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Nanoscale Silicon Devices

practice of continuously scaling down the size of metal-oxide-semiconductor field-effect transistors (MOSFETs), has significantly improved the;

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Nanoscale Silicon Devices

practice of continuously scaling down the size of metal-oxide-semiconductor field-effect transistors (MOSFETs), has significantly improved the;

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Metal Oxide Varistors

Completely up-to-date, this is the first comprehensive monograph on metal oxide varistors with a focus on microstructure, conduction;

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Nanostructured Metal Oxides and Devices

also elaborates on the current status of nanostructured oxide materials and related devices. Two major aspects of metal oxide nanostructures;

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Nanostructured Metal Oxides and Devices

also elaborates on the current status of nanostructured oxide materials and related devices. Two major aspects of metal oxide nanostructures;

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3D TCAD Simulation for CMOS Nanoeletronic Devices

This book demonstrates how to use the Synopsys Sentaurus TCAD 2014 version for the design and simulation of 3D CMOS (complementary metal;

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3D TCAD Simulation for CMOS Nanoeletronic Devices

This book demonstrates how to use the Synopsys Sentaurus TCAD 2014 version for the design and simulation of 3D CMOS (complementary metal;

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Focus on Semiconductor Research

amorphous semiconductors; computational semiconductor physics; interface properties, including the physics and chemistry of heterojunctions, metal;

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Semiconductor Research Trends

amorphous semiconductors; computational semiconductor physics; interface properties, including the physics and chemistry of heterojunctions, metal;

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Trends in Semiconductor Research

amorphous semiconductors; computational semiconductor physics; interface properties, including the physics and chemistry of heterojunctions, metal;

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Frontal Semiconductor Research

amorphous semiconductors; computational semiconductor physics; interface properties, including the physics and chemistry of heterojunctions, metal;

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New Developments in Semiconductor Research

amorphous semiconductors; computational semiconductor physics; interface properties, including the physics and chemistry of heterojunctions, metal;

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Leading-Edge Semiconductor Research

amorphous semiconductors; computational semiconductor physics; interface properties, including the physics and chemistry of heterojunctions, metal;

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New Research on Semiconductors

amorphous semiconductors; computational semiconductor physics; interface properties, including the physics and chemistry of heterojunctions, metal;

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Nanoelectronic devices in InGaAs/InP

of nanoelectronics is emerging worldwide. Materials other than silicon and device principles other than complementary metal-oxide-semiconductor (CMOS) are;

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Oxide Electronics and Functional Properties of Transition Metal Oxides

MOSFETs (Metal-Oxide-Semiconductor Field-Effect Transistors) for a long time have been the workhorse of the modern electronics industry;

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Oxide Electronics

focuses on the physical and functional properties of metal oxides in each chapter. Each of the sixteen chapters featured within the book begins;

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MOSFETs

The metal-oxide-semiconductor field-effect transistor (MOSFET, MOS-FET, or MOS FET) is a device used to amplify or switch electronic;

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Field Effect Transistors Comprehensive

planar Metal Oxide Semiconductor Field Effect Transistors (MOSFETs). Chapter 4 describes scaling-driving technological variations and novel;

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Latchup

-semiconductor field-effect transistor (MOSFET) scaling, and high-level system-on-chip (SOC) integration. Clear methodologies that grant protection from;

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An Introduction to Contact Resistance

1930s even earlier than the study on Metal-Oxide-Semiconductor Field-Effect Transistor (MOSFET). The new knowledge is on material and;

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Solution Processed Metal Oxide Thin Films for Electronic Applications

, surface functionalization aspects, and presents a comprehensive accounting on the electronic applications of solution processed metal oxide films;

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Functional Metal Oxide Nanostructures

Metal oxides and particularly their nanostructures have emerged as animportant class of materials with a rich spectrum of properties and;

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Metal Oxide Nanostructures as Gas Sensing Devices

Metal Oxide Nanostructures as Gas Sensing Devices explores the development of an integrated micro gas sensor that is based on advanced;

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Metal Oxide Nanostructures as Gas Sensing Devices

Metal Oxide Nanostructures as Gas Sensing Devices explores the development of an integrated micro gas sensor that is based on advanced;

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