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Product Introduction

The GE Reuter-Stokes flame tracker sensor uses a silicon carbide (SiC) ultraviolet/infrared dual-band sensor, which has high sensitivity to specific wavelengths of flame (such as long-wave UV), can penetrate fuel vapor and smoke, achieves fast response (≤25 milliseconds), supports 4-20mA analog signals or RS485 digital signals, and is compatible with industrial control systems.

Description

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  RS-FS-9001 Other Names:

  Flame Detector RS-FS-9001

  RS-FS-9001 Ultraviolet Flame Sensor

  Flame Tracker RS-FS-9001

  Core Technology and Parameters

  Detection Principle: Employs a silicon carbide (SiC) ultraviolet/infrared dual-band sensor, exhibiting high sensitivity to specific wavelengths of flames (such as long-wave UV), penetrating fuel vapor and smoke, achieving a rapid response (≤25 milliseconds).

  Output Signal: Supports 4-20mA analog signal or RS485 digital signal, compatible with industrial control systems.

  Electrical Parameters: Operating voltage AC 220V or DC 24V, rated power ≤5W, response time ≤5 seconds, operating temperature range -40°C to +85°C, storage temperature -40°C to +85°C.

  Physical Characteristics: Dimensions approx. 221mm × 109mm, weight approx. 1.6kg, protection rating IP65/IP54, metal casing resistant to vibration and high temperatures.

  Environmental Adaptability: Operating temperature -40℃~+85℃, storage temperature -40℃~+85℃, protection rating IP54/IP65, high temperature resistant, vibration resistant, suitable for harsh environments such as gas turbines and petrochemical plants.

  Application Scenarios and Advantages

  Industrial Sector:

  Gas Turbines: Monitors the flame status in the combustion chamber to ensure stable ignition and safe shutdown, suitable for low NOx burners and steam injection scenarios.

  Boilers/Kilns: Real-time monitoring of furnace flames to prevent deflagration or flameout, ensuring safety in industries such as petrochemicals, power, and steel.

  High-Risk Environments: Suitable for explosive environments such as oil, natural gas, and iron smelting, compliant with ATEX/IECEx certification, and adaptable to harsh conditions including high temperatures, dust, and vibration.

  Industrial Applications: Suitable for high-temperature, high-risk environments such as gas turbine combustion chambers, boiler furnaces, petrochemical plants, industrial kilns, oil refining equipment, steel blast furnaces, and heat treatment furnaces.

  Energy Industry: Suitable for radiation monitoring in power plants and nuclear facilities, oil and gas production/transportation, and iron smelting process monitoring.

  Special Applications: Supports steam injection applications, low-NOx burners, and marine/land-based gas turbines, ensuring combustion stability and safe shutdown.

  Core Advantages:

  High Reliability: SiC sensors have strong anti-interference capabilities, suppressing false alarms caused by welding arc light and sunlight, and have a lifespan of several years.

  Rapid Maintenance: Modular design with quick-disconnect connectors reduces replacement time from hours to minutes, minimizing downtime costs.

  Low-Maintenance Design: Quick-disconnect connectors reduce replacement time from hours to minutes; an improved sensor cooling system extends the lifespan of electronic components; modular design supports rapid on-site replacement.

  Multi-Scenario Adaptability: Compatible with various fuels (gas/oil/steam injection), low-NOx burners, and water-wash circulation; supports gas turbine ignition confirmation and continuous combustion status monitoring, meeting NFPA gas turbine flame detection standards.

  Upgrade Compatibility: Replaces older flame sensors (such as tube-style sensors); provides customized conversion kits to adapt to all turbine configurations.

  Compliance: Meets EN 54-10 (CE certification) and NFPA standards, complying with EU and international safety regulations.

  Installation and Maintenance:

  Installation Specifications: Flange/threaded fixing to ensure a tight seal; align the detector with the flame combustion area, avoiding direct impact from high-temperature flue gas; use shielded cable for the signal line, keeping it away from strong electrical interference sources; clean the detector window regularly (every 6-12 months) and perform calibration testing.

  Maintenance Recommendations: Check the power supply and wiring integrity; verify power supply stability using a voltmeter; if false alarms or abnormal detection occur, check for optical contamination, wiring faults, or sensor aging; it is recommended to use original parts and dedicated calibration tools.

  Maintenance Recommendations: Self-diagnostic function: Built-in optical contamination monitoring and window scaling detection automatically report abnormal conditions to the control system.

  Certifications and Standards

  Complies with industrial safety standards (such as NFPA), and is certified by ETL, ATEX, and IECEx to ensure safe operation in hazardous areas.

  Compatible with various GE combustion management systems (such as Triconex and Ovation), and supports DCS/PLC system integration.

  Industry compliance: Complies with NFPA specifications for gas turbine flame detection, and is certified by industrial safety standards to ensure stable operation in extreme environments.

  Summary: As a high-performance flame tracker from GE Reuter-Stokes, the RS-FS-9001, with its high sensitivity, fast response, anti-interference capabilities, and low maintenance characteristics thanks to its SiC material, is widely used in critical industrial safety scenarios. It is a core device for flame monitoring in gas turbine, petrochemical, and energy industries, effectively improving production safety and reducing potential risks.


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Zhangzhou Fengyun Electrical Equipment Co., Ltd