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In semiconductor manufacturing, understanding how various materials behave and interact is critical to making a reliable and robust semiconductor package. Semiconductor Packaging: Materials Interaction and Reliability provides a fundamental understanding of the underlying physical properties of the materials used in a semiconductor package. The book focuses on an important step in semiconductor manufacturing package assembly and testing. It covers the basics of material properties and explains how to determine which behaviors are important to package performance. The authors also discuss how the properties of packaging materials interact with each another and explore how to maximize the performance of these materials in regard to package integrity and reliability.By tying together the disparate elements essential to a semiconductor package, this easy-to-read book shows how all the parts fit and work together to provide durable protection for the integrated circuit chip within as well as a means for the chip to communicate with the outside world--
Semiconductors --- Electronic packaging --- Materials science. --- Electrical engineering. --- Reliability. --- Electric engineering --- Engineering --- Material science --- Physical sciences --- Packaging (Electronics) --- Electronic apparatus and appliances --- Electronics --- Crystalline semiconductors --- Semi-conductors --- Semiconducting materials --- Semiconductor devices --- Crystals --- Electrical engineering --- Solid state electronics --- Materials
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In dem vorliegenden Lehrbuch wird zunächst Wissen über das grundsätzliche Verhalten der verschiedensten Bauelemente integrierter Schaltungen vermittelt. Erst dann werden die wesentlichen Schaltungstechniken für den Entwurf von digitalen und analogen CMOS- und BICMOS-Schaltungen vorgestellt. Dem Autor gelingt es schlüssig, den weiten Bogen von den Grundlagen der Physik bis zu tatsächlichen Anwendungen und der Produktion von Halbleiterschaltungen zu spannen und so einen umfassenden Überblick über den Designprozess in der Mikroelektronik zu geben.
Semiconductors. --- Transistors. --- Very high speed integrated circuits. --- VHSIC --- Integrated circuits --- Electronics --- Semiconductors --- Crystalline semiconductors --- Semi-conductors --- Semiconducting materials --- Semiconductor devices --- Crystals --- Electrical engineering --- Solid state electronics --- Very large scale integration --- Materials
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This book focuses on the importance of mobile ions presented in oxide structures, what significantly affects the metal-oxide-semiconductor (MOS) properties. The reading starts with the definition of the MOS structure, its various aspects and different types of charges presented in their structure. A review on ionic transport mechanisms and techniques for measuring the mobile ions concentration in the oxides is given, special attention being attempted to the Charge Pumping (CP) technique associated with the Bias Thermal Stress (BTS) method. Theoretical approaches to determine the density of mobile ions as well as their distribution along the oxide thickness are also discussed. The content varies from general to very specific examples, helping the reader to learn more about transport in MOS structures.
Electrical engineering. --- Engineering. --- Metal oxide semiconductors. --- Semiconductors -- Materials. --- Electrical & Computer Engineering --- Engineering & Applied Sciences --- Electrical Engineering --- Unipolar transistors --- Materials science. --- Solid state physics. --- Semiconductors. --- Optical materials. --- Electronic materials. --- Materials Science. --- Optical and Electronic Materials. --- Characterization and Evaluation of Materials. --- Solid State Physics. --- Semiconductors --- Transistors --- Charge coupled devices --- Surfaces (Physics). --- Physics --- Surface chemistry --- Surfaces (Technology) --- Optics --- Materials --- Solids --- Material science --- Physical sciences --- Crystalline semiconductors --- Semi-conductors --- Semiconducting materials --- Semiconductor devices --- Crystals --- Electrical engineering --- Electronics --- Solid state electronics --- Electronic materials
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"Semiconductor-On-Insulator Materials for NanoElectonics Applications” is devoted to the fast evolving field of modern nanoelectronics, and more particularly to the physics and technology of nanoelectronic devices built on semiconductor-on-insulator (SemOI) systems. The book contains the achievements in this field from leading companies and universities in Europe, USA, Brazil and Russia. It is articulated around four main topics: 1. New semiconductor-on-insulator materials; 2. Physics of modern SemOI devices; 3. Advanced characterization of SemOI devices; 4. Sensors and MEMS on SOI. "Semiconductor-On-Insulator Materials for NanoElectonics Applications” is useful not only to specialists in nano- and microelectronics but also to students and to the wider audience of readers who are interested in new directions in modern electronics and optoelectronics.
