arrow
Return

A LN/Si-Based SAW Pressure Sensor

delete2018-10-16
delete21
delete
OA
AI
P
Pascal Nicolay *
H
Hugo Chambon
G
Gudrun Bruckner
C
Christian Gruber
S
Sylvain Ballandras
E
E. Courjon
M
Matthias Stadler
DOI:10.3390/s18103482delete
deleteOriginal
deleteShare
deleteSave
View PDF
Abstract

Abstract

En 中文
Surface Acoustic Wave (SAW) sensors are small, passive and wireless devices. We present here the latest results obtained in a project aimed at developing a SAW-based implantable pressure sensor, equipped with a well-defined, 30 m-thick, 4.7 mm-in-diameter, Lithium Niobate (LN) membrane. A novel fabrication process was used to solve the issue of accurate membrane etching in LN. LN/Si wafers were fabricated first, using wafer-bonding techniques. Grinding/polishing operations followed, to reduce the LN thickness to 30 m. 2.45 GHz SAW Reflective Delay-Lines (R-DL) were then deposited on LN, using a combination of e-beam and optical lithography. The R-DL was designed in such a way as to allow for easy temperature compensation. Eventually, the membranes were etched in Si. A dedicated set-up was implemented, to characterize the sensors versus pressure and temperature. The achieved pressure accuracy is satisfactory (+/- 0.56 mbar). However, discontinuities in the response curve and residual temperature sensitivity were observed. Further experiments, modeling and simulations were used to analyze the observed phenomena. They were shown to arise essentially from the presence of growing thermo-mechanical strain and stress fields, generated in the bimorph-like LN/Si structure, when the temperature changes. In particular, buckling effects explain the discontinuities, observed around 43 degrees C, in the response curves. Possible solutions are suggested and discussed.
Keywords:
SAW pressure sensor
multilayer substrate
thin LN membranes
LN
Si
wafer-bonding
AI Summary

AI Summary

Key information extracted from the uploaded paper, including a brief overview, abstract, background, key highlights, visual analysis, and future outlook.

Journal

Sensors cover
Sensors
IF:
3.5
Papers:
7.1W
Citations:
20.9W

Organization

C
carinthian tech research ag (ctr)
Scholars:
72
Papers: 48
Citations: 0