61-0170-19 Deepwell Plate 96/500μL 0030 503.104
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61-0170-19 Deepwell Plate 96/500μL 0030 503.104

model: 61-0170-19
brand: Eppendorf AG

Product Description

Product Model: 61-0170-19Product Brand: Eppendorf AG Fe […]

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Product Details

Product Model: 61-0170-19
Product Brand: Eppendorf AG

Features

  • DNA LoBind plate improves the recovery rate of nucleic acid by reducing the adsorption of nucleic acid to the plate wall. Using a combination of specialized manufacturing techniques and selected polypropylene lots, almost 100% of DNA/RNA can be recovered. No surface coating is ***d to eliminate the possibility of contamination to the sample. The Epp***orf DNA LoBind plate is ideal for storing nucleic acids in forensic science, microarray analysis, and next-generation sequencer applications.
  • LoBind material ensures maximum sample recovery and improves assay results
  • No silicone or other surface coating to minimize sample impact
  • Test and guarantee that each batch is free of human DNA, DNase, RNase, and PCR inhibitors (PCR clean)
  • Tube, microplate, and deep-well plate products to support a variety of experimental scales
  • Unique OptiTrack ® matrix: 30% faster sample identification and fewer pipetting errors
  • RecoverMax ® Well design: Perfect well shape for mixing with minimal residual fluid and dead volume
  • High and smooth well edges for secure sealing
  • Optional barcode label support. Read more: www.epp***orf.com/barcode

Spec

  • Number of wells: 96 wells
  • Total capacity: 700 μL
  • Operating capacity: 30 – 550 μL
  • material: Polypropylene
  • bottom shape: Conical
  • Height: 127.8 x 85.5 x 27.1 mm
  • Maximum Centrifugal Force: 6,000 x g
  • OptiTrack ® Frame Color: WHITE
  • DNA LoBind
  • PCR clean
  • 40 pieces (5 bag x 8 pieces)
  • Nucleic acid low adsorption type
  • Application
  • Preparation or storage of DNA and RNA samples
  • forensic analysis
  • Preparation of dilution series in quantitative pPCR
  • Sample preparation in next-generation sequencers
  • Generation of genome or oligonucleotide libraries

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