Electronic books. -- local. --- Nanoelectronics. --- Semiconductors. --- Engineering & Applied Sciences --- Technology - General --- Nanoscale electronics --- Nanoscale molecular electronics --- Crystalline semiconductors --- Semi-conductors --- Semiconducting materials --- Semiconductor devices --- Engineering. --- Nanotechnology. --- Materials science. --- Nanotechnology and Microengineering. --- Characterization and Evaluation of Materials. --- Crystals --- Electrical engineering --- Electronics --- Solid state electronics --- Materials --- Nanotechnology --- Surfaces (Physics). --- Physics --- Surface chemistry --- Surfaces (Technology) --- Molecular technology --- Nanoscale technology --- High technology --- Construction --- Industrial arts --- Technology --- Material science --- Physical sciences
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The book covers all aspects from the expansion of the Boltzmann transport equation with harmonic functions to application to devices, where transport in the bulk and in inversion layers is considered. The important aspects of stabilization and band structure mapping are discussed in detail. This is done not only for the full band structure of the 3D k-space, but also for the warped band structure of the quasi 2D hole gas. Efficient methods for building the Schrödinger equation for arbitrary surface or strain directions, gridding of the 2D k-space and solving it together with the other two equations are presented.
Entropy. --- Fluid dynamics. --- Transport theory -- Mathematical models. --- Transport theory. --- Transport theory --- Fluid dynamics --- Electrical & Computer Engineering --- Engineering & Applied Sciences --- Applied Physics --- Electrical Engineering --- Mathematical models --- Mathematical models. --- Engineering. --- Semiconductors. --- Electronics. --- Microelectronics. --- Optical materials. --- Electronic materials. --- Electronics and Microelectronics, Instrumentation. --- Optical and Electronic Materials. --- Dynamics --- Fluid mechanics --- Optics --- Materials --- Electrical engineering --- Physical sciences --- Electronic materials --- Crystalline semiconductors --- Semi-conductors --- Semiconducting materials --- Semiconductor devices --- Crystals --- Electronics --- Solid state electronics --- Microminiature electronic equipment --- Microminiaturization (Electronics) --- Microtechnology --- Semiconductors --- Miniature electronic equipment
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Amorphous Chalcogenide Semiconductors and Related Materials describes developments in the science and technology of this advancing class of materials. This book offers an up-to-date treatment of chalcogenide glasses, amorphous semiconductors, and photonics glasses from basic principles through to applications, while providing the reader with solid-state sciences for understanding the material property and technology. Chalcogenide glasses have a number of interesting and useful properties, which have been already exploited in the commercialization of new devices. The book describes them at length, while it also: Discusses technological applications such as nonlinear optical fibers, DVDs, and high resolution mammographic x-ray image detectors Includes coverage of noncrystalline semiconductors with glassy semiconductors Amorphous or glassy chalcogenides are a kind of noncrystalline and thermodynamically quasi-stable solids. Such materials possess totally different properties than crystalline solids, and therefore warrant detailed discussion and description, which Amorphous Chalcogenide Semiconductors and Related Materials provides.
Amorphous semiconductors. --- Chalcogenides. --- Semiconductors. --- Semiconductors --- Chalcogenides --- Chemical & Materials Engineering --- Electrical & Computer Engineering --- Engineering & Applied Sciences --- Materials Science --- Electrical Engineering --- Chemical Engineering --- Materials --- Electric properties --- Noncrystalline semiconductors --- Materials science. --- Electronics. --- Microelectronics. --- Materials Science. --- Ceramics, Glass, Composites, Natural Methods. --- Electronics and Microelectronics, Instrumentation. --- Polycrystalline semiconductors --- Ceramics, Glass, Composites, Natural Materials. --- Electrical engineering --- Physical sciences --- Ceramics. --- Glass. --- Composites (Materials). --- Composite materials. --- Crystalline semiconductors --- Semi-conductors --- Semiconducting materials --- Semiconductor devices --- Crystals --- Electronics --- Solid state electronics --- Microminiature electronic equipment --- Microminiaturization (Electronics) --- Microtechnology --- Miniature electronic equipment --- Composites (Materials) --- Multiphase materials --- Reinforced solids --- Solids, Reinforced --- Two phase materials --- Amorphous substances --- Ceramics --- Glazing --- Ceramic technology --- Industrial ceramics --- Keramics --- Building materials --- Chemistry, Technical --- Clay
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This book presents the fabrication of optoelectronic nanodevices. The structures considered are nanowires, nanorods, hybrid semiconductor nanostructures, wide bandgap nanostructures for visible light emitters and graphene. The device applications of these structures are broadly explained. The book deals also with the characterization of semiconductor nanostructures. It appeals to researchers and graduate students.
