Micromachined microsensors for gas or flow detection based on physical behaviour of a special layer of a membrane have to fulfil high quality and reliability requirements especially in safety or security applications. For the reliability assessment a combination of simulative and experimental methods is usually carried out for the fully understanding of the thermo-mechanical behaviour. Due to the micromachining involved in the production of the sensor components the thermo-mechanical response of the layers are strongly dependent on process parameters. Therefore experimental methods for the 3D deformation detection are essential. In this paper experimental methods such as profilometry and scanning probe microscopy are tested for the evaluati...
Die Qualität von endverpackten Sensoren hängt entschieden von der Beherrschung der mechanischen Span...
This paper presents an experimentally verified 3D FEM model to understand heat transfer mechanisms i...
AbstractThis paper presents an experimentally verified 3D FEM model to understand heat transfer mech...
Micro machined micro sensors for gas or flow detection based on physical behaviour of a special laye...
The nanomechanical behaviour of micromembranes for high temperature applications of a microelectro m...
In this paper, we present a complete thermomechanical study of a micromachined gas sensor substrate....
3D thermo-electro-mechanical device simulations are presented of a novel fully CMOS-compatible MOSFE...
The paper comprises research results obtained for stress determination on micro and nanotechnology c...
With the development and application of micro/nano electronic mechanical systems (MEMS, NEMS) for a ...
Research results obtained for local stress determination on micro and nanotechnology components are ...
The thermo-mechanical behaviour of different bulk-micromachined microheater structures for chemoresi...
Polydimethylsiloxane (PDMS) membranes have been widely used in the microfluidic community to achieve...
In this paper investigations for the non-destructive characterization of MEMS (Micro-Electro-Mechani...
In this paper a method is described that can be applied for the non-destructive characterisation of ...
In a technological world that is trending towards smart and autonomous engineering, the collection o...
Die Qualität von endverpackten Sensoren hängt entschieden von der Beherrschung der mechanischen Span...
This paper presents an experimentally verified 3D FEM model to understand heat transfer mechanisms i...
AbstractThis paper presents an experimentally verified 3D FEM model to understand heat transfer mech...
Micro machined micro sensors for gas or flow detection based on physical behaviour of a special laye...
The nanomechanical behaviour of micromembranes for high temperature applications of a microelectro m...
In this paper, we present a complete thermomechanical study of a micromachined gas sensor substrate....
3D thermo-electro-mechanical device simulations are presented of a novel fully CMOS-compatible MOSFE...
The paper comprises research results obtained for stress determination on micro and nanotechnology c...
With the development and application of micro/nano electronic mechanical systems (MEMS, NEMS) for a ...
Research results obtained for local stress determination on micro and nanotechnology components are ...
The thermo-mechanical behaviour of different bulk-micromachined microheater structures for chemoresi...
Polydimethylsiloxane (PDMS) membranes have been widely used in the microfluidic community to achieve...
In this paper investigations for the non-destructive characterization of MEMS (Micro-Electro-Mechani...
In this paper a method is described that can be applied for the non-destructive characterisation of ...
In a technological world that is trending towards smart and autonomous engineering, the collection o...
Die Qualität von endverpackten Sensoren hängt entschieden von der Beherrschung der mechanischen Span...
This paper presents an experimentally verified 3D FEM model to understand heat transfer mechanisms i...
AbstractThis paper presents an experimentally verified 3D FEM model to understand heat transfer mech...