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Functional Nanomaterials and Devices for Electronics, Sensors and Energy Harvesting
  • Language: en
  • Pages: 469

Functional Nanomaterials and Devices for Electronics, Sensors and Energy Harvesting

  • Type: Book
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  • Published: 2014-08-28
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  • Publisher: Springer

This book contains reviews of recent experimental and theoretical results related to nanomaterials. It focuses on novel functional materials and nanostructures in combination with silicon on insulator (SOI) devices, as well as on the physics of new devices and sensors, nanostructured materials and nano scaled device characterization. Special attention is paid to fabrication and properties of modern low-power, high-performance, miniaturized, portable sensors in a wide range of applications such as telecommunications, radiation control, biomedical instrumentation and chemical analysis. In this book, new approaches exploiting nanotechnologies (such as UTBB FD SOI, Fin FETs, nanowires, graphene or carbon nanotubes on dielectric) to pave a way between “More Moore” and “More than Moore” are considered, in order to create different kinds of sensors and devices which will consume less electrical power, be more portable and totally compatible with modern microelectronics products.

CMOSET 2014 Vol. 4: Optoelectronics and Microelectronics Track
  • Language: en
  • Pages: 179

CMOSET 2014 Vol. 4: Optoelectronics and Microelectronics Track

Presentation slides from the Plenary track at the 2014 CMOS Emerging Technologies Research conference in Grenoble, France.

CMOS Nanoelectronics
  • Language: en
  • Pages: 444

CMOS Nanoelectronics

  • Type: Book
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  • Published: 2012-09-19
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  • Publisher: CRC Press

This book covers one of the most important device architectures that have been widely researched to extend the transistor scaling: FinFET. Starting with theory, the book discusses the advantages and the integration challenges of this device architecture. It addresses in detail the topics such as high-density fin patterning, gate stack design, and source/drain engineering, which have been considered challenges for the integration of FinFETs. The book also addresses circuit-related aspects, including the impact of variability on SRAM design, ESD design, and high-T operation. It discusses a new device concept: the junctionless nanowire FET.

CMOSET 2014 Final Program
  • Language: en
  • Pages: 25

CMOSET 2014 Final Program

Final program for the CMOSET 2014 conference

CMOSET 2014: Abstracts
  • Language: en
  • Pages: 63

CMOSET 2014: Abstracts

A collection of abstracts for talks presented at the 2014 CMOS Emerging Technologies Research Symposium in Grenoble, France, July 6-8, 2014. The CMOS Emerging Technologies Research Symposium is a research and business event for those who want to discuss and find out about new exciting high tech opportunities. The conference provides researchers, companies and academic institutions with a platform for showcasing their technology, innovations, products and services. By bringing together people from all areas of the high tech arena, we create a stimulating common ground for exploring collaborations and encouraging discussions on emerging technologies.

Emerging Nanoelectronics
  • Language: en
  • Pages: 632

Emerging Nanoelectronics

  • Type: Book
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  • Published: 2005
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  • Publisher: Unknown

None

2020 Symposium on Design, Test, Integration and Packaging of MEMS and MOEMS (DTIP)
  • Language: en

2020 Symposium on Design, Test, Integration and Packaging of MEMS and MOEMS (DTIP)

  • Type: Book
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  • Published: 2020-06-15
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  • Publisher: Unknown

DTIP 2020 will be the 21th anniversary edition of the Symposium on Design, Test, Integration & Packaging of MEMS and MOEMS This unique single meeting event brings together participants interested in MEMS MOEMS processing and those interested in design tools and methods to facilitate the design of MEMS MOEMS All aspects including design, modeling, testing, micro machining, integration and packaging of structures, devices and systems are addressed in two main Conferences Due to the sanitary crisis, DTIP2020 is moving online

Strain Effect in Semiconductors
  • Language: en
  • Pages: 353

Strain Effect in Semiconductors

Strain Effect in Semiconductors: Theory and Device Applications presents the fundamentals and applications of strain in semiconductors and semiconductor devices that is relevant for strain-enhanced advanced CMOS technology and strain-based piezoresistive MEMS transducers. Discusses relevant applications of strain while also focusing on the fundamental physics pertaining to bulk, planar, and scaled nano-devices. Hence, this book is relevant for current strained Si logic technology as well as for understanding the physics and scaling for future strained nano-scale devices.

Silicon-on-Insulator Technology: Materials to VLSI
  • Language: en
  • Pages: 392

Silicon-on-Insulator Technology: Materials to VLSI

Silicon-on-Insulator Technology: Materials to VLSI, Third Edition, retraces the evolution of SOI materials, devices and circuits over a period of roughly twenty years. Twenty years of progress, research and development during which SOI material fabrication techniques have been born and abandoned, devices have been invented and forgotten, but, most importantly, twenty years during which SOI Technology has little by little proven it could outperform bulk silicon in every possible way. The turn of the century turned out to be a milestone for the semiconductor industry, as high-quality SOI wafers suddenly became available in large quantities. From then on, it took only a few years to witness the...

Nanoelectronic Mixed-Signal System Design
  • Language: en
  • Pages: 832

Nanoelectronic Mixed-Signal System Design

Covering both the classical and emerging nanoelectronic technologies being used in mixed-signal design, this book addresses digital, analog, and memory components. Winner of the Association of American Publishers' 2016 PROSE Award in the Textbook/Physical Sciences & Mathematics category. Nanoelectronic Mixed-Signal System Design offers professionals and students a unified perspective on the science, engineering, and technology behind nanoelectronics system design. Written by the director of the NanoSystem Design Laboratory at the University of North Texas, this comprehensive guide provides a large-scale picture of the design and manufacturing aspects of nanoelectronic-based systems. It featu...