International audienceAlthough GaN technologies were initially developed for solid state source amplifiers, it was recently demonstrated that AlGaN/GaN HEMT transistors were also suitable for low noise applications such as LNA. The frequency synthesis is not yet widely explored for these technologies. In this paper the design of a low phase noise X-Band oscillator is proposed. The low frequency noise performance and the residual phase noise, as well as dynamic S-parameters were carried out on AlGaN/GaN HEMT grown on SiC. A large-signal modeling technique is also presented. The reduced complexity and the good accuracy of our large signal model permits an efficient circuit design, without intensive knowledge of the technological device parame...
© The Institution of Engineering and Technology 2015. To investigate the effects of both the drain a...
The thesis considers the design and optimization of oscillators targeting low phase noise, given bou...
Gallium-Nitride technology is known for its high power density and power amplifier designs, but is a...
International audienceAlthough GaN technologies were initially developed for solid state source ampl...
International audienceNewly developed GaN technology offers great potential for military and space, ...
The thesis presents low frequency noise (LFN) characterization of Gallium Nitride (GaN) High Electro...
This work is dedicated to the study in the field of low frequency noise characterization of Gallium ...
The thesis considers design of low phase noise oscillators, given the boundary condition of the used...
This letter presents guidelines for the design of low phase noise oscillators in GaN high electron m...
International audienceThe use of wide bandgap materials for broadcast telecommunication and defense ...
The thesis treats the design of low phase noise oscillators/VCOs in GaAs/InGaP HBT and GaN HEMT tech...
This paper reports on an ultra-low phase-noise oscillator based on a GaN HEMT monolithic microwave i...
An X-band low phase noise AlGaN-GaN HEMT MMIC push-push oscillator is designed, fabricated, and char...
© 2017 IEEE. The radar systems have been widely deployed in our daily life, from non-invasive vital ...
This paper presents an X-band balanced Colpitts oscillator in GaN HEMT technology and a method to ca...
© The Institution of Engineering and Technology 2015. To investigate the effects of both the drain a...
The thesis considers the design and optimization of oscillators targeting low phase noise, given bou...
Gallium-Nitride technology is known for its high power density and power amplifier designs, but is a...
International audienceAlthough GaN technologies were initially developed for solid state source ampl...
International audienceNewly developed GaN technology offers great potential for military and space, ...
The thesis presents low frequency noise (LFN) characterization of Gallium Nitride (GaN) High Electro...
This work is dedicated to the study in the field of low frequency noise characterization of Gallium ...
The thesis considers design of low phase noise oscillators, given the boundary condition of the used...
This letter presents guidelines for the design of low phase noise oscillators in GaN high electron m...
International audienceThe use of wide bandgap materials for broadcast telecommunication and defense ...
The thesis treats the design of low phase noise oscillators/VCOs in GaAs/InGaP HBT and GaN HEMT tech...
This paper reports on an ultra-low phase-noise oscillator based on a GaN HEMT monolithic microwave i...
An X-band low phase noise AlGaN-GaN HEMT MMIC push-push oscillator is designed, fabricated, and char...
© 2017 IEEE. The radar systems have been widely deployed in our daily life, from non-invasive vital ...
This paper presents an X-band balanced Colpitts oscillator in GaN HEMT technology and a method to ca...
© The Institution of Engineering and Technology 2015. To investigate the effects of both the drain a...
The thesis considers the design and optimization of oscillators targeting low phase noise, given bou...
Gallium-Nitride technology is known for its high power density and power amplifier designs, but is a...