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Industry Standard FDSOI Compact Model BSIM IMG for IC Design

Industry Standard FDSOI Compact Model BSIM IMG for IC Design
  • Author : Chenming Hu
  • Publsiher : Woodhead Publishing
  • Release : 21 May 2019
  • ISBN : 0081024029
  • Pages : 258 pages
  • Rating : 4/5 from 21 ratings
GET THIS BOOKIndustry Standard FDSOI Compact Model BSIM IMG for IC Design

Summary:
Industry Standard FDSOI Compact Model BSIM-IMG for IC Design helps readers develop an understanding of a FDSOI device and its simulation model. It covers the physics and operation of the FDSOI device, explaining not only how FDSOI enables further scaling, but also how it offers unique possibilities in circuits. Following chapters cover the industry standard compact model BSIM-IMG for FDSOI devices. The book addresses core surface-potential calculations and the plethora of real devices and potential effects. Written by the original developers of the industrial standard model, this book is an excellent reference for the new BSIM-IMG compact model for emerging FDSOI technology. The authors include chapters on step-by-step parameters extraction procedure for BSIM-IMG model and rigorous industry grade tests that the BSIM-IMG model has undergone. There is also a chapter on analog and RF circuit design in FDSOI technology using the BSIM-IMG model. Provides a detailed discussion of the BSIM-IMG model and the industry standard simulation model for FDSOI, all presented by the developers of the model Explains the complex operation of the FDSOI device and its use of two independent control inputs Addresses the parameter extraction challenges for those using this model


Industry Standard FDSOI Compact Model BSIM-IMG for IC Design

Industry Standard FDSOI Compact Model BSIM-IMG for IC Design
  • Author : Chenming Hu,Sourabh Khandelwal,Yogesh Singh Chauhan,Thomas Mckay,Josef Watts,Juan Pablo Duarte,Pragya Kushwaha,Harshit Agarwal
  • Publisher : Woodhead Publishing
  • Release : 21 May 2019
GET THIS BOOKIndustry Standard FDSOI Compact Model BSIM-IMG for IC Design

Industry Standard FDSOI Compact Model BSIM-IMG for IC Design helps readers develop an understanding of a FDSOI device and its simulation model. It covers the physics and operation of the FDSOI device, explaining not only how FDSOI enables further scaling, but also how it offers unique possibilities in circuits. Following chapters cover the industry standard compact model BSIM-IMG for FDSOI devices. The book addresses core surface-potential calculations and the plethora of real devices and potential effects. Written by the original

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Compact Modeling

Compact Modeling
  • Author : Gennady Gildenblat
  • Publisher : Springer Science & Business Media
  • Release : 22 June 2010
GET THIS BOOKCompact Modeling

Most of the recent texts on compact modeling are limited to a particular class of semiconductor devices and do not provide comprehensive coverage of the field. Having a single comprehensive reference for the compact models of most commonly used semiconductor devices (both active and passive) represents a significant advantage for the reader. Indeed, several kinds of semiconductor devices are routinely encountered in a single IC design or in a single modeling support group. Compact Modeling includes mostly the material that

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FinFET Modeling for IC Simulation and Design

FinFET Modeling for IC Simulation and Design
  • Author : Yogesh Singh Chauhan,Darsen Duane Lu,Vanugopalan Sriramkumar,Sourabh Khandelwal,Juan Pablo Duarte,Navid Payvadosi,Ai Niknejad,Chenming Hu
  • Publisher : Academic Press
  • Release : 17 March 2015
GET THIS BOOKFinFET Modeling for IC Simulation and Design

This book is the first to explain FinFET modeling for IC simulation and the industry standard – BSIM-CMG - describing the rush in demand for advancing the technology from planar to 3D architecture, as now enabled by the approved industry standard. The book gives a strong foundation on the physics and operation of FinFET, details aspects of the BSIM-CMG model such as surface potential, charge and current calculations, and includes a dedicated chapter on parameter extraction procedures, providing a step-by-step approach

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MOSFET Modeling & BSIM3 User’s Guide

