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Symor Instrument Equipment Co.,Ltd
Email: Sales@climatechambers.com
Tel: +86-551-63853683, 68663630
Shanghai office 
No.3215,Huhang Highway,Fengxian District, Shanghai, 231417,China
Hefei office
No.105 Dayang Industrial Park
Luyang District, Hefei, 230041, China

N2 Generator

  • Nitrogen generator is specially designed for our nitrogen dry cabinet. The nitrogen generator uses pressure swing adsorption (PSA) principle to extract high purity nitrogen from the air to supply nitrogen cabinet in order to protect the electronic components against humidity and oxidation.

    Nitrogen generator requires a source of dry compressed air. The compressed air is passed through a hollow fiber membrane, filtering out oxygen, carbon dioxide and water leaving a high purity nitrogen gas. Prefilter and final multi-stage filters removes the other particles in the gas such as dust and moisture.



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  • How Nitrogen Generator Works?

    Nitrogen Generators operate on the Pressure Swing Adsorption (PSA) principle to produce a continuous stream of nitrogen gas from compressed air. Two towers are filled with carbon molecular sieve (CMS). Pretreated compressed air enters the bottom of the on-line tower and follows up through the CMS. Oxygen and other trace gasses are preferentially adsorbed by the CMS, allowing nitrogen to pass through. After a pre-set time, the on-line tower automatically switches to regenerative mode, venting contaminants from the CMS. Carbon molecular sieve differs from ordinary activated carbons in that it has a much narrower range of pore openings. This allows small molecules such as oxygen to penetrate the pores and be separated from nitrogen molecules which are too large to enter the CMS. The larger molecules of nitrogen by-pass the CMS and emerge as the product gas.

    Atmospheric air contains essentially 78% nitrogen and 21% oxygen. Ordinary dry compressed air is filtered and passed through a technically advanced bundle of hollow membrane fibers where nitrogen is separated from the feed air by selective permeation. Water vapor and oxygen rapidly permeate safely to the atmosphere, while the nitrogen gas is discharged under pressure into the distribution system. Pressure, flow rate and membrane size/quantity are the main variables that affect nitrogen production. Nitrogen purity (oxygen content) is controlled by throttling the outlet from the membrane bundle(s). At a given pressure and membrane size, increasing the nitrogen flow allows more oxygen to remain in the gas stream, lowering nitrogen purity. Conversely, decreasing nitrogen flow increases purity. For a particular purity, higher air pressure to the membrane gives a higher nitrogen flow rate. Purity ranges of less than 90% to 99.9% are possible. By combining multiple membrane bundles, an infinite number of flow/purity ranges are available to satisfy practically any application that requires nitrogen gas.




  • Technical Parameters:
    Model#: TNG1815
    Color: Black blue,ESD
    Exterior Dimension(mm): W350*D500*H751      
    N2 Output13L /min@>99% purity
    N2 Concentration98%-99.9%      
    Ambient Temperature0~50℃
    Compressed air: Temperature ≤20℃;Pressure 6~8bar
    Display: High brightness LED 
    Standby Consumption: 10W
    Max.Consumption: 40W
    Power Supply: 220V 50Hz     

    Technical Parameters:
    Model#: TNG1816 with air compressor (water-free & oil-free)
    Exterior Dimension(mm): W600*D1000*H851
    N2 Output: 13L /min@>99% purity
    N2 Concentration98%-99.9%
    Ambient Temperature050
    Compressed air: Temperature ≤20;Pressure 6~8bar
    Display: High brightness LED
    Power Supply: 220V 50Hz
    Standby Consumption: ≤10W
    Max.Consumption: ≤40W
    Color: Black blue,ESD

    Air compressor parameters:
    Compressed Air output>=65L/min
    Consumption/Speed: 800W1400r/min
    VoltageAC220V/50Hz
    Storage Tank Capacity35L
    Noise<=52dB(A)
    Pressure Control<=0.5MPaopen),>=0.7MPastop
    Equipped with air particle filter and oil/water separator inside





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