Asymmetric Passive Components in Microwave Integrated Circuits (Hardcover)
暫譯: 微波集成電路中的非對稱被動元件 (精裝版)
Hee-Ran Ahn
- 出版商: Wiley
- 出版日期: 2006-09-01
- 售價: $1,140
- 語言: 英文
- 頁數: 291
- 裝訂: Hardcover
- ISBN: 0471737488
- ISBN-13: 9780471737483
-
相關分類:
微波工程 Microwave
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商品描述
This book examines the new and important technology of asymmetric passive components for miniaturized microwave passive circuits. The asymmetric design methods and ideas set forth by the author are groundbreaking and have not been treated in previous works. Readers discover how these design methods reduce the circuit size of microwave integrated circuits and are also critical to reducing the cost of equipment such as cellular phones, radars, antennas, automobiles, and robots.
An introductory chapter on the history of asymmetric passive components, which began with asymmetric ring hybrids first described by the author, sets the background for the book. It lays a solid foundation with a chapter examining microwave circuit parameters such as scattering, ABCD, impedance, admittance, and image. A valuable feature of this chapter is a conversion table between the various circuit matrices characterizing two-port networks terminated in arbitrary impedances. The correct conversion has also never been treated in previous works.
Next, the author sets forth a thorough treatment of asymmetric passive component design, which covers the basic and indispensable elements for integration with other active or passive devices, including:
- Asymmetric ring hybrids
- Asymmetric branch-line hybrids
- Asymmetric three-port power dividers and N-way power dividers
- Asymmetric ring hybrid phase shifters and attenuators
- Asymmetric ring filters and asymmetric impedance transformers
With its focus on the principles of circuit element design, this is a must-have graduate-level textbook for students in microwave engineering, as well as a reference for design engineers who want to learn the new and powerful design method for asymmetric passive components.
Table of Contents
Preface.
1 Introduction.
1.1 Asymmetric Passive Components.
1.2 Circuit Parameters.
1.3 Asymmetric Four-Port Hybrids.
1.4 Asymmetric Three-Port Power Dividers.
1.5 Asymmetric Two-Port Components.
References.
2 Circuit Parameters.
2.1 Scattering Matrix.
2.2 Scattering Parameters of Reduced Multiports.
2.3 Two-Port Network Analysis Using Scattering Parameters.
2.4 Other Circuit Parameters.
2.5 Analyses of Symmetric Networks.
2.6 Analyses with Image Parameters.
Exercises.
References.
3 Conventional Ring Hybrids.
3.1 Introduction.
3.2 Original Concept of the 3-dB Ring Hybrid.
3.3 Conventional Ring Hybrids.
3.4 Conventional 3-dB Uniplanar Ring Hybrids.
Exercises.
References.
4 Asymmetric Ring Hybrids.
4.1 Introduction.
4.2 Derivation of Design Equations of Asymmetric Ring Hybrids.
4.3 Small Asymmetric Ring Hybrids.
4.4 Wideband or Small Asymmetric Ring Hybrids.
4.5 Miniaturized Ring Hybrids Terminated in Arbitrary Impedances.
Exercises.
References.
5 Asymmetric Branch-Line Hybrids.
5.1 Introduction.
5.2 Origin of Branch-Line Hybrids.
5.3 Multisection Branch-Line Couplers.
5.4 Branch-Line Hybrids for Impedance Transforming.
5.5 Asymmetric Four-Port Hybrids.
Exercises.
References.
6 Conventional Three-Port Power Dividers.
6.1 Introduction.
6.2 Three-Port 3-dB Power Dividers.
6.3 Three-Port Power Dividers with Arbitrary Power Divisions.
6.4 Symmetric Analyses of Asymmetric Three-Port Power Dividers.
6.5 Three-Port 3-dB Power Dividers Terminated in Complex Frequency-Dependent Impedances.
6.6 Three-Port 45◦ Power Divider/Combiner.
Exercises.
References.
7 Three-Port 3-dB Power Dividers Terminated in Different Impedances.
7.1 Introduction.
7.2 Perfect Isolation Condition.
7.3 Analyses.
7.4 Scattering Parameters of Three-Port Power Dividers.
7.5 Lumped-Element Three-Port 3-dB Power Dividers.
7.6 Coplanar Three-Port 3-dB Power Dividers.
Exercises.
References.
8 General Design Equations for N-Way Arbitrary Power Dividers.
8.1 Introduction.
8.2 General Design Equations for Three-Port Power Dividers.
8.3 General Design Equations for N-Way Power Dividers.
Exercises.
References.
9 Asymmetric Ring-Hybrid Phase Shifters and Attenuators.
9.1 Introduction.
9.2 Scattering Parameters of Asymmetric Ring Hybrids.
9.3 Asymmetric Ring-Hybrid Phase Shifters.
9.4 Asymmetric Ring-Hybrid Attenuator with Phase Shifts.
Exercises.
References.
10 Ring Filters and Their Use in a New Measurement Technique for Inherent Ring-Resonance Frequency.
10.1 Introduction.
10.2 Ring Filters.
10.3 New Measurement Technique for Inherent Ring-Resonance Frequency.
10.4 Conclusions.
Exercises.
References.
