Product Introduction
The Bently Nevada 27465-01 Valve Position Transducer is part of the Bently Nevada turbine supervisory and condition monitoring instrumentation portfolio. It is designed to measure and transmit accurate valve position feedback in industrial control systems, particularly for steam turbines and other large rotating machinery.
This transducer converts mechanical valve movement into an electrical signal that can be used by monitoring systems to determine valve opening position. The data supports turbine efficiency optimization, load control, and safe operation by ensuring precise control of steam or fluid flow.
The 27465-01 is widely used in power generation, oil and gas, and heavy process industries where accurate valve position feedback is critical for performance and safety. It is typically integrated into turbine supervisory systems and control loops for real-time monitoring and adjustment.
Product Specifications
| Parameter | Description |
|---|---|
| Model | 27465-01 |
| Product Type | Valve Position Transducer |
| Manufacturer | Bently Nevada |
| Measurement Type | Valve Position / Linear or Rotary Movement |
| System Type | Turbine Supervisory Instrumentation (TSI) |
| Function | Position Sensing and Signal Conversion |
| Application | Valve Position Feedback Monitoring |
| Output Signal | Electrical Position Signal |
| Integration | Control and Monitoring Systems |
| Operating Principle | LVDT-based or equivalent position sensing technology |
| Installation Type | Mechanical linkage to valve actuator |
| Weight | 0.8 kg |
Applications
• Steam Turbines – Provides precise valve position feedback for steam flow regulation and turbine efficiency control.
• Gas Turbines – Supports real-time monitoring of fuel or air control valves for stable operation.
• Power Generation Plants – Enables accurate load control and optimization of turbine performance.
• Oil & Gas Facilities – Used in process control systems requiring precise valve position feedback.
• Petrochemical Plants – Supports safe and efficient control of process flow systems.
• Industrial Process Control Systems – Provides feedback for automated valve positioning and regulation.
• Boiler Systems – Helps maintain correct steam distribution and system efficiency.
• Compressor Control Systems – Assists in regulating flow and operational stability.
• Refinery Operations – Supports critical valve monitoring in continuous processes.
• Heavy Industrial Equipment – Enhances system control accuracy and operational safety.
Advantages
• Accurate Valve Position Feedback – Ensures precise monitoring of valve opening and movement.
• Improved Process Efficiency – Helps optimize flow control and system performance.
• Supports Turbine Control Systems – Integrates into turbine supervisory instrumentation.
• Enhanced Operational Safety – Provides reliable feedback for critical control loops.
• Industrial-Grade Design – Suitable for demanding power and process environments.
• Stable Signal Output – Delivers consistent position measurement data.
• Supports Automation Systems – Easily integrates with PLC and DCS platforms.
• Reliable Long-Term Operation – Designed for continuous industrial use.
• Improved Equipment Control Accuracy – Enhances regulation of flow and pressure systems.
• Widely Used Proven Technology – Trusted in turbine and process industries.
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