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Dive into the research topics where Johannes Oonk is active.

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Featured researches published by Johannes Oonk.


Micromachining and Microfabrication Process Technology XIX | 2014

Laser assisted and hermetic room temperature bonding based on direct bonding technology

Jeroen Haneveld; Peter Tijssen; Johannes Oonk; Mark Olde Riekerink; Hildebrand Tigelaar; Ronny van 't Oever; M.T. Blom

A novel method for laser assisted room temperature bonding of two substrates is presented. The method enables the packaging of delicate (bio)structures and/or finished (MEMS) devices, as there is no need for a high temperature annealing process. This also allows the bonding of two substrates with non-matching thermal expansion coefficients. The basis of the presented technology is the ability to create a direct pre-bond between two substrates. These can be two glass substrates, of which one has a thin film metal coating (e.g. Cr. Ti, Ta, Au…), or a silicon-glass combination. After (aligned) pre-bonding of the two wafers, a laser (e.g. a Nd:YAG laser) is used to form a permanent bond line on the bond interface, using the metal layer as a light absorber (or the silicon, in the case of a glass-silicon combination). The permanent bond line width is in the order of 10-50μm. The use of a laser to form the permanent bond ensures a hermetic sealing of the total package; a distinctive advantage over other, more conventional methods of room temperature bonding (e.g. adhesive bonding). He-leak testing showed leak rates in the order of 10-9 mbar l/s. This meets the failure criteria of the MIL-STD-883H standard of 5x10-8 mbar l/s. An added functionality of the proposed method is the possibility to create electrical circuitry on the bond interface, using the laser to modify the metal interlayer, rendering it electrically non-conductive. Biocompatible packages are also possible, by choosing the appropriate interlayer material. This would allow for the fabrication of implantable packages.


Lab on a Chip | 2011

Zebrafish embryo development in a microfluidic flow-through system

Eric M. Wielhouwer; Shaukat Ali; Abdulrahman Al-Afandi; M.T. Blom; Marinus Bernardus Olde Riekerink; Christian Poelma; Jerry Westerweel; Johannes Oonk; Elwin X. Vrouwe; Wilfred Buesink; Harald G. J. vanMil; Jonathan Chicken; Ronny van 't Oever; Michael K. Richardson


Archive | 2010

Biological microfluidics chip and related methods

Elwin X. Vrouwe; Eric M. Wielhouwer; Johannes Oonk; Marinus Bernardus Olde Riekerink; Michael K. Richardson


Archive | 2013

METHOD FOR FORMING AN ELECTRICALLY CONDUCTIVE VIA IN A SUBSTRATE

Oever Ronny Van't; M.T. Blom; Jeroen Haneveld; Johannes Oonk; Peter Tijssen


Archive | 2012

Method of bonding two substrates and device manufactured thereby

t Oever Ronny Van; M.T. Blom; Jeroen Haneveld; Johannes Oonk; Peter Tijssen; Hendrik Jan Hildebrand Tigelaar; Jean-Noel Fehr; Jean-Christophe Roulet; Amitava Gupta


Archive | 2007

Test chip with plug for measuring the concentration of an analyte in a liquid, housing for test chip and socket for plug

Steven Staal; Jan Floris; M.T. Blom; Johannes Oonk


Archive | 2013

MICRO FLUID TYPE MEASURING DEVICE

Steven Staal; Jan Floris; M.T. Blom; Johannes Oonk


Archive | 2007

Testchip mit stecker zur messung der konzentration eines analyten in einer flüssigkeit, gehäuse für den testchip und steckdose für den stecker

Steven Staal; Jan Floris; M.T. Blom; Johannes Oonk


Archive | 2007

Liquid sample test method and device with test chip and handling unit

Steven Staal; Jan Floris; M.T. Blom; Johannes Oonk


Archive | 2007

Test Chip with Evaporation Seal

Steven Staal; Jan Floris; M.T. Blom; Johannes Oonk

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Christian Poelma

Delft University of Technology

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Jerry Westerweel

Delft University of Technology

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