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AQMS-400 CO-Analysator

FPI AQMS-400 carbon monoxide (CO) analyzer measures ambient CO concentration by employing nondispersive infrared with gas filter correlation method technology.

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Beschreibung

Produktübersicht

FPI AQMS-400 carbon monoxide (CO) analyzer measures ambient CO concentration by employing nondispersive infrared with gas filter correlation method technology.

Principle

Infrared energy emitted by light source is passed through gas chamber containing the air sample, and the quantitative absorption of energy by CO in the sample cell is measured by corresponding detector.

AQMS-400 CO-Analysator Technische Daten

Standard Range
Max:0~1000ppm Min:0~50ppm (Selectable)
Principle NDIR
Zero Noise ≤0.02ppm (RMS)
Span Noise ≤0.25ppm (RMS)
Lower Detectable Limit ≤0.04ppm (RMS)
Display Digital
Zero Drift <0.1ppm/24h
Span Drift ±0.5ppm/24h
Linearity <1%F.S.
Precision <1%
Response Time T90<60s
Sample Flow Rate (800±80)sccm
Data Transmission 2 channel analog (4~20) mA;

12 digital input/output;

4-way relay output;

Communication RS232/RS485/Ethernet
Operating Temperature US EPA Specification 20~30°C

Actual applicable:-5~55°C

Operating Humidity 0~95%RH
Calibration Multi-point calibrator
Power Requirement 220V AC/50Hz;

110V AC/60Hz

Dimensions and Weight 178(H)x432(W)x597(D)mm, 28kg

Vielseitige Anwendungen in verschiedenen Branchen

Hauptmerkmale von AQMS-400 CO-Analysator

  • 14 meters optical path to perform high reliability.
  • Five years guarantee on GFC wheel.
  • Compliance with US EPA reference method.
  • Various outputs include ethernet and RS232.
  • User friendly interface with large screen.
  • Continuous system diagnosis with alarm.
  • Multi-tasking software allows viewing test variables while operating;
  • Temperature and pressure compensation.
  • Internal data logging with 1 min to 365 day multiple averages.

GFC
GFC (Gas filter correlation) technology is utilized to remove interference caused by moisture and other backgrounds.

Two gas filled chambers are mounted on a rotating disc, which pass through an IR beam alternately. The measure chamber is filled with nitrogen while the reference chamber is filled with high concentration CO. IR beam then passes through the sample gas cell. The difference in absorbance is measured and provides a direct output of the gas concentration.

Data storage and analysis
Stored data are easily retrievable through the serial or ethernet port via PC client software, allowing operators to perform predictive diagnostics and enhanced data analysis by tracking parameter trends.

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