High Speed Semiconductor Physics. Theoretical Approaches and Device Physics

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Author :
Publisher : Anchor Academic Publishing (aap_verlag)
ISBN 13 : 3954899329
Total Pages : 390 pages
Book Rating : 4.9/5 (548 download)

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Book Synopsis High Speed Semiconductor Physics. Theoretical Approaches and Device Physics by : Cliff Orori Mosiori

Download or read book High Speed Semiconductor Physics. Theoretical Approaches and Device Physics written by Cliff Orori Mosiori and published by Anchor Academic Publishing (aap_verlag). This book was released on 2015-05-26 with total page 390 pages. Available in PDF, EPUB and Kindle. Book excerpt: Solid state physics is a fascinating sub-genre of condensed matter physics - though some graduate students consider it a very boring and tedious subject area in Physics and others even call it a “squalid state”. Topics covered in this book are built on standard solid state physics references available in most online libraries or in other books on solid state physics. The complexity of high speed semiconductor physics and related devices arose from condensed solid state matter. The content covered in this book gives a deep coverage on some topics or sections that may be covered only superficially in other literature. Therefore, these topics are likely to differ a great deal from what is deemed important elsewhere in other books or available literature. There are many extremely good books on solid-state physics and condensed matter physics but very few of these books are restricted to high speed semiconductor physic though. Chapter one covers the general semiconductor qualities that make high speed semiconductor devices effect and includes the theory of crystals, diffusion and ist mechanisms, while chapter two covers solid state materials, material processing for high speed semiconductor devices and an introduction to quantum theory for materials in relation to density of states of the radiation for a black body and ist radiation properties. Chapter three discuss high speed semiconductor energy band theory, energy bands in general solid semiconductor materials, the Debye model, the Einstein model the Debye model and semiconductor transport carriers in 3D semiconductors while chapter four discuss effect of external force on current flow based on the concept of holes valence band, and lattice scattering in high speed devices. Chapter five briefly describes solid state thermoelectric fundamentals, thermoelectric material and thermoelectric theory of solids in lattice and phonons while chapter six scattering in high field effect in semiconductors in inter-valley electron scattering and the associated Fermi Dirac statistics and Maxwell-Boltzmann approximation on their carrier concentration variation with energy in extrinsic doping chapter seven covers p-n junction diodes, varactor diode, pin diode Schottky diode and their transient response of diode in multi-valley semiconductors. Chapter eight discusses high speed metal semiconductor field effect transistors.

Introductory Semiconductor Device Physics for Chip Design and Manufacturing

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Author :
Publisher : Wiley
ISBN 13 : 9781119012016
Total Pages : 848 pages
Book Rating : 4.0/5 (12 download)

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Book Synopsis Introductory Semiconductor Device Physics for Chip Design and Manufacturing by : Robert W. Keyes

Download or read book Introductory Semiconductor Device Physics for Chip Design and Manufacturing written by Robert W. Keyes and published by Wiley. This book was released on 2017-12-26 with total page 848 pages. Available in PDF, EPUB and Kindle. Book excerpt: An introduction to the fundamentals of semiconductor physics and engineering This book discusses fundamental semiconductor physics of devices and on-chip interconnections for physicists and links these concepts to engineering applications and case studies of computer chips. The book is organized in three parts. The first part deals with the representation of information and computation. The second part covers semiconductor device physics within the context of computation. The third part reviews chip design and semiconductor fabrication. The book includes relevant equations, with the aim of closing the gap in the existing literature with actual case studies and engineering applications. Examples are provided in each chapter to illustrate physical and electrical concepts through the use of high-performance silicon technologies. Introductory Semiconductor Device Physics for Chip Design and Manufacturing: Provides physical descriptions and illustrations with data visualizations to facilitate intuitive understanding of semiconductor physics, devices and on-chip interconnections Blends theoretical physics treatment with engineering applications and real case studies for manufactured chips Presents complementary-metal-oxide-semiconductor (CMOS) transistors in high-performance server microprocessors with static CMOS combinational digital circuit design examples Offers a rich array of student problem sets, mid-term exams, and final exams with a glossary at the end of the book M. Y. Lanzerotti, PhD, has over 15 years of engineering experience in designing integrated circuits for high-performance server chips and aerospace applications. Dr. Lanzerotti is Assistant Professor of Physics at Augsburg College and previously held positions as Associate Professor of Computer Engineering at Air Force Institute of Technology, Instructor at Harvard Summer School, Visiting Faculty Fellow at Pacific Lutheran University, Visiting Faculty Fellow at Sapienza University of Rome, and Research Staff Member at IBM Thomas J. Watson Research Center. This book is inspired from Dr. Lanzerotti’s course, “Introductory Semiconductor Device Physics for Chip Design and Manufacturing,” at Harvard Summer School. Dr. Lanzerotti holds physics degrees from Harvard College, the University of Cambridge, and Cornell University. Dr. Lanzerotti holds four U.S. patents, was awarded an IEEE Technical Innovation Award in 2007 and an IBM Outstanding Research Contribution Award in 1998, and was Editor-in-Chief of the IEEE Solid-State Circuits Society Magazine.

