Enabling Technologies For Very Large Scale Synaptic Electronics

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Enabling Technologies for Very Large-Scale Synaptic Electronics

Author : Themis Prodromakis,Alexantrou Serb
Publisher : Frontiers Media SA
Page : 105 pages
File Size : 44,9 Mb
Release : 2018-07-05
Category : Electronic
ISBN : 9782889455089

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Enabling Technologies for Very Large-Scale Synaptic Electronics by Themis Prodromakis,Alexantrou Serb Pdf

An important part of the colossal effort associated with the understanding of the brain involves using electronics hardware technology in order to reproduce biological behavior in ‘silico’. The idea revolves around leveraging decades of experience in the electronics industry as well as new biological findings that are employed towards reproducing key behaviors of fundamental elements of the brain (notably neurons and synapses) at far greater speed-scale products than any software-only implementation can achieve for the given level of modelling detail. So far, the field of neuromorphic engineering has proven itself as a major source of innovation towards the ‘silicon brain’ goal, with the methods employed by its community largely focused on circuit design (analogue, digital and mixed signal) and standard, commercial, Complementary Metal-Oxide Silicon (CMOS) technology as the preferred `tools of choice’ when trying to simulate or emulate biological behavior. However, alongside the circuit-oriented sector of the community there exists another community developing new electronic technologies with the express aim of creating advanced devices, beyond the capabilities of CMOS, that can intrinsically simulate neuron- or synapse-like behavior. A notable example concerns nanoelectronic devices responding to well-defined input signals by suitably changing their internal state (‘weight’), thereby exhibiting `synapse-like’ plasticity. This is in stark contrast to circuit-oriented approaches where the `synaptic weight’ variable has to be first stored, typically as charge on a capacitor or digitally, and then appropriately changed via complicated circuitry. The shift of very much complexity from circuitry to devices could potentially be a major enabling factor for very-large scale `synaptic electronics’, particularly if the new devices can be operated at much lower power budgets than their corresponding 'traditional' circuit replacements. To bring this promise to fruition, synergy between the well-established practices of the circuit-oriented approach and the vastness of possibilities opened by the advent of novel nanoelectronic devices with rich internal dynamics is absolutely essential and will create the opportunity for radical innovation in both fields. The result of such synergy can be of potentially staggering impact to the progress of our efforts to both simulate the brain and ultimately understand it. In this Research Topic, we wish to provide an overview of what constitutes state-of-the-art in terms of enabling technologies for very large scale synaptic electronics, with particular stress on innovative nanoelectronic devices and circuit/system design techniques that can facilitate the development of very large scale brain-inspired electronic systems

Enabling Technologies for Very Large-Scale Synaptic Electronics

Author : Anonim
Publisher : Unknown
Page : 0 pages
File Size : 46,8 Mb
Release : 2018
Category : Electronic
ISBN : OCLC:1368421106

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Enabling Technologies for Very Large-Scale Synaptic Electronics by Anonim Pdf

An important part of the colossal effort associated with the understanding of the brain involves using electronics hardware technology in order to reproduce biological behavior in 'silico'. The idea revolves around leveraging decades of experience in the electronics industry as well as new biological findings that are employed towards reproducing key behaviors of fundamental elements of the brain (notably neurons and synapses) at far greater speed-scale products than any software-only implementation can achieve for the given level of modelling detail. So far, the field of neuromorphic engineering has proven itself as a major source of innovation towards the 'silicon brain' goal, with the methods employed by its community largely focused on circuit design (analogue, digital and mixed signal) and standard, commercial, Complementary Metal-Oxide Silicon (CMOS) technology as the preferred `tools of choice' when trying to simulate or emulate biological behavior. However, alongside the circuit-oriented sector of the community there exists another community developing new electronic technologies with the express aim of creating advanced devices, beyond the capabilities of CMOS, that can intrinsically simulate neuron- or synapse-like behavior. A notable example concerns nanoelectronic devices responding to well-defined input signals by suitably changing their internal state ('weight'), thereby exhibiting `synapse-like' plasticity. This is in stark contrast to circuit-oriented approaches where the `synaptic weight' variable has to be first stored, typically as charge on a capacitor or digitally, and then appropriately changed via complicated circuitry. The shift of very much complexity from circuitry to devices could potentially be a major enabling factor for very-large scale `synaptic electronics', particularly if the new devices can be operated at much lower power budgets than their corresponding 'traditional' circuit replacements. To bring this promise to fruition, synergy between the well-established practices of the circuit-oriented approach and the vastness of possibilities opened by the advent of novel nanoelectronic devices with rich internal dynamics is absolutely essential and will create the opportunity for radical innovation in both fields. The result of such synergy can be of potentially staggering impact to the progress of our efforts to both simulate the brain and ultimately understand it. In this Research Topic, we wish to provide an overview of what constitutes state-of-the-art in terms of enabling technologies for very large scale synaptic electronics, with particular stress on innovative nanoelectronic devices and circuit/system design techniques that can facilitate the development of very large scale brain-inspired electronic systems.

