Infrared CO Analyzer

The infrared carbon monoxide detector operates on the principle that gas molecules absorb infrared light at specific wavelengths, calculating the concentration of carbon monoxide by detecting changes in infrared light intensity. It is used for real-time monitoring of carbon monoxide levels in the air in fields such as environmental monitoring and industrial safety.
Selection
When selecting, focus on whether the detection range covers the application requirements, check the instrument's response time and recovery time, confirm the sensor lifespan and calibration cycle, verify if the explosion-proof rating matches the usage environment, and ensure the data output interface meets recording requirements.

Terms

Standards

Instruments

Infrared CO2 Sensor Response Fast, Not Affected by Temperature Humidity, CO2 Recovery Time ≤ 3 minutes; Circulating wind speed automatically adjusts to avoid sample volatilization; Door temperature heating prevents condensate pollution.

$ 3402.00

Equipped with infrared CO2 sensor accuracy of 0.1%, CO2 recovery time ≤ concentration value × 1.2min, built-in ultraviolet sterilization lamp and microbial Filter, effectively prevent foster pollution, the use of antibacterial stainless steel lumen for easy cleaning and maintenance.

$ 1555.00

Equipped with infrared CO2 sensor accuracy of 0.1%, with ultraviolet sterilization and door heating anti-condensation design, CO2 recovery time ≤ concentration value × 1.2 minutes, support RS-485 interface connection.

$ 4506.00

Using Infrared Sensor to monitor CO2 concentration, not affected by Temperature Humidity, CO2 concentration recovered within 5 minutes after opening the door, Temperature Fluctuation +/- 0.2 ℃, equipped with Microbial Filter and door temperature heating system to prevent condensation pollution.

$ 3338.00

Equipped with infrared CO2 sensor accuracy of 0.1%, CO2 uniformity +/- 0.1%, built-in UV sterilization lamp and microbial Filter, antibacterial stainless steel inner cavity four corners arc design for easy cleaning, support programmatic programming and Linear dispersion display function.

$ 4971.00

Equipped with infrared CO2 sensor accuracy of 0.1%, built-in ultraviolet sterilization lamp can effectively prevent pollution, support 0-20% CO2 concentration range, the use of antibacterial stainless steel cavity for easy cleaning and maintenance.

$ 3901.00

Using infrared CO2 Sensor control accuracy +/- 0.1%, gas sleeve heating heating, CO2 recovery time does not exceed the concentration value × 1.2 minutes, double door structure sealing good anti-pollution.

$ 1524.00

Using Infrared CO2 Sensor, restore 5% concentration within 3 minutes after opening the door; Equipped with 90 ℃ heating and humidity sterilizing system, effectively eliminate microbial pollution; Temperature Fluctuation +/- 0.1 ℃, CO2 control accuracy +/- 0.1%.

$ 6505.00

The infrared CO2 sensor accuracy is +/- 0.1%, which is not affected by temperature Humidity; the circulating fan speed is automatically adjusted to avoid sample volatilization; the door temperature heating system prevents condensate pollution; the CO2 recovery time is ≤ 3 minutes, and the temperature recovery is ≤ 8 minutes.

$ 1835.00

The cavity preheating technology implementation +/- 0.8 ℃ Temperature Uniformity, equipped with infrared CO2 Sensor to ensure accurate concentration, standard ultraviolet sterilizing lamp to prevent cross-contamination, support remote monitoring function.

$ 4161.00

Infrared Sensor is used to monitor CO2 concentration, which is not affected by temperature and Humidity, and restores the set CO2 value within 5 minutes after opening the door; Equipped with Microbial Filter, the filtration efficiency of ≥ 0.3 μm particles reaches 99.99%, effectively preventing pollution.

$ 4177.00

Using Infrared CO2 Sensor, Fast Response and No Temperature Humidity Affected, Control accuracy +/- 0.1%; Equipped with UV Sterilization and Microbial Filter to effectively prevent pollution; Automatic adjustment of circulating wind speed to avoid sample volatilization.

$ 3038.00

Infrared CO2 Sensor is not affected by Temperature Humidity, control accuracy +/- 0.1%; equipped with UV sterilization system and microbial Filter to effectively prevent pollution; automatic adjustment of circulating wind speed to avoid sample volatilization.

$ 2742.00

Infrared Sensor to achieve CO2 concentration ≤ 3 minutes rapid recovery, equipped with HEPA Filter to maintain 100 clean, support 90 ℃ high temperature heating and humidity sterilization, temperature fluctuation +/- 0.1 ℃ to ensure a stable foster environment.

$ 3590.00

Infrared CO2 Sensor control accuracy is stable, Temperature Fluctuation +/- 0.5 ℃, using double door structure and door temperature heating system, effectively prevent condensation and pollution, short recovery time.

$ 2295.00

Articles

The use of gravure proofing machines in the comprehensive evaluation of gravure ink printability and drying performance.
This article explores how a gravure proofing press can be used to comprehensively evaluate the printability and drying properties of gravure inks. The experiment tested the dot sharpness, transfer rate, and leveling properties of different inks using standard equipment, while recording drying times through the filter paper method and infrared temperature measurement.
UV-Vis-NIR spectrophotometer measures the transmittance of anti-reflection coatings.
This article introduces the method of measuring the transmittance of anti-reflective coatings using a UV-Vis-NIR spectrophotometer. The instrument is based on the Beer-Lambert law, calculating transmittance by comparing the light intensity of the sample and the reference, covering a wide spectral range from ultraviolet to near-infrared.
Performance Comparison of Electrochemical Sensors and Infrared Sensors in Multi-Gas Detectors
This article compares the performance of electrochemical sensors and infrared sensors in multi-gas detectors.
Xenon lamp aging test chamber for testing coating weatherability.
Xenon lamp aging test chambers accelerate the testing of weather resistance for materials such as coatings in the laboratory by simulating the ultraviolet, visible, and infrared portions of sunlight, while controlling conditions like temperature, humidity, and water spray.
How to Choose the Right Spectrophotometer
When selecting a spectrophotometer, it is essential to start from the actual analytical needs, clearly defining the required wavelength range (ultraviolet, visible, or infrared) and the type of detection. Key evaluations should focus on core specifications of the optical system, such as wavelength accuracy, beam type, and stray light levels.