.


Installation and System Integration

Proper installation ensures accurate signal processing:

  • Installed in GE Mark VI VME-based control racks
  • Connected to analog field sensors and transmitters
  • Integrated with turbine control and monitoring modules
  • Requires proper grounding and shielding for signal integrity
  • Configured within system I/O mapping architecture

Correct installation ensures high accuracy and system stability.


Compatible System Components

The IS200VAICH1C typically works with:

  • GE Mark VI control system processors
  • Analog field sensors (pressure, temperature, vibration)
  • Signal conditioning modules
  • VME backplane systems
  • Data processing and protection modules
  • Turbine monitoring and diagnostics systems

These components form a complete analog monitoring architecture.


Recommended Alternative Models

Model Type Key Feature Application
IS200VAICH1C VME Analog Input Card High-precision signal acquisition Turbine control systems
IS200EMIOH1A Main I/O Board Digital/analog processing Excitation systems
IS200VAICH series variants Analog input modules Expanded channel support Industrial monitoring
PLC analog input modules General AI cards Flexible integration Automation systems
Industrial VME I/O cards Data acquisition units High reliability design Power plants

Key Advantages

  • High-accuracy analog signal acquisition
  • Stable performance in harsh industrial environments
  • Seamless integration with GE Mark VI systems
  • Supports real-time turbine monitoring
  • Reduces signal noise and interference
  • Reliable VME architecture-based design

Technical FAQs

Q1: What is the main function of IS200VAICH1C?
It converts analog sensor signals into digital data for turbine control systems.

Q2: What types of signals does it handle?
It handles voltage and current analog signals from field devices.

Q3: Where is it used?
It is used in GE Mark VI turbine and generator control systems.

Q4: What is its architecture?
It is based on a VME bus system architecture.


Conclusion

The GE IS200VAICH1C VME Analog Input Card is a key data acquisition component in industrial turbine control systems. Its high-precision signal conversion and robust VME-based design make it essential for accurate monitoring and efficient operation in power generation environments.



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