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621.793 --- Materials --- -Microelectronics --- -Plasma etching --- -Surfaces (Technology) --- -Dry etching --- Etching --- Microminiature electronic equipment --- Microminiaturization (Electronics) --- Electronics --- Microtechnology --- Semiconductors --- Miniature electronic equipment --- Engineering --- Engineering materials --- Industrial materials --- Engineering design --- Manufacturing processes --- Metal coating and plating. Production of conducting, semiconducting, resistive, dielectric, magnetic coats and films. Metallization --- Effect of radiation on --- -Congresses --- -Effect of radiation on --- Congresses --- Microelectronics --- Plasma etching --- Surfaces (Technology) --- Congresses. --- -Metal coating and plating. Production of conducting, semiconducting, resistive, dielectric, magnetic coats and films. Metallization --- 621.793 Metal coating and plating. Production of conducting, semiconducting, resistive, dielectric, magnetic coats and films. Metallization --- -621.793 Metal coating and plating. Production of conducting, semiconducting, resistive, dielectric, magnetic coats and films. Metallization --- Dry etching --- Effect of radiation on&delete& --- Materials&delete&
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A comprehensive guide to the science of a transformational ultrananocrystalline-diamond (UNCDTM) thin film technology enabling a new generation of high-tech and external and implantable medical devices. Edited and co-authored by a co-originator and pioneer in the field, it describes the synthesis and material properties of UNCDTM coatings and multifunctional oxide/nitride thin films and nanoparticles, and how these technologies can be integrated into the development of implantable and external medical devices and treatments of human biological conditions. Bringing together contributions from experts around the world, it covers a range of clinical applications, including ocular implants, glaucoma treatment devices, implantable prostheses, scaffolds for stem cell growth and differentiation, Li-ion batteries for defibrillators and pacemakers, and drug delivery and sensor devices. Technology transfer and regulatory issues are also covered. This is essential reading for researchers, engineers and practitioners in the field of high-tech and medical device technologies across materials science and biomedical engineering.
Medical instruments and apparatus --- Diamond thin films --- Nanodiamonds --- Diamond powder --- Protective coatings. --- Materials. --- Industrial applications.
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Electronics and optics of solids --- Couches minces --- Dunne laagjes --- Thin films --- Thin films. --- Ferroelectric thin films. --- Ferroelectric thin films --- Films, Thin --- Solid film --- Solid state electronics --- Solids --- Surfaces (Technology) --- Coatings --- Thick films
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Experimental solid state physics --- Surface chemistry --- fysicochemie --- Materials sciences --- Ion bombardment --- Collisions (Physique nucléaire) --- Bombardement ionique --- Ion implantation --- Cathode sputtering --- Implantation, Ion --- Ion plating --- Beams, Ion --- Bombardment, Ion --- Impact, Ion --- Ion beams --- Ion impact --- Ionic bombardment --- Collisions (Physique nucléaire) --- Surfaces (Technology) --- Sputtering (Physics) --- Materials --- Surface phenomena --- Friction --- Surfaces (Physics) --- Tribology --- Collisions (Nuclear physics) --- Ions --- Surfaces --- Surfaces (Physique)
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This book is an introduction to the fundamentals of emerging non-volatile memories and provides an overview of future trends in the field. Readers will find coverage of seven important memory technologies, including Ferroelectric Random Access Memory (FeRAM), Ferromagnetic RAM (FMRAM), Multiferroic RAM (MFRAM), Phase-Change Memories (PCM), Oxide-based Resistive RAM (RRAM), Probe Storage, and Polymer Memories. Chapters are structured to reflect diffusions and clashes between different topics. Emerging Non-Volatile Memories is an ideal book for graduate students, faculty, and professionals working in the area of non-volatile memory. This book also: Covers key memory technologies, including Ferroelectric Random Access Memory (FeRAM), Ferromagnetic RAM (FMRAM), and Multiferroic RAM (MFRAM), among others. Provides an overview of non-volatile memory fundamentals. Broadens readers’ understanding of future trends in non-volatile memories.
Magnetic memory (Computers) --- Testing. --- Design. --- Magnetic memory (Calculating-machines) --- Magnetic storage (Computers) --- Memory devices (Computers) --- Storage elements (Computers) --- Computer storage devices --- Magnetic devices --- Optical materials. --- Computer engineering. --- Optical and Electronic Materials. --- Solid State Physics. --- Spectroscopy and Microscopy. --- Electrical Engineering. --- Computers --- Optics --- Materials --- Design and construction --- Electronic materials. --- Solid state physics. --- Spectroscopy. --- Microscopy. --- Electrical engineering. --- Electric engineering --- Engineering --- Analysis, Microscopic --- Light microscopy --- Micrographic analysis --- Microscope and microscopy --- Microscopic analysis --- Optical microscopy --- Analysis, Spectrum --- Spectra --- Spectrochemical analysis --- Spectrochemistry --- Spectrometry --- Spectroscopy --- Chemistry, Analytic --- Interferometry --- Radiation --- Wave-motion, Theory of --- Absorption spectra --- Light --- Spectroscope --- Physics --- Solids --- Electronic materials --- Qualitative --- Analytical chemistry
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This book is an introduction to the fundamentals of emerging non-volatile memories and provides an overview of future trends in the field. Readers will find coverage of seven important memory technologies, including Ferroelectric Random Access Memory (FeRAM), Ferromagnetic RAM (FMRAM), Multiferroic RAM (MFRAM), Phase-Change Memories (PCM), Oxide-based Resistive RAM (RRAM), Probe Storage, and Polymer Memories. Chapters are structured to reflect diffusions and clashes between different topics. Emerging Non-Volatile Memories is an ideal book for graduate students, faculty, and professionals working in the area of non-volatile memory. This book also: Covers key memory technologies, including Ferroelectric Random Access Memory (FeRAM), Ferromagnetic RAM (FMRAM), and Multiferroic RAM (MFRAM), among others. Provides an overview of non-volatile memory fundamentals. Broadens readers’ understanding of future trends in non-volatile memories.
Optics. Quantum optics --- Electronics and optics of solids --- Solid state physics --- Theoretical spectroscopy. Spectroscopic techniques --- Materials sciences --- Electrical engineering --- Applied physical engineering --- Computer. Automation --- vaste stof --- materiaalkennis --- materie (fysica) --- informatica --- spectroscopie --- microscopie --- elektrotechniek --- transistoren --- halfgeleiders --- polymeren --- microwaves
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