Introductory Semiconductor Device Physics for Chip Design and Manufacturing

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Author :
Publisher : Wiley
ISBN 13 : 9780470624548
Total Pages : 0 pages
Book Rating : 4.6/5 (245 download)

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Book Synopsis Introductory Semiconductor Device Physics for Chip Design and Manufacturing by : Robert W. Keyes

Download or read book Introductory Semiconductor Device Physics for Chip Design and Manufacturing written by Robert W. Keyes and published by Wiley. This book was released on 2018-01-03 with total page 0 pages. Available in PDF, EPUB and Kindle. Book excerpt: An introduction to the fundamentals of semiconductor physics and engineering This book discusses fundamental semiconductor physics of devices and on-chip interconnections for physicists and links these concepts to engineering applications and case studies of computer chips. The book is organized in three parts. The first part deals with the representation of information and computation. The second part covers semiconductor device physics within the context of computation. The third part reviews chip design and semiconductor fabrication. The book includes relevant equations, with the aim of closing the gap in the existing literature with actual case studies and engineering applications. Examples are provided in each chapter to illustrate physical and electrical concepts through the use of high-performance silicon technologies. Introductory Semiconductor Device Physics for Chip Design and Manufacturing: Provides physical descriptions and illustrations with data visualizations to facilitate intuitive understanding of semiconductor physics, devices and on-chip interconnections Blends theoretical physics treatment with engineering applications and real case studies for manufactured chips Presents complementary-metal-oxide-semiconductor (CMOS) transistors in high-performance server microprocessors with static CMOS combinational digital circuit design examples Offers a rich array of student problem sets, mid-term exams, and final exams with a glossary at the end of the book M. Y. Lanzerotti, PhD, has over 15 years of engineering experience in designing integrated circuits for high-performance server chips and aerospace applications. Dr. Lanzerotti is Assistant Professor of Physics at Augsburg College and previously held positions as Associate Professor of Computer Engineering at Air Force Institute of Technology, Instructor at Harvard Summer School, Visiting Faculty Fellow at Pacific Lutheran University, Visiting Faculty Fellow at Sapienza University of Rome, and Research Staff Member at IBM Thomas J. Watson Research Center. This book is inspired from Dr. Lanzerotti’s course, “Introductory Semiconductor Device Physics for Chip Design and Manufacturing,” at Harvard Summer School. Dr. Lanzerotti holds physics degrees from Harvard College, the University of Cambridge, and Cornell University. Dr. Lanzerotti holds four U.S. patents, was awarded an IEEE Technical Innovation Award in 2007 and an IBM Outstanding Research Contribution Award in 1998, and was Editor-in-Chief of the IEEE Solid-State Circuits Society Magazine.

Introductory Semiconductor Device Physics for Chip Design and Manufacturing

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Author :
Publisher : Springer
ISBN 13 : 9783030436421
Total Pages : 855 pages
Book Rating : 4.4/5 (364 download)

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Book Synopsis Introductory Semiconductor Device Physics for Chip Design and Manufacturing by : Mary Lanzerotti

Download or read book Introductory Semiconductor Device Physics for Chip Design and Manufacturing written by Mary Lanzerotti and published by Springer. This book was released on 2020-08-15 with total page 855 pages. Available in PDF, EPUB and Kindle. Book excerpt: This textbook book discusses fundamental semiconductor physics of devices and on-chip interconnections and links these concepts to engineering applications and case studies of computer chips. The book is organized in three parts. The first part deals with the representation of information and computation. The second part covers semiconductor device physics within the context of computation. The third part reviews chip design and semiconductor fabrication. The book includes relevant equations, with the aim of closing the gap in the existing literature with actual case studies and engineering applications. Examples are provided in each chapter to illustrate physical and electrical concepts through the use of high-performance silicon technologies.

