MICROPLATE, 384 WELL, PS, SMALL VOLUME,

LOBASE, MED. BINDING, BLACK, µCLEAR®, 10 PCS./BAG
Greiner Bio-One - MICROPLATE, 384 WELL, PS, SMALL VOLUME - 788096
Item No.: 788096
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Basic data
Description: MICROPLATE, 384 WELL, PS, SMALL VOLUME,
LOBASE, MED. BINDING, BLACK, µCLEAR®,
10 PCS./BAG
Sterility: non-sterile
Qty/case: 80
Qty/inner pack: 10
Packaging
Weight/Case: 2.46 kg
Carton dimension: 335 x 250 x 165 mm
Qty/case: 80
Qty/inner pack: 10
PAL: 12320
Detailed information
Filling volume (ml): 0.00

384 Well Small Volume LoBase Polystyrene Microplates, black

  • Free of detectable DNase, RNase, human DNA
  • Non-pyrogenic 
  • Manufactured under DIN ISO 9001 guidelines
  • Can be traced all the way back to production through a defined LOT number system
  • Has round wells with a conical geometry
  • By optimising the Z-axis according to the liquid height to be measured in the wells, the detection limit can be considerably improved in SmallVolume microplates using classical microplate readers, and a detection limit comparable to that of the 1536 well microplate can be achieved
  • The flat polystyrene film bottom with a diameter of 75 µm +/- 10 µm is characterised by a low level of autofluorescence and is ideally suited for cell based test systems
  • Total volume: 28 µl
  • Working volume: 4 µl - 25 µl
  • The polystyrene surface is more hydrophobic than the surface of a high binding microplate, and therefore tends to be more suitable for non polar proteins and peptides
  • µClear® bottom
  • Med. binding

Forum No. 20 1536 Well CO Microplate for Compound Storage
Scientific Publications / PDF, 3 MB
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Scientific Publications / PDF, 2 MB
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Product Catalogue / PDF, 37 MB
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Application Notes / PDF, 451 KB
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Brochure / PDF, 1 MB
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Scientific Publications / PDF, 479 KB
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Scientific Publications / PDF, 2 MB
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Scientific Publications / PDF, 3 MB
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Application Notes / PDF, 1 MB
Application Note: Establishing a cell culture assay based on time-resolved fluorescence resonance energy transfer (TR-FRET) for screening G-Protein coupled receptors
Scientific Publications / PDF, 445 KB
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