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    Fundamentals Of Semiconductor Devices

    Betty Anderson|2017.02.07

    Fundamentals of Semiconductor Devices provides a realistic and practical treatment of modern semiconductor devices. A solid understanding of the physical processes responsible for the electronic properties of semiconductor materials and devices is emphasized. With this emphasis, the reader will appreciate the underlying physics behind the equations derived and their range of applicability. The author’s clear writing style, comprehensive coverage of the core material, and attention to current topics are key strengths of this book.

     

    Part 1 - Materials

    1) Electron Energy and States in Semiconductors

    2) Homogeneous Semiconductors

    3) Current Flow in Homogeneous Semiconductors

    4) Nonhomogeneous Semiconductors

    Supplement to Part 1

    Supplement 1A

    Supplement 1B

    Part 2 - Diodes

    5) Prototype pn Homojunctions

    6) Additional Considerations for Diodes

    Supplement to Part 2

    Part 3 - Field-Effect Transistors

    7) The MOSFET

    8) Additional Considerations for FETs

    Supplement to Part 3

    Part 4 - Bipolar Junction Transistors

    9) Bipolar Junction Devices: Statics

    10) Time-Dependent Analysis of BJTs

    Supplement to Part 4

    Part 5 - Optoelectronic Devices

    11) Optoelectronic Devices

    Appendix A - Constants

    Appendix B - List of Symbols

    Appendix C - Fabrication

    Appendix D - Density-of-States Function, Density-of-States Effective Mass, Conductivity Effective Mass

    Appendix E - Some Useful Integrals

    Appendix F - Useful Equations

    Appendix G - List of Suggested Readings

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