Semiconductor Device Physics and Design

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Author :
Publisher : Springer Science & Business Media
ISBN 13 : 1402064802
Total Pages : 583 pages
Book Rating : 4.4/5 (2 download)

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Book Synopsis Semiconductor Device Physics and Design by : Umesh Mishra

Download or read book Semiconductor Device Physics and Design written by Umesh Mishra and published by Springer Science & Business Media. This book was released on 2007-11-28 with total page 583 pages. Available in PDF, EPUB and Kindle. Book excerpt: Semiconductor Device Physics and Design teaches readers how to approach device design from the point of view of someone who wants to improve devices and can see the opportunity and challenges. It begins with coverage of basic physics concepts, including the physics behind polar heterostructures and strained heterostructures. The book then details the important devices ranging from p-n diodes to bipolar and field effect devices. By relating device design to device performance and then relating device needs to system use the student can see how device design works in the real world.

Modern Semiconductor Physics and Device Applications

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Author :
Publisher : CRC Press
ISBN 13 : 1000462293
Total Pages : 397 pages
Book Rating : 4.0/5 (4 download)

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Book Synopsis Modern Semiconductor Physics and Device Applications by : Vitalii K Dugaev

Download or read book Modern Semiconductor Physics and Device Applications written by Vitalii K Dugaev and published by CRC Press. This book was released on 2021-11-15 with total page 397 pages. Available in PDF, EPUB and Kindle. Book excerpt: This textbook provides a theoretical background for contemporary trends in solid-state theory and semiconductor device physics. It discusses advanced methods of quantum mechanics and field theory and is therefore primarily intended for graduate students in theoretical and experimental physics who have already studied electrodynamics, statistical physics, and quantum mechanics. It also relates solid-state physics fundamentals to semiconductor device applications and includes auxiliary results from mathematics and quantum mechanics, making the book useful also for graduate students in electrical engineering and material science. Key Features: Explores concepts common in textbooks on semiconductors, in addition to topics not included in similar books currently available on the market, such as the topology of Hilbert space in crystals Contains the latest research and developments in the field Written in an accessible yet rigorous manner

Modern Semiconductor Physics and Device Applications

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Author :
Publisher : CRC Press
ISBN 13 : 1000462331
Total Pages : 373 pages
Book Rating : 4.0/5 (4 download)

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Book Synopsis Modern Semiconductor Physics and Device Applications by : Vitalii K Dugaev

Download or read book Modern Semiconductor Physics and Device Applications written by Vitalii K Dugaev and published by CRC Press. This book was released on 2021-11-22 with total page 373 pages. Available in PDF, EPUB and Kindle. Book excerpt: This textbook provides a theoretical background for contemporary trends in solid-state theory and semiconductor device physics. It discusses advanced methods of quantum mechanics and field theory and is therefore primarily intended for graduate students in theoretical and experimental physics who have already studied electrodynamics, statistical physics, and quantum mechanics. It also relates solid-state physics fundamentals to semiconductor device applications and includes auxiliary results from mathematics and quantum mechanics, making the book useful also for graduate students in electrical engineering and material science. Key Features: Explores concepts common in textbooks on semiconductors, in addition to topics not included in similar books currently available on the market, such as the topology of Hilbert space in crystals Contains the latest research and developments in the field Written in an accessible yet rigorous manner

Physics of Semiconductor Devices

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Publisher : Springer Science & Business Media
ISBN 13 : 0306476223
Total Pages : 442 pages
Book Rating : 4.3/5 (64 download)

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Book Synopsis Physics of Semiconductor Devices by : J.-P. Colinge