MOSFET Modeling & BSIM3 User’s Guide
  • Author : Yuhua Cheng,Chenming Hu
  • Publisher : Springer Science & Business Media
  • Release : 08 May 2007
GET THIS BOOKMOSFET Modeling & BSIM3 User’s Guide

Circuit simulation is essential in integrated circuit design, and the accuracy of circuit simulation depends on the accuracy of the transistor model. BSIM3v3 (BSIM for Berkeley Short-channel IGFET Model) has been selected as the first MOSFET model for standardization by the Compact Model Council, a consortium of leading companies in semiconductor and design tools. In the next few years, many fabless and integrated semiconductor companies are expected to switch from dozens of other MOSFET models to BSIM3. This will

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Modern Semiconductor Devices for Integrated Circuits

Modern Semiconductor Devices for Integrated Circuits
  • Author : Chenming Hu
  • Publisher : Prentice Hall
  • Release : 28 June 2022
GET THIS BOOKModern Semiconductor Devices for Integrated Circuits

Modern Semiconductor Devices for Integrated Circuits, First Edition introduces readers to the world of modern semiconductor devices with an emphasis on integrated circuit applications. KEY TOPICS: Electrons and Holes in Semiconductors; Motion and Recombination of Electrons and Holes; Device Fabrication Technology; PN and Metal–Semiconductor Junctions; MOS Capacitor; MOS Transistor; MOSFETs in ICs—Scaling, Leakage, and Other Topics; Bipolar Transistor. MARKET: Written by an experienced teacher, researcher, and expert in industry practices, this succinct and forward-looking text is appropriate for

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NANO-CHIPS 2030

NANO-CHIPS 2030
  • Author : Boris Murmann,Bernd Hoefflinger
  • Publisher : Springer Nature
  • Release : 08 June 2020
GET THIS BOOKNANO-CHIPS 2030

In this book, a global team of experts from academia, research institutes and industry presents their vision on how new nano-chip architectures will enable the performance and energy efficiency needed for AI-driven advancements in autonomous mobility, healthcare, and man-machine cooperation. Recent reviews of the status quo, as presented in CHIPS 2020 (Springer), have prompted the need for an urgent reassessment of opportunities in nanoelectronic information technology. As such, this book explores the foundations of a new era in nanoelectronics that will

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BSIM4 and MOSFET Modeling for IC Simulation

BSIM4 and MOSFET Modeling for IC Simulation
  • Author : Weidong Liu,Chenming Hu
  • Publisher : World Scientific
  • Release : 28 June 2022
GET THIS BOOKBSIM4 and MOSFET Modeling for IC Simulation

This book presents the art of advanced MOSFET modeling for integrated circuit simulation and design. It provides the essential mathematical and physical analyses of all the electrical, mechanical and thermal effects in MOS transistors relevant to the operation of integrated circuits. Particular emphasis is placed on how the BSIM model evolved into the first ever industry standard SPICE MOSFET model for circuit simulation and CMOS technology development. The discussion covers the theory and methodology of how a MOSFET model, or

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Silicon-On-Insulator (SOI) Technology

Silicon-On-Insulator (SOI) Technology
  • Author : O. Kononchuk,B.-Y. Nguyen
  • Publisher : Elsevier
  • Release : 19 June 2014
GET THIS BOOKSilicon-On-Insulator (SOI) Technology

Silicon-On-Insulator (SOI) Technology: Manufacture and Applications covers SOI transistors and circuits, manufacture, and reliability. The book also looks at applications such as memory, power devices, and photonics. The book is divided into two parts; part one covers SOI materials and manufacture, while part two covers SOI devices and applications. The book begins with chapters that introduce techniques for manufacturing SOI wafer technology, the electrical properties of advanced SOI materials, and modeling short-channel SOI semiconductor transistors. Both partially depleted and fully

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Advanced SPICE Model for GaN HEMTs (ASM-HEMT)

Advanced SPICE Model for GaN HEMTs (ASM-HEMT)
  • Author : Sourabh Khandelwal
  • Publisher : Springer
  • Release : 18 December 2021
GET THIS BOOKAdvanced SPICE Model for GaN HEMTs (ASM-HEMT)