11 Small Impedance Transformers, CVTs and CCTs, and Their Applications to Small Power Dividers and Ring Filters.
11.1 Small Transmission-Line Impedance Transformers.
11.2 Mathematical Approach for CVTs and CCTs.
11.3 CVT3PDs and CCT3PDs.
11.4 Asymmetric Three-Port 45◦ Power Divider Terminated in Arbitrary Impedances.
11.5 CVT and CCT Ring Filters.
11.5.1 Analyses of Ring Filters.
Exercises.
References.
Appendix A: Symbols and Abbreviations.
Appendix B: Conversion Matrices.
Appendix C: Derivation of the Elements of a Small Asymmetric Ring Hybrid.
Appendix D: Trigonometric Relations.
Appendix E: Hyperbolic Relations.
Index.
商品描述(中文翻譯)
**書籍描述**
本書探討了用於微波被動電路的小型化非對稱被動元件的新技術及其重要性。作者提出的非對稱設計方法和理念具有開創性,並且在以往的作品中未曾涉及。讀者將了解這些設計方法如何減少微波集成電路的電路尺寸,並且對於降低如手機、雷達、天線、汽車和機器人等設備的成本至關重要。
本書的引言章節介紹了非對稱被動元件的歷史,這一歷史始於作者首次描述的非對稱環形混合器,為本書奠定了背景。接著,通過一章探討微波電路參數,如散射、ABCD、阻抗、導納和影像,為讀者打下堅實的基礎。本章的一個重要特點是提供了各種電路矩陣之間的轉換表,這些矩陣特徵化了以任意阻抗終止的二端口網絡。正確的轉換在以往的作品中也未曾涉及。
接下來,作者對非對稱被動元件設計進行了全面的探討,涵蓋了與其他主動或被動設備集成所需的基本和不可或缺的元素,包括:
- 非對稱環形混合器
- 非對稱分支線混合器
- 非對稱三端口功率分配器和N路功率分配器
- 非對稱環形混合器相位移器和衰減器
- 非對稱環形濾波器和非對稱阻抗變換器
本書專注於電路元件設計的原則,是微波工程研究生必備的教科書,也是設計工程師想要學習非對稱被動元件新穎且強大的設計方法的參考資料。
**目錄**
**前言**
**1 引言**
1.1 非對稱被動元件
1.2 電路參數
1.3 非對稱四端口混合器
1.4 非對稱三端口功率分配器
1.5 非對稱二端口元件
參考文獻
**2 電路參數**
2.1 散射矩陣
2.2 縮減多端口的散射參數
2.3 使用散射參數的二端口網絡分析
2.4 其他電路參數
2.5 對稱網絡的分析
2.6 使用影像參數的分析
練習題
參考文獻
**3 傳統環形混合器**
3.1 引言
3.2 3-dB環形混合器的原始概念
3.3 傳統環形混合器
3.4 傳統3-dB單平面環形混合器
練習題
參考文獻
**4 非對稱環形混合器**
4.1 引言
4.2 非對稱環形混合器設計方程的推導
4.3 小型非對稱環形混合器
4.4 寬頻或小型非對稱環形混合器
4.5 以任意阻抗終止的小型化環形混合器
練習題
參考文獻
**5 非對稱分支線混合器**
5.1 引言
5.2 分支線混合器的起源
5.3 多段分支線耦合器
5.4 用於阻抗變換的分支線混合器
5.5 非對稱四端口混合器
練習題
參考文獻
**6 傳統三端口功率分配器**
6.1 引言
6.2 三端口3-dB功率分配器
6.3 具有任意功率分配的三端口功率分配器
6.4 非對稱三端口功率分配器的對稱分析
6.5 以複數頻率依賴阻抗終止的三端口3-dB功率分配器
6.6 三端口45°功率分配器/合併器
練習題
參考文獻
**7 以不同阻抗終止的三端口3-dB功率分配器**
7.1 引言
7.2 完美隔離條件
7.3 分析
7.4 三端口功率分配器的散射參數
7.5 集總元件三端口3-dB功率分配器
7.6 共平面三端口3-dB功率分配器
練習題
參考文獻
**8 N路任意功率分配器的一般設計方程**
8.1 引言
8.2 三端口功率分配器的一般設計方程
8.3 N路功率分配器的一般設計方程
練習題
參考文獻
**9 非對稱環形混合器相位移器和衰減器**
9.1 引言
9.2 非對稱環形混合器的散射參數
9.3 非對稱環形混合器相位移器
9.4 具有相位移的非對稱環形混合器衰減器
練習題
參考文獻
**10 環形濾波器及其在固有環形共振頻率新測量技術中的應用**
10.1 引言
10.2 環形濾波器
10.3 固有環形共振頻率的新測量技術
10.4 結論
練習題
參考文獻
**11 小型阻抗變換器、CVTs和CCTs及其在小型功率分配器和環形濾波器中的應用**
11.1 小型傳輸線阻抗變換器
11.2 CVTs和CCTs的數學方法
11.3 CVT3PDs和CCT3PDs
11.4 以任意阻抗終止的非對稱三端口45°功率分配器
11.5 CVT和CCT環形濾波器
11.5.1 環形濾波器的分析
練習題
參考文獻
**附錄A:符號和縮寫**
**附錄B:轉換矩陣**
**附錄C:小型非對稱環形混合器元素的推導**
**附錄D:三角函數關係**
**附錄E:雙曲函數關係**
**索引**