96-well Filter Plate Volume Adapter, Nonsterile
Corning Life SciencesVolume adapter mounts on top of the 96 well FiltrEX~â„¢; filter plate and allows larger volumes (1 mL) to be applied to each well in a filter plate. Adapters are nonsterile.
Volume adapter mounts on top of the 96 well FiltrEX~â„¢; filter plate and allows larger volumes (1 mL) to be applied to each well in a filter plate. Adapters are nonsterile.
Enhances luminescent signals and have low background luminescence and fluorescence Designed to reduce well-to-well crosstalk Nonbinding (NBS) surface is a Corning proprietary treatment technology used on polystyrene microplates to create a nonionic hydrophilic surface (polyethylene oxide-like) that minimizes molecular interactions Ideal for reducing protein and nucleic acid binding at low concentrations, and increasing as…
Nonbinding (NBS) surface is a Corning proprietary treatment technology used on polystyrene microplates to create a nonionic hydrophilic surface (polyethylene oxide-like) that minimizes molecular interactions Ideal for reducing protein and nucleic acid binding at low concentrations, and increasing assay signal to noise
Nonbinding (NBS) surface is a Corning proprietary treatment technology used on polystyrene microplates to create a nonionic hydrophilic surface (polyethylene oxide-like) that minimizes molecular interactions Ideal for reducing protein and nucleic acid binding at low concentrations, and increasing assay signal to noise Without lids, lids supplied separately Recommended working volume of up to 75 to 200 µL Conforms to stan…
Enhances luminescent signals and have low background luminescence and fluorescence Designed to reduce well-to-well crosstalk during luminescent assays Nonbinding (NBS) surface is a Corning proprietary treatment technology used on polystyrene microplates to create a nonionic hydrophilic surface (polyethylene oxide-like) that minimizes molecular interactions Ideal for reducing protein and nucleic acid binding at low concent…
Round well design with a clear flat bottom 2.8mm distance between well bottoms and plate bottom 50 µL total well volume, with recommended working volume of 5-40 µL High base plate design is compatible with automation and for bar coding Validated by Molecular Devices for the FLIPR reader. Outer wells aligned for proper viewing with FLIPR Poly-D-Lysine coated for enhanced cell attachment Sterile (aseptic assembly) and ce…
Has low background fluorescence and minimize light scattering Designed to reduce well-to-well crosstalk during fluorescent assays Nonbinding (NBS) surface is a Corning proprietary treatment technology used on polystyrene microplates to create a nonionic hydrophilic surface (polyethylene oxide-like) that minimizes molecular interactions Ideal for reducing protein and nucleic acid binding at low concentrations, and increasi…
Bottoms are 60% thinner than conventional polystyrene plates, resulting in lower background fluorescent and enabling readings down to 340nm Designed to reduce well-to-well crosstalk during fluorescent assays Nonbinding (NBS) surface is a Corning proprietary treatment technology used on polystyrene microplates to create a nonionic hydrophilic surface (polyethylene oxide-like) that minimizes molecular interactions Ideal for…
Has low background fluorescence and minimize light scattering Designed to reduce well-to-well crosstalkNonbinding (NBS) surface is a Corning proprietary treatment technology used on polystyrene microplates to create a nonionic hydrophilic surface (polyethylene oxide-like) that minimizes molecular interactions Ideal for reducing protein and nucleic acid binding at low concentrations, and increasing assay signal to noise Wi…
(This is the suggested replacement for 3851)Excellent signal dynamic range due to low background fluorescence and enhanced signal intensitySuperior flatness -minimizes variability within a plate and between platesFlat bottom wells are compatible with automated dispensers including the PerkinElmer FlexDrop™Not treated (or medium binding) polystyrene surface is hydrophobic in nature and binds biomolecules through passive interac…
(This is the suggested replacement for 3852)Excellent signal dynamic range due to low background fluorescence and enhanced signal intensitySuperior flatness -minimizes variability within a plate and between platesFlat bottom wells are compatible with automated dispensers including the PerkinElmer FlexDrop™Not treated (or medium binding) polystyrene surface is hydrophobic in nature and binds biomolecules through passive interac…
