-
出版商:
Rfpta
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出版日期:
2019-09-09
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售價:
$1,660
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貴賓價:
9.5 折
$1,577
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語言:
英文
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頁數:
390
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裝訂:
Quality Paper - also called trade paper
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ISBN:
0578575302
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ISBN-13:
9780578575308
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相關分類:
微波工程 Microwave
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半導體元件物理-觀念解析與實務應用
商品描述
This book was last updated in January 2020 . If you have purchased a copy of the book prior to Dec. 2019, you may request an addendum to the book by emailing rfptacom@aol.com. The second edition of Fundamentals of RF and Microwave Circuit Design explores more aspects of this field in an easy to understand manner that is combined with practical examples and applications with the aid of open source software. Many improvements have also been incorporated in this edition. A new chapter is dedicated to sinewave oscillator circuit design, and time-domain analysis is introduced for the first time. Several chapter sections and appendices have been added to this edition. Unique use of collection of software tools together with simple presentation of important topics can provide a powerful methodology in designing and analyzing many passive and active RF/Microwave circuits. Microwave Engineering can be a fascinating and fulfilling career path. It is also an extremely vast subject with topics ranging from semiconductor physics to electromagnetic theory. The applications of each field are, however, diverse and unique. Unlike many texts on the subject this book does not attempt to cover every aspect of RF and microwave engineering in a single volume. Almost all subject matter covered in the text is accompanied by examples that are representative of practical engineering applications. University students will find this a potent learning tool. Practicing engineers will find the book very useful as a reference guide to quickly setup designs using the guidelines presented in the book and with the aid of various very practical software applications. The author thoroughly covers the basics as well as introducing CAD techniques that may not be familiar to some engineers. Topics discussed in this book include RF and microwave concepts and components, transmission lines, network parameters and the Smith chart, resonant circuits and filter designs, power transfer and lumped impedance matching network design, distributed impedance matching network design, distributed power dividers including Wilkinson, various amplifier circuit topologies, several widely used sinewave oscillator circuit topologies, and Monte Carlo application in circuit design optimization, all utilizing SPICE simulator as the core software. New trends in modern integrated circuit design and high frequency trends including RF/Photonic applications in microwave engineering are introduced and discussed. In general, passive microwave engineering is covered in chapters 1 through 6. Specific guidelines are provided, through examples, to design various transmission lines and completion of physical design. Two chapters (7 and 8) are focus of extensive active RF and microwave circuit design. In chapter 7, a spice model has been utilized for design of multiple single-stage amplifiers. A DC analysis is been performed first and transistor DC-IV curves are generated for proper selection of DC operating points. An AC analysis is then followed to generate S-parameters at desired DC biasing condition. From simulated two port parameters, RF parameters of interest including stability factors can be generated using LTspice equation editor. Furthermore, using internal capability of the software, a model has been developed to simulate and predict noise figure of the LNA circuit. Time-domain including transient analysis and Fast Fourier Transform (FFT) make design and analysis of oscillator circuits in both time domain and frequency domain possible. In Chapter 8 sinewave oscillator circuits are discussed. Several important and widely used oscillator circuits including Colpitts, Clad, and Crystal oscillators are introduced through examples and many practical issues have been tackled in detail. This chapter also covers new trends in modern IC technology and oscillator circuits for microwave applications. Application of Monte Carlo in engineering design process and sensitivity is also covered in chapter 8.
商品描述(中文翻譯)
本書最後更新於2020年1月。如果您在2019年12月之前購買了本書,您可以通過電子郵件rfptacom@aol.com請求本書的附錄。《RF與微波電路設計基礎》第二版以易於理解的方式探討了該領域的更多方面,並結合了實用的範例和應用,並利用開源軟體進行輔助。本版還納入了許多改進。一個新章節專門介紹正弦波振盪器電路設計,並首次引入時域分析。本版增加了幾個章節部分和附錄。獨特的軟體工具集合的使用,加上重要主題的簡單呈現,可以提供一種強大的方法論,用於設計和分析許多被動和主動的RF/微波電路。微波工程可以是一條迷人且充實的職業道路。這也是一個極其廣泛的主題,涵蓋從半導體物理到電磁理論的各個主題。然而,每個領域的應用都是多樣且獨特的。與許多關於該主題的書籍不同,本書並不試圖在單一卷中涵蓋RF和微波工程的每個方面。幾乎所有的主題內容都附有代表實際工程應用的範例。大學學生會發現這是個強大的學習工具。實務工程師會發現本書作為參考指南非常有用,可以快速設置設計,並利用書中提供的指導方針和各種非常實用的軟體應用。作者徹底涵蓋了基礎知識,並介紹了一些可能對某些工程師來說不熟悉的CAD技術。本書討論的主題包括RF和微波概念及元件、傳輸線、網路參數和史密斯圖、共振電路和濾波器設計、功率傳輸和集中阻抗匹配網路設計、分佈式阻抗匹配網路設計、包括Wilkinson的分佈式功率分配器、各種放大器電路拓撲、幾種廣泛使用的正弦波振盪器電路拓撲,以及在電路設計優化中的蒙地卡羅應用,所有這些都利用SPICE模擬器作為核心軟體。現代集成電路設計的新趨勢和高頻趨勢,包括RF/光子應用在微波工程中的應用,亦被介紹和討論。一般來說,被動微波工程在第1至第6章中涵蓋。通過範例提供具體指導,以設計各種傳輸線和完成物理設計。兩個章節(第7和第8章)專注於廣泛的主動RF和微波電路設計。在第7章中,利用SPICE模型設計多個單級放大器。首先進行直流分析,並生成晶體管的直流-IV曲線,以便正確選擇直流工作點。然後進行交流分析,以在所需的直流偏置條件下生成S參數。從模擬的兩端口參數中,可以使用LTspice方程編輯器生成穩定性因子等RF參數。此外,利用軟體的內部功能,開發了一個模型來模擬和預測低噪聲放大器(LNA)電路的噪聲指數。時域分析,包括瞬態分析和快速傅立葉變換(FFT),使得在時域和頻域中設計和分析振盪器電路成為可能。在第8章中,討論了正弦波振盪器電路。通過範例介紹了幾種重要且廣泛使用的振盪器電路,包括Colpitts、Clad和晶體振盪器,並詳細解決了許多實際問題。本章還涵蓋了現代IC技術和微波應用的振盪器電路的新趨勢。第8章還涵蓋了蒙地卡羅在工程設計過程和靈敏度中的應用。