Empty substrate integrated waveguide technology for E plane high-frequency and high-performance circuits

Substrate integrated circuits (SIC) have attracted much attention in the last years because of their great potential of low cost, easy manufacturing, integration in a circuit board, and higher-quality factor than planar circuits. A first suite of SIC where the waves propagate through dielectric have...

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Autores: Belenguer, Ángel, Cano, Juan Luis, Esteban, Héctor, Artal, Eduardo, Boria, Vicente E.
Tipo de recurso: artículo
Fecha de publicación:2017
País:España
Institución:Universidad de Castilla-La Mancha
Repositorio:RUIdeRA. Repositorio Institucional de la UCLM
OAI Identifier:oai:ruidera.uclm.es:10578/15151
Acceso en línea:http://hdl.handle.net/10578/15151
Access Level:acceso abierto
Palabra clave:High-Performance Circuits
E Plane High-Frequency
Empty Substrate Integrated Waveguide Technology
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spelling Empty substrate integrated waveguide technology for E plane high-frequency and high-performance circuitsBelenguer, ÁngelCano, Juan LuisEsteban, HéctorArtal, EduardoBoria, Vicente E.High-Performance CircuitsE Plane High-FrequencyEmpty Substrate Integrated Waveguide TechnologySubstrate integrated circuits (SIC) have attracted much attention in the last years because of their great potential of low cost, easy manufacturing, integration in a circuit board, and higher-quality factor than planar circuits. A first suite of SIC where the waves propagate through dielectric have been first developed, based on the well-known substrate integrated waveguide (SIW) and related technological implementations. One step further has been made with a new suite of empty substrate integrated waveguides, where the waves propagate through air, thus reducing the associated losses. This is the case of the empty substrate integrated waveguide (ESIW) or the air-filled substrate integrated waveguide (air-filled SIW). However, all these SIC are H plane structures, so classical H plane solutions in rectangular waveguides have already been mapped to most of these new SIC. In this paper a novel E plane empty substrate integrated waveguide (ESIW-E) is presented. This structure allows to easily map classical E plane solutions in rectangular waveguide to this new substrate integrated solution. It is similar to the ESIW, although more layers are needed to build the structure. A wideband transition (covering the frequency range between 33 GHz and 50 GHz) from microstrip to ESIW-E is designed and manufactured. Measurements are successfully compared with simulation, proving the validity of this new SIC. A broadband high-frequency phase shifter (for operation from 35 GHz to 47 GHz) is successfully implemented in ESIW-E, thus proving the good performance of this new SIC in a practical application.201720172017info:eu-repo/semantics/articleapplication/pdfapplication/pdfhttp://hdl.handle.net/10578/15151reponame:RUIdeRA. Repositorio Institucional de la UCLMinstname:Universidad de Castilla-La ManchaInglésTEC2013-47037-C5-3-RTEC2013-47037-C5-1-RAYA2013-49759-EXPCSD2010-00064info:eu-repo/semantics/openAccessoai:ruidera.uclm.es:10578/151512026-05-27T07:36:41Z
dc.title.none.fl_str_mv Empty substrate integrated waveguide technology for E plane high-frequency and high-performance circuits
title Empty substrate integrated waveguide technology for E plane high-frequency and high-performance circuits
spellingShingle Empty substrate integrated waveguide technology for E plane high-frequency and high-performance circuits
Belenguer, Ángel
High-Performance Circuits
E Plane High-Frequency
Empty Substrate Integrated Waveguide Technology
title_short Empty substrate integrated waveguide technology for E plane high-frequency and high-performance circuits
title_full Empty substrate integrated waveguide technology for E plane high-frequency and high-performance circuits
title_fullStr Empty substrate integrated waveguide technology for E plane high-frequency and high-performance circuits
title_full_unstemmed Empty substrate integrated waveguide technology for E plane high-frequency and high-performance circuits
title_sort Empty substrate integrated waveguide technology for E plane high-frequency and high-performance circuits
dc.creator.none.fl_str_mv Belenguer, Ángel
Cano, Juan Luis
Esteban, Héctor
Artal, Eduardo
Boria, Vicente E.
author Belenguer, Ángel
author_facet Belenguer, Ángel
Cano, Juan Luis
Esteban, Héctor
Artal, Eduardo
Boria, Vicente E.
author_role author
author2 Cano, Juan Luis
Esteban, Héctor
Artal, Eduardo
Boria, Vicente E.
author2_role author
author
author
author
dc.subject.none.fl_str_mv High-Performance Circuits
E Plane High-Frequency
Empty Substrate Integrated Waveguide Technology
topic High-Performance Circuits
E Plane High-Frequency
Empty Substrate Integrated Waveguide Technology
description Substrate integrated circuits (SIC) have attracted much attention in the last years because of their great potential of low cost, easy manufacturing, integration in a circuit board, and higher-quality factor than planar circuits. A first suite of SIC where the waves propagate through dielectric have been first developed, based on the well-known substrate integrated waveguide (SIW) and related technological implementations. One step further has been made with a new suite of empty substrate integrated waveguides, where the waves propagate through air, thus reducing the associated losses. This is the case of the empty substrate integrated waveguide (ESIW) or the air-filled substrate integrated waveguide (air-filled SIW). However, all these SIC are H plane structures, so classical H plane solutions in rectangular waveguides have already been mapped to most of these new SIC. In this paper a novel E plane empty substrate integrated waveguide (ESIW-E) is presented. This structure allows to easily map classical E plane solutions in rectangular waveguide to this new substrate integrated solution. It is similar to the ESIW, although more layers are needed to build the structure. A wideband transition (covering the frequency range between 33 GHz and 50 GHz) from microstrip to ESIW-E is designed and manufactured. Measurements are successfully compared with simulation, proving the validity of this new SIC. A broadband high-frequency phase shifter (for operation from 35 GHz to 47 GHz) is successfully implemented in ESIW-E, thus proving the good performance of this new SIC in a practical application.
publishDate 2017
dc.date.none.fl_str_mv 2017
2017
2017
dc.type.none.fl_str_mv info:eu-repo/semantics/article
format article
dc.identifier.none.fl_str_mv http://hdl.handle.net/10578/15151
url http://hdl.handle.net/10578/15151
dc.language.none.fl_str_mv Inglés
language_invalid_str_mv Inglés
dc.relation.none.fl_str_mv TEC2013-47037-C5-3-R
TEC2013-47037-C5-1-R
AYA2013-49759-EXP
CSD2010-00064
dc.rights.none.fl_str_mv info:eu-repo/semantics/openAccess
eu_rights_str_mv openAccess
dc.format.none.fl_str_mv application/pdf
application/pdf
dc.source.none.fl_str_mv reponame:RUIdeRA. Repositorio Institucional de la UCLM
instname:Universidad de Castilla-La Mancha
instname_str Universidad de Castilla-La Mancha
reponame_str RUIdeRA. Repositorio Institucional de la UCLM
collection RUIdeRA. Repositorio Institucional de la UCLM
repository.name.fl_str_mv
repository.mail.fl_str_mv
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