DESIGN AND IMPLEMENTATION OF A NEW NARROW-BAND FILTER

碩士 === 大同大學 === 通訊工程研究所 === 89 === In this thesis, design of a new miniaturized narrow-band filter is discussed. It composes of four slip-ring step-impedance resonators. The resonant frequency of each resonator is firstly determined, then, the coupling coefficients between any two resonat...

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Main Authors: Jin-Hau Li, 黎晉豪
Other Authors: The-Nan Chang
Format: Others
Language:en_US
Published: 2001
Online Access:http://ndltd.ncl.edu.tw/handle/88475104782056896949
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spelling ndltd-TW-089TTU006500072015-10-13T12:14:42Z http://ndltd.ncl.edu.tw/handle/88475104782056896949 DESIGN AND IMPLEMENTATION OF A NEW NARROW-BAND FILTER 新型窄頻濾波器之設計與實現 Jin-Hau Li 黎晉豪 碩士 大同大學 通訊工程研究所 89 In this thesis, design of a new miniaturized narrow-band filter is discussed. It composes of four slip-ring step-impedance resonators. The resonant frequency of each resonator is firstly determined, then, the coupling coefficients between any two resonators and the external quality factor are extracted. A commercially available software package (IE3D version 5.3) was used in this survey. Filters designed in this thesis are well prepared for 2.45GHz ISM-band use. The fractional bandwidth is around 4%. Two type of filters are studied-one is used to realize the Chebyshev function, and the other the elliptic function. The filters can be achieved with a 4-pole structure. The filter response could be composed of a coupling matrix. Each element is represented the coupling coefficient between two resonators. We expect the circuit area could be reduced effectively. Finally, we measure the filter response with the network analyzer HP8510C, and compare the measured results with the theoretical and simulation response. The measured insertion loss is around —2 dB, and the fractional bandwidth is about 4% to 5%. It is close to the theoretical response. The-Nan Chang 張知難 2001 學位論文 ; thesis 35 en_US
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language en_US
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sources NDLTD
description 碩士 === 大同大學 === 通訊工程研究所 === 89 === In this thesis, design of a new miniaturized narrow-band filter is discussed. It composes of four slip-ring step-impedance resonators. The resonant frequency of each resonator is firstly determined, then, the coupling coefficients between any two resonators and the external quality factor are extracted. A commercially available software package (IE3D version 5.3) was used in this survey. Filters designed in this thesis are well prepared for 2.45GHz ISM-band use. The fractional bandwidth is around 4%. Two type of filters are studied-one is used to realize the Chebyshev function, and the other the elliptic function. The filters can be achieved with a 4-pole structure. The filter response could be composed of a coupling matrix. Each element is represented the coupling coefficient between two resonators. We expect the circuit area could be reduced effectively. Finally, we measure the filter response with the network analyzer HP8510C, and compare the measured results with the theoretical and simulation response. The measured insertion loss is around —2 dB, and the fractional bandwidth is about 4% to 5%. It is close to the theoretical response.
author2 The-Nan Chang
author_facet The-Nan Chang
Jin-Hau Li
黎晉豪
author Jin-Hau Li
黎晉豪
spellingShingle Jin-Hau Li
黎晉豪
DESIGN AND IMPLEMENTATION OF A NEW NARROW-BAND FILTER
author_sort Jin-Hau Li
title DESIGN AND IMPLEMENTATION OF A NEW NARROW-BAND FILTER
title_short DESIGN AND IMPLEMENTATION OF A NEW NARROW-BAND FILTER
title_full DESIGN AND IMPLEMENTATION OF A NEW NARROW-BAND FILTER
title_fullStr DESIGN AND IMPLEMENTATION OF A NEW NARROW-BAND FILTER
title_full_unstemmed DESIGN AND IMPLEMENTATION OF A NEW NARROW-BAND FILTER
title_sort design and implementation of a new narrow-band filter
publishDate 2001
url http://ndltd.ncl.edu.tw/handle/88475104782056896949
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