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Role of metal electrodes in the generation of third order nonlinearities in TC-SAW devices
- In the present work, nonlinearities in temperature
compensating (TC) SAW devices are investigated. The materials
used are LiNbO3-rot128YX as the substrate and Copper electrodes covered with a SiO2-layer as the compensating layer.
In order to understand the role of these materials for the
nonlinearities in such acoustic devices, a FEM simulation model
in combination with a perturbationIn the present work, nonlinearities in temperature
compensating (TC) SAW devices are investigated. The materials
used are LiNbO3-rot128YX as the substrate and Copper electrodes covered with a SiO2-layer as the compensating layer.
In order to understand the role of these materials for the
nonlinearities in such acoustic devices, a FEM simulation model
in combination with a perturbation approach [1] is applied.
The nonlinear tensor data of the different materials involved
in TC-SAW devices have been taken from literature, but were
partially modified to fit experimental data by introducing scaling factors. An effective nonlinearity constant is determined
by comparison of nonlinear P-matrix simulations to IMD3
measurements of test filters. By employing these constants in
nonlinear periodic P-matrix simulations a direct comparison to
nonlinear periodic FEM-simulations yields the scaling factors for
the material used. Thus, the contribution of different materials
to the nonlinear behavior of TC-SAW devices is obtained and
the role of metal electrodes is discussed in detail…
Author: | Vikrant Chauhan, Andreas MayerGND, Elena Mayer, Werner Ruile, Thomas Ebner |
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Publisher: | IEEE |
Place of publication: | Washington |
Year of Publication: | 2017 |
Pagenumber: | 1 |
Language: | English |
Parent Title (German): | 2017 IEEE International Ultrasonics Symposium (IUS) |
First Page: | 1 |
Last Page: | 1 |
Document Type: | Other |
Institutes: | Bibliografie |
Open Access: | Zugriffsbeschränkt |
Release Date: | 2018/01/18 |
Licence (German): | ![]() |
URN: | urn:nbn:de:bsz:ofb1-opus4-26656 |
DOI: | https://doi.org/10.1109/ULTSYM.2017.8092066 |