The Analysis of Meander Coaxial Rectangular Resonators
碩士 === 長庚大學 === 電子工程研究所 === 93 === The concept of electromagnetic wave was used to improve a planar rectangular resonator to a meander planar coaxial rectangular resonator. Thus, the size of the resonator can be reduced while still achieving high Q factor. We also compare the characteristics of this...
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ndltd-TW-093CGU006860362015-10-13T11:39:20Z http://ndltd.ncl.edu.tw/handle/55848490123253537654 The Analysis of Meander Coaxial Rectangular Resonators 曲折式同軸矩形共振器之研究 sollo liu 劉宜學 碩士 長庚大學 電子工程研究所 93 The concept of electromagnetic wave was used to improve a planar rectangular resonator to a meander planar coaxial rectangular resonator. Thus, the size of the resonator can be reduced while still achieving high Q factor. We also compare the characteristics of this resonator to the following common resonators: 1. the microstripline-fed planar rectangular resonator, 2. the gap-coupled half-wavelength microstripline resonator; 3. the parallel quarter-wavelength microstripline resonator and 4. the microstripline-fed dielectric resonator. In this thesis, the resonant frequency is chosen to be 5 GHz. Originally, silicon substrate and copper microstriplines were used in the simulation. However, we found that the loss was too high. Therefore, high temperature superconducting thin-film microstripline and MgO substrates were used in later simulation. It is difficult and costly to fabricate the resonator using these materials. Only a simplified version built by FR4 substrate was fabricated and measured to compare with simulation results. Jui-Ching Cheng 鄭瑞清 2005 學位論文 ; thesis 75 zh-TW |
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碩士 === 長庚大學 === 電子工程研究所 === 93 === The concept of electromagnetic wave was used to improve a planar rectangular resonator to a meander planar coaxial rectangular resonator. Thus, the size of the resonator can be reduced while still achieving high Q factor. We also compare the characteristics of this resonator to the following common resonators: 1. the microstripline-fed planar rectangular resonator, 2. the gap-coupled half-wavelength microstripline resonator; 3. the parallel quarter-wavelength microstripline resonator and 4. the microstripline-fed dielectric resonator. In this thesis, the resonant frequency is chosen to be 5 GHz. Originally, silicon substrate and copper microstriplines were used in the simulation. However, we found that the loss was too high. Therefore, high temperature superconducting thin-film microstripline and MgO substrates were used in later simulation. It is difficult and costly to fabricate the resonator using these materials. Only a simplified version built by FR4 substrate was fabricated and measured to compare with simulation results.
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author2 |
Jui-Ching Cheng |
author_facet |
Jui-Ching Cheng sollo liu 劉宜學 |
author |
sollo liu 劉宜學 |
spellingShingle |
sollo liu 劉宜學 The Analysis of Meander Coaxial Rectangular Resonators |
author_sort |
sollo liu |
title |
The Analysis of Meander Coaxial Rectangular Resonators |
title_short |
The Analysis of Meander Coaxial Rectangular Resonators |
title_full |
The Analysis of Meander Coaxial Rectangular Resonators |
title_fullStr |
The Analysis of Meander Coaxial Rectangular Resonators |
title_full_unstemmed |
The Analysis of Meander Coaxial Rectangular Resonators |
title_sort |
analysis of meander coaxial rectangular resonators |
publishDate |
2005 |
url |
http://ndltd.ncl.edu.tw/handle/55848490123253537654 |
work_keys_str_mv |
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