Advances in Neuromorphic Memristor Science and Applications

Author : Robert Kozma,Robinson E. Pino,Giovanni E. Pazienza
Publisher : Springer Science & Business Media
Page : 320 pages
File Size : 53,9 Mb
Release : 2012-06-28
Category : Medical
ISBN : 9789400744912

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Advances in Neuromorphic Memristor Science and Applications by Robert Kozma,Robinson E. Pino,Giovanni E. Pazienza Pdf

Physical implementation of the memristor at industrial scale sparked the interest from various disciplines, ranging from physics, nanotechnology, electrical engineering, neuroscience, to intelligent robotics. As any promising new technology, it has raised hopes and questions; it is an extremely challenging task to live up to the high expectations and to devise revolutionary and feasible future applications for memristive devices. The possibility of gathering prominent scientists in the heart of the Silicon Valley given by the 2011 International Joint Conference on Neural Networks held in San Jose, CA, has offered us the unique opportunity of organizing a series of special events on the present status and future perspectives in neuromorphic memristor science. This book presents a selection of the remarkable contributions given by the leaders of the field and it may serve as inspiration and future reference to all researchers that want to explore the extraordinary possibilities given by this revolutionary concept.

NASA Tech Briefs

Author : Anonim
Publisher : Unknown
Page : 168 pages
File Size : 41,8 Mb
Release : 1993
Category : Technology
ISBN : MINN:31951D010604661

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NASA Tech Briefs by Anonim Pdf

Index to ... NASA Tech Briefs

Author : Anonim
Publisher : Unknown
Page : 180 pages
File Size : 41,9 Mb
Release : 2024-05-17
Category : NASA tech briefs
ISBN : STANFORD:36105112109199

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Index to ... NASA Tech Briefs by Anonim Pdf

Neuromorphic Engineering Editors’ Pick 2021

Author : André van Schaik,Bernabe Linares-Barranco
Publisher : Frontiers Media SA
Page : 177 pages
File Size : 42,8 Mb
Release : 2021-08-10
Category : Science
ISBN : 9782889711611

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Neuromorphic Engineering Editors’ Pick 2021 by André van Schaik,Bernabe Linares-Barranco Pdf

Biocomposites - Bio-based Fibers and Polymers from Renewable Resources

Author : R. Arun Ramnath,Sanjay M. R,Sergey M. Gorbatyuk,Steffen Fischer,Suchart Siengchin
Publisher : Elsevier
Page : 344 pages
File Size : 40,6 Mb
Release : 2023-12-15
Category : Technology & Engineering
ISBN : 9780323993548

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Biocomposites - Bio-based Fibers and Polymers from Renewable Resources by R. Arun Ramnath,Sanjay M. R,Sergey M. Gorbatyuk,Steffen Fischer,Suchart Siengchin Pdf

Biocomposites – Bio-based Fibres and Polymers from Renewable Resources: Processing, Performance, Durability and Applications provides a systematic and comprehensive review of recent developments in this important area of research. Chapters discuss novel techniques for processing and the characterization of biocomposites derived from renewable resources, focusing on durability, strength prediction, aging methods and performance evaluation. Future trends, directions and opportunities are also addressed. Readers will find an up-to-date summary of recent research findings that have been conducted on biocomposites, making this an essential reference resource for academic and industrial researchers and anyone working in the development of innovative materials from renewable resources. Provides wide coverage of processing methods, mechanical performance and industrial applications Emphasizes durability assessment of natural fiber composites in different environments

