SLLGR04NL
Millex® hydrophilic PTFE syringe filter
pore size 0.2 μm, diam. 4 mm, non-sterile
Synonym(s):
0.2 μm PTFE syringe filter, Millex-LG syringe filter, disposable syringe filter, syringe filter
About This Item
Recommended Products
material
PTFE membrane
high-density polyethylene housing
sterility
non-sterile
product line
Millex®
feature
holdup volume< 10 μL
hydrophilic
manufacturer/tradename
Millex®
parameter
14 bar max. inlet pressure (200 psi)
45 °C max. temp.
technique(s)
LC/MS: suitable
UHPLC-MS: suitable
UHPLC: suitable
analytical sample preparation: suitable
mass spectrometry (MS): suitable
H
19.8 mm
diam.
4 mm
filtration area
0.1 cm2
volume
1 mL
pore size
0.2 μm
input
sample type aqueous solution(s)
sample type organic solution(s)
fitting
female Luer-Lok® inlet
male Luer outlet stepped slip
shipped in
ambient
General description
• Lowest extractables, optimizing background levels of sensitive analyses like UHPLC and LC-MS
• Filtration of protein-containing solutions, and aqueous or organic solutions
• Available in 0.20 µm and 0.45 µm pore sizes and three diameters to suit your application needs
Available in Multiple Pack Sizes:
SKU ending with NS (-------NS): 50 per pack
SKU ending with NL (-------NL): 100 per pack
SKU ending with NB (-------NB): 250 per pack
SKU ending with NK (-------NK): 1000 per pack
SLCRT13NL: 100 per pack. These syringe filters have a tube outlet
Applications:
Sample Filtration Prior to UHPLC, HPLC and Mass Spec; Solvent Filtration; Clarification of Aqueous and Organic Solutions
Application
Packaging
Specifications
Physical form
Legal Information
Certificates of Analysis (COA)
Search for Certificates of Analysis (COA) by entering the products Lot/Batch Number. Lot and Batch Numbers can be found on a product’s label following the words ‘Lot’ or ‘Batch’.
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Articles
Millex® hydrophilic PTFE syringe filters boast broad chemical compatibility and are HPLC-certified, guaranteeing low extractables. With their robust performance, these filters can be used for a variety of samples without the risk of membrane failure or sample contamination.
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