Materials and Processes for Nonvolatile Memories: Volume 997

Materials and Processes for Nonvolatile Memories: Volume 997
Author: Tingkai Li
Publisher: Materials Research Society
Total Pages: 0
Release: 2007-11-07
Genre: Technology & Engineering
ISBN: 9781558999572

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This book, first published in 2007 and the second in a series from MRS, focuses on the scientific and technological exploration of materials and devices with nonvolatile memory properties. Strong and increasing interest in nonvolatile memories, both domestic and international, indicates the worldwide importance of these materials and memory devices. The papers in this volume represent the latest technical advancements and information on nonvolatile memory devices from universities, national laboratories and industry. They also provide insight into emerging trends. Research results are presented for: polymer and molecular nonvolatile memory devices; flash nonvolatile memory devices; nanoparticle nonvolatile memory devices; resistance switching nonvolatile memory devices; ferroelectric nonvolatile memory devices; phase-change nonvolatile memory devices; and magnetic nonvolatile memory devices and others.

Materials and Processes for Nonvolatile Memories: Volume 830

Materials and Processes for Nonvolatile Memories: Volume 830
Author: Materials Research Society. Meeting
Publisher:
Total Pages: 416
Release: 2005-03-11
Genre: Computers
ISBN:

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The MRS Symposium Proceeding series is an internationally recognised reference suitable for researchers and practitioners.

Materials and Processes for Nonvolatile Memories:

Materials and Processes for Nonvolatile Memories:
Author: A. Claverie
Publisher: Cambridge University Press
Total Pages: 410
Release: 2014-06-05
Genre: Technology & Engineering
ISBN: 9781107409132

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This 2005 book focuses on the scientific and technological exploration of materials and devices with nonvolatile memory properties. Scientists and engineers working on diverse memory technologies come together here to highlight possible advantages and disadvantages of each expertise. A broad range of topics are featured - from fundamental materials properties and integration, to demonstration and industrial devices. Invited presentations are broad-based and more tutorial in nature, helping to illustrate major trends. Topics include: nonvolatile memories with discrete storage nodes; ferroelectric memories; magnetoresistive randam access memory; nanoparticle memories; materials for nonvolatile memories and organic and resistive memories.

Emerging Non-Volatile Memories

Emerging Non-Volatile Memories
Author: Seungbum Hong
Publisher: Springer
Total Pages: 280
Release: 2014-11-18
Genre: Technology & Engineering
ISBN: 1489975373

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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.

Nonvolatile Memories

Nonvolatile Memories
Author: Tseung-Yuen Tseng
Publisher:
Total Pages:
Release: 2012
Genre: Flash memories (Computers)
ISBN: 9781588832511

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VLSI-Design of Non-Volatile Memories

VLSI-Design of Non-Volatile Memories
Author: Giovanni Campardo
Publisher: Springer Science & Business Media
Total Pages: 616
Release: 2005-01-18
Genre: Computers
ISBN: 9783540201984

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VLSI-Design for Non-Volatile Memories is intended for electrical engineers and graduate students who want to enter into the integrated circuit design world. Non-volatile memories are treated as an example to explain general design concepts. Practical illustrative examples of non-volatile memories, including flash types, are showcased to give insightful examples of the discussed design approaches. A collection of photos is included to make the reader familiar with silicon aspects. Throughout all parts of this book, the authors have taken a practical and applications-driven point of view, providing a comprehensive and easily understood approach to all the concepts discussed. Giovanni Campardo and Rino Micheloni have a solid track record of leading design activities at the STMicroelectronics Flash Division. David Novosel is President and founder of Intelligent Micro Design, Inc., Pittsburg, PA.