Download or read book Physics of Semiconductor Devices written by J.-P. Colinge and published by Springer Science & Business Media. This book was released on 2007-05-08 with total page 442 pages. Available in PDF, EPUB and Kindle. Book excerpt: Physics of Semiconductor Devices covers both basic classic topics such as energy band theory and the gradual-channel model of the MOSFET as well as advanced concepts and devices such as MOSFET short-channel effects, low-dimensional devices and single-electron transistors. Concepts are introduced to the reader in a simple way, often using comparisons to everyday-life experiences such as simple fluid mechanics. They are then explained in depth and mathematical developments are fully described. Physics of Semiconductor Devices contains a list of problems that can be used as homework assignments or can be solved in class to exemplify the theory. Many of these problems make use of Matlab and are aimed at illustrating theoretical concepts in a graphical manner.

Selected Semiconductor Research

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Author :
Publisher : World Scientific
ISBN 13 : 1848164068
Total Pages : 529 pages
Book Rating : 4.8/5 (481 download)

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Book Synopsis Selected Semiconductor Research by : Ming-Fu Li

Download or read book Selected Semiconductor Research written by Ming-Fu Li and published by World Scientific. This book was released on 2011 with total page 529 pages. Available in PDF, EPUB and Kindle. Book excerpt: This book on solid state physics has been written with an emphasis on recent developments in quantum many-body physics approaches. It starts by covering the classical theory of solids and electrons and describes how this classical model has failed. The authors then present the quantum mechanical model of electrons in a lattice and they also discuss the theory of conductivity. Extensive reviews on the topic are provided in a compact manner so that any non-specialist can follow from the beginning.The authors cover the system of magnetism in a similar way and various problems in magnetic materials are discussed. The book also discusses the Ising chain, the Heisenberg model, the Kondo effect and superconductivity, amongst other relevant topics.In the final chapter, the authors present some works related to contemporary research topics, such as quantum entanglement in many-body systems and quantum simulations. They also include a short review of some of the possible applications of solid state quantum information in biological systems.

Fundamentals of Semiconductor Physics and Devices

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Publisher : World Scientific
ISBN 13 : 9810223870
Total Pages : 786 pages
Book Rating : 4.8/5 (12 download)

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Book Synopsis Fundamentals of Semiconductor Physics and Devices by : Rolf Enderlein

Download or read book Fundamentals of Semiconductor Physics and Devices written by Rolf Enderlein and published by World Scientific. This book was released on 1997 with total page 786 pages. Available in PDF, EPUB and Kindle. Book excerpt: This book is an introduction to the principles of semiconductor physics, linking its scientific aspects with practical applications. It is addressed to both readers who wish to learn semiconductor physics and those seeking to understand semiconductor devices. It is particularly well suited for those who want to do both.Intended as a teaching vehicle, the book is written in an expository manner aimed at conveying a deep and coherent understanding of the field. It provides clear and complete derivations of the basic concepts of modern semiconductor physics. The mathematical arguments and physical interpretations are well balanced: they are presented in a measure designed to ensure the integrity of the delivery of the subject matter in a fully comprehensible form. Experimental procedures and measured data are included as well. The reader is generally not expected to have background in quantum mechanics and solid state physics beyond the most elementary level. Nonetheless, the presentation of this book is planned to bring the student to the point of research/design capability as a scientist or engineer. Moreover, it is sufficiently well endowed with detailed knowledge of the field, including recent developments bearing on submicron semiconductor structures, that the book also constitutes a valuable reference resource.In Chapter 1, basic features of the atomic structures, chemical nature and the macroscopic properties of semiconductors are discussed. The band structure of ideal semiconductor crystals is treated in Chapter 2, together with the underlying one-electron picture and other fundamental concepts. Chapter 2 also provides the requisite background of the tight binding method and the k.p-method, which are later used extensively. The electron states of shallow and deep centers, clean semiconductor surfaces, quantum wells and superlattices, as well as the effects of external electric and magnetic fields, are treated in Chapter 3. The one- or multi-band effective mass theory is used wherever this method is applicable. A summary of group theory for application in semiconductor physics is given in an Appendix. Chapter 4 deals with the statistical distribution of charge carriers over the band and localized states in thermodynamic equilibrium. Non-equilibrium processes in semiconductors are treated in Chapter 5. The physics of semiconductor junctions (pn-, hetero-, metal-, and insulator-) is developed in Chapter 6 under conditions of thermodynamic equilibrium, and in Chapter 7 under non-equilibrium conditions. On this basis, the most important electronic and opto-electronic semiconductor devices are treated, among them uni- and bi-polar transistors, photodetectors, solar cells, and injection lasers. A summary of group theory for applications in semiconductors is given in an Appendix.

