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Wide Bandgap Semiconductors for Power Electronic A guide to the field of wide bandgap semiconductor technology Wide Bandgap;
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'This book is more suited for researchers already familiar with WBS who are interested in developing new WBG materials and devices since it;
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structures, and their devices. This book is ideal for materials scientists and engineers in academia and R&D searching for materials superior to;
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Wide Bandgap Semiconductor Power Devices: Materials, Physics, Design and Applications provides readers with a single resource on why;
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> The principal driver for the current revival of interest in III-V Nitrides is their potential use in high power, high temperature, high;
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suitable for electronic devices used in microwave power amplification, high-voltage switches, and high-speed digital integrated circuits.;
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suitable for electronic devices used in microwave power amplification, high-voltage switches, and high-speed digital integrated circuits.;
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bandgap (WBG) power semiconductors, SiC and GaN, are the latest promising electric conversion devices because of their excellent features, such as;
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Silicon carbide (SiC) is a robust semiconductor material being actively developed for high-power and high-temperature applications;
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in fundamental science and technology development of ultrawide bandgap (UWBG) semiconductor materials and devices based on gallium oxide, aluminium;
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Photoluminescence spectroscopy is an important approach for examining the optical interactions in semiconductors and optical devices with;
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Photoluminescence spectroscopy is an important approach for examining the optical interactions in semiconductors and optical devices with;
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-frequency and high-power devices. In summary, it covers nitride semiconductor technology from materials to devices and provides the basis for;
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semiconductors for mango-optical and electromagnetic devices, nonlinear optical properties, photorefractive effects and new materials and physics;
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; spin-based devices for logic, memory and non-Boolean architectures; and terahertz properties and applications of GaN. -Puts forward;
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, and future trends Organic semiconductor materials have vast commercial potential for a wide range of applications, from self-emitting OLED;
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be useful for technologists, scientists, engineers, and graduate students who are working on wide bandgap materials and devices. The book can;
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Due to their special properties, organic semiconductors enable the development of large-area, low-cost devices, paving the way for flexible;
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-V, II-VI and IV-VI semiconductors, but also includes chapters on novel semiconductors, such as wide bandgap oxides like ZnO, Ga2, O3, In2;
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Gallium Oxide: Technology, Devices and Applications discusses the wide bandgap semiconductor and its promising applications in power;
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-steady-state photo-EMF effect for the investigation of wide- bandgap semiconductors and nanostructured materials, including photorefractive;
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Emerging Materials for Energy Conversion and Storage presents the state-of-art of emerging materials for energy conversion technologies;
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This informative book focuses on newly developed functional materials and their applications for electronic and spintronic devices;
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glance at low-cost, disposable and lightweight devices for the next generation of ergonomic and functional discrete devices. Chapters cover;
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- and materials science, and power electronic applications. It provides key information for researchers working with power electronic devices;
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This informative book focuses on newly developed functional materials and their applications for electronic and spintronic devices;
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is presented in five parts: Fundamentals of MBE; MBE technology for electronic devices application; MBE for optoelectronic devices; Magnetic;
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