Silicon carbide (SiC) is a promising material for applications in harsh environments. Standard silicon (Si) microelectromechanical systems (MEMS) are limited in operating temperature to temperatures below 130°C for electronic devices and below 600°C for mechanical devices. Due to its large bandgap SiC enables MEMS with significantly higher operating temperatures. Furthermore, SiC exhibits high chemical stability and thermal conductivity. Young's modulus and residual stress are important mechanical properties for the design of sophisticated SiC-based MEMS devices. In particular, residual stresses are strongly dependent on the deposition conditions. Literature values for Young's modulus range from 100 to 400 GPa, and residual stresses range f...
In this work, test microstructures for SiC film mechanical property measurements by beam bending usi...
Predictive design of MEMS devices and their performance evaluation require post-fabrication measurem...
Silicon carbide (SiC) is one of the hardest known materials and is also, by good fortune, a wide ban...
Silicon carbide (SiC) is a promising material for applications in harsh environments. Standard silic...
3C-SiC is an emerging material for MEMS systems thanks to its outstanding mechanical properties (hig...
3C-SiC is an emerging material for MEMS systems thanks to its outstanding mechanical properties (hig...
Silicon carbide (SiC) is widely recognized as the leading candidate to replace silicon in micro-elec...
International audienceThe stress state is a crucial parameter for the design of innovative microelec...
International audienceThe stress state is a crucial parameter for the design of innovative microelec...
Development of thin films has allowed for important improvements in optical, electronic and electrom...
International audienceThe stress state is a crucial parameter for the design of innovative microelec...
There is a technological need for hard thin films with high elastic modulus. Silicon Carbide (SiC) f...
There is a technological need for hard thin films with high elastic modulus. Silicon Carbide (SiC) f...
A novel high-temperature micro-tensile setup allows the characterization of the elastic and plastic ...
Residual stress in thick coatings of polycrystalline chemical-vapor deposited SiC on Si substrates i...
In this work, test microstructures for SiC film mechanical property measurements by beam bending usi...
Predictive design of MEMS devices and their performance evaluation require post-fabrication measurem...
Silicon carbide (SiC) is one of the hardest known materials and is also, by good fortune, a wide ban...
Silicon carbide (SiC) is a promising material for applications in harsh environments. Standard silic...
3C-SiC is an emerging material for MEMS systems thanks to its outstanding mechanical properties (hig...
3C-SiC is an emerging material for MEMS systems thanks to its outstanding mechanical properties (hig...
Silicon carbide (SiC) is widely recognized as the leading candidate to replace silicon in micro-elec...
International audienceThe stress state is a crucial parameter for the design of innovative microelec...
International audienceThe stress state is a crucial parameter for the design of innovative microelec...
Development of thin films has allowed for important improvements in optical, electronic and electrom...
International audienceThe stress state is a crucial parameter for the design of innovative microelec...
There is a technological need for hard thin films with high elastic modulus. Silicon Carbide (SiC) f...
There is a technological need for hard thin films with high elastic modulus. Silicon Carbide (SiC) f...
A novel high-temperature micro-tensile setup allows the characterization of the elastic and plastic ...
Residual stress in thick coatings of polycrystalline chemical-vapor deposited SiC on Si substrates i...
In this work, test microstructures for SiC film mechanical property measurements by beam bending usi...
Predictive design of MEMS devices and their performance evaluation require post-fabrication measurem...
Silicon carbide (SiC) is one of the hardest known materials and is also, by good fortune, a wide ban...