Semiconductors --- Optoelectronic devices. --- Nanostructures. --- Optical properties. --- Physics. --- Nanoscale science. --- Nanoscience. --- Semiconductors. --- Nanotechnology. --- Nanotechnology and Microengineering. --- Optics, Lasers, Photonics, Optical Devices. --- Nanoscale Science and Technology. --- Nanoscience --- Physics --- Molecular technology --- Nanoscale technology --- High technology --- Crystalline semiconductors --- Semi-conductors --- Semiconducting materials --- Semiconductor devices --- Crystals --- Electrical engineering --- Electronics --- Solid state electronics --- Nano science --- Nanoscale science --- Nanosciences --- Science --- Natural philosophy --- Philosophy, Natural --- Physical sciences --- Dynamics --- Materials --- Photo electric devices --- Photo electronic devices --- Photoelectronic devices --- Electronic apparatus and appliances --- Optical instruments --- Electrooptical devices --- Integrated optics --- Engineering. --- Construction --- Industrial arts --- Technology --- Lasers. --- Photonics. --- New optics --- Optics --- Light amplification by stimulated emission of radiation --- Masers, Optical --- Optical masers --- Light amplifiers --- Light sources --- Optoelectronic devices --- Nonlinear optics --- Optical parametric oscillators
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The transmission speed of data communication systems is forecast to increase exponentially over the next decade. Development of both Si-based high-speed drivers as well as III-V-semiconductor-based high-speed vertical cavity surface emitting lasers (VCSELs) are prerequisites for future ultrahigh data-rate systems. This thesis presents: - a survey of the present state of the art of VCSELs - a systematic investigation of the various effects limiting present VCSELs - a catalogue of solutions to overcome present limits - detailed progress in modelling, fabricating and testing the currently most advanced VCSELs at the two commercially most important wavelengths.
Engineering. --- Lasers. --- Optical interconnects. --- Semiconductor lasers. --- Engineering & Applied Sciences --- Applied Physics --- Optical interconnections --- Physics. --- Input-output equipment (Computers). --- Semiconductors. --- Photonics. --- Microwaves. --- Optical engineering. --- Laser Technology, Photonics. --- Microwaves, RF and Optical Engineering. --- Input/Output and Data Communications. --- Integrated optics --- Lasers --- Data transmission systems. --- Optics, Lasers, Photonics, Optical Devices. --- Data communication systems --- Transmission of data --- Digital communications --- Electronic data processing --- Electronic systems --- Information theory --- Telecommunication systems --- Hertzian waves --- Electric waves --- Electromagnetic waves --- Geomagnetic micropulsations --- Radio waves --- Shortwave radio --- Computer hardware --- Computer I/O equipment --- Computers --- Electronic analog computers --- Electronic digital computers --- Hardware, Computer --- I/O equipment (Computers) --- Input equipment (Computers) --- Input-output equipment (Computers) --- Output equipment (Computers) --- Computer systems --- Crystalline semiconductors --- Semi-conductors --- Semiconducting materials --- Semiconductor devices --- Crystals --- Electrical engineering --- Electronics --- Solid state electronics --- Mechanical engineering --- New optics --- Optics --- Light amplification by stimulated emission of radiation --- Masers, Optical --- Optical masers --- Light amplifiers --- Light sources --- Optoelectronic devices --- Nonlinear optics --- Optical parametric oscillators --- Input-output equipment --- Materials
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Terahertz science and technology is attracting great interest due to its application in a wide array of fields made possible by the development of new and improved terahertz radiation sources and detectors. This book focuses on the development and characterization of one such source - namely the semi-large aperture photoconducting (PC) antenna fabricated on Fe-doped bulk Ga0.69In0.31As substrate. The high ultrafast carrier mobility, high resistivity, and subpicosecond carrier lifetime along with low bandgap make Ga0.69In0.31As an excellent candidate for PC antenna based THz emitter that can be photoexcited by compact Yb-based multiwatt laser systems for high power THz emission. The research is aimed at evaluating the impact of physical properties of a semi-large aperture Ga0.69In0.31As PC antenna upon its THz generation efficiency, and is motivated by the ultimate goal of developing a high-power terahertz radiation source for time-domain terahertz spectroscopy and imaging systems. This Doctoral Thesis has been accepted by Rensselaer Polytechnic Institute, Troy, USA.
