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ME3-C2H4 Electrochemical Sensor Make Use Of Electrochemical Oxidation Process On The Working Eectrode In Electrolytic Cell And The Current Produced In Electrochemical Reaction In Direct Proportion

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ME3-C2H4 Electrochemical Sensor Make Use Of Electrochemical Oxidation Process On The Working Eectrode In Electrolytic Cell And The Current Produced In Electrochemical Reaction In Direct Proportion

ME3-C2H4 Electrochemical Sensor Make Use Of Electrochemical Oxidation Process On The Working Eectrode In Electrolytic Cell And The Current Produced In Electrochemical Reaction  In Direct Proportion
ME3-C2H4 Electrochemical Sensor Make Use Of Electrochemical Oxidation Process On The Working Eectrode In Electrolytic Cell And The Current Produced In Electrochemical Reaction  In Direct Proportion
ME3-C2H4 Electrochemical Sensor Make Use Of Electrochemical Oxidation Process On The Working Eectrode In Electrolytic Cell And The Current Produced In Electrochemical Reaction  In Direct Proportion ME3-C2H4 Electrochemical Sensor Make Use Of Electrochemical Oxidation Process On The Working Eectrode In Electrolytic Cell And The Current Produced In Electrochemical Reaction  In Direct Proportion ME3-C2H4 Electrochemical Sensor Make Use Of Electrochemical Oxidation Process On The Working Eectrode In Electrolytic Cell And The Current Produced In Electrochemical Reaction  In Direct Proportion ME3-C2H4 Electrochemical Sensor Make Use Of Electrochemical Oxidation Process On The Working Eectrode In Electrolytic Cell And The Current Produced In Electrochemical Reaction  In Direct Proportion ME3-C2H4 Electrochemical Sensor Make Use Of Electrochemical Oxidation Process On The Working Eectrode In Electrolytic Cell And The Current Produced In Electrochemical Reaction  In Direct Proportion ME3-C2H4 Electrochemical Sensor Make Use Of Electrochemical Oxidation Process On The Working Eectrode In Electrolytic Cell And The Current Produced In Electrochemical Reaction  In Direct Proportion

Large Image :  ME3-C2H4 Electrochemical Sensor Make Use Of Electrochemical Oxidation Process On The Working Eectrode In Electrolytic Cell And The Current Produced In Electrochemical Reaction In Direct Proportion

Product Details:
Model Number: ME3-C2H4
Payment & Shipping Terms:
Minimum Order Quantity: 1
Delivery Time: 3-5work days
Payment Terms: L/C, D/A, D/P, T/T, Western Union, MoneyGram

ME3-C2H4 Electrochemical Sensor Make Use Of Electrochemical Oxidation Process On The Working Eectrode In Electrolytic Cell And The Current Produced In Electrochemical Reaction In Direct Proportion

Description
Detection Gas: C2H4 Detection Range: Detection Range
Max. Range: 200ppm Sensitivity: (0.070±0.015)µA/ppm
Resolution: 0.5ppm Response Time(T90): <20S
Highlight:

Electrochemical Oxidation Process Electrochemical Sensor

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Direct Proportion Electrochemical Sensor

ME3-C2H4 Electrochemical Sensor Make Use Of Electrochemical Oxidation Process On The Working Eectrode In Electrolytic Cell And The Current Produced In Electrochemical Reaction In Direct Proportion

 

ME3-C2H4 electrochemical gas sensor make use of electrochemical oxidation process on the working electrode in electrolytic cell. And the current produced in electrochemical reaction is in direct proportion to concentration while following Faraday law. So that concentration of target gas can be tested by current.

 

Features :

Low consumption

High precision & high sensitivity

Wide range of linearity

Good anti-interference ability

Excellent Stability and reliability

 

Application :

Detecting ethylene in industry and environmental protection field

 

Stability per month <5﹪
Zero drift(-20°C-40°C) 10ppm
Tem. range -20°C-50°C
Pressure range standard atmosphere ±10%
Humidity range 15%—90%RH

 

ME3-C2H4 Electrochemical Sensor Make Use Of Electrochemical Oxidation Process On The Working Eectrode In Electrolytic Cell And The Current Produced In Electrochemical Reaction  In Direct Proportion 0

 

Contact Details
ShenzhenYijiajie Electronic Co., Ltd.

Contact Person: Miss. Xu

Tel: 86+13352990255

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