World Applied Sciences Journal, ( ISI ), Volume (6), No (7), Year (2009-7) , Pages (1-11)

Title : ( Modeling of a Novel High-Q, Highly Linear, IF Micromechanical Filter: Design and Simulations )

Authors: - - , Sayyed-Hossein Keshmiri ,

Citation: BibTeX | EndNote

Abstract

In this paper, design and simulation of a novel IC-compatible microelectromechanical bandpass filter for use in intermediate frequency range of a wireless communication system is reported. This filter is composed of two high-Q square frame microresonators coupled by a soft flexural-mode mechanical spring and can be implemented using either thick epitaxial polysilicon technology or bulk micromachining of SOI wafers. The resonators with new design and structure determine the center frequency, while a mechanical coupling spring defines the bandwidth of the filter. Quarter-wavelength coupling is required on this microscale to alleviate mass-loading effects caused by similar resonator and coupler dimensions. Filter center frequencies around 72 MHz, 285 kHz bandwidth, quality factor of 250, associated insertion loss less than 0.44 dB, spurious-free dynamic ranges around 99 dB and input and output termination resistances on the order of 9 k were obtained by this design.

Keywords

Bandpass Filter • Motional Resistance • Micromechanical Resonator • Quality Factor • MEMS
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@article{paperid:1012543,
author = { -, - and Keshmiri, Sayyed-Hossein},
title = {Modeling of a Novel High-Q, Highly Linear, IF Micromechanical Filter: Design and Simulations},
journal = {World Applied Sciences Journal},
year = {2009},
volume = {6},
number = {7},
month = {July},
issn = {1818-4952},
pages = {1--11},
numpages = {10},
keywords = {Bandpass Filter • Motional Resistance • Micromechanical Resonator • Quality Factor • MEMS},
}

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%0 Journal Article
%T Modeling of a Novel High-Q, Highly Linear, IF Micromechanical Filter: Design and Simulations
%A -, -
%A Keshmiri, Sayyed-Hossein
%J World Applied Sciences Journal
%@ 1818-4952
%D 2009

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