Cat #: 60-2102

Sartorius VS02H01 Vivaspin 2, 10,000 MWCO, Hydrosart, 25 Devices/Unit

Cat #: 60-2102

Sartorius VS02H01 Vivaspin 2, 10,000 MWCO, Hydrosart, 25 Devices/Unit


10,000 MWCO, Hydrosart

25 Devices/Unit

Brand: Sartorius

  • 0.4 ml - 2 ml
  • Three membrane alternatives: PES, Hydrosart® regenerated Cellulose, Cellulosetriacetat
  • Best recovery of the concentrate by reverse-spinning
  • Choice of three different membranes
  • High retentate recovery > 90 %
  • Vertical membrane design for ultra-fast concentration
  • Universal rotor compatibility
  • Volume graduation for easy reading/monitoring

Guest Price:
$163.00
List Price: $196.25
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10,000 MWCO, Hydrosart

25 Devices/Unit

Brand: Sartorius

  • 0.4 ml - 2 ml
  • Three membrane alternatives: PES, Hydrosart® regenerated Cellulose, Cellulosetriacetat
  • Best recovery of the concentrate by reverse-spinning
  • Choice of three different membranes
  • High retentate recovery > 90 %
  • Vertical membrane design for ultra-fast concentration
  • Universal rotor compatibility
  • Volume graduation for easy reading/monitoring

Vivaspin® concentrators are disposable ultrafiltration devices for the concentration of biological samples. Vivaspin® 2 can effectively be used in swing bucket or fixed angle rotors accepting 15 ml centrifuge tubes. The patented vertical membrane design and thin channel filtration chamber (US 5,647,990) minimizes membrane fouling and provides high speed concentrations, even with particle-laden solutions. Vivaspin® 2 combines the speed of the classic Vivaspin® products with low internal surface and membrane area in order to achieve superior recoveries from very dilute solutions. Available with a choice of PES, Cellulose Triacetate or Hydrosart® membranes, Vivaspin® 2 offers the highest flexibility for process optimization. Another unique feature of Vivaspin® 2 is the choice of directly pipetting the concentrate from the dead stop pocket built into the bottom of the concentrator or alternatively reverse-spinning the concentrate into the recovery cap. Both methods result in near total concentrate recovery.

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