Publicaciones

Affichage de 5461 à 5470 sur 16387


  • Communication dans un congrès

Characterization and Electrical Modeling Including Trapping Effects of AIN/GaN HEMT 4×50μm on Silicon Substrate

Mohamed Bouslama, Ahmad Al Hajjar, Raphaël Sommet, Jean-Christophe Nallatamby, F Medjdoub

This paper reports the full characterization and modeling of novel AlN/GaN HEMTs on silicon using a short gate length. This device has been optimized for high frequency analog circuits applications. The presented model includes DC and small-signal modeling steps taking into account the trapping...

13th European Microwave Integrated Circuits Conference (EuMIC 2018), Sep 2018, Madrid, Spain. pp.333-336, ⟨10.23919/EuMIC.2018.8539941⟩. ⟨hal-02356757⟩

  • Chapitre d'ouvrage

Chapter 4 - One-dimensional phononic crystals

El Houssaine El Boudouti, Abdellatif Akjouj, L. Dobrzynski, Bahram Djafari-Rouhani, Yan Pennec, Housni Al-Wahsh, Gaëtan Lévêque

In this chapter we study the band gap structures as well as the effect of inhomogeneities within the perfect one-dimensional (1D) phononic crystal (PnC) such as a free surface, a PnC/substrate interface, and a defect layer embedded in these systems. Such inhomogeneities are usually present in...

Phononics: interface transmission tutorial book series, Elsevier, pp.139-270, 2018, ISBN 978-0-12-809948-3 ; e-ISBN 978-0-12-809931-5. ⟨10.1016/B978-0-12-809948-3.00004-1⟩. ⟨hal-03356297⟩

  • Communication dans un congrès

Nano-probing station incorporating MEMS probes for 1D device RF on-wafer characterization

K. Daffe, J. Marzouk, A. El El Fellahi, T. Xu, Christophe Boyaval, S. Eliet, B. Grandidier, S. Arscott, Gilles Dambrine, Kamel Haddadi

—A microwave nano-probing station incorporating home-made MEMS coplanar waveguide (CPW) probes was built inside a scanning electron microscope. The instrumentation proposed is able to measure accurately the guided complex reflection of 1D devices embedded in dedicated CPW micro-structures. As a...

2017 47th European Microwave Conference (EuMC), Oct 2017, Nuremberg, Germany. ⟨10.23919/EuMC.2017.8230973⟩. ⟨hal-01726555⟩