Micro-assembly of three dimensional tetrahedra by capillary forces

This paper presents the realization of micrometer sized silicon nitride tetrahedra with well-defined angles that are folded out of a planar geometry using capillary forces. The required specific three-dimensional shape is achieved by a well-defined folding sequence. Using the favorable properties of...

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Hauptverfasser: van Honschoten, J W, Legrain, A, Berenschot, J W, Abelmann, L, Tas, N R
Format: Tagungsbericht
Sprache:eng
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Zusammenfassung:This paper presents the realization of micrometer sized silicon nitride tetrahedra with well-defined angles that are folded out of a planar geometry using capillary forces. The required specific three-dimensional shape is achieved by a well-defined folding sequence. Using the favorable properties of the recently developed corner lithography technique, a programmable stop hinge is micro-machined by etching specifically defined intersection planes of the silicon mold. Tetrahedra were successfully folded by capillarity validating this new technique. The demand for such a microstructure has become very large since it can form the essential basic element for future three-dimensional data storage systems.
ISSN:1084-6999
DOI:10.1109/MEMSYS.2011.5734418