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    Foundations for Microwave Engineering

    AvRobert E. Collin

    Inbunden, Engelska, 2000

    Del 11 i serien IEEE Press Series on Electromagnetic Wave Theory and Applications

    2 335 kr

    Beställningsvara. Skickas inom 5-8 vardagar. Fri frakt över 249 kr.

    Beskrivning

    FOUNDATIONS FOR MICROWAVE ENGINEERING, Second Edition, covers the major topics of microwave engineering. Its presentation defines the accepted standard for both advanced undergraduate and graduate level courses on microwave engineering. An essential reference book for the practicing microwave engineer, it features: Planar transmission lines, as well as an appendix that describes in detail conformal mapping methods for their analysis and attenuation characteristicsSmall aperture coupling and its application in practical components such as directional couplers and cavity couplingPrinted circuit components with an emphasis on techniques such as even and odd mode analysis and the use of symmetry propertiesMicrowave linear amplifier and oscillator design using solid-state circuits such as varactor devices and transistorsFOUNDATIONS FOR MICROWAVE ENGINEERING, Second Edition, has extensive coverage of transmission lines, waveguides, microwave circuit theory, impedance matching and cavity resonators. It devotes an entire chapter to fundamental microwave tubes, in addition to chapters on periodic structures, microwave filters, small signal solid-state microwave amplifier and oscillator design, and negative resistance devices and circuits. Completely updated in 1992, it is being reissued by the IEEE Press in response to requests from our many members, who found it an invaluable textbook and an enduring reference for practicing microwave engineers.Sponsored by:IEEE Antennas and Propagation Society, IEEE Microwave Theory and Techniques SocietyAn Instructor's Manual presenting detailed solutions to all the problems in the book is available upon request from the Wiley Makerting Department.

    Produktinformation

    • Utgivningsdatum:2000-12-22
    • Mått:192 x 245 x 53 mm
    • Vikt:1 737 g
    • Format:Inbunden
    • Språk:Engelska
    • Serie:IEEE Press Series on Electromagnetic Wave Theory and Applications
    • Antal sidor:944
    • Upplaga:2
    • Förlag:John Wiley & Sons Inc
    • ISBN:9780780360310

    Utforska kategorier

    • Elektronik och kommunikationer inom Naturvetenskap och teknik

    Mer om författaren

    Robert E. Collin is the author or coauthor of more than 150 technical papers and five books on electromagnetic theory and applications. His classic text, Field Theory of Guided Waves, is also a volume in the series. Professor Collin has had a long and distinguished academic career at Case Western Reserve University. In addition to his professorial duties, he has served as chairman of the Department of Electrical Engineering and as interim dean of engineering. Professor Collin is a life fellow of the IEEE and a member of the Microwave Theory and Techniques Society and the Antennas and Propagation Society (APS). He is a member of the U.S. Commission B of URSI and a member of the Geophysical Society. Other honors include the Diekman Award from Case Western Reserve University for distinguished graduate teaching, the IEEE APS Distinguished Career Award (1992), the IEEE Schelkunoff Prize Paper Award (1992), the IEEE Electromagnetics Award (1998), and an IEEE Third Millennium Medal in 2000. In 1990 Professor Collin was elected to the National Academy of Engineering.