High Speed Semiconductor Devices

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Author :
Publisher : Springer Science & Business Media
ISBN 13 : 9780412562204
Total Pages : 276 pages
Book Rating : 4.5/5 (622 download)

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Book Synopsis High Speed Semiconductor Devices by : H. Beneking

Download or read book High Speed Semiconductor Devices written by H. Beneking and published by Springer Science & Business Media. This book was released on 1994-09-30 with total page 276 pages. Available in PDF, EPUB and Kindle. Book excerpt: High Speed Semiconductor Devices is the first textbook to focus on this topic. It gives a comprehensive introduction suitable for advanced students of electrical engineering and physics. It is practically oriented considering both physical limits and technical feasibility. It is illustrated with extensive exercises, full solutions and worked examples that give practical insight to and extend the treatment of the text.

Heterostructures and Quantum Devices

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Publisher : Elsevier
ISBN 13 : 1483295176
Total Pages : 465 pages
Book Rating : 4.4/5 (832 download)

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Book Synopsis Heterostructures and Quantum Devices by : Norman G. Einspruch

Download or read book Heterostructures and Quantum Devices written by Norman G. Einspruch and published by Elsevier. This book was released on 2014-06-28 with total page 465 pages. Available in PDF, EPUB and Kindle. Book excerpt: Heterostructure and quantum-mechanical devices promise significant improvement in the performance of electronic and optoelectronic integrated circuits (ICs). Though these devices are the subject of a vigorous research effort, the current literature is often either highly technical or narrowly focused. This book presents heterostructure and quantum devices to the nonspecialist, especially electrical engineers working with high-performance semiconductor devices. It focuses on a broad base of technical applications using semiconductor physics theory to develop the next generation of electrical engineering devices. The text covers existing technologies and future possibilities within a common framework of high-performance devices, which will have a more immediate impact on advanced semiconductor physics-particularly quantum effects-and will thus form the basis for longer-term technology development.

Semiconductor Physics and Devices

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Author :
Publisher : McGraw-Hill Science, Engineering & Mathematics
ISBN 13 : 9780256242140
Total Pages : 0 pages
Book Rating : 4.2/5 (421 download)

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Book Synopsis Semiconductor Physics and Devices by : Donald A. Neamen

Download or read book Semiconductor Physics and Devices written by Donald A. Neamen and published by McGraw-Hill Science, Engineering & Mathematics. This book was released on 1996-12-31 with total page 0 pages. Available in PDF, EPUB and Kindle. Book excerpt: Semiconductor Physics and Devices: Basic Principles, Second Edition, provides the fundamentals necessary to understand semiconductor device characteristics, operations, and limitations. Neamen's book reveals the fundamentals by establishing for the student a sound understanding of quantum mechanics and an introduction to the quantum theory of solids. This background permits the student to develop a deeper understanding of how essential physics, semiconductor material physics, and semiconductor device physics interrelate. Espousing neither the intuitive approach of many textbooks, nor the highly technical characteristics of handbooks, Semiconductor Physics and Devices: Basic Principles provides students with a resource that is engaging and understandable and instructors with a textbook that offers teachability without sacrificing technical exactitude.

