Design and modeling of one-port SAW resonator at 2.45 GHz for wireless application base on GaPO4

This paper presents the full design, operational principle, structure and frequency response simulation of one-port Surface Acoustic Wave (SAW) Resonator using Micro Wave Office (MWO) and MATLAB used for passive wireless sensing of various measurands. Since SAW Resonators are widely used in radio fr...

Full description

Bibliographic Details
Main Authors: Mousavi, Sayed Alireza, Ali, Aidy, Hamidon, Mohd Nizar, Rahimi, Maryam, Mohd Sidek, Roslina, Khabbazi, Mahmood Reza, Bayat, Mehdi
Format: Conference or Workshop Item
Language:English
Published: IEEE 2008
Online Access:http://psasir.upm.edu.my/id/eprint/15053/
http://psasir.upm.edu.my/id/eprint/15053/1/Design%20and%20modeling%20of%20one-port%20SAW%20resonator%20at%202.45%20GHz%20for%20wireless%20application%20base%20on%20GaPO4.pdf
Description
Summary:This paper presents the full design, operational principle, structure and frequency response simulation of one-port Surface Acoustic Wave (SAW) Resonator using Micro Wave Office (MWO) and MATLAB used for passive wireless sensing of various measurands. Since SAW Resonators are widely used in radio frequency sensing application, the development and evolution of present day SAW devices has been possible only due to simultaneous efforts to simulate these devices and also it is desirable to evaluate the device prior to fabrication especially in cases where the characteristic of device material and dimensions have a major influence on the performance of the overall system. The equivalent circuit model approach has been used to simulate the frequency response of one-port SAW resonator base on gallium orthophosphate (GaPO4) with 5° cut-angle at 2.45 GHz under ISM band frequency for high temperature wireless application and it appears that this modeling is suitable for near resonance frequency, also measuring dielectric permittivity of GaPO 4 at this frequency for use of modeling.