Springer Handbook of Semiconductor Devices

Author : Massimo Rudan,Rossella Brunetti,Susanna Reggiani
Publisher : Springer Nature
Page : 1680 pages
File Size : 41,8 Mb
Release : 2022-11-10
Category : Technology & Engineering
ISBN : 9783030798277

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Springer Handbook of Semiconductor Devices by Massimo Rudan,Rossella Brunetti,Susanna Reggiani Pdf

This Springer Handbook comprehensively covers the topic of semiconductor devices, embracing all aspects from theoretical background to fabrication, modeling, and applications. Nearly 100 leading scientists from industry and academia were selected to write the handbook's chapters, which were conceived for professionals and practitioners, material scientists, physicists and electrical engineers working at universities, industrial R&D, and manufacturers. Starting from the description of the relevant technological aspects and fabrication steps, the handbook proceeds with a section fully devoted to the main conventional semiconductor devices like, e.g., bipolar transistors and MOS capacitors and transistors, used in the production of the standard integrated circuits, and the corresponding physical models. In the subsequent chapters, the scaling issues of the semiconductor-device technology are addressed, followed by the description of novel concept-based semiconductor devices. The last section illustrates the numerical simulation methods ranging from the fabrication processes to the device performances. Each chapter is self-contained, and refers to related topics treated in other chapters when necessary, so that the reader interested in a specific subject can easily identify a personal reading path through the vast contents of the handbook.

Convergence of Knowledge, Technology and Society

Author : Mihail C. Roco,William S. Bainbridge,Bruce Tonn,George Whitesides
Publisher : Springer Science & Business Media
Page : 558 pages
File Size : 47,8 Mb
Release : 2014-01-28
Category : Technology & Engineering
ISBN : 9783319022048

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Convergence of Knowledge, Technology and Society by Mihail C. Roco,William S. Bainbridge,Bruce Tonn,George Whitesides Pdf

This volume aims to document the most important worldwide accomplishments in converging knowledge and technology, including converging platforms, methods of convergence, societal implications, and governance in the last ten years. Convergence in knowledge, technology, and society is the accelerating, transformative interaction among seemingly distinct scientific disciplines, technologies, and communities to achieve mutual compatibility, synergism, and integration, and through this process to create added value for societal benefit. It is a movement that is recognized by scientists and thought leaders around the world as having the potential to provide far-reaching solutions to many of today’s complex knowledge, technology, and human development challenges. Four essential and interdependent convergence platforms of human activity are defined in the first part of this report: nanotechnology-biotechnology-information technology and cognitive science (“NBIC”) foundational tools; Earth-scale environmental systems; human-scale activities; and convergence methods for societal-scale activities. The report then presents the main implications of convergence for human physical potential, cognition and communication, productivity and societal outcomes, education and physical infrastructure, sustainability, and innovative and responsible governance. As a whole, the report presents a new model for convergence. To effectively take advantage of this potential, a proactive governance approach is suggested. The study identifies an international opportunity to develop and apply convergence for technological, economic, environmental, and societal benefits. The panel also suggests an opportunity in the United States for implementing a program aimed at focusing disparate R and D energies into a coherent activity - a "Societal Convergence Initiative”. This study received input from leading academic, industry, government, and NGO experts from the United States, Latin America, Europe, Asia, and Australia.

