RRO00148 | Reuter-Stokes | GE | Flame Tracker | RRO00148
The Reuter-Stokes GE flame tracker utilizes silicon carbide (SiC) photodiode technology, a high-temperature resistant alloy housing, and industrial-grade insulation materials to ensure long-term stable operation in high-temperature, vibration, and polluted environments. Its modular design allows for quick replacement and low maintenance costs. Supporting flange mounting or threaded fastening, the modular design facilitates rapid on-site replacement. Shielded cables reduce electromagnetic interference, making it widely applicable in power plants, petrochemical plants, boilers, and gas turbines. It employs ultraviolet/infrared spectroscopy detection technology (some models use pure ultraviolet detection), with a response time of <100ms, an operating temperature range of -20℃ to +70℃, an IP54/IP65 protection rating, and compatibility with GE combustion management systems.
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Other names for
RRO00148:
RRO00148 Ultraviolet Flame Detector
Ultraviolet Flame Sensor RRO00148
RRO00148 Flame Tracking Dry Gas Turbine
The RRO00148 belongs to the GE Reuter-Stokes flame tracker series and is a high-performance replacement component in industrial combustion control systems, widely used in power plants, petrochemical plants, boilers, and gas turbines. It employs ultraviolet/infrared spectroscopy detection technology, with a response time of<100ms, an operating temperature range of -20℃ to +70℃, and an IP54/IP65 protection rating, compatible with the GE combustion management system.
Technical Parameters and Characteristics
Detection Principle: Utilizes silicon carbide (SiC) photodiode technology, featuring a high-temperature resistant alloy casing and industrial-grade insulation materials, ensuring long-term stable operation in high-temperature, vibration, and contaminated environments. Modular design supports quick replacement and low maintenance costs.
Response Speed: Typical response time<100ms, can be as low as 25ms, ensuring rapid and safe response.

Electrical Parameters: Operating power supply 24V DC or 115/230V AC (depending on system configuration), power consumption ≤5W, signal output is current/voltage signal, compatible with the GE combustion control system.
Environmental Adaptability: Operating temperature -20℃ to +70℃, storage temperature -40℃ to +85℃, IP54/IP65 protection rating, high-temperature resistant alloy casing and industrial-grade insulation materials, resistant to vibration and contaminants.
Installation Method: Supports flange mounting or threaded fixing; modular design facilitates quick on-site replacement; shielded cable reduces electromagnetic interference.
Application Scenarios and Advantages
Core Applications: Gas turbine combustor flame monitoring, power plant boiler safety control, petrochemical industry combustion equipment, industrial kilns, etc., with particularly excellent performance under complex conditions such as low-NOx burners, steam injection, and hydrogen fuel mixing.
Industrial Combustion Monitoring: Primarily used for real-time monitoring of flame status in gas turbine combustors, industrial kilns, boilers, and petrochemical equipment, ensuring normal fuel ignition and stable combustion, and preventing the risk of explosion due to unburned fuel accumulation.
Safety Mechanism: Triggers a rapid shutdown protocol by detecting the presence/absence of flame to protect equipment from damage. Also supports hydrogen-fuel mixture combustion scenarios (such as Baker Hughes ILG series), adapting to energy transition needs.
Expandability: Adaptable to various fuel types (natural gas, hydrogen, etc.) and low-NOx burners, maintaining high sensitivity under steam injection or complex combustion conditions.
Gas Turbines: Monitors combustor flame status to ensure safe start-up, operation, and shutdown. Power Plant Boilers: Used for flame detection in tangential-circular boilers and circulating fluidized bed boilers to prevent flameout accidents.
Petrochemical Plants: Monitors combustion stability in heating furnaces and cracking furnaces in oil refineries and chemical plants.
Industrial Kilns: Flame safety monitoring in high-temperature equipment such as blast furnaces in steel mills and glass melting furnaces.
Performance Advantages:
High Sensitivity: SiC photodiodes are sensitive to long-wave ultraviolet light, reducing false alarms and improving detection reliability.
Long Lifespan: High-temperature resistant materials and optimized optical elements, combined with quick-disconnect connectors, reduce maintenance time from hours to minutes.
Safety Certifications: Complies with international safety certifications such as ETL, ATEX, and IECEx, suitable for explosive hazardous areas, and meets industrial safety standards (such as GB 4715-2024 "Point-Type Smoke Detectors").
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Upgrade Compatibility: Can replace older flame sensors, supports customized conversion kits, is compatible with existing system interfaces, and reduces upgrade costs.
Installation and Maintenance Recommendations
Installation Points: Ensure the detector is aligned with the flame combustion area, avoid direct exposure to high-temperature smoke, use shielded cables and keep away from strong electrical interference sources, and clean the detector window regularly (calibrate every 6-12 months).
Maintenance Tips: If flame detection anomalies occur, check wiring connections, detector sensitivity, and environmental interference factors. Original equipment manufacturer (OEM) parts are recommended to ensure system compatibility.
Background and History of Cooperation:
Brand Affiliation: Reuter-Stokes was originally an independent brand, later acquired by GE and integrated into its industrial business unit, now belonging to Baker Hughes Energy Technologies. GE and Reuter-Stokes have collaborated in flame detection for over 25 years, with products widely used in gas turbines and power generation equipment globally.
Technological Iteration: Latest models, such as the ILG (Enhanced Low Gain) flame tracker, improve photosensitivity through optimized electronics, reducing detection time to 0.025 seconds and supporting lower threshold flame detection, contributing to decarbonization goals.
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Technological Progression: Potential Precautions
Application Validation: Under special operating conditions such as hydrogen fuel blending and low light conditions, performance needs to be verified through actual testing to ensure compliance with safety standards and operational requirements.
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