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PTFE Membrane Syringe Filters

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PTFE Membrane Syringe Filters

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PTFE Membrane Syringe Filters Type- LSSYTH
Hydrophilic PTFE Syringe Filters type LSSYTH are specially designed for use in laboratories for small volume filtration and sample preparation. The hydrophilic PTFE membrane and polypropylene (PP)construction makes it suitable even for filtration of highly aggressive solvents.
Features:
  • Absolute retention efficiency
  • 16 Channels for minimum back pressure
  • Extremely low extractables
  • Wide chemical compatibility
  • HPLC certified for low levels of UV absorbing extractables
  • Heat sealed to ensure ‘no leaching’
  • No initial flushing required
Applications:
  • Sample filtration for HPLC and other critical instruments
  • Filtration of aqueous solution as well as organic solvents and chemicals
Specifications:
Catalogue No LSSYTH
CONSTRUCTION
Membrane PTFE Membrane
Pore size 0.2µm, 0.45µm
Diameter
4mm 13mm 25mm
Inlet Female luer-lock
Outlet Male luer slip
Housing Polypropylene
OPERATIONAL
Max. Operating Temperature 55 °C
Max. Differential Pressure 75 psi @ 25° C
Burst Pressure >12kg/cm²
Hold-up Volume(with air purge)
< 5µl < 20µl < 50µl
Effective Filtration Area
0.07 cm² 0.8 cm² 4.15 cm²
Clean Water Flow Rate @ 20 psi (0.2µm)
> 0.4 ml/min > 10 ml/min > 50 ml/min
Clean Water Flow Rate @ 20 psi (0.45µm)
> 0.8 ml/min > 30 ml/min > 100 ml/min
Sample Volume
< 1 ml < 10 ml < 100 ml
ASSURANCE
Fiber Release Complies with USFDA CFR Title 21, Part 210.3(b)(6) and do not requires any initial Flushing.
Particle Release The filtrate Complies with USP <788> test for particulate matter in injectables.
Indirect Food Additive The plastic housing material complies with the requirements of USFDA CFR Title 21 Part 177.1520.
Oxidizable Substances Within limits as specified in USP
Quality Management System ISO-9001 Certified
Extractable
  • Filtrate (WFI ) complies with the requirements of USP for “Sterile Water for Injection”.
  • The plastic housing material complies with the requirements of USFDA CFR Title 21 Part177.1520
 
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Details

PTFE Membrane Syringe Filters Type- LSSYTH
Hydrophilic PTFE Syringe Filters type LSSYTH are specially designed for use in laboratories for small volume filtration and sample preparation. The hydrophilic PTFE membrane and polypropylene (PP)construction makes it suitable even for filtration of highly aggressive solvents.
Features:
  • Absolute retention efficiency
  • 16 Channels for minimum back pressure
  • Extremely low extractables
  • Wide chemical compatibility
  • HPLC certified for low levels of UV absorbing extractables
  • Heat sealed to ensure ‘no leaching’
  • No initial flushing required
Applications:
  • Sample filtration for HPLC and other critical instruments
  • Filtration of aqueous solution as well as organic solvents and chemicals
Specifications:
Catalogue No LSSYTH
CONSTRUCTION
Membrane PTFE Membrane
Pore size 0.2µm, 0.45µm
Diameter
4mm 13mm 25mm
Inlet Female luer-lock
Outlet Male luer slip
Housing Polypropylene
OPERATIONAL
Max. Operating Temperature 55 °C
Max. Differential Pressure 75 psi @ 25° C
Burst Pressure >12kg/cm²
Hold-up Volume(with air purge)
< 5µl < 20µl < 50µl
Effective Filtration Area
0.07 cm² 0.8 cm² 4.15 cm²
Clean Water Flow Rate @ 20 psi (0.2µm)
> 0.4 ml/min > 10 ml/min > 50 ml/min
Clean Water Flow Rate @ 20 psi (0.45µm)
> 0.8 ml/min > 30 ml/min > 100 ml/min
Sample Volume
< 1 ml < 10 ml < 100 ml
ASSURANCE
Fiber Release Complies with USFDA CFR Title 21, Part 210.3(b)(6) and do not requires any initial Flushing.
Particle Release The filtrate Complies with USP <788> test for particulate matter in injectables.
Indirect Food Additive The plastic housing material complies with the requirements of USFDA CFR Title 21 Part 177.1520.
Oxidizable Substances Within limits as specified in USP
Quality Management System ISO-9001 Certified
Extractable
  • Filtrate (WFI ) complies with the requirements of USP for “Sterile Water for Injection”.
  • The plastic housing material complies with the requirements of USFDA CFR Title 21 Part177.1520
 
Additional Information

Additional Information

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