Stop Band Continuous Profile Filter in Empty Substrate Integrated Coaxial Line

Substrate integrated waveguides reduce the losses and increase the quality factor of resonators in communication filters when compared with traditional planar technologies, while maintaining their low-cost and low-profile characteristics. Empty substrate integrated waveguides go one step further, re...

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Main Authors: Darío Gómez, Héctor Esteban, Angel Belenguer, Vicente E. Boria, Alejandro L. Borja
Format: Article
Language:English
Published: MDPI AG 2018-11-01
Series:Applied Sciences
Subjects:
Online Access:https://www.mdpi.com/2076-3417/8/11/2176
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spelling doaj-c17b18c737374860bd71dd36f9cebdbc2020-11-25T01:25:57ZengMDPI AGApplied Sciences2076-34172018-11-01811217610.3390/app8112176app8112176Stop Band Continuous Profile Filter in Empty Substrate Integrated Coaxial LineDarío Gómez0Héctor Esteban1Angel Belenguer2Vicente E. Boria3Alejandro L. Borja4Instituto de Telecomunicaciones y Aplicaciones Multimedia, Universitat Politècnica de València, 46022 Valencia, SpainInstituto de Telecomunicaciones y Aplicaciones Multimedia, Universitat Politècnica de València, 46022 Valencia, SpainDepartamento de Ingeniería Eléctrica, Electrónica, Automática y Comunicaciones, Universidad de Castilla-La Mancha, Escuela Politécnica de Cuenca, Campus Universitario, 16071 Cuenca, SpainInstituto de Telecomunicaciones y Aplicaciones Multimedia, Universitat Politècnica de València, 46022 Valencia, SpainDepartamento de Ingeniería Eléctrica, Electrónica, Automática y Comunicaciones, Universidad de Castilla-La Mancha, Escuela Politécnica de Cuenca, Campus Universitario, 16071 Cuenca, SpainSubstrate integrated waveguides reduce the losses and increase the quality factor of resonators in communication filters when compared with traditional planar technologies, while maintaining their low-cost and low-profile characteristics. Empty substrate integrated waveguides go one step further, removing the dielectric of the substrate. One of these transmission lines is the empty substrate integrated coaxial line (ESICL), which has the advantage of being a two-conductor structure. Thus, it propagates a transversal electric and magnetic (TEM) mode, which reduces the dispersion and the bandwidth limitation of other one conductor empty substrate integrated waveguides. Continuous profile filters, at the cost of being long structures, are very easy to manufacture and design (usually no optimization is needed), and they are highly insensitive to manufacturing tolerances. In this work, a simple continuous profile filter, with a stop band response, is designed for the first time using novel ESICL technology. The influence of the design parameters on the insertion losses and fractional bandwidth is discussed. A prototype has been successfully manufactured and measured. A sensitivity analysis shows the high tolerance of the proposed stop band filter to manufacturing errors.https://www.mdpi.com/2076-3417/8/11/2176empty substrate integrated waveguidesempty substrate integrated coaxial lineESICLcontinuous profile filtersstop band filters
collection DOAJ
language English
format Article
sources DOAJ
author Darío Gómez
Héctor Esteban
Angel Belenguer
Vicente E. Boria
Alejandro L. Borja
spellingShingle Darío Gómez
Héctor Esteban
Angel Belenguer
Vicente E. Boria
Alejandro L. Borja
Stop Band Continuous Profile Filter in Empty Substrate Integrated Coaxial Line
Applied Sciences
empty substrate integrated waveguides
empty substrate integrated coaxial line
ESICL
continuous profile filters
stop band filters
author_facet Darío Gómez
Héctor Esteban
Angel Belenguer
Vicente E. Boria
Alejandro L. Borja
author_sort Darío Gómez
title Stop Band Continuous Profile Filter in Empty Substrate Integrated Coaxial Line
title_short Stop Band Continuous Profile Filter in Empty Substrate Integrated Coaxial Line
title_full Stop Band Continuous Profile Filter in Empty Substrate Integrated Coaxial Line
title_fullStr Stop Band Continuous Profile Filter in Empty Substrate Integrated Coaxial Line
title_full_unstemmed Stop Band Continuous Profile Filter in Empty Substrate Integrated Coaxial Line
title_sort stop band continuous profile filter in empty substrate integrated coaxial line
publisher MDPI AG
series Applied Sciences
issn 2076-3417
publishDate 2018-11-01
description Substrate integrated waveguides reduce the losses and increase the quality factor of resonators in communication filters when compared with traditional planar technologies, while maintaining their low-cost and low-profile characteristics. Empty substrate integrated waveguides go one step further, removing the dielectric of the substrate. One of these transmission lines is the empty substrate integrated coaxial line (ESICL), which has the advantage of being a two-conductor structure. Thus, it propagates a transversal electric and magnetic (TEM) mode, which reduces the dispersion and the bandwidth limitation of other one conductor empty substrate integrated waveguides. Continuous profile filters, at the cost of being long structures, are very easy to manufacture and design (usually no optimization is needed), and they are highly insensitive to manufacturing tolerances. In this work, a simple continuous profile filter, with a stop band response, is designed for the first time using novel ESICL technology. The influence of the design parameters on the insertion losses and fractional bandwidth is discussed. A prototype has been successfully manufactured and measured. A sensitivity analysis shows the high tolerance of the proposed stop band filter to manufacturing errors.
topic empty substrate integrated waveguides
empty substrate integrated coaxial line
ESICL
continuous profile filters
stop band filters
url https://www.mdpi.com/2076-3417/8/11/2176
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AT angelbelenguer stopbandcontinuousprofilefilterinemptysubstrateintegratedcoaxialline
AT vicenteeboria stopbandcontinuousprofilefilterinemptysubstrateintegratedcoaxialline
AT alejandrolborja stopbandcontinuousprofilefilterinemptysubstrateintegratedcoaxialline
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