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Trace Oxygen Analyzer for Industrial Gas Purity Monitoring MIC600S
MIC600S Trace Oxygen Analyzer is a high-precision, online instrument developed by our company for detecting and analyzing trace oxygen in inert gases. This instrument utilizes an electrochemical sensor combined with single-chip microcomputer control technology, resulting in high measurement accuracy and ease of use.
Online Hydrogen Analyzer for Industrial Hydrogen Gas Monitoring MIC300S-X501
This explosion-proof gas analyzer features a 128*64 dot-matrix LCD display , an explosion-proof chassis design, and incorporates safety barrier technology.
Ozone Detector for Industrial O3 Gas Monitoring and Analysis MIC300OZ
MIC300OZ OZONE DETECTOR is a microprocessor-based dual beam photometer(UV 254 nm) for measuring the ozone content in air or oxygen.
Multi Component Gas Analyzer for Industrial Gas Monitoring MIC300-M01
This multi-component gas analyzer features a 320 * 240 dot-matrix LCD display . Its working principle is based on the selective absorption of infrared radiation by certain gases.
Bag Integrity Testing for Pharmaceutical & Packaging Applications – BGT-120
Equipment application: Testing all sterilization solution bags and respirators.
After use, the bags, disposable solution bags, and transfer bags are completely cleaned.
Integrity testing ensures the product meets sterility requirements.
Total Organic Carbon Analyzer for Water Quality Testing & TOC Measurement – TA-205E
The TA-205E Total Organic Carbon Analyzer employs a high-temperature catalytic combustion oxidation method. The sample, along with a purified gas (high-purity oxygen), is introduced into a high-temperature combustion tube and a low-temperature reaction tube, respectively. In the high-temperature combustion tube, the sample undergoes high-temperature catalytic oxidation, converting both organic and inorganic carbon into carbon dioxide. In the low-temperature reaction tube, the sample is acidified, and the inorganic carbon decomposes into carbon dioxide. The carbon dioxide produced in both reaction tubes is then transported by a carrier gas to a non-dispersive infrared gas detector (NDIR) for detection. This allows for the separate measurement of total carbon (TC) and inorganic carbon (IC) in the water sample. The difference between total carbon and inorganic carbon is the total organic carbon (TOC), i.e., TOC = TC - IC.
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