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Merck

SAMPLCR01

Millex Samplicity® Filter

PTFE membrane, pore size 0.45 μm, diam. 25 mm, non-sterile, hydrophilic

Synonyma:

0.45 μm PTFE syringe filter, Millex-LCR syringe filter, disposable syringe filter, syringe filter

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O této položce

UNSPSC Code:
41104922
NACRES:
NB.24
eCl@ss:
32031690

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Název produktu

Millex Samplicity® Filter, PTFE membrane, pore size 0.45 μm, diam. 25 mm, non-sterile, hydrophilic

material

PTFE membrane
high-density polyethylene

sterility

non-sterile

product line

Millex

feature

hydrophilic

manufacturer/tradename

Samplicity®

parameter

0.3 mL min. working volume

technique(s)

HPLC: suitable
analytical sample preparation: suitable

diam.

25 mm

volume

1.7 mL

pore size

0.45 μm pore size

fitting

inlet funnel (Easy loading)
outlet tip (for smooth transfer to HPLC vials)

shipped in

ambient

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Tato položka
SAMPLG001SAMPHV001SAMP2HVNB
manufacturer/tradename

Samplicity®

manufacturer/tradename

Samplicity®

manufacturer/tradename

Samplicity®

manufacturer/tradename

Millex, Samplicity®

material

PTFE membrane, high-density polyethylene

material

PTFE membrane, high-density polyethylene

material

PVDF membrane, high-density polyethylene

material

PVDF membrane, polypropylene housing

pore size

0.45 μm pore size

pore size

0.2 μm pore size

pore size

0.45 μm pore size

pore size

0.45 μm

diam.

25 mm

diam.

25 mm

diam.

25 mm

diam.

33 mm

fitting

inlet funnel (Easy loading), outlet tip (for smooth transfer to HPLC vials)

fitting

inlet funnel (Easy loading), outlet tip (for smooth transfer to HPLC vials)

fitting

inlet funnel (Easy loading), outlet tip (for smooth transfer to HPLC vials)

fitting

female Luer-Lok® inlet connection, female Luer-Lok® inlet fitting, male Luer outlet slip

sterility

non-sterile

sterility

non-sterile

sterility

non-sterile

sterility

non-sterile

Application

To be used with the Samplicity Filtration System. Powered by vacuum, the system takes minimal manual effort to filter 1 to 8 samples into standard HPLC vials in seconds, with higher recovery than syringe filters provide.

Features and Benefits

For general laboratory use only

General description

Filter Code: LCR
SAMP2LCRB replaces SAMPLCR01

Overview of Millex Samplicity® Filters for the Samplicity® G2 System

  • Samplicity® G2 Filtration System enables vacuum driven filtration of up to 8 samples at once, directly into HPLC vials
  • Filtration for HPLC sample prep without syringes
  • Millex Samplicity® Filters provide integrated funnels and filters for easiest sample loading

Packaging

non sterile

Legal Information

MILLEX SAMPLICITY is a registered trademark of Merck KGaA, Darmstadt, Germany
Millex is a trademark of Merck KGaA, Darmstadt, Germany
SAMPLICITY is a registered trademark of Merck KGaA, Darmstadt, Germany

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Související obsah

HPLC sample prep doesn’t have to be inefficient or painful. The ideal sample prep system for most chromatographers. If you’re using chromatography to analyze dozens of pharmaceutical samples, food and beverage products or cosmetic formulations a day, especially hard-to-filter, viscous or particulate-laden samples, you know that traditional filtration methods can result in: Slow filtration speed/clogging, Filter bursting or spillage, Sample volume loss (most undesirable for small-volume samples), and Operator fatigue. The first vacuum-driven system with the flexibility to filter 1 to 8 samples directly into standard HPLC sample vials, the Samplicity® Filtration System addresses all of the challenges facing analytical chromatographers. Just attach a vacuum pump, load your samples, and flip the lever. Recover your particulate-free samples in seconds.

"Liquid chromatography mass spectrometry (LC-MS) and gas chromatography mass spectrometry (GC-MS) are being increasingly used in analysis of samples, not only in the biotechnology and pharmaceutical industries, but also more generally in the analysis, identification and quantitation of complex samples containing low levels of analytes. The advantages of LC-MS or GC-MS over other analytical techniques include high sensitivityand specificity for analyte detection and quantitation."

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