Semiconductor Devices Explained

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Author :
Publisher : John Wiley & Sons
ISBN 13 :
Total Pages : 360 pages
Book Rating : 4.:/5 (318 download)

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Book Synopsis Semiconductor Devices Explained by : Ton J. Mouthaan

Download or read book Semiconductor Devices Explained written by Ton J. Mouthaan and published by John Wiley & Sons. This book was released on 1999 with total page 360 pages. Available in PDF, EPUB and Kindle. Book excerpt: Offers an innovative and accessible new approach to the teaching of the fundamentals of semiconductor components by exploiting simulation to explain the mechanisms behind current in semiconductor structures. Simulation is a popular tool used by engineers and scientists in device and process research and the accompanying two dimensional process and device simulation software 'MicroTec', enables students to make their own devices and allows the recreation of real performance under varying parameters. There is also an accompanying ftp site containing ICECREAM software (Integrated Circuits and Electronics group Computerized Remedial Education And Mastering) which improves understanding of the physics involved and covers semiconductor physics, junction diodes, silicon bipolar and MOS transistors and photonic devices like LEDs and lasers. Features include: * MicroTec diskette containing a two-dimensional process and device simulator on which the many simulation exercises mentioned in the text can be performed thereby facilitating learning through experimentation * Computer aided education software (accessible vita ftp) featuring question and answer games, which enables students to enhance their understanding of the physics involved and allows lecturers to set assignments * Broad coverage spanning the common devices: pn junctions, metal semiconductor junctions, photocells, lasers, bipolar transistors, and MOS transistors * Discussion of fundamental concepts and technological principles offering the student a valuable grounding in semiconductor physics * Examination of the implications of recent research on small dimensions, reliability problems and breakdown mechanisms. Semiconductor Devices Explained offers a comprehensive new approach to teaching the fundamentals of semiconductor components based on the use of the accompanying process and device simulation software. Simulation is a popular tool used by engineers and scientists in device and process research. It supports the understanding of basic phenomena by linking the theory to hands on applications and real world problems with semiconductor devices. Throughout the text students are encouraged to augment their understanding by undertaking simulations and creating their own devices. The ICECREAM programme (Integrated Circuits and Electronics group Computerized Remedial Education And Mastering) question and answer game leads students through the concepts of common devices and makes learning fun. There is also a self-test element in which a data bank generates questions on the fundamentals of semiconductor junctions enabling students to assess their progress. Larger projects suitable for use as examination assignments are also incorporated. The test package is freely available to lecturers from the author on request. The remedial component of ICECREAM is available from the Wiley ftp site. MicroTec comes on a disk in the back of the book.

Introductory Semiconductor Device Physics

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Author :
Publisher : CRC Press
ISBN 13 : 1482262983
Total Pages : 301 pages
Book Rating : 4.4/5 (822 download)

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Book Synopsis Introductory Semiconductor Device Physics by : Greg Parker

Download or read book Introductory Semiconductor Device Physics written by Greg Parker and published by CRC Press. This book was released on 2004-09-30 with total page 301 pages. Available in PDF, EPUB and Kindle. Book excerpt: Introduction to Semiconductor Device Physics is a popular and established text that offers a thorough introduction to the underlying physics of semiconductor devices. It begins with a review of basic solid state physics, then goes on to describe the properties of semiconductors including energy bands, the concept of effective mass, carrier concentr

Semiconductor Devices

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Author :
Publisher : John Wiley & Sons
ISBN 13 : 0470537949
Total Pages : 0 pages
Book Rating : 4.4/5 (75 download)

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Book Synopsis Semiconductor Devices by : Simon M. Sze

Download or read book Semiconductor Devices written by Simon M. Sze and published by John Wiley & Sons. This book was released on 2012-05-15 with total page 0 pages. Available in PDF, EPUB and Kindle. Book excerpt: Semiconductor Devices: Physics and Technology, Third Edition is an introduction to the physical principles of modern semiconductor devices and their advanced fabrication technology. It begins with a brief historical review of major devices and key technologies and is then divided into three sections: semiconductor material properties, physics of semiconductor devices and processing technology to fabricate these semiconductor devices.

Semiconductor Physics and Devices

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Author :
Publisher :
ISBN 13 : 9780071198622
Total Pages : 746 pages
Book Rating : 4.1/5 (986 download)

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Book Synopsis Semiconductor Physics and Devices by : Donald A. Neamen

Download or read book Semiconductor Physics and Devices written by Donald A. Neamen and published by . This book was released on 2003 with total page 746 pages. Available in PDF, EPUB and Kindle. Book excerpt: This text aims to provide the fundamentals necessary to understand semiconductor device characteristics, operations and limitations. Quantum mechanics and quantum theory are explored, and this background helps give students a deeper understanding of the essentials of physics and semiconductors.