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HomeAuthorsBüttgenbach S.

Authors: Büttgenbach S.

FE-Simulations as a Part of a Tolerance Management System

Straube D., Germer C., Franke H-J, Triltsch U., Büttgenbach S., Technical University Braunschweig, DE
This paper reports on a software tool, which enabled tolerance management based on FE-Simulations and want to deliver impressions of the benefits of this coupling. The term tolerance management unites analysis, i.e. investigation of effects [...]

T-CAD Environment for Multi-Material-MEMS Design

Triltsch U., Büttgenbach S., Straube D., Franke H-J, Technical University of Braunschweig, DE
The presented approach delivers a design tool for multi-material MEMS and can act as a system level tool with interfaces for component level analysis tools. The platform provides interfaces to different knowledge bases which either [...]

Two-Regime Hollow PDMS Abbe Prism for u-TAS Applications

Llobera A., Wilke R., Büttgenbach S., Institut für Mikrotechnik, DE
A new robust and compact system, which comprises a PDMS-based hollow Abbe prism and microlenses, together with self-alignment channels for optical fibre positioning, is presented. This optical detection method has two different regimes for signal [...]

Analysis and Verification of Processing Sequences

Hansen U., Triltsch U., Büttgenbach S., Germer C., Franke H-J, Institute for Microtechnology, Braunschweig, DE
In the field of micro technology new technologies are being developed and employed to generate increasingly complex microsystems. Due to this, engineers have to be acquainted with considerable knowledge about the different processing technologies in [...]

Rule Based Validation of Processing Sequences

Hansen U., Germer C., Büttgenbach S., Franke H-J, TU Braunschweig, DE
In conventional mechanical engineering the development of a product is influenced only little by the specific requirements of the fabrication processes. When looking at the domain of micro mechanical devices this circumstance is no longer [...]

Rule Based Validation of Processing Sequences

Hansen U., Germer C., Büttgenbach S., Franke H-J, TU Braunschweig, DE
In conventional mechanical engineering the development of a product is influenced only little by the specific requirements of the fabrication processes. When looking at the domain of micro mechanical devices this circumstance is no longer [...]

A Data Model for the Representation of Fabrication Dependencies Concerning Micromechanical Devices

Hansen U., Büttgenbach S., Technical University of Braunschweig, DE
Conventionally the design of a product is conducted paying only little attention to the subsequent manufacturing. Regarding micromechanical devices this is not practicable, since the design choices taken are highly dependent on the technology used [...]

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