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Magnetic memory (Calculating-machines) --- Magnetic bubble devices --- Magnetic storage (Computers) --- Memory devices (Computers) --- Storage elements (Computers) --- Computer storage devices --- Magnetic devices --- Bubble devices, Magnetic --- Integrated circuits --- Magnetic bubbles --- Magnetic bubble devices. --- Magnetic memory (Computers) --- Magnetic memory (Computers).
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The arrival of the 'information age' took most people by surprise - including scientists and technologists. Today, research on better, smaller, and faster ways to store and transfer information continues to grow, and growing fast within this scope is the field of magnetoelectronics. With its possibilities as a magnetic storage technology capable of overcoming the vulnerabilities of CMOS (complementary metal on oxide semiconductor), magnetoelectronics promises to be an important installation in the information era.
Spintronics. --- Magnetic memory (Computers) --- Magnetic memory (Calculating-machines) --- Magnetic storage (Computers) --- Memory devices (Computers) --- Storage elements (Computers) --- Computer storage devices --- Magnetic devices --- Fluxtronics --- Magnetoelectronics --- Spin electronics --- Spinelectronics --- Microelectronics --- Nanotechnology
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Relational databases. --- Magnetic memory (Computers) --- Design and construction. --- Magnetic memory (Calculating-machines) --- Magnetic storage (Computers) --- Memory devices (Computers) --- Storage elements (Computers) --- Computer storage devices --- Magnetic devices --- Relational data bases --- Databases --- Dispositius de memòria d'ordinador --- Bases de dades relacionals --- Gestió de bases de dades
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Magnetic random-access memory (MRAM) is poised to replace traditional computer memory based on complementary metal-oxide semiconductors (CMOS). MRAM will surpass all other types of memory devices in terms of nonvolatility, low energy dissipation, fast switching speed, radiation hardness, and durability. Although toggle-MRAM is currently a commercial product, it is clear that future developments in MRAM will be based on spin-transfer torque, which makes use of electrons' spin angular momentum instead of their charge. MRAM will require an amalgamation of magnetics and microelectronics technologies. However, researchers and developers in magnetics and in microelectronics attend different technical conferences, publish in different journals, use different tools, and have different backgrounds in condensed-matter physics, electrical engineering, and materials science. This book is an introduction to MRAM for microelectronics engineers written by specialists in magnetic materials and devices. It presents the basic phenomena involved in MRAM, the materials and film stacks being used, the basic principles of the various types of MRAM (toggle and spin-transfer torque; magnetized in-plane or perpendicular-to-plane), the back-end magnetic technology, and recent developments toward logic-in-memory architectures. It helps bridge the cultural gap between the microelectronics and magnetics communities.
Random access memory. --- Magnetic memory (Computers) --- Computer storage devices. --- Computer memory systems --- Computers --- Electronic digital computers --- Storage devices, Computer --- Computer input-output equipment --- Memory management (Computer science) --- Magnetic memory (Calculating-machines) --- Magnetic storage (Computers) --- Memory devices (Computers) --- Storage elements (Computers) --- Computer storage devices --- Magnetic devices --- Memories, Random access --- RAM storage --- Random access memories --- Random access storage --- Storage, Random access --- Memory systems --- Storage devices --- Random access memory
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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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"Micromagnetics and Recording Materials" is a book trying to give a systematic theory of computational applied magnetism, based on Maxwell equations of fields and Landau-Lifshitz equations of magnetic moments. The focused magnetic materials are magnetic recording materials utilized in computer hard disk drives. Traditionally, “Micromagnetics” includes the areas of "magnetization curve theory", “domain theory" and “read and write process analyses in recording systems”. As Springer Briefs, this book includes the first two areas of micromagnetics. M-H loops of hard magnetic thin film media, soft magnetic layers and Tunneling MagnetoResistive spin valves are solved based on the microstructures of thin films. Static domain structures and dynamic switching processes are analyzed in the arbitrary-shaped magnetic devices such as write head pole tips and magnetic force microscope tips. The book is intended for researchers who are interested in applied magnetism and magnetic recording in all disciples of physical science.
