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The S2000 infrared CO₂ analyzer is a microprocessor-based precision instrument operating on the non-dispersive infrared (NDIR) industrial photometric analysis principle. The instrument features a standard cast aluminum chassis, a dot-matrix graphic blue LCD screen, a Chinese menu-driven software interface, and a membrane keypad. It can intuitively display various information such as the measured component, concentration value, sensor temperature, range span, output current, real-time clock, and configuration parameters, allowing users to easily perform operations including parameter setting, calibration, alarm configuration, and maintenance.
The S2000 CO analyzer is a non-dispersive infrared (NDIR) gas analyzer. Its working principle is based on the selective absorption of infrared light by certain gases. The instrument adopts a single light source, a single tube with a half-divided gas cell, and an advanced detector, offering exquisite workmanship, high analytical accuracy, and good stability. It utilizes advanced digital processing technology and features a brand-new LCD display screen.
Nitrous Oxide Analyzer is a new type of intelligent online gas analyzer developed by our company, utilizing high-performance sensors combined with advanced production processes and new microcomputer technology. The analyzer is based on principles such as infrared, electrochemistry, laser, and micro-flow thermal conductivity. It features high measurement accuracy, good stability, fast response time, wide application range, and long service life.
The infrared (IR) technology methane analyzer is specifically designed for direct measurement of methane in syngas and natural gas measurement applications. The tunable diode laser measurement technology for CH₄ is an innovative technique specifically developed for medical applications and atmospheric trace pollutant gas monitoring. It provides high-precision, reliable trace CH₄ gas measurement with a minimum detection limit of 5 ppb. This advanced technology enables healthcare professionals to detect extremely low concentrations of methane in patient samples, ensuring the highest level of accuracy and safety.
The SINZEN heat treatment gas analyzer continuously measures the ambient gas concentration during the heat treatment process. It can accurately measure CO, CO₂, and CH₄ gas concentrations, and a single instrument can simultaneously and continuously measure the concentrations of two gas components. This analyzer is an instrument designed to measure the concentrations of various gases emitted from furnaces during the heat treatment process. It can be used for batch processing or continuous monitoring applications, providing real-time process quality information that enables operators to make adjustments as needed to ensure products meet the intended specifications. By accurately measuring the concentrations of these gases, the analyzer also helps ensure that emissions do not exceed legal limits, thereby preventing environmental pollution and improving the efficiency and quality control of the treatment process.
The S2000 Infrared Gas Analyzer is an analytical instrument developed for international environmental protection, carbon emission control, and industrial process analysis It is primarily based on Gas Filter Correlation (GFC) technology and Non-Dispersive Infrared Absorption (NDIR) method, combined with independently designed long-path gas cells (L-Cell), wavelength filters, infrared detectors, and high-precision signal processing circuits This configuration enables quantitative analysis of gases in the infrared band The analyzer is capable of measuring the concentrations of various gases including CO2, CH4, CO, N2O, O2, and others。
The S2000 Infrared Gas Analyzer is an analytical instrument developed for international environmental protection, carbon emission control, and industrial process analysis It is primarily based on Gas Filter Correlation (GFC) technology and Non-Dispersive Infrared Absorption (NDIR) method, combined with independently designed long-path gas cells (L-Cell), wavelength filters, infrared detectors, and high-precision signal processing circuits This configuration enables quantitative analysis of gases in the infrared band The analyzer is capable of measuring the concentrations of various gases including CO2, CH4, CO, N2O, O2, and others。