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GE
GE IS200TVBAH2ACC Mark VIe Temperature Monitoring Analog Input Board
联系人:李经理
电话:15685359870
手机:15685359870
QQ:3165088973
邮箱:3165088973@qq.com
地址: 浙江省义乌市

 
产品详情



Product Description

The GE IS200TVBAH2ACC is a dedicated high-precision analog input monitoring board built for GE Speedtronic Mark VIe turbine control systems. It is specially developed for long-term collection of turbine core thermal parameters and mechanical vibration data, accurately acquiring RTD temperature, thermocouple and shaft vibration signals to support unit status evaluation and safe operation judgment.

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Adopting industrial high-stability signal conditioning circuitry and multi-stage filtering technology, this module delivers low-noise signal acquisition and precise data conversion. It supports dual-channel redundant sampling design with comprehensive circuit surge protection. Featuring wide-temperature adaptability and strong electromagnetic interference resistance, it maintains stable high-precision monitoring in harsh turbine hall environments for 24/7 continuous turbine operation.

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Main Specifications

  1. Full Model: IS200TVBAH2ACC; Product Type: Turbine vibration and temperature dedicated analog monitoring input board
  2. Applicable System: GE Speedtronic Mark VI and Mark VIe gas and steam turbine control platforms
  3. Core Function: High-precision collection, conditioning and digital conversion of vibration and temperature signals
  4. Signal Compatibility: Supports PT100 RTD, J/K/T thermocouple and 0-10V vibration probe signals
  5. Redundancy Design: Dual-channel redundant sampling structure to improve data fault tolerance and reliability
  6. Acquisition Performance: Low-drift high-resolution sampling to ensure accurate long-term parameter monitoring
  7. Circuit Protection: Built-in surge suppression and overcurrent protection to avoid signal impact damage
  8. Power Specification: 24VDC industrial power supply with strong anti-fluctuation and low power consumption
  9. Environmental Range: Operating temperature -40°C to +85°C, resistant to vibration, dust and electromagnetic noise
  10. Reliability: Power industry certified, fully adapted to full-load continuous operation of turbine units

Core Functions

  1. Serves as the core temperature and vibration signal monitoring unit for GE Mark VIe turbine systems.
  2. Accurately collects multi-point bearing, cylinder and shaft vibration real-time signals.
  3. Stably acquires RTD and thermocouple temperature data of turbine key components.
  4. Conditions and filters original field signals to eliminate industrial noise and data deviation.
  5. Converts analog field parameters into standard digital data for main controller analysis.
  6. Adopts redundant sampling to prevent data loss and ensure monitoring continuity.
  7. Provides accurate parameter basis for turbine thermal expansion and vibration fault diagnosis.
  8. Supports real-time over-limit alarm judgment to assist unit condition monitoring and early warning.
  9. Resists harsh turbine hall environmental interference to maintain long-term acquisition stability.
  10. Guarantees the safety, stability and health monitoring operation of power generation turbine units.

Application Scenarios

  1. Thermal power plant GE Mark VIe turbine vibration and temperature health monitoring platforms
  2. Industrial gas turbine unit key component temperature measurement and vibration monitoring systems
  3. Power generation unit bearing temperature real-time acquisition and overheating protection scenarios
  4. Petrochemical waste heat power generation turbine mechanical state monitoring supporting projects
  5. Large combined-cycle turbine thermal parameter closed-loop monitoring systems
  6. Turbine hall strong electromagnetic and high-temperature harsh working condition acquisition scenarios
  7. Old Mark VIe system temperature and vibration acquisition board replacement and upgrading
  8. Power plant unit mechanical fault early warning and equipment health diagnosis platforms
  9. Industrial turbine multi-parameter synchronous monitoring and data recording systems
  10. Energy industry high-reliability turbine equipment state intelligent monitoring scenarios




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