Innovative millimetre‐wave resonators based ...
Type de document :
Article dans une revue scientifique: Article original
DOI :
Titre :
Innovative millimetre‐wave resonators based on slow‐wave coplanar stripline components
Auteur(s) :
Saadi, Abdelhalim [Auteur]
Reliable RF and Mixed-signal Systems [TIMA-RMS]
NXP Semiconductors
Margalef‐rovira, Marc [Auteur]
Institut d’Électronique, de Microélectronique et de Nanotechnologie - UMR 8520 [IEMN]
Amara, Youcef [Auteur]
Reliable RF and Mixed-signal Systems [TIMA-RMS]
Vincent, Loïc [Auteur]
Centre Interuniversitaire de Micro-Electronique [CIME]
Lepilliet, sl [Auteur]
Plateforme de Caractérisation Multi-Physiques - IEMN [PCMP - IEMN]
Institut d’Électronique, de Microélectronique et de Nanotechnologie - UMR 8520 [IEMN]
Gaquiere, Christophe [Auteur]
Puissance - IEMN [PUISSANCE - IEMN]
Institut d’Électronique, de Microélectronique et de Nanotechnologie - UMR 8520 [IEMN]
Ferrari, Philippe [Auteur]
Reliable RF and Mixed-signal Systems [TIMA-RMS]
Reliable RF and Mixed-signal Systems [TIMA-RMS]
NXP Semiconductors
Margalef‐rovira, Marc [Auteur]
Institut d’Électronique, de Microélectronique et de Nanotechnologie - UMR 8520 [IEMN]
Amara, Youcef [Auteur]
Reliable RF and Mixed-signal Systems [TIMA-RMS]
Vincent, Loïc [Auteur]
Centre Interuniversitaire de Micro-Electronique [CIME]
Lepilliet, sl [Auteur]
Plateforme de Caractérisation Multi-Physiques - IEMN [PCMP - IEMN]
Institut d’Électronique, de Microélectronique et de Nanotechnologie - UMR 8520 [IEMN]
Gaquiere, Christophe [Auteur]

Puissance - IEMN [PUISSANCE - IEMN]
Institut d’Électronique, de Microélectronique et de Nanotechnologie - UMR 8520 [IEMN]
Ferrari, Philippe [Auteur]
Reliable RF and Mixed-signal Systems [TIMA-RMS]
Titre de la revue :
IET Microwaves Antennas and Propagation
Pagination :
pp 477-488
Éditeur :
Institution of Engineering and Technology
Date de publication :
2022-06
ISSN :
1751-8725
Discipline(s) HAL :
Sciences de l'ingénieur [physics]
Résumé en anglais : [en]
In this paper, the slow-wave coplanar stripline (S-CPS) technology is utilised to design high performance and small footprint resonators operating within the millimetre-wave band from 50 to 80 GHz. The proposed resonators ...
Lire la suite >In this paper, the slow-wave coplanar stripline (S-CPS) technology is utilised to design high performance and small footprint resonators operating within the millimetre-wave band from 50 to 80 GHz. The proposed resonators are designed based on high quality factor quasi-lumped capacitances and inductances offering a great flexibility in terms of design. The derivation of these components from the S-CPS is explained theoretically and their behaviour is validated by EM simulation; an equivalent electrical model is also developed. The proposed concepts are demonstrated in the BiCMOS 55-nm technology, and a good agreement between modelling, EM simulation and measurement results is achieved. The proposed devices could later be considered as interesting elementary blocks for the design of mm-wave filters.Lire moins >
Lire la suite >In this paper, the slow-wave coplanar stripline (S-CPS) technology is utilised to design high performance and small footprint resonators operating within the millimetre-wave band from 50 to 80 GHz. The proposed resonators are designed based on high quality factor quasi-lumped capacitances and inductances offering a great flexibility in terms of design. The derivation of these components from the S-CPS is explained theoretically and their behaviour is validated by EM simulation; an equivalent electrical model is also developed. The proposed concepts are demonstrated in the BiCMOS 55-nm technology, and a good agreement between modelling, EM simulation and measurement results is achieved. The proposed devices could later be considered as interesting elementary blocks for the design of mm-wave filters.Lire moins >
Langue :
Anglais
Comité de lecture :
Oui
Audience :
Internationale
Vulgarisation :
Non
Source :
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