Today, the introduction of wide band gap (WBG) semiconductors in power electronics has become mandatory to improve the energy efficiency of devices and modules and to reduce the overall electric power consumption in the world. Due to its excellent properties, gallium nitride (GaN) and related alloys (e.g., AlxGa1−xN) are promising semiconductors for the next generation of high-power and high-frequency devices. However, there are still several technological concerns hindering the complete exploitation of these materials. As an example, high electron mobility transistors (HEMTs) based on AlGaN/GaN heterostructures are inherently normally-on devices. However, normally-off operation is often desired in many power electronics applications....
Copyright © 2014 ISSR Journals. This is an open access article distributed under the Creative Common...
GaN-based devices, due to the excellent electrical properties of gallium nitride and related materia...
Power electronics represents 20 % of the total electronics industry and it plays a key role in many ...
A new generation of high-efficiency power devices is being developed using wide bandgap (WBG) semico...
Gallium nitride (GaN) possesses excellent physical properties, such as a high critical electric fiel...
A novel structure scheme by transposing the gate channel orientation from a long horizontal one to a...
Devices based on group-III-nitride compound semiconductors (AlN, InN, GaN) are gaining more and more...
Nowadays, improvements in the energy efficiency of silicon (Si) power electronics are becoming less ...
Power-switching devices require low on-state conduction losses, high-switching speed, high thermal s...
Gallium Nitride (GaN) is considered a very promising material for use in the field of power devices ...
Symposium EQ01 - Ultra-Wide Bandgap Materials and Devices, EQ01.14International audienceGaN high ele...
Symposium EQ01 - Ultra-Wide Bandgap Materials and Devices, EQ01.14International audienceGaN high ele...
Gallium nitride (GaN) technology is the next revolution in electronics as it offers a large bandgap ...
Because of the special material properties such as wide band gap, high electron mobility and high br...
The large bandgap of gallium nitride (GaN) and aluminum gallium nitride (AlGaN) offers an inherently...
Copyright © 2014 ISSR Journals. This is an open access article distributed under the Creative Common...
GaN-based devices, due to the excellent electrical properties of gallium nitride and related materia...
Power electronics represents 20 % of the total electronics industry and it plays a key role in many ...
A new generation of high-efficiency power devices is being developed using wide bandgap (WBG) semico...
Gallium nitride (GaN) possesses excellent physical properties, such as a high critical electric fiel...
A novel structure scheme by transposing the gate channel orientation from a long horizontal one to a...
Devices based on group-III-nitride compound semiconductors (AlN, InN, GaN) are gaining more and more...
Nowadays, improvements in the energy efficiency of silicon (Si) power electronics are becoming less ...
Power-switching devices require low on-state conduction losses, high-switching speed, high thermal s...
Gallium Nitride (GaN) is considered a very promising material for use in the field of power devices ...
Symposium EQ01 - Ultra-Wide Bandgap Materials and Devices, EQ01.14International audienceGaN high ele...
Symposium EQ01 - Ultra-Wide Bandgap Materials and Devices, EQ01.14International audienceGaN high ele...
Gallium nitride (GaN) technology is the next revolution in electronics as it offers a large bandgap ...
Because of the special material properties such as wide band gap, high electron mobility and high br...
The large bandgap of gallium nitride (GaN) and aluminum gallium nitride (AlGaN) offers an inherently...
Copyright © 2014 ISSR Journals. This is an open access article distributed under the Creative Common...
GaN-based devices, due to the excellent electrical properties of gallium nitride and related materia...
Power electronics represents 20 % of the total electronics industry and it plays a key role in many ...