Molecular Electronics, Circuits, and Processing Platforms

Author : Sergey Edward Lyshevski
Publisher : CRC Press
Page : 296 pages
File Size : 42,6 Mb
Release : 2018-10-03
Category : Technology & Engineering
ISBN : 9780429019104

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Molecular Electronics, Circuits, and Processing Platforms by Sergey Edward Lyshevski Pdf

When microelectronic devices replaced vacuum tubes, it marked a revolution in electronics that opened the way to the computer age. We are on the verge of witnessing another equally profound shift. As molecular devices replace semiconductors, we will achieve new levels of performance, functionality and capability that will hugely impact electronics, as well as signal processing and computing. Molecular Electronics, Circuits, and Processing Platforms guides you confidently into this emerging field. Helping you to forge into the molecular frontier, this book examines the various concepts, methods and technologies used to approach and solve a wide variety of problems. The author works from new devices to systems and platforms. He also covers device-level physics, system-level design, analysis, and advanced fabrication technologies. Explore the latest and emerging molecular, biomolecular, and nanoscale processing platforms for building the next generation of circuits, memories and computations. By examining both solved and open issues, this book thoroughly develops the basic theory and shows you how to apply this knowledge toward new developments and practical hardware implementation. Don’t fall behind. Let Molecular Electronics, Circuits, and Processing Platforms take you to the next level of electronics design and applications.

Power Electronics Diploma Interview Q&A: Career Guide

Author : Sumitra Kumari
Publisher : Sumitra Kumari
Page : 218 pages
File Size : 54,8 Mb
Release : 2024-02-04
Category : Technology & Engineering
ISBN : 8210379456XXX

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Power Electronics Diploma Interview Q&A: Career Guide by Sumitra Kumari Pdf

Prepare for success in the Power Electronics industry with our comprehensive guide! Dive into a collection of interview-tested questions and detailed answers designed to equip you with the knowledge and confidence needed to ace your Power Electronics diploma Jobs interviews. Whether you're a recent graduate or a seasoned professional, this power electronics interview questions book provides valuable insights, practical scenarios, and career guidance to help you excel. Ensuring you stand out and secure your dream job in the dynamic world of Power Electronics. Your pathway to a successful career starts here! Whether you're aiming for a position as a Power Electronics Engineer, Technician, or pursuing advanced roles in Research and Development, this power electronics book is an indispensable resource to help you shine in interviews and land your dream job. Equip yourself with the knowledge and confidence needed to ace Power Electronics interviews and embark on a successful and fulfilling career in this dynamic field!

Chips 2020

Author : Bernd Hoefflinger
Publisher : Springer Science & Business Media
Page : 497 pages
File Size : 42,9 Mb
Release : 2012-01-19
Category : Science
ISBN : 9783642223990

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Chips 2020 by Bernd Hoefflinger Pdf

The chips in present-day cell phones already contain billions of sub-100-nanometer transistors. By 2020, however, we will see systems-on-chips with trillions of 10-nanometer transistors. But this will be the end of the miniaturization, because yet smaller transistors, containing just a few control atoms, are subject to statistical fluctuations and thus no longer useful. We also need to worry about a potential energy crisis, because in less than five years from now, with current chip technology, the internet alone would consume the total global electrical power! This book presents a new, sustainable roadmap towards ultra-low-energy (femto-Joule), high-performance electronics. The focus is on the energy-efficiency of the various chip functions: sensing, processing, and communication, in a top-down spirit involving new architectures such as silicon brains, ultra-low-voltage circuits, energy harvesting, and 3D silicon technologies. Recognized world leaders from industry and from the research community share their views of this nanoelectronics future. They discuss, among other things, ubiquitous communication based on mobile companions, health and care supported by autonomous implants and by personal carebots, safe and efficient mobility assisted by co-pilots equipped with intelligent micro-electromechanical systems, and internet-based education for a billion people from kindergarden to retirement. This book should help and interest all those who will have to make decisions associated with future electronics: students, graduates, educators, and researchers, as well as managers, investors, and policy makers. Introduction: Towards Sustainable 2020 Nanoelectronics.- From Microelectronics to Nanoelectronics.- The Future of Eight Chip Technologies.- Analog–Digital Interfaces.- Interconnects and Transceivers.- Requirements and Markets for Nanoelectronics.- ITRS: The International Technology Roadmap for Semiconductors.- Nanolithography.- Power-Efficient Design Challenges.- Superprocessors and Supercomputers.- Towards Terabit Memories.- 3D Integration for Wireless Multimedia.- The Next-Generation Mobile User-Experience.- MEMS (Micro-Electro-Mechanical Systems) for Automotive and Consumer.- Vision Sensors and Cameras.- Digital Neural Networks for New Media.- Retinal Implants for Blind Patients.- Silicon Brains.- Energy Harvesting and Chip Autonomy.- The Energy Crisis.- The Extreme-Technology Industry.- Education and Research for the Age of Nanoelectronics.- 2020 World with Chips.

