The parametric design of the fabrication on the flexible surface acoustic wave device

碩士 === 國立臺南大學 === 機電系統工程研究所 === 102 ===   The flexible surface acoustic wave (SAW) device is a promising product for the expanded application of SAW device. Over the past few years, a very few attempts have been made it on the flexible substrate. The purpose of this study is to process the parametri...

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Main Authors: Chi-Hung Tsai, 蔡其宏
Other Authors: Ta-Wei Lin
Format: Others
Language:zh-TW
Published: 2014
Online Access:http://ndltd.ncl.edu.tw/handle/9pbb9x
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spelling ndltd-TW-102NTNT06570052019-07-25T04:46:39Z http://ndltd.ncl.edu.tw/handle/9pbb9x The parametric design of the fabrication on the flexible surface acoustic wave device 可撓表面聲波元件製程的參數設計 Chi-Hung Tsai 蔡其宏 碩士 國立臺南大學 機電系統工程研究所 102   The flexible surface acoustic wave (SAW) device is a promising product for the expanded application of SAW device. Over the past few years, a very few attempts have been made it on the flexible substrate. The purpose of this study is to process the parametric modification on the fabrication of the flexible surface acoustic wave devices. The ZnO solution is prepared by sol-gel technology. We deposit ZnO solution on the flexible polyimide plastic (PI) substrate by ink jet process and Spin Coating. Next, x-ray diffraction (XRD) and scanning electron microscope (SEM) can obtain that about the crystal grain of the film, the material property and the surface morphology. The parametric design of the fabrication on the flexible surface acoustic wave device will be studied in this paper. The piezoelectricity of the film will increase as the thickness of the film increases. The reason is the crystallization of the film gets more robust. Finally, the planning of experiment parameters can be done by Taguchi Method. Then, the piezoelectric property can be promoted to achieve optimal analysis efficiently. This parameters can improve the efficiency of the SAW in future. Ta-Wei Lin 林大偉 2014 學位論文 ; thesis 100 zh-TW
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language zh-TW
format Others
sources NDLTD
description 碩士 === 國立臺南大學 === 機電系統工程研究所 === 102 ===   The flexible surface acoustic wave (SAW) device is a promising product for the expanded application of SAW device. Over the past few years, a very few attempts have been made it on the flexible substrate. The purpose of this study is to process the parametric modification on the fabrication of the flexible surface acoustic wave devices. The ZnO solution is prepared by sol-gel technology. We deposit ZnO solution on the flexible polyimide plastic (PI) substrate by ink jet process and Spin Coating. Next, x-ray diffraction (XRD) and scanning electron microscope (SEM) can obtain that about the crystal grain of the film, the material property and the surface morphology. The parametric design of the fabrication on the flexible surface acoustic wave device will be studied in this paper. The piezoelectricity of the film will increase as the thickness of the film increases. The reason is the crystallization of the film gets more robust. Finally, the planning of experiment parameters can be done by Taguchi Method. Then, the piezoelectric property can be promoted to achieve optimal analysis efficiently. This parameters can improve the efficiency of the SAW in future.
author2 Ta-Wei Lin
author_facet Ta-Wei Lin
Chi-Hung Tsai
蔡其宏
author Chi-Hung Tsai
蔡其宏
spellingShingle Chi-Hung Tsai
蔡其宏
The parametric design of the fabrication on the flexible surface acoustic wave device
author_sort Chi-Hung Tsai
title The parametric design of the fabrication on the flexible surface acoustic wave device
title_short The parametric design of the fabrication on the flexible surface acoustic wave device
title_full The parametric design of the fabrication on the flexible surface acoustic wave device
title_fullStr The parametric design of the fabrication on the flexible surface acoustic wave device
title_full_unstemmed The parametric design of the fabrication on the flexible surface acoustic wave device
title_sort parametric design of the fabrication on the flexible surface acoustic wave device
publishDate 2014
url http://ndltd.ncl.edu.tw/handle/9pbb9x
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