The wide gap materials SiC, GaN and to a lesser extent diamond are attracting great interest for high power/high temperature electronics. There are a host of device processing challenges presented by these materials because of their physical and chemical stability, including difficulty in achieving stable, low contact resistances, especially for one conductivity type, absence of convenient wet etch recipes, generally slow dry etch rates, the high temperatures needed for implant activation, control of suitable gate dielectrics and the lack of cheap, large diameter conducting and semi-insulating substrates. The relatively deep ionization levels of some of the common dopants (Mg, in GaN; B, Al in SiC; P in diamond) means that carrier densities...
AbstractThe Spring Materials Research Society meeting in San Francisco included Symposium-T on wide-...
The wide-bandgap semiconductors, SiC and GaN, are important for a whole range of (opto)electronic an...
The wide-bandgap semiconductors, SiC and GaN, are important for a whole range of (opto)electronic an...
AbstractThe developing list of wide gap substrates for device production is remarkable compared with...
Semiconductor power switches are necessary for the deployment of next-generation electrical systems,...
AbstractThe developing list of wide gap substrates for device production is remarkable compared with...
Wide bandgap semiconductors have many properties that make them attractive for high power, high temp...
SiC and GaN devices have been around for some time. The first dedicated international conference on ...
The physical and chemical properties of wide bandgap semiconductors silicon carbide and diamond make...
This article provides a comprehensive review of wide and ultrawide bandgap power electronic semicond...
The expansion of the electric vehicle market is driving the request for efficient and reliable power...
The physical and chemical properties of wide-band-gap semiconductors make these materials an ideal w...
AbstractIn the early stages of wide bandgap materials it was silicon carbide (SiC) that blazed the t...
International audienceUltra wide bandgap (UWBG) materials such as monocrystalline Diamond are forese...
International audienceUltra wide bandgap (UWBG) materials such as monocrystalline Diamond are forese...
AbstractThe Spring Materials Research Society meeting in San Francisco included Symposium-T on wide-...
The wide-bandgap semiconductors, SiC and GaN, are important for a whole range of (opto)electronic an...
The wide-bandgap semiconductors, SiC and GaN, are important for a whole range of (opto)electronic an...
AbstractThe developing list of wide gap substrates for device production is remarkable compared with...
Semiconductor power switches are necessary for the deployment of next-generation electrical systems,...
AbstractThe developing list of wide gap substrates for device production is remarkable compared with...
Wide bandgap semiconductors have many properties that make them attractive for high power, high temp...
SiC and GaN devices have been around for some time. The first dedicated international conference on ...
The physical and chemical properties of wide bandgap semiconductors silicon carbide and diamond make...
This article provides a comprehensive review of wide and ultrawide bandgap power electronic semicond...
The expansion of the electric vehicle market is driving the request for efficient and reliable power...
The physical and chemical properties of wide-band-gap semiconductors make these materials an ideal w...
AbstractIn the early stages of wide bandgap materials it was silicon carbide (SiC) that blazed the t...
International audienceUltra wide bandgap (UWBG) materials such as monocrystalline Diamond are forese...
International audienceUltra wide bandgap (UWBG) materials such as monocrystalline Diamond are forese...
AbstractThe Spring Materials Research Society meeting in San Francisco included Symposium-T on wide-...
The wide-bandgap semiconductors, SiC and GaN, are important for a whole range of (opto)electronic an...
The wide-bandgap semiconductors, SiC and GaN, are important for a whole range of (opto)electronic an...