Neuromorphic Photonic Devices and Applications

Author : Min Gu,Elena Goi,Yangyundou Wang,Zhengfen Wan,Yibo Dong,Yuchao Zhang,Haoyi Yu
Publisher : Elsevier
Page : 415 pages
File Size : 53,8 Mb
Release : 2023-12-15
Category : Technology & Engineering
ISBN : 9780323972604

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Neuromorphic Photonic Devices and Applications by Min Gu,Elena Goi,Yangyundou Wang,Zhengfen Wan,Yibo Dong,Yuchao Zhang,Haoyi Yu Pdf

Neuromorphic Photonic Devices and Applications synthesizes the most critical advances in photonic neuromorphic models, photonic material platforms and accelerators for neuromorphic computing. The book discusses fields and applications that can leverage these new platforms. A brief review of the historical development of the field is followed by a discussion of the emerging 2D photonic materials platforms and recent work in implementing neuromorphic models and 3D neuromorphic systems. The application of artificial intelligence (AI), such as neuromorphic models to inverse design neuromorphic materials and devices and predict performance challenges is discussed throughout. Finally, a comprehensive overview of the applications of neuromorphic photonic technologies and the challenges, opportunities and future prospects is discussed, making the book suitable for researchers and practitioners in academia and R&D in the multidisciplinary field of photonics. Includes overview of primary scientific concepts for the research topic of neuromorphic photonics such as neurons as computational units, artificial intelligence, machine learning and neuromorphic models Reviews the latest advances in photonic materials, device platforms and enabling technology drivers of neuromorphic photonics Discusses potential applications in computing and optical communications

Memristors and Memristive Systems

Author : Ronald Tetzlaff
Publisher : Springer Science & Business Media
Page : 409 pages
File Size : 55,8 Mb
Release : 2013-12-11
Category : Technology & Engineering
ISBN : 9781461490685

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Memristors and Memristive Systems by Ronald Tetzlaff Pdf

This book provides a comprehensive overview of current research on memristors, memcapacitors and, meminductors. In addition to an historical overview of the research in this area, coverage includes the theory behind memristive circuits, as well as memcapacitance, and meminductance. Details are shown for recent applications of memristors for resistive random access memories, neuromorphic systems and hybrid CMOS/memristor circuits. Methods for the simulation of memristors are demonstrated and an introduction to neuromorphic modeling is provided.

Advanced Technologies for Security Applications

Author : Claudio Palestini
Publisher : Springer Nature
Page : 312 pages
File Size : 45,9 Mb
Release : 2020-06-26
Category : Science
ISBN : 9789402420210

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Advanced Technologies for Security Applications by Claudio Palestini Pdf

Technology has been the spark that ignited NATO’s interest and commitment to scientific advancement during its history. Since its creation, the Science for Peace and Security (SPS) Programme has been instrumental to NATO’s commitment to innovation, science and technological advancement. During the years, SPS has demonstrated a flexible and versatile approach to practical scientific cooperation, and has promoted knowledge-sharing, building capacity, and projected stability outside NATO territory. The priorities addressed by the SPS Programme are aligned with NATO’s strategic objectives, and aim to tackle emerging security challenges that require dynamic adaptation for the prevention and mitigation of risks. By addressing priorities such as advanced technologies, hybrid threats, and counter-terrorism, the Programme deals with new, contemporary challenges. On 17-18 September 2019, the SPS Programme gathered at the KU Leuven University a wide number of researchers from a selection of on-going and recently closed SPS projects in the field of security-related advanced technologies for a “Cluster Workshop on Advanced Technologies”. The workshop covered, in particular, the following scientific domains: communication systems, advanced materials, sensors and detectors, and unmanned and autonomous systems. This book provides an overview on how these projects have contributed to the development of new technologies and innovative solutions and recommendations for future actions in the NATO SPS programme.