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LFAQMS-2015(M)
1. Modular Flexible Configuration
Utilizing a hardware modular architecture, users can freely combine gas sensors and meteorological modules based on monitoring requirements, supporting seamless expansion from basic 6-parameter (PM₂.₅ + meteorological data) to full-parameter (TVOC + odorous gases) configurations. All modules feature a plug-and-play design, with on-site replacement time <5 minutes, significantly reducing operational complexity.
2. Ultrasonic Meteorological Integration
Equipped with an integrated ultrasonic anemometer, the system has no mechanical rotating parts, avoiding wear issues common with traditional wind vanes in sandy environments. Measurement accuracy reaches wind speed ±0.3m/s and wind direction ±3°, with automatic temperature compensation, ensuring long-term stable monitoring in extreme climates like Central Asia.
3. Automatic Calibration & Low-Power Design
It features an automatic zero and span calibration system that performs zero-point calibration every 24 hours, effectively mitigating sensor drift. The 20W ultra-low power consumption enables fully solar-powered operation, addressing deployment challenges in areas without grid electricity.
4. Multi-Channel Data Fusion Transmission
It supports simultaneous triple-data channels: 4G/Ethernet remote transmission, Bluetooth on-site collection, and SD card redundant storage. Automatically switches to local storage during network outages and resumes断点续传 upon recovery, ensuring data integrity ≥99.9%.
1. Modular Flexible Configuration
Utilizing a hardware modular architecture, users can freely combine gas sensors and meteorological modules based on monitoring requirements, supporting seamless expansion from basic 6-parameter (PM₂.₅ + meteorological data) to full-parameter (TVOC + odorous gases) configurations. All modules feature a plug-and-play design, with on-site replacement time <5 minutes, significantly reducing operational complexity.
2. Ultrasonic Meteorological Integration
Equipped with an integrated ultrasonic anemometer, the system has no mechanical rotating parts, avoiding wear issues common with traditional wind vanes in sandy environments. Measurement accuracy reaches wind speed ±0.3m/s and wind direction ±3°, with automatic temperature compensation, ensuring long-term stable monitoring in extreme climates like Central Asia.
3. Automatic Calibration & Low-Power Design
It features an automatic zero and span calibration system that performs zero-point calibration every 24 hours, effectively mitigating sensor drift. The 20W ultra-low power consumption enables fully solar-powered operation, addressing deployment challenges in areas without grid electricity.
4. Multi-Channel Data Fusion Transmission
It supports simultaneous triple-data channels: 4G/Ethernet remote transmission, Bluetooth on-site collection, and SD card redundant storage. Automatically switches to local storage during network outages and resumes断点续传 upon recovery, ensuring data integrity ≥99.9%.
Pollutants: PM₂.₅/PM₁₀/SO₂/NO₂/O₃/CO/TVOC
Expandable Gases: NH₃/H₂S
Meteorological Parameters: Wind Speed/Direction/Temp/Humidity/Pressure
Power Supply: AC 220V±22V 50Hz or Solar
Max Power Consumption: 20W
Data Output: SD Card/Bluetooth/Network
Pollutants: PM₂.₅/PM₁₀/SO₂/NO₂/O₃/CO/TVOC
Expandable Gases: NH₃/H₂S
Meteorological Parameters: Wind Speed/Direction/Temp/Humidity/Pressure
Power Supply: AC 220V±22V 50Hz or Solar
Max Power Consumption: 20W
Data Output: SD Card/Bluetooth/Network
1. High-density deployment in urban areas for real-time pollution mapping
2. Fenceline monitoring for industrial parks with NH₃/H₂S odor detection
3. Mobile monitoring of vehicle emissions near highways
4. Dust pollution tracking at construction sites with PM₁₀/PM₂.₅ focus
1. High-density deployment in urban areas for real-time pollution mapping
2. Fenceline monitoring for industrial parks with NH₃/H₂S odor detection
3. Mobile monitoring of vehicle emissions near highways
4. Dust pollution tracking at construction sites with PM₁₀/PM₂.₅ focus