Design and implementation of a 1GHz CMOS resonator utilizing surface acoustic wave

The design and fabrication of an integrated 1GHz surface acoustic wave (SAW) resonator is described in this paper. The SAW resonator was fabricated using a combination of CMOS plus surface micromachining techniques. Utilizing the minimum feature size of the available 0.6 micron AMI CMOS process, the...

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Main Authors: Nordin, Anis Nurashikin, Zaghloul, Mona E.
Format: Proceeding Paper
Language:English
Published: 2006
Subjects:
Online Access:http://irep.iium.edu.my/3718/1/21.pdf
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author Nordin, Anis Nurashikin
Zaghloul, Mona E.
author_facet Nordin, Anis Nurashikin
Zaghloul, Mona E.
author_sort Nordin, Anis Nurashikin
collection IIUM
description The design and fabrication of an integrated 1GHz surface acoustic wave (SAW) resonator is described in this paper. The SAW resonator was fabricated using a combination of CMOS plus surface micromachining techniques. Utilizing the minimum feature size of the available 0.6 micron AMI CMOS process, the periodic distance of the interdigitated fingers of the SAW resonator was designed to create an ultra high frequency resonator of 1.15 GHz. Measurements and characterization of the fabricated resonator were performed and used as a basis to develop a two-port equivalent circuit model. To complement the resonator, a Pierce oscillator circuit was designed in CMOS to create a frequency synthesizer capable of generating frequencies up to 1.15GHz without the complexity of a phase-locked-loop (PLL) circuit
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spelling oai:generic.eprints.org:37182011-10-27T03:40:58Z http://irep.iium.edu.my/3718/ Design and implementation of a 1GHz CMOS resonator utilizing surface acoustic wave Nordin, Anis Nurashikin Zaghloul, Mona E. TK7885 Computer engineering The design and fabrication of an integrated 1GHz surface acoustic wave (SAW) resonator is described in this paper. The SAW resonator was fabricated using a combination of CMOS plus surface micromachining techniques. Utilizing the minimum feature size of the available 0.6 micron AMI CMOS process, the periodic distance of the interdigitated fingers of the SAW resonator was designed to create an ultra high frequency resonator of 1.15 GHz. Measurements and characterization of the fabricated resonator were performed and used as a basis to develop a two-port equivalent circuit model. To complement the resonator, a Pierce oscillator circuit was designed in CMOS to create a frequency synthesizer capable of generating frequencies up to 1.15GHz without the complexity of a phase-locked-loop (PLL) circuit 2006-09-11 Proceeding Paper PeerReviewed application/pdf en http://irep.iium.edu.my/3718/1/21.pdf Nordin, Anis Nurashikin and Zaghloul, Mona E. (2006) Design and implementation of a 1GHz CMOS resonator utilizing surface acoustic wave. In: International Symposium on Circuits and Systems (ISCAS 2006), May 21-24, 2006, Island of Kos, Greece. http://ieeexplore.ieee.org/stamp/stamp.jsp?tp=&arnumber=1693384
spellingShingle TK7885 Computer engineering
Nordin, Anis Nurashikin
Zaghloul, Mona E.
Design and implementation of a 1GHz CMOS resonator utilizing surface acoustic wave
title Design and implementation of a 1GHz CMOS resonator utilizing surface acoustic wave
title_full Design and implementation of a 1GHz CMOS resonator utilizing surface acoustic wave
title_fullStr Design and implementation of a 1GHz CMOS resonator utilizing surface acoustic wave
title_full_unstemmed Design and implementation of a 1GHz CMOS resonator utilizing surface acoustic wave
title_short Design and implementation of a 1GHz CMOS resonator utilizing surface acoustic wave
title_sort design and implementation of a 1ghz cmos resonator utilizing surface acoustic wave
topic TK7885 Computer engineering
url http://irep.iium.edu.my/3718/1/21.pdf
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