Application The Herringbone Mixer Fluidic 187 PC microfluidic chip applies passive mixing principles and a herringbone structure to improve mixing. As flows in microchannels are normally laminar, this mixer improves diffusion by adding herringbone
Application The Herringbone Mixer Fluidic 187 PC microfluidic chip applies passive mixing principles and a herringbone structure to improve mixing. As flows in microchannels are normally laminar, this mixer improves diffusion by adding herringbone
Application The Herringbone Mixer Fluidic 187 COP microfluidic chip applies passive mixing principles and a herringbone structure to improve mixing. As flows in microchannels are normally laminar, this mixer improves diffusion by adding herringbone
Application The Herringbone Mixer Fluidic 187 COP microfluidic chip applies passive mixing principles and a herringbone structure to improve mixing. As flows in microchannels are normally laminar, this mixer improves diffusion by adding herringbone
Application The Phase Guide Mixer Fluidic 533 COC microfluidic chip applies passive phaseguided mixing principles and is not meant to be used in flow-through mode. Features and Benefits Three varying micromixing units per chip Each unit features
Application The Phase Guide Mixer Fluidic 533 COC microfluidic chip applies passive phaseguided mixing principles and is not meant to be used in flow-through mode. Features and Benefits Three varying micromixing units per chip Each unit features
Application Two identical micromixing units per chip Each unit feature four inlets and one outlet The micromixing units can be daisy chained to further improve mixing The Diffusion Mixer Fluidic 186 PC microfluidic chip applies passive mixing
Application Two identical micromixing units per chip Each unit feature four inlets and one outlet The micromixing units can be daisy chained to further improve mixing The Diffusion Mixer Fluidic 186 PC microfluidic chip applies passive mixing
Application The Diffusion Mixer Fluidic 186 COP microfluidic chip applies passive mixing principles and elongated channels to enforce mixing. Though flows in microchannels are normally laminar, this mixer improves diffusion through a long co-flow
Application The Diffusion Mixer Fluidic 186 COP microfluidic chip applies passive mixing principles and elongated channels to enforce mixing. Though flows in microchannels are normally laminar, this mixer improves diffusion through a long co-flow
Application The Snowman Mixer Fluidic 1108 COC microfluidic chip applies passive mixing principles and its unique shape to achieve fast mixing of two solutions. Features and Benefits Eight identical micromixing units per chip Each unit features one
Application The Snowman Mixer Fluidic 1108 COC microfluidic chip applies passive mixing principles and its unique shape to achieve fast mixing of two solutions. Features and Benefits Eight identical micromixing units per chip Each unit features one
Application The Stir Bar Actuated Mixer Fluidic 286 COP microfluidic chip applies active mixing principles by integrating stir bars to generate mixtures with a wider range of mixing ratios that are not feasible with passive mixing devices. Features
Application The Stir Bar Actuated Mixer Fluidic 286 COP microfluidic chip applies active mixing principles by integrating stir bars to generate mixtures with a wider range of mixing ratios that are not feasible with passive mixing devices. Features
Application Microfluidic generation of droplets can produce highly monodispersed droplets with high frequency (up to hundreds of kHz). Interest in droplet-based microfluidic systems has grown substantially, because microfluidics offers the ability
Application Microfluidic generation of droplets can produce highly monodispersed droplets with high frequency (up to hundreds of kHz). Interest in droplet-based microfluidic systems has grown substantially, because microfluidics offers the ability
BugBuster ® Master Mix combines BugBuster Protein Extraction Reagent with Benzonase ® Nuclease and rLysozyme Solution in one convenient reagent. Application BugBuster ® Master Mix has been used for the lysis of cell pellets during
BugBuster ® Master Mix combines BugBuster Protein Extraction Reagent with Benzonase ® Nuclease and rLysozyme Solution in one convenient reagent. Application BugBuster ® Master Mix has been used for the lysis of cell pellets during
BugBuster ® Master Mix combines BugBuster Protein Extraction Reagent with Benzonase ® Nuclease and rLysozyme Solution in one convenient reagent. Application BugBuster ® Master Mix has been used for the lysis of cell pellets during
BugBuster ® Master Mix combines BugBuster Protein Extraction Reagent with Benzonase ® Nuclease and rLysozyme Solution in one convenient reagent. Application BugBuster ® Master Mix has been used for the lysis of cell pellets during