    Innehållsförteckning

    • Preface xv 1 Introduction 11.1 Microwave Frequencies 11.2 Microwave Applications 31.3 Microwave Circuit Elements and Analysis 62 Electromagnetic Theory 172.1 Maxwell's Equations 172.2 Constitutive Relations 232.3 Static Fields 282.4 Wave Equation 312.5 Energy and Power 332.6 Boundary Conditions 392.7 Plane Waves 442.8 Reflection from a Dielectric Interface 492.9 Reflection from a Conducting Plane 532.10 Potential Theory 562.11 Derivation of Solution for Vector Potential 592.12 Lorentz Reciprocity Theorem 623 Transmission Lines and Waveguides 72Part 1 Waves on Transmission Lines 723.1 Waves on An Ideal Transmission Line 723.2 Terminated Transmission Line: Resistive Load 783.3 Capacitive Termination 823.4 Steady-State Sinusoidal Waves 853.5 Waves on a Lossy Transmission Line 863.6 Terminated Transmission Line: Sinusoidal Waves 89Part 2 Field Analysis of Transmission Lines 963.7 Classification of Wave Solutions 963.8 Transmission Lines (Field Analysis) 1043.9 Transmission-Line Parameters 1123.10 Inhomogeneously Filled Parallel-Plate Transmission Line 1173.11 Planar Transmission Lines 1253.12 Microstrip Transmission Line 1303.13 Coupled Microstrip Lines 1643.14 Strip Transmission Lines 1703.15 Coupled Strip Lines 1733.16 Coplanar Transmission Lines 175Part 3 Rectangular and Circular Waveguides 1803.17 Rectangular Waveguide 1813.18 Circular Waveguides 1943.19 Wave Velocities 1983.20 Ridge Waveguide 2053.21 Fin Line 2084 Circuit Theory for Waveguiding Systems 2204.1 Equivalent Voltages and Currents 2214.2 Impedance Description of Waveguide Elements and Circuits 2244.3 Foster's Reactance Theorem 2304.4 Even and Odd Properties of Zin 2324.5 iV-Port Circuits 2334.6 Two-Port Junctions 2384.7 Scattering-Matrix Formulation 2484.8 Scattering Matrix for a Two-Port Junction 2544.9 Transmission-Matrix Representation 2574.10 Signal Flow Graphs 2604.11 Generalized Scattering Matrix for Power Waves 2684.12 Excitation of Waveguides 2764.13 Waveguide Coupling by Apertures 2845 Impedance Transformation and Matching 3035.1 Smith Chart 3045.2 Impedance Matching with Reactive Elements 3085.3 Double-Stub Matching Network 3125.4 Triple-Stub Tuner 3175.5 Impedance Matching with Lumped Elements 3195.6 Design of Complex Impedance Terminations 3305.7 Invariant Property of Impedance Mismatch Factor 3345.8 Waveguide Reactive Elements 3395.9 Quarter-Wave Transformers 3435.10 Theory of Small Reflections 3475.11 Approximate Theory for Multisection Quarter-Wave Transformers 3485.12 Binomial Transformer 3505.13 Chebyshev Transformer 3525.14 Chebyshev Transformer (Exact Results) 3565.15 Filter Design Based on Quarter-Wave-Transformer Prototype Circuit 3605.16 Tapered Transmission Lines 3705.17 Synthesis of Transmission-Line Tapers 3735.18 Chebyshev Taper 3805.19 Exact Equation for the Reflection Coefficient 3836 Passive Microwave Devices 3946.1 Terminations 3946.2 Attenuators 3976.3 Phase Shifters 4046.4 Directional Couplers 4136.5 Hybrid Junctions 4356.6 Power Dividers 4426.7 Microwave Propagation in Ferrites 4506.8 Faraday Rotation 4606.9 Microwave Devices Employing Faraday Rotation 4646.10 Circulators 4686.11 Other Ferrite Devices 4767 Electromagnetic Resonators 4817.1 Resonant Circuits 4817.2 Transmission-Line Resonant Circuits 4857.3 Microstrip Resonators 4907.4 Microwave Cavities 5007.5 Dielectric Resonators 5087.6 Equivalent Circuits for Cavities 5177.7 Field Expansion in