Advances in Non-volatile Memory and Storage Technology

Advances in Non-volatile Memory and Storage Technology
Author: Yoshio Nishi
Publisher: Elsevier
Total Pages: 456
Release: 2014-06-24
Genre: Computers
ISBN: 0857098098

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New solutions are needed for future scaling down of nonvolatile memory. Advances in Non-volatile Memory and Storage Technology provides an overview of developing technologies and explores their strengths and weaknesses. After an overview of the current market, part one introduces improvements in flash technologies, including developments in 3D NAND flash technologies and flash memory for ultra-high density storage devices. Part two looks at the advantages of designing phase change memory and resistive random access memory technologies. It looks in particular at the fabrication, properties, and performance of nanowire phase change memory technologies. Later chapters also consider modeling of both metal oxide and resistive random access memory switching mechanisms, as well as conductive bridge random access memory technologies. Finally, part three looks to the future of alternative technologies. The areas covered include molecular, polymer, and hybrid organic memory devices, and a variety of random access memory devices such as nano-electromechanical, ferroelectric, and spin-transfer-torque magnetoresistive devices. Advances in Non-volatile Memory and Storage Technology is a key resource for postgraduate students and academic researchers in physics, materials science, and electrical engineering. It is a valuable tool for research and development managers concerned with electronics, semiconductors, nanotechnology, solid-state memories, magnetic materials, organic materials, and portable electronic devices. Provides an overview of developing nonvolatile memory and storage technologies and explores their strengths and weaknesses Examines improvements to flash technology, charge trapping, and resistive random access memory Discusses emerging devices such as those based on polymer and molecular electronics, and nanoelectromechanical random access memory (RAM)

Nonvolatile Memory Technologies with Emphasis on Flash

Nonvolatile Memory Technologies with Emphasis on Flash
Author: Joe Brewer
Publisher: John Wiley & Sons
Total Pages: 766
Release: 2011-09-23
Genre: Technology & Engineering
ISBN: 1118211626

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Presented here is an all-inclusive treatment of Flash technology, including Flash memory chips, Flash embedded in logic, binary cell Flash, and multilevel cell Flash. The book begins with a tutorial of elementary concepts to orient readers who are less familiar with the subject. Next, it covers all aspects and variations of Flash technology at a mature engineering level: basic device structures, principles of operation, related process technologies, circuit design, overall design tradeoffs, device testing, reliability, and applications.

Nanoelectronics

Nanoelectronics
Author:
Publisher: Elsevier
Total Pages: 477
Release: 2018-10-05
Genre: Science
ISBN: 0128133546

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Nanoelectronics: Devices, Circuits and Systems explores current and emerging trends in the field of nanoelectronics, from both a devices-to-circuits and circuits-to-systems perspective. It covers a wide spectrum and detailed discussion on the field of nanoelectronic devices, circuits and systems. This book presents an in-depth analysis and description of electron transport phenomenon at nanoscale dimensions. Both qualitative and analytical approaches are taken to explore the devices, circuit functionalities and their system applications at deep submicron and nanoscale levels. Recent devices, including FinFET, Tunnel FET, and emerging materials, including graphene, and its applications are discussed. In addition, a chapter on advanced VLSI interconnects gives clear insight to the importance of these nano-transmission lines in determining the overall IC performance. The importance of integration of optics with electronics is elucidated in the optoelectronics and photonic integrated circuit sections of this book. This book provides valuable resource materials for scientists and electrical engineers who want to learn more about nanoscale electronic materials and how they are used. Shows how electronic transport works at the nanoscale level Demonstrates how nanotechnology can help engineers create more effective circuits and systems Assesses the most commonly used nanoelectronic devices, explaining which is best for different situations

Charge-Trapping Non-Volatile Memories

Charge-Trapping Non-Volatile Memories
Author: Panagiotis Dimitrakis
Publisher: Springer
Total Pages: 215
Release: 2017-02-14
Genre: Technology & Engineering
ISBN: 3319487051

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This book describes the technology of charge-trapping non-volatile memories and their uses. The authors explain the device physics of each device architecture and provide a concrete description of the materials involved and the fundamental properties of the technology. Modern material properties, used as charge-trapping layers, for new applications are introduced. Provides a comprehensive overview of the technology for charge-trapping non-volatile memories; Details new architectures and current modeling concepts for non-volatile memory devices; Focuses on conduction through multi-layer gate dielectrics stacks.