Chat with us, powered by LiveChat
Secure Checkout
Polyethersulfone PES Syringe Filters, 0.05um, 13mm, Luer-Lok/Luer Slip, Sterile, 100/Pk

Thumbnail Filmstrip of Polyethersulfone PES Syringe Filters, 0.05um, 13mm, Luer-Lok/Luer Slip, Sterile, 100/Pk Images

    Purchase Polyethersulfone PES Syringe Filters, 0.05um, 13mm, Luer-Lok/Luer Slip, Sterile, 100/Pk

    Tisch
    Polyethersulfone PES Syringe Filters, 0.05um, 13mm, Luer-Lok/Luer Slip, Sterile, 100/Pk SKU: SF18208

    $217.65
    Only 7 in stock. Order now!
     

    Polyethersulfone (PES) Syringe Filters - SF18208

    Featuring pre-sterilized ultrafiltration-grade polyethersulfone membrane technology with 0.05µm pore size for viral clearance in small-volume applications. Ready-to-use sterile packaging eliminates preparation steps while delivering exceptional virus removal and endotoxin reduction capabilities essential for critical biological samples. Tisch Scientific combines precision ultrafiltration membranes with compact 13mm format to provide reliable submicron filtration performance for precious pharmaceutical and biotechnology samples requiring maximum purity.

    Key Polyethersulfone (PES) Membrane Characteristics

    • Naturally hydrophilic membrane ensuring immediate filtration without pre-wetting
    • Ultra-fine 0.05µm pore structure providing virus removal and macromolecule retention
    • Minimal protein binding characteristics preserving biological sample integrity
    • Membrane thickness of 100-160µm delivering consistent ultrafiltration performance
    • Superior chemical compatibility with aqueous and mild organic solutions

    Key Construction Characteristics

    • Compact 13mm diameter optimized for processing small-volume precious samples
    • Integrated PP prefilter extending membrane life by removing larger particulates
    • Ultra-low holdup volume of 10µL, maximizing recovery of valuable materials
    • Dual Luer-Lok/Luer Slip compatibility ensures universal syringe connections

    SF18208 syringe filters deliver controlled flow rates of 3ml through a 1.09cm² active membrane area, balancing ultrafiltration efficiency with your processing requirements for valuable small-volume samples. A bubble point specification of 37.71psi provides reliable membrane integrity verification essential for validated viral clearance processes in regulated environments. Pre-sterilized individual packaging ensures immediate use in aseptic applications, eliminating preparation time while maintaining operational capability up to 60°C for your most critical ultrafiltration needs.

    For more information about chemical and material compatibility, please review our Chemical Compatibility Chart.

    Bubble Point (psi)
    37.71psi
    Burst Pressure (psi)
    87psi
    Connection Type
    Luer-Lok/ Luer Slip
    Diameter
    13mm
    Filtration Area
    1.09cm²
    Flow Rate
    3ml
    Holdup Volume
    10μL
    Material
    Polyethersulfone (PES)
    Maximum Operating Pressure
    87psi
    Maximum Operating Temperature (°C)
    60°C
    Membrane Thickness (µm)
    100-160μm
    Pack Count
    100
    Pore Size (µm)
    0.05
    Prefilter (Yes/No)
    Yes
    Prefilter Material
    pp
    Sterility
    Sterile
    Volume Throughput (ml)
    10ml
    Weight
    0.40
    Wetability
    Hydrophilic
    • Viral Clearance Applications - Eliminates viral contaminants from small-batch therapeutic proteins and monoclonal antibody preparations
    • Endotoxin Removal Processing - Clears bacterial pyrogens from injectable biologics to meet USP requirements for parenteral products
    • Protein Purification Workflows - Retains therapeutic proteins while removing buffer salts and low molecular weight contaminants
    • Mycoplasma Filtration Control - Removes mycoplasma contamination from precious cell culture samples in biopharmaceutical research
    • Nanoparticle Separation Studies - Provides size-based fractionation of nanomaterials for materials science research applications
    • Ultrapure Sample Preparation - Generates particle-free and macromolecule-free solutions for sensitive analytical measurements