Published by Pearson (June 13, 2013) © 2013

Douglas Brooks
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    ISBN-13: 9780133415353

    PCB Currents: How They Flow, How They React ,1st edition

    Language: English


    The Plain-English Guide to Electronics and Current Flow for Every PCB Designer


    Today, PCB designers must deal with issues such as crosstalk and EMI-–issues that were once associated only with components. This requires electronics knowledge that many PCB designers never gain through formal training. In PCB Currents, renowned PCB designer Douglas Brooks teaches these essentials descriptively, in plain English, with as little reliance on mathematics as possible. Building on his widely praised seminars, Brooks explains what current is, how it flows, and how it reacts. He begins by reviewing the nature of current, and then explains current flow in basic circuits, discusses sources that supply and drive current, and addresses the unique problems associated with current on PCBs. Brooks concludes by thoroughly illuminating signal integrity issues caused by current flow. He offers practical design solutions for each common type of problem, as well as for complex challenges involving very high frequency harmonics and very short wavelengths.


    Coverage includes

    • Current: its fundamental nature, basic definitions, and key concepts

    • Five fundamental laws of current, including Kirchoff’s law and Ohm’s law

    • Basic circuit concepts: resistive circuits, reactive circuits, and impedance

    • Voltage and current sources: Where electrons come from and why they move

    • Current-related PCB issues: temperature, transmission lines, reflections, coupled currents, power distribution, skin effect, dielectric losses, and vias

    • Solutions for signal integrity issues caused by current flow, from on-board inductance and apparent resistance changes to more complex problems


    The text is written to be accessible and valuable for PCB designers at all levels of experience, whether they have engineering training or not.

     

    • Part I: Nature of Current
    • Chapter 1: Electrons and Charges
    • Chapter 2: Basic Current Concepts
    • Chapter 3: Basic Current Laws
    • Part II Current Flow In Basic Circuits
    • Chapter 4: Resistive Circuits
    • Chapter 5: Reactive Circuits: Capacitors and Capacitance
    • Chapter 6: Reactive Circuits: Inductors and Inductance
    • Chapter 7: Reactive Circuits: Resonance
    • Chapter 8: Impedance
    • Chapter 9: Real Components and Parasitics
    • Chapter 10: Time Constants and Filters
    • Chapter 11: Transformers
    • Chapter 12: Differential Current Flow
    • Chapter 13: Semiconductors
    • Part III: Voltage and Current Sources
    • Chapter 14: Voltage and Current Sources
    • Chapter 15: Where Do Currents Flow on Circuit Boards
    • Chapter 16: Current and Trace Temperatures
    • Chapter 17: Current Reflections
    • Chapter 18: Coupled Currents/EMI/Crosstalk
    • Chapter 19: Current Distribution and Bypass Capacitors
    • Chapter 20: Frequency-Variable Resistance and Lossy Transmission Lines
    • Chapter 21: Currents and Vias
    • Chapter 22: Current and Signal Integrity
    • Appendices:
    • Appendix A:Current flow and Maxwell
    • Appendix B: Eye diagrams
    • Appendix C: Death of the Circuit Board