This book discusses in detail the Advanced SPICE Model for GaN HEMTs (ASM-HEMT), a new industry standard model for GaN-based power and RF circuit design. The author describes this new, standard model in detail, covering the different components of the ASM GaN model from fundamental derivations to the implementation in circuit simulation tools. The book also includes a detailed description of parameter extraction steps and model quality tests, which are critically important for effective use of this standard model in

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Junctionless Field-Effect Transistors

Junctionless Field-Effect Transistors
  • Author : Shubham Sahay,Mamidala Jagadesh Kumar
  • Publisher : John Wiley & Sons
  • Release : 28 January 2019
GET THIS BOOKJunctionless Field-Effect Transistors

A comprehensive one-volume reference on current JLFET methods, techniques, and research Advancements in transistor technology have driven the modern smart-device revolution—many cell phones, watches, home appliances, and numerous other devices of everyday usage now surpass the performance of the room-filling supercomputers of the past. Electronic devices are continuing to become more mobile, powerful, and versatile in this era of internet-of-things (IoT) due in large part to the scaling of metal-oxide semiconductor field-effect transistors (MOSFETs). Incessant scaling of the conventional

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Materials for Supercapacitor Applications

Materials for Supercapacitor Applications
  • Author : M. Aulice Scibioh,B. Viswanathan
  • Publisher : Elsevier
  • Release : 26 January 2020
GET THIS BOOKMaterials for Supercapacitor Applications

Materials for Supercapacitor Applications provides a snapshot of the present status of this rapidly growing field. It covers motivations, innovations, ongoing breakthroughs in research and development, innovative materials, impacts, and perspectives, as well as the challenges and technical barriers to identifying an ideal material for practical applications. This comprehensive reference by electro-chemists explains concepts in materials selection and their unique applications based on their electro-chemical properties. Chemists, chemical and electrical engineers, material scientists, and research scholars and students interested in

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FinFETs and Other Multi-Gate Transistors

FinFETs and Other Multi-Gate Transistors
  • Author : J.-P. Colinge
  • Publisher : Springer Science & Business Media
  • Release : 28 June 2022
GET THIS BOOKFinFETs and Other Multi-Gate Transistors

This book explains the physics and properties of multi-gate field-effect transistors (MuGFETs), how they are made and how circuit designers can use them to improve the performances of integrated circuits. It covers the emergence of quantum effects and novel electrical transport phenomena due to the reduced size of the devices. In addition, this book describes the evolution of the MOS transistor from classical structures to SOI (silicon-on-insulator) and then to MuGFETs. It includes descriptions of the technological challenges and options,

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Sway

Sway
  • Author : Pragya Agarwal
  • Publisher : Bloomsbury Publishing
  • Release : 02 April 2020
GET THIS BOOKSway

'Passionate and urgent.' Guardian, Book of the Week 'A must-read for all.' Stylist, best new books for 2020 'Cogently argued and intensely persuasive. Groundbreaking Work.' Waterstones, best new books of April 'Impressive and much-needed.' Financial Times, Best Business Books April to June 'Admirably detailed.' Prospect Magazine 'Practical, useful, readable and essential for the times we are living in.' Nikesh Shukla 'An eye-opening book that I hope will be widely read.' Angela Saini 'If you

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Millimeter-Wave Integrated Circuits

Millimeter-Wave Integrated Circuits
  • Author : Mladen Božanić,Saurabh Sinha
  • Publisher : Springer Nature
  • Release : 16 March 2020
GET THIS BOOKMillimeter-Wave Integrated Circuits

This peer-reviewed book explores the methodologies that are used for effective research, design and innovation in the vast field of millimeter-wave circuits, and describes how these have to be modified to fit the uniqueness of high-frequency nanoelectronics design. Each chapter focuses on a specific research challenge related to either small form factors or higher operating frequencies. The book first examines nanodevice scaling and the emerging electronic design automation tools that can be used in millimeter-wave research, as well as the

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