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Emerging Devices for Low-Power and High-Performance Nanosystems
  • Language: en
  • Pages: 267

Emerging Devices for Low-Power and High-Performance Nanosystems

  • Type: Book
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  • Published: 2018-12-13
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  • Publisher: CRC Press

The history of information and communications technologies (ICT) has been paved by both evolutive paths and challenging alternatives, so-called emerging devices and architectures. Their introduction poses the issues of state variable definition, information processing, and process integration in 2D, above IC, and in 3D. This book reviews the capabilities of integrated nanosystems to match low power and high performance either by hybrid and heterogeneous CMOS in 2D/3D or by emerging devices for alternative sensing, actuating, data storage, and processing. The choice of future ICTs will need to take into account not only their energy efficiency but also their sustainability in the global ecosystem.

Intelligent Integrated Systems
  • Language: en
  • Pages: 518

Intelligent Integrated Systems

  • Type: Book
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  • Published: 2014-04-09
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  • Publisher: CRC Press

This book gives a state-of-the-art overview by internationally recognized researchers of the architectures of breakthrough devices required for future intelligent integrated systems. The first section highlights Advanced Silicon-Based CMOS Technologies. New device and functional architectures are reviewed in chapters on Tunneling Field-Effect Transistors and 3-D monolithic Integration, which the alternative materials could possibly use in the future. The way we can augment silicon technologies is illustrated by the co-integration of new types of devices, such as molecular and resistive spintronics-based memories and smart sensors, using nanoscale features co-integrated with silicon CMOS or above it.

Outlooking beyond Nanoelectronics and Nanosystems
  • Language: en
  • Pages: 419

Outlooking beyond Nanoelectronics and Nanosystems

  • Type: Book
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  • Published: 2024-08-09
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  • Publisher: CRC Press

The fifth volume in Jenny Stanford Series on Intelligent Nanosystems, entitled Outlooking Beyond Nanoelectronics and Nanosystems: Ultra Scaling, Pervasiveness, Sustainable Integration, and Biotic Cross-Inspiration, collects global reviews on (1) the historical cross-inspiration of technologies with nature, their evolution towards nanoelectronic and nanosystem components and their sustainability; (2) new materials, techniques, and pervasive applications out of mainstream; and (3) memristor foundation and new bioengineering developments. The covered topics include ultra scaling with its limits, alternatives and prospects, superior energy efficiency and pervasiveness to non-conventional applications; the evaluation of information technology sustainability, environmental impact and life cycles; prospective fabrication techniques, materials and components, their multifunctional extensions for characterization, fabrication, high-resolution quantum sensing, energy and information storage; life science–inspired memristors and edge of chaos; and bioengineering by nanostructured hybrid smart systems.

Electronic Devices Architectures for the NANO-CMOS Era
  • Language: en
  • Pages: 426

Electronic Devices Architectures for the NANO-CMOS Era

  • Type: Book
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  • Published: 2019-05-08
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  • Publisher: CRC Press

In this book, internationally recognized researchers give a state-of-the-art overview of the electronic device architectures required for the nano-CMOS era and beyond. Challenges relevant to the scaling of CMOS nanoelectronics are addressed through different core CMOS and memory device options in the first part of the book. The second part reviews new device concepts for nanoelectronics beyond CMOS. The book covers the fundamental limits of core CMOS, improving scaling by the introduction of new materials or processes, new architectures using SOI, multigates and multichannels, and quantum computing.

Integrated Nanodevice and Nanosystem Fabrication
  • Language: en
  • Pages: 288

Integrated Nanodevice and Nanosystem Fabrication

  • Type: Book
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  • Published: 2017-11-22
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  • Publisher: CRC Press

Since its invention, the integrated circuit has necessitated new process modules and numerous architectural changes to improve application performances, power consumption, and cost reduction. Silicon CMOS is now well established to offer the integration of several tens of billions of devices on a chip or in a system. At present, there are important challenges in the introduction of heterogeneous co-integration of materials and devices with the silicon CMOS 2D- and 3D-based platforms. New fabrication techniques allowing strong energy and variability efficiency come in as possible players to improve the various figures of merit of fabrication technology. Integrated Nanodevice and Nanosystem Fa...

Convergence of More Moore, More than Moore and Beyond Moore
  • Language: en
  • Pages: 306

Convergence of More Moore, More than Moore and Beyond Moore

  • Type: Book
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  • Published: 2021-02-15
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  • Publisher: CRC Press

The era of Sustainable and Energy Efficient Nanoelectronics and Nanosystems has come. The research and development on Scalable and 3D integrated Diversified functions together with new computing architectures is in full swing. Besides data processing, data storage, new sensing modes and communication capabilities need the revision of process architecture to enable the Heterogeneous co integration of add-on devices with CMOS: the new defined functions and paradigms open the way to Augmented Nanosystems. The choices for future breakthroughs will request the study of new devices, circuits and computing architectures and to take new unexplored paths including as well new materials and integration schmes. This book reviews in two sections, including seven chapters, essential modules to build Diversified Nanosystems based on Nanoelectronics and finally how they pave the way to the definition of Nanofunctions for Augmented Nanosystems.

Outlooking Beyond Nanoelectronics and Nanosystems
  • Language: en

Outlooking Beyond Nanoelectronics and Nanosystems

  • Type: Book
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  • Published: 2024-08-09
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  • Publisher: Unknown

The fifth volume in Jenny Stanford Series on Intelligent Nanosystems, collects global reviews on (1) the evolution of nanoelectronic and nanosystem components and their sustainability; (2) new materials, techniques, and pervasive applications out of mainstream; and (3) memristor foundation and new bioengineering developments.

CMOSET 2010 Final Program
  • Language: en
  • Pages: 18

CMOSET 2010 Final Program

Final program for the CMOSET 2010 conference.

Semiconductor Devices and Technologies for Future Ultra Low Power Electronics
  • Language: en
  • Pages: 303

Semiconductor Devices and Technologies for Future Ultra Low Power Electronics

  • Type: Book
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  • Published: 2021-12-10
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  • Publisher: CRC Press

This book covers the fundamentals and significance of 2-D materials and related semiconductor transistor technologies for the next-generation ultra low power applications. It provides comprehensive coverage on advanced low power transistors such as NCFETs, FinFETs, TFETs, and flexible transistors for future ultra low power applications owing to their better subthreshold swing and scalability. In addition, the text examines the use of field-effect transistors for biosensing applications and covers design considerations and compact modeling of advanced low power transistors such as NCFETs, FinFETs, and TFETs. TCAD simulation examples are also provided. FEATURES Discusses the latest updates in ...

Planar Double-Gate Transistor
  • Language: en
  • Pages: 215

Planar Double-Gate Transistor

Until the 1990s, the reduction of the minimum feature sizes used to fabricate in- grated circuits, called “scaling”, has highlighted serious advantages as integration density, speed, power consumption, functionality and cost. Direct consequence was the decrease of cost-per-function, so the electronic productivity has largely progressed in this period. Another usually cited trend is the evolution of the in- gration density as expressed by the well-know Moore’s Law in 1975: the number of devices per chip doubles every 2 years. This evolution has allowed improving signi?cantly the circuit complexity, offering a great computing power in the case of microprocessor, for example. However, since few years, signi?cant issues appeared such as the increase of the circuit heating, device complexity, variability and dif?culties to improve the integration density. These new trends generate an important growth in development and production costs. Though is it, since 40 years, the evolution of the microelectronics always f- lowed the Moore’s law and each dif?culty has found a solution.