The physical operation, crystal growth, optical lithography and electron-beam lithography fabrication and measured performance of single-crystal diamond active devices for microwave frequencies are presented. Preliminary results suggest the potentials of such technology in high-frequency and power operation. The use in space applications is envisaged, thanks to the peculiar diamond features to operate in harsh environments and with remarkable RF performance
Nanocrystalline diamond (NCD) due its outstanding thermal, mechanical and tribological properties is...
Microwave assisted chemical vapour deposited bulk diamond products have been used in a range of high...
The superior electrical and thermal properties of diamond predestine this material to become an impo...
The physical operation, crystal growth, optical lithography and electron-beam lithography fabricatio...
Thanks to its wide bandgap, exceptionally high thermal conductivity and relatively high carrier velo...
Diamond is an astonishing material. Used mainly for jewelry, it is today studied for electronic devi...
A mesure que les demandes dans le domaine de l'électronique de puissance tendent vers des conditions...
The first realizations of S-band hybrid amplifiers based on hydrogenated-diamond (H-diamond) FETs ar...
Sub-micron gate length Metal Semiconductor Field Effect Transistors (MESFETs) have been realized on ...
Active phased array antenna typically featured high performance, high device integration, and high h...
Research on wide band gap semiconductors suitable for power electronic devices has spread rapidly in...
Metal-Semiconductor field effect transistor (MESFETs) were fabricated on hydrogen-terminated polycry...
This paper reviews recent progress in diamond radiation detectors. Diamond is an ultra-wide gap (5.5...
Progress in power electronic devices is currently accepted through the use of wide bandgap materials...
Diamond is a promising semiconductor material for high power, high voltage, high temperature and hig...
Nanocrystalline diamond (NCD) due its outstanding thermal, mechanical and tribological properties is...
Microwave assisted chemical vapour deposited bulk diamond products have been used in a range of high...
The superior electrical and thermal properties of diamond predestine this material to become an impo...
The physical operation, crystal growth, optical lithography and electron-beam lithography fabricatio...
Thanks to its wide bandgap, exceptionally high thermal conductivity and relatively high carrier velo...
Diamond is an astonishing material. Used mainly for jewelry, it is today studied for electronic devi...
A mesure que les demandes dans le domaine de l'électronique de puissance tendent vers des conditions...
The first realizations of S-band hybrid amplifiers based on hydrogenated-diamond (H-diamond) FETs ar...
Sub-micron gate length Metal Semiconductor Field Effect Transistors (MESFETs) have been realized on ...
Active phased array antenna typically featured high performance, high device integration, and high h...
Research on wide band gap semiconductors suitable for power electronic devices has spread rapidly in...
Metal-Semiconductor field effect transistor (MESFETs) were fabricated on hydrogen-terminated polycry...
This paper reviews recent progress in diamond radiation detectors. Diamond is an ultra-wide gap (5.5...
Progress in power electronic devices is currently accepted through the use of wide bandgap materials...
Diamond is a promising semiconductor material for high power, high voltage, high temperature and hig...
Nanocrystalline diamond (NCD) due its outstanding thermal, mechanical and tribological properties is...
Microwave assisted chemical vapour deposited bulk diamond products have been used in a range of high...
The superior electrical and thermal properties of diamond predestine this material to become an impo...