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Silicon Carbide, Volume 2
Автор: Группа авторов
Год издания:
Silicon Carbide – this easy to manufacture compound of silicon and carbon is said to be THE emerging material for applications in electronics. High thermal conductivity, high electric field breakdown strength and high maximum current density make it most promising for high-powered semiconductor devices. Apart from applications in power electronics, sensors, and NEMS, SiC has recently gained new interest as a substrate material for the manufacture of controlled graphene. SiC and graphene research is oriented towards end markets and has high impact on areas of rapidly growing interest like electric vehicles. This volume is devoted to high power devices products and their challenges in industrial application. Readers will benefit from reports on development and reliability aspects of Schottky barrier diodes, advantages of SiC power MOSFETs, or SiC sensors. The authors discuss MEMS and NEMS as SiC-based electronics for automotive industry as well as SiC-based circuit elements for high temperature applications, and the application of transistors in PV-inverters. The list of contributors reads like a «Who's Who» of the SiC community, strongly benefiting from collaborations between research institutions and enterprises active in SiC crystal growth and device development. Among the former are CREE Inc. and Fraunhofer ISE, while the industry is represented by Toshiba, Nissan, Infineon, NASA, Naval Research Lab, and Rensselaer Polytechnic Institute, to name but a few.
Silicon Carbide
Автор: Группа авторов
Год издания:
This book prestigiously covers our current understanding of SiC as a semiconductor material in electronics. Its physical properties make it more promising for high-powered devices than silicon. The volume is devoted to the material and covers methods of epitaxial and bulk growth. Identification and characterization of defects is discussed in detail. The contributions help the reader to develop a deeper understanding of defects by combining theoretical and experimental approaches. Apart from applications in power electronics, sensors, and NEMS, SiC has recently gained new interest as a substrate material for the manufacture of controlled graphene. SiC and graphene research is oriented towards end markets and has high impact on areas of rapidly growing interest like electric vehicles. The list of contributors reads like a «Who's Who» of the SiC community, strongly benefiting from collaborations between research institutions and enterprises active in SiC crystal growth and device development.
Porous Silicon Carbide and Gallium Nitride
Автор: Randall Feenstra M.
Год издания:
Porous Silicon Carbide and Gallium Nitride: Epitaxy, Catalysis, and Biotechnology Applications presents the state-of-the-art in knowledge and applications of porous semiconductor materials having a wide band gap. This comprehensive reference begins with an overview of porous wide-band-gap technology, and describes the underlying scientific basis for each application area. Additional chapters cover preparation, characterization, and topography; processing porous SiC; medical applications; magnetic ion behavior, and many more
Silicon Carbide One-dimensional Nanostructures
Автор: Laurence Latu-Romain
Год издания:
Dedicated to SiC-based 1D nanostructures, this book explains the properties and different growth methods of these nanostructures. It details carburization of silicon nanowires, a growth process for obtaining original Si-SiC core-shell nanowires and SiC nanotubes of high crystalline quality, thanks to the control of the siliconout-diffusion. The potential applications of these particular nano-objects is also discussed, with regards to their eventual integration in biology, energy and electronics.
Turning Wood with Carbide Tools
Автор: John English
Год издания:
Everything a woodturner needs to know about using and implementing the exciting new technology of replaceable carbide cutting tips is included in this guide. Woodturning tools have taken a quantum leap since the recent introduction of these tips that have greatly simplified the task of turning in dry stock. Carbide-tipped woodturning tools are safer, faster, easier, and more efficient than traditional tools that require grinding the end of a piece of fluted steel to one of dozens of subjective profiles. The technology of the carbide cutters is fully explained, as are the various shafts and the function of the handle designs, providing insight into how and why these cutters act as they do, and why they are shaped as they are. Removing the intimidating aspects of turning, the guide explains the elimination of sharpening, addresses the issues of chatter and fatigue, and advises on maintenance, techniques, and usage. A number of projects are included–such as a candlestick, spinning tops, and a basic bowl–that can be completed right away by novice turners, rather than waiting for years to gain enough experience to do the same job with traditional tools.
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