MCVL20S03
Durapore® 0.1 µm, Millidisk® Cartridge
Millidisk® 20, filtration area 1000 cm2, hydrophilic
Synonym(s):
Millidisk Cartridge 20-stack 0.1 μm Hydrophilic
About This Item
Recommended Products
material
PVDF
polysulfone
polysulfone support
silicone seal
Quality Level
sterility
non-sterile
Sterilization Compatibility
autoclavable compatible
steam-in-place compatible
product line
Millidisk® 20
feature
hydrophilic
manufacturer/tradename
Millidisk®
parameter
0.35 bar max. differential pressure (5 psid) at 123 °C (Forward)
0.35 bar max. inlet pressure (5 psi) at 123 °C (Forward)
0.7 bar max. differential pressure (10 psid) at 25 °C (Reverse)
0.7 bar max. inlet pressure (10 psi) at 25 °C (Reverse)
1.7 bar max. differential pressure (25 psid) at 80 °C (Forward)
1.7 bar max. inlet pressure (25 psi) at 80 °C (Forward)
4.1 bar max. differential pressure (60 psid) at 25 °C (Forward)
4.1 bar max. inlet pressure (60 psi) at 25 °C (Forward)
7.6 L/min flow rate at 2.1 bar (ΔP)
technique(s)
sterile filtration: suitable
filtration area
1000 cm2
impurities
≤0.5 EU/mL bacterial endotoxins (LAL test, Aqueous extraction)
<0.5 EU/mL USP bacterial endotoxins (LAL test, sample aqueous extraction)
gravimetric extractables
≤5 mg/device
matrix
Durapore®
pore size
0.1 μm
input
sample type liquid
bubble point
≥4830 mbar (70 psig), air with water at 23 °C
cartridge code
not applicable
General description
Packaging
Other Notes
- Organism Retention: Microorganism
- Mode of Action: Filtration (size exclusion)
- Application: BioProcessing
- Intended Use: Reduction or removal of microorganism/bioburden
- Instructions for Use: Please refer Wetting Instructions for Filter Units with Durapore® Membrane user guide
- Storage Statement: Store in dry location
- Disposal Statement: Dispose of in accordance with applicable federal, state and local regulations.
Preparation Note
5 SIP cycles of 60 min @ 135 °C; 5 autoclave cycles of 60 min @ 126 °C
Analysis Note
Samples were quantitatively retentive of a minimum Brevundimonas diminuta challenge concentration of 1 x 10⁷ CFU/cm² using ASTM® F838 methodology.
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