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E-mail
yes7682@163.com
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Phone
13699229512
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Address
Zhongli Science and Technology Park, Shangdi Third Street, Haidian District, Beijing
Beijing Taihe Lianchuang Technology Co., Ltd
yes7682@163.com
13699229512
Zhongli Science and Technology Park, Shangdi Third Street, Haidian District, Beijing
Thermal conductivity gas analyzer EZGAS6000Technical Specifications
Measurement range:
H2 80%~100%;
Ar 0~100%;
H2 standard range:
0~2%; 0~10%;
35~75%; 40~80%;
75~100%; 98~100%
Working environment temperature: (5-45) ℃
Stability: ± 2% FS/7d
Repeatability: 1%
Linear deviation: ± 2% FS
Response time (T90): ≤ 30s
Size: 483x347x133mm
Instrument functions
Based on the thermal conductivity analysis method, the THA100R thermal conductivity gas analyzer adopts intelligent digital processing technology to achieve the analysis process of gas concentration. It has the characteristics of high automation, strong functionality, easy operation, and digital communication.
The main functions of a thermal conductivity gas analyzer are as follows:
·Analyze the concentration of gases such as H2 and Ar;
·Can achieve intermediate range measurement;
·Color LCD screen display, clear information display;
·Touch screen operation, easy to operate;
·4-20mA current loop output;
·8-way switch quantity (relay) output.
working principle
Different gas components have different thermal conductivities, so the concentration of the measured gas component can be obtained by measuring the thermal conductivity of the mixed gas. The EZGAS6000 thermal conductivity gas analyzer is designed based on this principle and is used to analyze the concentration of gases such as hydrogen and argon.
Thermal conductivity gas analyzer EZGAS6000Fully functional, with good performance indicators, good stability, and high reliability, it has a wide range of application fields.
technical advantage
·Stable, reliable, and finely crafted thermal conductivity sensors, as well as thermal conductivity sensitive components resistant to strong chemical corrosion.
·Innovative design of low drift thermal conductivity bridge with high stability.
·High precision constant temperature control reduces the impact of environmental temperature on instrument measurement.
·Isolated current loop output and switch output reduce the impact of various external interferences on instrument measurement.
Typical Engineering Application Fields
·Analysis of Hydrogen Concentration in the Process of Fertilizer Synthesis of Ammonia
·Monitoring of hydrogen concentration in thermal power plants and nuclear power plants
·Determination of gas content in laboratory combustion tests
·Analysis of hydrogen purity in gas stations or other gases
·Analysis of Blast Furnace Gas in Steel Plant
·Analysis of argon concentration in air separation system