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    Digital Circuit Boards

    Mach 1 GHz

    AvRalph Morrison

    Inbunden, Engelska, 2012

    1 017 kr

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    Beskrivning

    A unique, practical approach to the design of high-speed digital circuit boardsThe demand for ever-faster digital circuit designs is beginning to render the circuit theory used by engineers ineffective. Digital Circuit Boards presents an alternative to the circuit theory approach, emphasizing energy flow rather than just signal interconnection to explain logic circuit behavior.The book shows how treating design in terms of transmission lines will ensure that the logic will function, addressing both storage and movement of electrical energy on these lines. It covers transmission lines in all forms to illustrate how trace geometry defines where the signals can travel, then goes on to examine transmission lines as energy sources, the true nature of decoupling, types of resonances, ground bounce, cross talk, and more.Providing designers with the tools they need to lay out digital circuit boards for fast logic and to get designs working the first time around, Digital Circuit Boards: Reviews in simple terms the basic physics necessary to understand fast logic design Debunks the idea that electrical conductors carry power and signals, showing that signal travels in the spaces, not the traces, of circuit boards Explains logic circuit behavior through real-time analysis involving the fields and waves that carry signal and energy Provides new information on how ground/power planes work Outlines a software program for solving energy flow in complex networks

    Produktinformation

    • Utgivningsdatum:2012-06-08
    • Mått:160 x 244 x 17 mm
    • Vikt:431 g
    • Format:Inbunden
    • Språk:Engelska
    • Antal sidor:184
    • Förlag:John Wiley & Sons Inc
    • ISBN:9781118235324

    Utforska kategorier

    • Elektronik och kommunikationer inom Naturvetenskap och teknik

    Mer om författaren

    Ralph Morrison is a consultant and lecturer in the area of interference control and electronics. He has thirty years of design and consulting experience, was president of Instrum for more than a decade, and has authored Noise and Other Interfering Signals, Grounding and Shielding in Facilities, and Solving Interference Problems in Electronics, all from Wiley.

    Innehållsförteckning

    • Preface xi1 BASICS 11.1 Introduction 11.2 Why the Field Approach is Important 31.3 The Role of Circuit Analysis 41.4 Getting Started 51.5 Voltage and the Electric Field 61.6 Current 71.7 Capacitance 81.8 Mutual and Self-Capacitance 101.9 E Fields Inside Conductors 111.10 The D Field 121.11 Energy Storage in a Capacitor 121.12 The Energy Stored in an Electric Field 131.13 The Magnetic Field 131.14 Rise Time/Fall Time 151.15 Moving Energy into Components 151.16 Faraday's Law 161.17 Self- and Mutual Inductance 161.18 Poynting’s Vector 171.19 Fields at DC 182 TRANSMISSION LINES 222.1 Introduction 222.2 Some Common Assumptions 242.3 Transmission Line Types 252.4 Characteristic Impedance 272.5 Wave Velocity 292.6 Step Waves on a Properly Terminated Line 302.7 The Open Circuited Transmission Line 312.8 The Short Circuited Transmission Line 332.9 Waves that Transition between Lines with Different Characteristic Impedances 352.10 Nonlinear Terminations 382.11 Discharging a Charged Open Transmission Line 382.12 Ground/Power Planes 402.13 The Ground and Power Planes as a Tapered Transmission Line 412.14 Pulling Energy from a Tapered Transmission Line (TTL) 432.15 The Energy Flow Through Cascaded (Series) Transmission Lines 452.16 An Analysis of Cascaded Transmission Lines 482.17 Series (Source) Terminating a Transmission Line 492.18 Parallel (Shunt) Terminations 502.19 Stubs 522.20 Decoupling Capacitor as a Stub 542.21 Transmission Line Networks 542.22 The Network Program 552.23 Measuring Characteristic Impedance 563 RADIATION AND INTERFERENCE COUPLING 613.1 Introduction 613.2 The Nature of Fields in Logic Structures 623.3 Classical Radiation 623.4 Radiation from Step Function Waves 633.5 Common Mode and Normal Mode 663.6 The Radiation Pattern along a Transmission Line 703.7 Notes on Radiation 703.8 The Cross Coupling Process (Cross Talk) 713.9 Magnetic Component of Cross Coupling 723.10 Capacitive Component of Cross Coupling 743.11 Cross Coupling Continued 753.12 Cross Coupling between Parallel Transmission Lines of Equal Length 763.13 Radiation from Board Edges 783.14 Ground Bounce 793.15 Susceptibility 804 ENERGY MANAGEMENT 824.1 Introduction 824.2 The Power Time Constant 844.3 Capacitors 864.4 The Four-Terminal Capacitor or DTL 874.5 Types of DTLs 894.6 Circuit Board Resonances 904.7 Decoupling Capacitors 904.8 The Board Decoupling Problem 924.9 The IC Decoupling Problem 934.10 Comments on Energy Management 944.11 Skin Effect 954.12 Dielectric Losses 974.13 Split Ground/Power Planes 974.14 The Analog/digital Interface Problem 984.15 Power Dissipation 994.16 Traces through Conducting Planes 1004.17 Trace Geometries that Reduce Termination Resistor Counts 1014.18 The Control of Connecting Spaces 1014.19 Another way to look at Energy Flow in Transmission Lines 1035 SIGNAL INTEGRITY ENGINEERING 1065.1 Introduction 1065.2 The Envelope of Permitted Logic Levels 1075.3 Net Lists 1085.4 Noise Budgets 1085.5 Logic Level Variation 1095.6 Logic and Voltage Drops 1105.7 Measuring the Performance of a Net 1115.8 The Decoupling Capacitor 1125.9 Cross Coupling Problems 1145.10 Characteristic Impedance and the Error Budget 1145.11 Resistor Networks 1165.12 Ferrite Beads 1175.13 Grounding in Facilities: A Brief Review 1185.14 Grounding as Applied to Electronic Hardware 1205.15 Internal Grounding of a Digital Circuit Board 1235.16 Power Line Interference 1245.17 Electrostatic Discharge 1256 CIRCUIT BOARDS 1306.1 Introduction 1306.2 More about Characteristic Impedance 1316.3 Microstrip 1336.4 Centered Stripline 1356.5 Embedded Microstrip 1366.6 Asymmetric Stripline 1376.7 Two-Layer Boards 1406.8 Four-Layer Circuit Board 1436.9 Six-Layer Boards 145Glossary 147Abbreviations and Acronyms 149Bibliography 157Index 159