Millimeter-wave pulsed oscillator global ...
Type de document :
Compte-rendu et recension critique d'ouvrage
DOI :
Titre :
Millimeter-wave pulsed oscillator global modeling by means of electromagnetic, thermal, electrical and carrier transport physical coupled models
Auteur(s) :
Beaussart, Stéphane [Auteur]
Institut d’Électronique, de Microélectronique et de Nanotechnologie - UMR 8520 [IEMN]
Perrin, Oliver [Auteur]
Thomson-CSF Laboratoire Central de Recherches [THOMSON-CSF LCR]
Friscourt, Marie-Renée [Auteur]
Institut d’Électronique, de Microélectronique et de Nanotechnologie - UMR 8520 [IEMN]
Dalle, Christophe [Auteur]
Institut d’Électronique, de Microélectronique et de Nanotechnologie - UMR 8520 [IEMN]
Institut d’Électronique, de Microélectronique et de Nanotechnologie - UMR 8520 [IEMN]
Perrin, Oliver [Auteur]
Thomson-CSF Laboratoire Central de Recherches [THOMSON-CSF LCR]
Friscourt, Marie-Renée [Auteur]
Institut d’Électronique, de Microélectronique et de Nanotechnologie - UMR 8520 [IEMN]
Dalle, Christophe [Auteur]

Institut d’Électronique, de Microélectronique et de Nanotechnologie - UMR 8520 [IEMN]
Titre de la revue :
IEEE Transactions on Microwave Theory and Techniques
Pagination :
929-934
Éditeur :
Institute of Electrical and Electronics Engineers
Date de publication :
1999
ISSN :
0018-9480
Mot(s)-clé(s) en anglais :
EMP radiation effects
Oscillators
Electromagnetic modeling
Time domain analysis
Circuits
Radio frequency
Semiconductor diodes
Electromagnetic coupling
Electrothermal effects
Millimeter wave technology
Oscillators
Electromagnetic modeling
Time domain analysis
Circuits
Radio frequency
Semiconductor diodes
Electromagnetic coupling
Electrothermal effects
Millimeter wave technology
Discipline(s) HAL :
Sciences de l'ingénieur [physics]
Résumé en anglais : [en]
The time domain modeling of the operation of a 94-GHz pulsed silicon IMPATT oscillator, based on a physical approach, is described in this paper. It relies on the coupling of electrical, thermal, electromagnetic, and carrier ...
Lire la suite >The time domain modeling of the operation of a 94-GHz pulsed silicon IMPATT oscillator, based on a physical approach, is described in this paper. It relies on the coupling of electrical, thermal, electromagnetic, and carrier transport physical models. The model has been used to study the high-power stable operation of a 94-GHz oscillator. The results of a comparison between simulations, using two different types of passive radio-frequency load circuits, including experimental measurements, are presented and discussed. They tend to demonstrate that it is now possible to develop accurate millimeterwave-circuit predictive models even for application based on a nonlinear thermal and electrical transient operation such as IMPATT oscillators.Lire moins >
Lire la suite >The time domain modeling of the operation of a 94-GHz pulsed silicon IMPATT oscillator, based on a physical approach, is described in this paper. It relies on the coupling of electrical, thermal, electromagnetic, and carrier transport physical models. The model has been used to study the high-power stable operation of a 94-GHz oscillator. The results of a comparison between simulations, using two different types of passive radio-frequency load circuits, including experimental measurements, are presented and discussed. They tend to demonstrate that it is now possible to develop accurate millimeterwave-circuit predictive models even for application based on a nonlinear thermal and electrical transient operation such as IMPATT oscillators.Lire moins >
Langue :
Anglais
Vulgarisation :
Non
Source :