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Article

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Title

Analytical modeling of the harmonic distortion caused by squeeze film damping in MEMS-based acoustic transducers

Authors

Year of publication

2024

Published in

Vibrations in Physical Systems

Journal year: 2024 | Journal volume: vol. 35 | Journal number: no. 1

Article type

scientific article

Publication language

english

Keywords
EN
  • audio
  • loudspeaker
  • simulation
  • modelling
  • reduced order model
  • nonlinear system
Abstract

EN Miniaturized microelectromechanical system (MEMS) microspeakers are currently trending in the development of acoustic transducers. When a transducer is scaled down to fit on a microelectronic chip, its physics differ from the macroscopic world, and some common modeling assumptions become invalid. One of the effects observed in MEMS microspeakers is nonlinear squeeze film damping. Understanding this effect is crucial, as non-linearities in the speaker can result in perceptible harmonic distortions, which are undesirable in audio applications. In this study, we analyze the influence of squeeze film damping on harmonic distortions using a lumped parameter model of a MEMS microspeaker. This leads to a nonlinear ordinary differential equation, and an approximate analytical solution for moderate non-linearities is obtained using homotopy. We present our solution strategy, including the resulting closed-form expression, and verify our findings against numerical solutions.

Pages (from - to)

2024106-1 - 2024106-12

DOI

10.21008/j.0860-6897.2024.1.06

URL

https://vibsys.put.poznan.pl/_journal/2024-35-1/articles/vps_2024106.pdf

Comments

Article number: 2024106

License type

CC BY (attribution alone)

Open Access Mode

open journal

Open Access Text Version

final published version

Full text of article

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Access level to full text

public

Ministry points / journal

70

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