Back to Search Start Over

Investigation of temperature sensitivity of a MEMS gravimeter based on geometric anti-spring.

Authors :
Belwanshi, Vinod
Prasad, Abhinav
Toland, Karl
Middlemiss, Richard
Paul, Douglas
Hammond, Giles
Source :
Review of Scientific Instruments; 12/1/2022, Vol. 93 Issue 12, p1-6, 6p
Publication Year :
2022

Abstract

This paper describes a technique for temperature sensitivity or thermal sag measurements of a geometric anti-spring based microelectromechanical system (MEMS) gravimeter (Wee-g). The Wee-g MEMS gravimeter is currently fabricated on a (100) silicon wafer using standard micro-nano fabrication techniques. The thermal behavior of silicon indicates that the Young's modulus of silicon decreases with increase in temperature (∼64 ppm/K). This leads to a softening of the silicon material, resulting in the proof mass displacing (or sagging) under the influence of increasing temperature. It results in a change in the measured gravity, which is expressed as temperature sensitivity in terms of change in gravity per degree temperature. The temperature sensitivity for the silicon based MEMS gravimeter is found to be 60.14–64.87, 61.76, and 62.76 µGal/mK for experimental, finite element analysis (FEA) simulation, and analytical calculations, respectively. It suggests that the gravimeter's temperature sensitivity is dependent on the material properties used to fabricate the MEMS devices. In this paper, the experimental measurements of thermal sag are presented along with analytical calculations and simulations of the effect using FEA. The bespoke optical measurement system to quantify the thermal sag is also described. The results presented are an essential step toward the development of temperature insensitive MEMS gravimeters. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00346748
Volume :
93
Issue :
12
Database :
Complementary Index
Journal :
Review of Scientific Instruments
Publication Type :
Academic Journal
Accession number :
161087318
Full Text :
https://doi.org/10.1063/5.0114664