Detection Principle: Non - Dispersive Infrared Technology (NDIR)
Data Output: CO₂ Concentration (mmHg), End - Tidal CO₂, Inhaled CO₂, Respiratory Rate
Negative Ion Generation Quantity: ≥3×10⁶ Pcs/cm³
Residual Ozone Concentration: ≤0.05ppm
Technical Principle: Metal Oxide Semiconductor (MOX)
Detection Objects: CO, NO₂, NH₃ (optional)
Measurement Principle: NDIR + TCD
Measured Components: CO₂ + H₂
Detection Principle: Thermal Conductivity Technology (TC)
Detection Type: H₂
Data Refresh: ≤1s
Output Method: CAN2.0
Detection Principle: Non - Dispersive Infrared (NDIR) Detection Technology
Tested Gas: Electrolyte Vapor DMC
Measurement Principle: NDIR Dual - Channel + MOX + Light Scattering
Measured Components: PM2.5 + CO2 + CO + P
Measured Components: CO, CO₂, CH₄, C₃H₈, O₂, H₂S
Measurement Principle: NDIR, ECD
Measured Components: H₂, N₂, O₂, CO, CO₂, CH₄, C₂H₂, C₂H₄, C₂H₆, C₃H₆, C₃H₈, H₂S, Etc.
Measurement Range: 0 - 100% (The Range Can Be Selected According To On - Site Conditions)
Measured Component: Electrolyte DMC
Measuring Range And Resolution: 100ppm, 0.1ppm
Test Gas: Oxygen (O₂)
Detection Principle: Tunable Diode Laser Absorption Spectroscopy (TDLAS)
Detection Principle: Ultrasonic Measurement Principle
Detection Range: O₂ Concentration: 0 - 100%, Flow Rate: TBD
Detection Principle: Ultrasonic Measurement Principle
Detection Range: 0 - 100%
Response Time: Concentration: ≤1.5s; Flow Rate: ≤0.3s
Operating Conditions: -5 °C - 50 °C, 0 - 95%RH (non - Condensing)
Detected Gas: Oxygen (O₂)
Detection Principle: Zirconia Principle
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