SLHV033N
Millex® PVDF syringe filter
pore size 0.45 μm, diam. 33 mm, non-sterile, hydrophilic
Synonym(s):
0.45 μm PVDF syringe filter, Durapore® PVDF syringe filter, Millex-HV syringe filter, disposable syringe filter, syringe filter
About This Item
Recommended Products
material
PVDF membrane
polypropylene housing
Quality Level
sterility
non-sterile
product line
Millex®
feature
holdup volume≤ 80 μL (after air purge)
hydrophilic
manufacturer/tradename
Millex®
parameter
45 °C max. temp.
8.6 bar max. inlet pressure (125 psi)
technique(s)
HPLC: suitable
UV/Vis spectroscopy: suitable
analytical sample preparation: suitable
low protein-binding filtration: suitable
H
27 mm
diam.
33 mm
filtration area
4.5 cm2
volume
100 mL
color
yellow
matrix
Durapore®
pore size
0.45 μm
input
sample type mild organic solution(s)
sample type aqueous solution(s)
bubble point
≥1.6 bar, air with water at 23 °C
fitting
female Luer-Lok® inlet
male Luer outlet slip
shipped in
ambient
Related Categories
General description
•Low protein binding to minimize interaction with your sample and maximize recovery
•Compatible with aqueous and mild organic solutions
•Available in 0.22 μm and 0.45 μm pore sizes and three diameters to suit your application needs
•Housing materials are either polypropylene or high density polyethylene (HDPE), offering low levels of extractables and broad chemical compatibility
Available in Multiple Pack Sizes:
SKU ending with NS (-------NS): 50 per pack
SKU ending with NL (-------NL): 100 per pack
SKU ending with TL (-------TL): 100 per pack. These syringe filters have a tube outlet
SKU ending with NB (-------NB): 250 per pack
SKU ending with NK (-------NK): 1000 per pack
Applications:
Sample Filtration Prior to UHPLC, HPLC, LC-MS, and Mass Spec; Solvent Filtration; Filtration of Biological Samples and Protein Solutions
Packaging
Specifications
Physical form
Legal Information
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Detergents are frequently used to solubilize proteins and nucleic acids during purification, but the presence of detergents may interfere with downstream analyses.
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