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    2. Teknik och industri
    3. Elektronik och kommunikationer

    Microwave Devices, Circuits and Subsystems for Communications Engineering

    AvIan A. Glover,Steve Pennock

    Inbunden, Engelska, 2005

    2 416 kr

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

    Beskrivning

    Microwave Devices, Circuits and Subsystems for Communications Engineering provides a detailed treatment of the common microwave elements found in modern microwave communications systems. The treatment is thorough without being unnecessarily mathematical. The emphasis is on acquiring a conceptual understanding of the techniques and technologies discussed and the practical design criteria required to apply these in real engineering situations. Key topics addressed include:* Microwave diode and transistor equivalent circuits* Microwave transmission line technologies and microstrip design* Network methods and s-parameter measurements* Smith chart and related design techniques* Broadband and low-noise amplifier design* Mixer theory and design* Microwave filter design* Oscillators, synthesisers and phase locked loops Each chapter is written by specialists in their field and the whole is edited by experience authors whose expertise spans the fields of communications systems engineering and microwave circuit design. Microwave Devices, Circuits and Subsystems for Communications Engineering is suitable for senior electrical, electronic or telecommunications engineering undergraduate students, first year postgraduate students and experienced engineers seeking a conversion or refresher text. * Includes a companion website featuring:* Solutions to selected problems* Electronic versions of the figures* Sample chapter

    Produktinformation

    • Utgivningsdatum:2005-03-24
    • Mått:174 x 253 x 37 mm
    • Vikt:1 162 g
    • Format:Inbunden
    • Språk:Engelska
    • Antal sidor:560
    • Förlag:John Wiley & Sons Inc
    • ISBN:9780471899648

    Utforska kategorier

    • Elektronik och kommunikationer inom Naturvetenskap och teknik

    Mer om författaren

    Dr. Ian A Glover is a Senior Lecturer. Research interests: radio science, microwave radio propagation, channel measure ments and modelling, and digital communications coding and modulation. He is co-author of the successful book Digital Communications. Dr. Steve R. Pennock is a Senior Lecturer. Research interests: microwave engineering and communications, inset dielectric guide antennas and subsystems, monolithic microwave integrated circuits, flared slot antennas, discontinuities and non-uniformities in transmission lines and millimetre wave propagation effects. Dr. Peter R. Shepherd is a Senior Lecturer and First Year Course Director. Research interests: microwave engineering and communications, inset dielectric guide antennas and subsystems, monolithic microwave integrated circuits, flared slot antennas, discontinuities and non-uniformities in transmission lines, millimetre wave propagation effects, and mixed signal integrated circuits

    Recensioner i media

    "... this book is a good reference for [the] microwave engineering community." (IEEE Circuits & Devices Magazine, November/December 2006)

    Innehållsförteckning

    • List of Contributors xvPreface xvii1 Overview 1I. A. Glover, S. R. Pennock and P. R. Shepherd1.1 Introduction 11.2 RF Devices 21.3 Signal Transmission and Network Methods 41.4 Amplifiers 51.5 Mixers 61.6 Filters 71.7 Oscillators and Frequency Synthesisers 72 RF Devices: Characteristics and Modelling 9A. Suarez and T. Fernandez2.1 Introduction 92.2 Semiconductor Properties 102.3 P-N Junction 182.4 The Schottky Diode 322.5 PIN Diodes 402.6 Step-Recovery Diodes 512.7 Gunn Diodes 522.8 IMPATT Diodes 592.9 Transistors 652.10 Problems 883 Signal Transmission, Network Methods and Impedance Matching 91N. J. McEwan, T. C. Edwards, D. Dernikas and I. A. Glover3.1 Introduction 913.2 Transmission Lines: General Considerations 923.3 The Two-Conductor Transmission Line: Revision of Distributed Circuit Theory 953.4 Loss, Dispersion, Phase and Group Velocity 993.5 Field Theory Method for Ideal TEM Case 1133.6 Microstrip 1263.7 Coupled Microstrip Lines 1483.8 Network Methods 1633.9 Impedance Matching 1763.10 Network Analysers 1953.11 Summary 2074 Amplifier Design 209N. J. McEwan and D. Dernikas4.1 Introduction 2094.2 Amplifier Gain Definitions 2094.3 Stability 2234.4 Broadband Amplifier Design 2394.5 Low Noise Amplifier Design 2464.6 Practical Circuit Considerations 2564.7 Computer Aided Design (CAD) 2905 Mixers: Theory and Design 311L. de la Fuente and A. Tazon5.1 Introduction 3115.2 General Properties 3115.3 Devices for Mixers 3135.4 Non-Linear Analysis 3225.5 Diode Mixer Theory 3315.6 FET Mixers 3415.7 Double–Gate FET Mixers 3495.8 Single-Balanced FET Mixers 3585.9 Double-Balanced FET Mixers 3595.10 Harmonic Mixers 3605.11 Monolithic Mixers 3646 Filters 379A. Mediavilla6.1 Introduction 3796.2 Filter Fundamentals 3796.3 Mathematical Filter Responses 3856.4 Low Pass Prototype Filter Design 3936.5 Filter Impedance and Frequency Scaling 4056.6 Elliptic Filter Transformation 4236.7 Filter Normalisation 4297 Oscillators, Frequency Synthesisers and PLL Techniques 461E. Artal, J. P. Pascual and J. Portilla7.1 Introduction 4617.2 Solid State Microwave Oscillators 4617.3 Negative Resistance Diode Oscillators 4677.4 Transistor Oscillators 4697.5 Voltage-Controlled Oscillators 4817.6 Oscillator Characterisation and Testing 4847.7 Microwave Phase Locked Oscillators 4897.8 Subsystems for Microwave Phase Locked Oscillators (PLOs) 4937.9 Phase Noise 5097.10 Examples of PLOs 514References 518Index 519