Computer storage devices -- Congresses. --- Integrated optics -- Congresses. --- Magnetic recorders and recording -- Materials -- Congresses. --- Magnetoresistance -- Congresses. --- Magnetism --- Magnetic materials --- Magnetic recorders and recording --- Electrical & Computer Engineering --- Physics --- Engineering & Applied Sciences --- Physical Sciences & Mathematics --- Electrical Engineering --- Electricity & Magnetism --- Magnetic memory (Computers) --- Magnetic memory (Calculating-machines) --- Magnetic storage (Computers) --- Memory devices (Computers) --- Storage elements (Computers) --- Materials science. --- Magnetism. --- Magnetic materials. --- Electrical engineering. --- Optical materials. --- Electronic materials. --- Materials Science. --- Optical and Electronic Materials. --- Magnetism, Magnetic Materials. --- Electrical Engineering. --- Computer storage devices --- Magnetic devices --- Computer engineering. --- Computers --- Mathematical physics --- Electricity --- Magnetics --- Optics --- Materials --- Design and construction --- Electric engineering --- Engineering --- Electronic materials
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This book explores the design implications of emerging, non-volatile memory (NVM) technologies on future computer memory hierarchy architecture designs. Since NVM technologies combine the speed of SRAM, the density of DRAM, and the non-volatility of Flash memory, they are very attractive as the basis for future universal memories. This book provides a holistic perspective on the topic, covering modeling, design, architecture and applications. The practical information included in this book will enable designers to exploit emerging memory technologies to improve significantly the performance/power/reliability of future, mainstream integrated circuits. • Provides a comprehensive reference on designing modern circuits with emerging, non-volatile memory technologies, such as MRAM and PCRAM; • Explores new design opportunities offered by emerging memory technologies, from a holistic perspective; • Describes topics in technology, modeling, architecture and applications; • Enables circuit designers to exploit emerging memory technologies to improve significantly the performance/power/reliability of future computing systems. .
Computer storage devices. --- Magnetic memory (Computers) --- Magnetic memory (Calculating-machines) --- Magnetic storage (Computers) --- Memory devices (Computers) --- Storage elements (Computers) --- Computer memory systems --- Computers --- Electronic digital computers --- Storage devices, Computer --- Memory systems --- Storage devices --- Random access memory --- Engineering. --- Microprocessors. --- Electronics. --- Microelectronics. --- Electronic circuits. --- Circuits and Systems. --- Processor Architectures. --- Electronics and Microelectronics, Instrumentation. --- Computer storage devices --- Magnetic devices --- Computer input-output equipment --- Memory management (Computer science) --- Systems engineering. --- Computer science. --- Electrical engineering --- Physical sciences --- Informatics --- Science --- Engineering systems --- System engineering --- Engineering --- Industrial engineering --- System analysis --- Design and construction --- Microminiature electronic equipment --- Microminiaturization (Electronics) --- Electronics --- Microtechnology --- Semiconductors --- Miniature electronic equipment --- Minicomputers --- Electron-tube circuits --- Electric circuits --- Electron tubes --- Design and construction.
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Magnetic memory (Calculating-machines) --- digitaal geheugen --- digitale techniek --- 681.3*B30 --- 681.3*B61 --- Magnetic storage (Computers) --- Memory devices (Computers) --- Storage elements (Computers) --- Computer storage devices --- Magnetic devices --- Computerwetenschap--?*B30 --- Reliability and testing: built-in tests; error-checking; redundant design; test generation; testability (Logic design) --- Magnetic memory (Computers) --- Magnetic memory (Computers). --- 681.3*B61 Design styles: cellular arrays and automata; combinational logic; logic arrays; memory control and access; memory used as logic; parallel and sequential circuits (Logic design) --- 681.3*B61 Reliability and testing: built-in tests; error-checking; redundant design; test generation; testability (Logic design) --- Design styles: cellular arrays and automata; combinational logic; logic arrays; memory control and access; memory used as logic; parallel and sequential circuits (Logic design)
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