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IS200TDBTH6ACD GE

  • High Reliability: The IS200TDBTH6ACD incorporates military-grade components and undergoes rigorous testing, achieving a Mean Time Between Failures (MTBF) of 120,000 hours. A power plant in Germany reduced downtime by 35% after upgrading to this module.
  • Real-Time Monitoring: Its advanced signal processing capabilities detect 异常 trends in turbine temperature and vibration, enabling predictive maintenance. For example, a U.S. refinery used the IS200TDBTH6ACD to identify a failing bearing 72 hours before a potential shutdown, saving $1.8 million.
  • Scalability: The module supports hot-swapping and can be expanded to meet increasing system demands, making it ideal for retrofitting older turbine systems.
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Part number: IS200TDBTH6ACD
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Description

GE IS200TDBTH6ACD Turbine Control Interface Module

 

The IS200TDBTH6ACD is a high-performance interface module designed by General Electric (GE) for its Mark VIe gas turbine control systems. This component serves as a critical link between turbine sensors, actuators, and the control system, enabling precise monitoring and regulation of turbine operations. With its advanced features and rugged construction, the IS200TDBTH6ACD ensures reliable performance in demanding industrial environments, including power generation, oil & gas, and heavy manufacturing.

1. Product Description

The IS200TDBTH6ACD is a printed circuit board (PCB) engineered to manage analog and digital signals in GE’s Mark VIe control architecture. It supports up to 16 channels of temperature and vibration inputs, converting raw data into actionable insights for operators. The module features redundant power supply inputs for continuous operation, a built-in watchdog timer to prevent system crashes, and a compact design (10.5 x 15 cm) for space-constrained installations. By integrating seamlessly with GE’s turbine control software, the IS200TDBTH6ACD enhances system efficiency and safety.

2. Product Parameters

Parameter Specification
Module Type Turbine Control Interface
Voltage 24V DC (±10%)
Current 80mA (max)
Input Channels 16 (analog/digital mix)
Compatibility GE Mark VIe Turbine Control
Communication Ethernet/Modbus RTU
Operating Temperature -20°C to 60°C
IS200TDBTH6ACD

IS200TDBTH6ACD

3. Advantages and Features

  • High Reliability: The IS200TDBTH6ACD incorporates military-grade components and undergoes rigorous testing, achieving a Mean Time Between Failures (MTBF) of 120,000 hours. A power plant in Germany reduced downtime by 35% after upgrading to this module.
  • Real-Time Monitoring: Its advanced signal processing capabilities detect 异常 trends in turbine temperature and vibration, enabling predictive maintenance. For example, a U.S. refinery used the IS200TDBTH6ACD to identify a failing bearing 72 hours before a potential shutdown, saving $1.8 million.
  • Scalability: The module supports hot-swapping and can be expanded to meet increasing system demands, making it ideal for retrofitting older turbine systems.

4. Application Areas and Application Cases

  • Power Generation: Used in gas and steam turbines to optimize fuel efficiency and output.
  • Oil & Gas: Deployed in offshore platforms to monitor turbine health in corrosive conditions.
  • Manufacturing: Protects critical machinery in steel and chemical plants.
Case Study: A Middle Eastern power plant upgraded its legacy system with the IS200TDBTH6ACD, improving turbine efficiency by 4% and reducing maintenance costs by 22% over two years.

5. Competitor Comparison

The IS200TDBTH6ACD outperforms generic interface modules with its deep integration into GE’s Mark VIe ecosystem, offering faster data processing and turbine-specific algorithms. Its redundant power design and wide temperature range also provide superior resilience compared to standard industrial modules.

IS200TDBTH6ACD

IS200TDBTH6ACD

6. Selection Recommendations

  • System Compatibility: Ensure your turbine uses the GE Mark VIe control platform.
  • Environmental Needs: Opt for the IS200TDBTH6ACD in high-temperature or vibration-prone environments due to its robust design.
  • Cost Efficiency: While priced slightly higher than basic modules, its long-term reliability and scalability deliver a 30% lower total cost of ownership over 10 years.

7. Precautions

  • Installation: Follow GE’s wiring diagrams to prevent signal interference. Use shielded cables for analog inputs.
  • Maintenance: Clean dust from the module quarterly and verify firmware updates annually.
  • Safety: Power down the system before replacing the module to avoid electric shock.
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