This chapter looks at the role of silicon carbide (SiC) in microsystem technology. It starts with an introduction into the wide bandgap (WBG) materials and the properties that make them potential candidates to enable the development of harsh environment microsystems. The future commercial success of WBG microsystems depends mainly on the availability of high-quality materials, well-established microfabrication processes, and economic viability. In such aspects SiC platform, in relation to other WBG materials, provides a clear and competitive advantage. The reasons for this will be detailed. Furthermore, the current status of the SiC thin film and bulk material technologies will also be discussed. Both SiC material forms have played importan...
The status of emerging silicon carbide (SiC) widebandgap semiconductor electronics technology is bri...
This paper deals with the fabrication process of single-crystal silicon carbide (SiC) thin-films and...
In the coming decade, the development in the area of More than Moore will certainly take over from M...
<div>This chapter looks at the role of silicon carbide (SiC) in microsystem technology. It starts wi...
A number of industries such as automotive, health and energy require micro-sensors and actuators tha...
Silicon Carbide (SiC) and its polytypes, used primarily for grinding and high temperature ceramics, ...
Due to its desirable material properties, Silicon Carbide (SiC) hasbecome an alternative material to...
Silicon carbide (SiC) is an attractive material for high-temperature, high-power, high-frequency app...
Silicon carbide (SiC) is a wide band gap material that shows great promise in high-power and high te...
Wide bandgap semiconductors, such as silicon carbide, have a great potential for high-temperature, h...
Silicon carbide (SiC) is a material with excellent properties for micro systems applications. In thi...
The physical and chemical properties of wide-band-gap semiconductors make these materials an ideal w...
Abstract: Silicon carbide (SiC) is an attractive material for high-temperature, high-power, high-fre...
The paper presents an overview over recent developments in the SiC field. Within this field, two mai...
This paper deals with possibility of application of the semiconductor devices based on the SiC (Sili...
The status of emerging silicon carbide (SiC) widebandgap semiconductor electronics technology is bri...
This paper deals with the fabrication process of single-crystal silicon carbide (SiC) thin-films and...
In the coming decade, the development in the area of More than Moore will certainly take over from M...
<div>This chapter looks at the role of silicon carbide (SiC) in microsystem technology. It starts wi...
A number of industries such as automotive, health and energy require micro-sensors and actuators tha...
Silicon Carbide (SiC) and its polytypes, used primarily for grinding and high temperature ceramics, ...
Due to its desirable material properties, Silicon Carbide (SiC) hasbecome an alternative material to...
Silicon carbide (SiC) is an attractive material for high-temperature, high-power, high-frequency app...
Silicon carbide (SiC) is a wide band gap material that shows great promise in high-power and high te...
Wide bandgap semiconductors, such as silicon carbide, have a great potential for high-temperature, h...
Silicon carbide (SiC) is a material with excellent properties for micro systems applications. In thi...
The physical and chemical properties of wide-band-gap semiconductors make these materials an ideal w...
Abstract: Silicon carbide (SiC) is an attractive material for high-temperature, high-power, high-fre...
The paper presents an overview over recent developments in the SiC field. Within this field, two mai...
This paper deals with possibility of application of the semiconductor devices based on the SiC (Sili...
The status of emerging silicon carbide (SiC) widebandgap semiconductor electronics technology is bri...
This paper deals with the fabrication process of single-crystal silicon carbide (SiC) thin-films and...
In the coming decade, the development in the area of More than Moore will certainly take over from M...