a General Cavity 5257.8 Oscillations in a Source-Free Cavity 5337.9 Excitation of Cavities 5387.10 Cavity Perturbation Theory 5418 Periodic Structures and Filters 5508.1 Capacitively Loaded Transmission-Line-Circuit Analysis 5518.2 Wave Analysis of Periodic Structures 5578.3 Periodic Structures Composed of Unsymmetrical Two-Port Networks 5598.4 Terminated Periodic Structures 5608.5 Matching of Periodic Structures 5638.6 k0-β Diagram 5648.7 Group Velocity and Energy Flow 5668.8 Floquet's Theorem and Spatial Harmonics 5698.9 Periodic Structures for Traveling-Wave Tubes 5718.10 Sheath Helix 5808.11 Some General Properties of a Helix 5838.12 Introduction to Microwave Filters 5858.13 Image-Parameter Method of Filter Design 5878.14 Filter Design by Insertion-Loss Method 5918.15 Specification of Power Loss Ratio 5928.16 Some Low-Pass-Filter Designs 5958.17 Frequency Transformations 5988.18 Impedance and Admittance Inverters 6038.19 A Microstrip Half-Wave Filter 6178.20 Microstrip Parallel Coupled Filter 6268.21 Quarter-Wave-Coupled Cavity Filters 6358.22 Direct-Coupled Cavity Filters 6398.23 Other Types of Filters 6429 Microwave Tubes 6489.1 Introduction 6489.2 Electron Beams with dc Conditions 6509.3 Space-Charge Waves on Beams with Confined Flow 6549.4 Space-Charge Waves on Unfocused Beams 6619.5 Ac Power Relations 6679.6 Velocity Modulation 6709.7 Two-Cavity Klystron 6789.8 Reflex Klystron 6869.9 Magnetron 6909.10 O-Type Traveling-Wave Tube 6929.11 M-Type Traveling-Wave Tube 6999.12 Gyrotrons 7019.13 Other Types of Microwave Tubes 70810 Solid-State Amplifiers 71310.1 Bipolar Transistors 71610.2 Field-Effect Transistors 72110.3 Circle-Mapping Properties of Bilinear Transformations 72510.4 Microwave Amplifier Design Using Sij Parameters 72610.5 Amplifier Power Gain 72810.6 Amplifier Stability Criteria 73510.7 Constant Power-Gain Circles 74410.8 Basic Noise Theory 76010.9 Low-Noise Amplifier Design 76710.10 Constant Mismatch Circles 77610.11 Microwave Amplifier Design 78010.12 Other Aspects of Microwave Amplifier Design 79311 Parametric Amplifiers 79911.1 p-n Junction Diodes 80011.2 Manley-Rowe Relations 80411.3 Linearized Equations for Parametric Amplifiers 80711.4 Parametric Up-Converter 80911.5 Negative-Resistance Parametric Amplifier 81411.6 Noise Properties of Parametric Amplifiers 82112 Oscillators and Mixers 83112.1 Gunn Oscillators 83212.2 IMPATT Diodes 83712.3 Transistor Oscillators 84012.4 Three-Port Description of a Transistor 84312.5 Oscillator Circuits 84912.6 Oscillator Design 85112.7 Mixers 85612.8 Mixer Noise Figure 86412.9 Balanced Mixers 86512.10 Other Types of Mixers 86812.11 Mixer Analysis Using Harmonic Balancing 869AppendixesI Useful Relations from Vector Analysis 876I.1 Vector Algebra 876I.2 Vector Operations in Common Coordinate Systems 877I.3 Vector Identities 879I.4 Green's Identities 880II Bessel Functions 881II.1 Ordinary Bessel Functions 881II.2 Modified Bessel Functions 883III Conformal Mapping Techniques 886III.1 Conformal Mapping 886III.2 Elliptic Sine Function 889III.3 Capacitance between Two Parallel Strips 892III.4 Strip Transmission Line 896III.5 Conductor Loss 898III.6 Conductor Losses for a Microstrip Transmission Line 903III.7 Attenuation for a Coplanar Line 905IV Physical Constants and Other Data 911IV.1 Physical Constants 911IV.2 Conductivities of Materials 912IV.3 Dielectric Constants of Materials 912IV.4 Skin Depth in Copper 912Index 913