Femtochemistry. --- Millimeter wave devices. --- Optoelectronic devices. --- Submillimeter waves. --- Terahertz technology. --- Submillimeter waves --- Physics --- Physical Sciences & Mathematics --- Light & Optics --- Electricity & Magnetism --- Microwave spectroscopy. --- Photo electric devices --- Photo electronic devices --- Photoelectronic devices --- Submillimeter radiation --- Submillimeter-terahertz radiation --- Terahertz radiation --- Waves, Submillimeter --- Physics. --- Semiconductors. --- Lasers. --- Photonics. --- Spectroscopy. --- Microscopy. --- Optical materials. --- Electronic materials. --- Spectroscopy and Microscopy. --- Laser Technology, Photonics. --- Optical and Electronic Materials. --- Molecular spectroscopy --- Radiofrequency spectroscopy --- Electronic apparatus and appliances --- Optical instruments --- Electrooptical devices --- Integrated optics --- Electromagnetic waves --- Radiation --- Optics, Lasers, Photonics, Optical Devices. --- Optics --- Materials --- Electronic materials --- New optics --- Light amplification by stimulated emission of radiation --- Masers, Optical --- Optical masers --- Light amplifiers --- Light sources --- Optoelectronic devices --- Nonlinear optics --- Optical parametric oscillators --- Crystalline semiconductors --- Semi-conductors --- Semiconducting materials --- Semiconductor devices --- Crystals --- Electrical engineering --- Electronics --- Solid state electronics --- Analysis, Microscopic --- Light microscopy --- Micrographic analysis --- Microscope and microscopy --- Microscopic analysis --- Optical microscopy --- Analysis, Spectrum --- Spectra --- Spectrochemical analysis --- Spectrochemistry --- Spectroscopy --- Chemistry, Analytic --- Interferometry --- Wave-motion, Theory of --- Absorption spectra --- Light --- Spectroscope --- Qualitative --- Spectrometry --- Analytical chemistry
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Regular Nanofabrics in Emerging Technologies gives a deep insight into both fabrication and design aspects of emerging semiconductor technologies, that represent potential candidates for the post-CMOS era. Its approach is unique, across different fields, and it offers a synergetic view for a public of different communities ranging from technologists, to circuit designers, and computer scientists. The book presents two technologies as potential candidates for future semiconductor devices and systems and it shows how fabrication issues can be addressed at the design level and vice versa. The reader either for academic or research purposes will find novel material that is explained carefully for both experts and non-initiated readers. Regular Nanofabrics in Emerging Technologies is a survey of post-CMOS technologies. It explains processing, circuit and system level design for people with various backgrounds.
Nanoelectronics. --- Nanofibers. --- Engineering & Applied Sciences --- Technology - General --- Nanoelectronics --- Nanotechnology. --- Materials. --- Molecular technology --- Nanoscale technology --- Nanoscale electronics --- Nanoscale molecular electronics --- Engineering. --- Systems engineering. --- Computer aided design. --- Logic design. --- Nanotechnology and Microengineering. --- Circuits and Systems. --- Computer-Aided Engineering (CAD, CAE) and Design. --- Logic Design. --- Nanoscale Science and Technology. --- Semiconductors. --- Design, Logic --- Design of logic systems --- Digital electronics --- Electronic circuit design --- Logic circuits --- Machine theory --- Switching theory --- CAD (Computer-aided design) --- Computer-assisted design --- Computer-aided engineering --- Design --- Engineering systems --- System engineering --- Engineering --- Industrial engineering --- System analysis --- Construction --- Industrial arts --- Technology --- Design and construction --- High technology --- Electronics --- Nanotechnology --- Electronic circuits. --- Computer-aided engineering. --- Nanoscale science. --- Nanoscience. --- Nanostructures. --- Crystalline semiconductors --- Semi-conductors --- Semiconducting materials --- Semiconductor devices --- Crystals --- Electrical engineering --- Solid state electronics --- Nanoscience --- Physics --- Nano science --- Nanoscale science --- Nanosciences --- Science --- CAE --- Electron-tube circuits --- Electric circuits --- Electron tubes --- Materials --- Data processing
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