Fuel Flow Sensor, Flow Sensor
Fuel Flow Sensor, Flow Sensor
Key Features
Precision ±1.5% accuracy for reliable fuel consumption tracking
Wide range 0.5–200 L/min covers small engines to industrial systems
Supports diesel, gasoline, kerosene and biofuel applications
Ultra-fast response <10 ms for real-time performance monitoring
Durable stainless steel construction withstands harsh conditions
Easy IoT integration with Arduino, Raspberry Pi, and cloud platforms
Low pressure drop maintains fuel system efficiency
Wide temp range –20°C to +120°C for extreme environments
Simple pulse output for quick installation and data logging
CE & RoHS certified for global automotive and industrial use
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Fuel Flow Sensor – Precise Fuel Measurement for Engine Performance & Industrial Automation
Product Description
The Fuel Flow Sensor is a compact, high-accuracy digital device designed for real-time monitoring of fuel consumption in automotive, marine, and industrial engines. Using advanced turbine or Hall-effect sensing technology, it precisely measures the amount and rate of fuel flowing through pipelines, ensuring accurate data for performance analysis, cost optimization, and system diagnostics.
Unlike standard flow meters, this sensor offers fast response time, high temperature tolerance, and seamless data output, making it ideal for integration with ECU systems, IoT controllers, or fuel management platforms. With corrosion-resistant materials and robust sealing, it can handle diesel, gasoline, kerosene, or biofuel with reliability and durability in harsh field conditions.
Factory calibration and stable signal output help engineers, fleet owners, and developers simplify setup and achieve consistent, long-term performance across varying environments.
Advantages of Fuel Flow Sensor
High-precision digital flow measurement for accurate fuel monitoring and optimization
Wide flow range: 0.5–200 L/min (model dependent)
Typical accuracy ±1.5% F.S., ensuring stable and repeatable results
Supports multiple fuels – diesel, petrol, kerosene, and biofuel
Fast response time (<10 ms) for real-time fuel control and diagnostics
Durable housing made of stainless steel or aluminum alloy for long service life
Easy integration with ECUs, microcontrollers, and IoT monitoring systems
Low power consumption and high signal stability for continuous operation
Factory calibrated and pressure-tested for reliability
RoHS and CE compliant for global distribution
Fuel Flow Sensor Specifications
| Parameter | Specification |
|---|---|
| Sensor Type | Turbine or Hall-effect fuel flow sensor |
| Flow Range | 0.5 – 200 L/min (model dependent) |
| Accuracy | ±1.5% F.S. typical |
| Output Type | Pulse or analog voltage (customizable) |
| Operating Voltage | 5V – 24V DC |
| Response Time | ≤10 ms |
| Operating Temperature | –20°C to +120°C |
| Housing Material | Stainless steel or anodized aluminum |
| Medium Compatibility | Diesel, gasoline, kerosene, ethanol blends |
| Pressure Rating | ≤2.0 MPa |
| Output Frequency | 6.6 × Q (L/min) Hz (typical) |
| Calibration | Factory calibrated and tested |
| Compliance | RoHS, CE, ISO/TS16949 approved |
Typical Applications of Fuel Flow Sensor
Automotive & Transportation
Real-time monitoring of fuel consumption in vehicles and fleets
Integration with ECUs for performance tuning and emission reduction
Data logging for mileage efficiency and trip analysis
Marine & Aviation Systems
Fuel measurement for boats, yachts, and small aircraft
Monitoring consumption to optimize range and reduce operational costs
Industrial Equipment & Generators
Diesel generator fuel usage monitoring
Flow control in machinery and hydraulic systems
Fuel tracking for agricultural and construction engines
IoT & Data Logging Solutions
Smart fuel management via IoT platforms and cloud dashboards
Integration with Arduino, Raspberry Pi, and ESP32 controllers
Custom telemetry and monitoring solutions
Related Flow & Sensor Products
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Strict Production Process
High purity silica (usually quartz or sand) and carbon (usually petroleum coke or coal) are ground to produce fine powder.
High purity silica (usually quartz or sand) and carbon (usually petroleum coke or coal) are ground to produce fine powder.
High purity silica (usually quartz or sand) and carbon (usually petroleum coke or coal) are ground to produce fine powder.
High purity silica (usually quartz or sand) and carbon (usually petroleum coke or coal) are ground to produce fine powder.
High purity silica (usually quartz or sand) and carbon (usually petroleum coke or coal) are ground to produce fine powder.
High purity silica (usually quartz or sand) and carbon (usually petroleum coke or coal) are ground to produce fine powder.
Strict Production Process of Yafeite











