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  4. Integration of piezoelectric polymer transducers into microsystems for sensing applications
 
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2012
Conference Paper
Title

Integration of piezoelectric polymer transducers into microsystems for sensing applications

Abstract
A polymer-based sensor for low frequency acceleration detection is fabricated by using microinjection molding technologies. Finite Element simulations and characterization of the sensing functionality are done. Due to an out-of-plane acceleration a force is applied to a seismic mass (length and width each 3.2 mm, thickness 1 mm), which leads to a deformation of a connected plate with dimensions of 1 mm × 1 mm × 50 ?m. Thus, charge separation at the electrodes of integrated piezoelectric polyvinylidene fluoride (PVDF) copolymer sheets occur and can be measured as sensor signal. A charge sensitivity of 0.57 pC/g is determined which is in good agreement with the simulation results. A resonance frequency of 660 Hz was measured. Furthermore, the sensor concept as well as preparation technologies to assemble a compound structure containing piezoelectric layers and the system integration by micro injection molding are discussed. In addition, different bonding techniques for the assembly of the functional components are investigated and described.
Author(s)
Schulze, R.
Gessner, T.
Schueller, M.
Forke, R.
Billep, D.
Hahn, R.
Heinrich, M.
Sborikas, M.
Wegener, M.
Mainwork
International Symposium on Applications of Ferroelectrics held jointly with European Conference on the Applications of Polar Dielectrics and International Symposium Piezoresponse Force Microscopy and Nanoscale Phenomena in Polar Materials, ISAF/ECAPD/PFM 2012. Proceedings  
Conference
International Symposium on Applications of Ferroelectrics (ISAF) 2012  
European Conference on the Applications of Polar Dielectrics (ECAPD) 2012  
International Symposium Piezoresponse Force Microscopy and Nanoscale Phenomena in Polar Materials (PFM) 2012  
DOI
10.1109/ISAF.2012.6297771
Language
English
Fraunhofer-Institut für Elektronische Nanosysteme ENAS  
Fraunhofer-Institut für Angewandte Polymerforschung IAP  
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