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Functionalities
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Flow control
Surface modification
Sample preparation
Reagent integration
Sensor integration
Application areas
Multiomics
In-vitro diagnostics & Point-of-Care
Single-cell analysis
Manufacturing
Capabilities
Lithography
Wet etching
Dry etching
Micromachining
Microfluidic replication
Surface functionalization
Thin film deposition
Assembly and interfacing
(Hybrid) bonding
Materials
Glass chips
Polymer chips
Silicon chips
Hybrid chips
Quality & Equipment
Quality
Equipment
Machine Spotlight
Working together
From idea to product
Microfluidic Prototyping Service
Product development microfluidic consumables
Manufacturing microfluidic consumables
About Micronit
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High throughput
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(Deep) Reactive Ion Etching (D)RIE
Customer case: VYCAP
Genomics consumables
Coating of COC
Label-free cell sorting
Smart OOC-platform for drug testing
Cell culture chips
ESA's ATHENA project
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PDMS for Microfluidics: Limitations and Alternatives
July 3, 2023
Effortlessly Creating Holes in Microfluidic Products
26th June 2023
New webstore product: Flow Cell
May 24, 2023
Blog - Advancing Personalized Medicine with Microfluidic Technology
March 20, 2023
Blog - Microfluidic glass chips: Three perspectives to keep track of your costs
December 20, 2022
Blog - Why glass microfluidic chips are popular in life science applications
December 9, 2022
Blog - Getting started with your own microfluidic glass chip
December 1, 2022
Next step in ESA development
October 21, 2022
Merge of Dortmund and Enschede production facilities
October 17, 2022
Micronit Awarded REACT grant for pilot production line
May 4, 2022
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