(This is the suggested replacement for 3854 and 353382)Excellent signal dynamic range due to low background fluorescence and enhanced signal intensitySuperior flatness minimizes variability within a plate and between platesFlat bottom wells are compatible with automated dispensers including the PerkinElmer FlexDrop™NBS microplates are ideal for homogeneous assays with sticky enzymes or for reducing nonspecific binding to micro…
(This is the suggested replacement for 3855 and 353381)Excellent signal dynamic range due to low background fluorescence and enhanced signal intensitySuperior flatness minimizes variability within a plate and between platesFlat bottom wells are compatible with automated dispensers including the PerkinElmer FlexDrop™TC-treated for optimal cell attachmentWorking volume of up to 10 µL"
Excellent signal dynamic range due to low background fluorescence and enhanced signal intensitySuperior flatness minimizes variability within a plate and between platesFlat bottom wells are compatible with automated dispensers including the PerkinElmer FlexDropâ„¢NBS microplates are ideal for homogeneous assays with enzymes or for reducing nonspecific binding to microplate wells
Excellent signal dynamic range due to low background fluorescence and enhanced signal intensitySuperior flatness minimizes variability within a plate and between platesFlat bottom wells are compatible with automated dispensers including the PerkinElmer FlexDrop™NBS microplates are ideal for homogeneous assays with enzymes or for reducing nonspecific binding to microplate wellsIdeal for reducing protein and nucleic acid binding…
(This is the Suggested Replacement for: 3332 ) Designed to fit pre-existing filling systems for other product brands 33mm polyethylene threaded cap Vented overcap has 0.2 µm PTFE membrane sealed into the peelable foil cover Sterilized by gamma irradiation Double bagged
Flat bottoms Nonreversible lids with condensation rings to reduce contamination Individual alphanumerical codes for well identification Uniform footprint for ease in stacking Sterilized by gamma irradiation Nonpyrogenic
Flat bottoms Nonreversible lids with condensation rings to reduce contamination Individual alphanumerical codes for well identification Uniform footprint for ease in stacking Sterilized by gamma irradiation Certified nonpyrogenic
Flat bottoms Nonreversible lids with condensation rings to reduce contamination Individual alphanumerical codes for well identification Uniform footprint for ease in stacking Sterilized by gamma irradiation Nonpyrogenic
Tube strips consist of eight 0.2 mL tubes connected together Cap strips are sold separately Made of thin wall polypropylene and designed for precise fit in heat blocks for optimum heat transfer Certified DNase- and RNase-free Autoclavable at 121°C
Designed with an optically clear flat cap for RT-PCR and other fluorescent or luminescent applications Made of thin wall polypropylene Designed to fit on all Corning® Thermowell™ GOLD 1 x 8 well PCR strips and 96 well PCR microplates DNase- and RNase-free Autoclavable at 121°C
0.2 mL PCR tubes (assorted colors) are made of thin wall polypropylene and designed for precise fit in heat blocks to optimize heat transfer With flat cap for easy piercing and marking Nonsterile and certified DNase- and RNase-free Autoclavable at 121°C and will withstand centrifugation to 10,000 x g Assorted colors include blue, green, violet, orange, red and yellow
0.2 mL clear PCR tubes are made of thin wall polypropylene and designed for precise fit in heat blocks to optimize heat transfer With flat cap for easy piercing and marking Nonsterile and certified DNase- and RNase-free Autoclavable at 121°C and will withstand centrifugation to 10,000 x g
0.2 mL PCR tubes (assorted colors) are made of thin wall polypropylene and designed for precise fit in heat blocks to optimize heat transfer With domed cap for efficient heat transfer Nonsterile and certified DNase- and RNase-free Autoclavable at 121°C and will withstand centrifugation to 10,000 x g Assorted colors include blue, green, violet, orange, red and yellow
0.2 mL clear PCR tubes are made of thin wall polypropylene and designed for precise fit in heat blocks to optimize heat transfer With domed cap for efficient heat transfer Nonsterile and certified DNase- and RNase-free Autoclavable at 121°C and will withstand centrifugation to 10,000 x g