Understanding Microwaves (Paperback)
暫譯: 理解微波技術 (平裝本)

Allan W. Scott

  • 出版商: Wiley
  • 出版日期: 2005-06-01
  • 售價: $1,050
  • 貴賓價: 9.8$1,029
  • 語言: 英文
  • 頁數: 562
  • 裝訂: Paperback
  • ISBN: 0471745332
  • ISBN-13: 9780471745334
  • 相關分類: 微波工程 Microwave
  • 已絕版

買這商品的人也買了...

商品描述

Description:

A complete and accessible introduction to the important field of microtechnology

Understanding Microwaves covers all the important microwave terminology, devices, and systems, and provides an understanding of how everything fits together to make communications, navigation, and radar equipment. The text is geared toward engineers new to the microwave industry, as well as technicians, managers, and students. This field-tested book presents material the author has used in industrial training courses for thousands of students. It is easy to understand and avoids complex mathematics. With extensive exercises at the end of each chapter, and answers at the end of the book, it is suitable for self-study or as a text for industrial seminars and college courses.

First, the coverage details the special language of microwaves. Then, it outlines all of the unique devices that are used in microwave equipment and explains how these types fit together to make a typical microwave system, describing what they do, how they work, and what their important performance characteristics are. Finally, the book covers all of the important types of microwave systems, including their structure, function, and applications. Understanding Microwaves is a complete introduction to this important field.

 

Table of Contents:

PART I: MICROWAVE FUNDAMENTALS.

1. A Survey of Microwave Systems and Devices.

1.1 The Relationship of Microwaves to Other Electronic Equipment.

1.2 Microwave Systems.

1.3 The Microwave System.

1.4 Why Microwave Devices are Needed.

1.5 Basic Microwave System Design.

1.6 Microwave Transmission Lines.

1.7 Signal Control Components.

1.8 Semiconductor Amplifiers and Oscillators.

1.9 Microwave Tubes.

1.10 Low Noise Microwave Receivers.

1.11 Microwave Antennas.

Annotated Bibliography.

Exercises.

2. Microwave Fields.

2.1 Electric and Magnetic Fields.

2.2 Electromagnetic Waves.

2.3 Characteristics of Electromagnetic Waves.

2.4 Microwaves in Transmission Lines.

2.5 Skin Depth.

Annotated Bibliography.

Exercises.

3. Microwave Power--dB and dBm.

3.1 Microwave Power.

3.2 dB Terminology.

3.3 dBm Terminology.

3.4 Equipment for Measuring Microwave Power .

Annotated Bibliography.

Exercises.

4. Insertion Loss, Gain, and Return Loss.

4.1 Insertion Loss.

4.2 Insertion Loss of Components in Cascade.

4.3 Gain.

4.4 Cascaded Insertion Loss and Gain.

4.5 Mismatches and Return Loss.

4.6 Alternative Ways of Specifying Reflected Power.

4.7 S-Parameters.

4.8 Equipment for Measuring Insertion Loss and Return Loss.

Annotated Bibliography.

Exercises.

5. Matching with the Smith Chart.

5.1 Derivation of the Smith Chart.

5.2 Plotting Mismatches on the Smith Chart.

5.3 Matching Calculations with the Smith Chart.

5.4 Moving Toward the Load.

5.5 Lumped Inductance in Series.

5.6 Matching Elements in Parallel.

5.7 Matching Stubs.

5.8 Quarter-Wave Transformer.

5.9 Lumped Elements in Combination.

5.10 Selecting the Best matching Technique.

Annotated Bibliography.

Exercises.

PART II: MICROWAVE DEVICES.

6. Microwave Transmission Lines.

6.1 Comparison of Transmission Lines.

6.2 Guide Wavelength and Characteristic Impedance.

6.3 Coaxial Cable.

6.4 Waveguide.

6.5 Stripline and Microstrip.

6.6 Connectors and Adapters.

Annotated Bibliography.

Exercises.

7. Microwave Signal Control Components.

7.1 Microwave Semiconductors.

7.2Microwave Ferrites.

7.3 Terminations.

7.4 Directional Couplers.

7.5 Combiners.

7.6 Isolators and Circulators.

7.7 Filters.

7.8 Attenuators.

7.9 Switches.

7.10 Phase Shifters.

7.11 Detectors.

Annotated Bibliography.

Exercises.

8. Microwave Semiconductor Amplifiers.

8.1 Amplifier Performance Characteristics.

8.2 Types of Microwave Semiconductor Amplifiers.

8.3 Bipolar Transistors.

8.4 Field-Effect Transistors.

8.5 HEMTs.

8.6 Transistor Packaging and Mounting.

8.7 S-Parameters.

8.8 Transistor Biasing and Matching.

8.9 IMPATT Amplifiers.

Annotated Bibliography.

Exercises.

9. Microwave Oscillators.

9.1 Oscillator Principles.

9.2 Oscillator Performance Requirements.

9.3 Fixed-Tuned and Mechanically Tuned Oscillators.

9.4 Electronically Tuned Oscillators.

9.5 Harmonic Multipliers.

9.6 Phase-Locked Oscillators.

9.7 Up-converters.

Annotated Bibliography.

Exercises.

10. Low-Noise Receivers.

10.1 The Significance of Low-Noise Receivers.

10.2 Sources of Noise.

10.3 Noise Units.

10.4 Mixers.

10.5 Low-Noise Transistors.

10.6 Parametric Amplifiers.

Annotated Bibliography.

Exercises.

11. Microwave Integrated Circuits.

11.1 Types of Microwave Integrated Circuits.

11.2 Hybrid Microwave Integrated Circuits.

11.3 Microstrip Materials and Design.

11.4 Microstrip Circuit Elements.

11.5 Components Added after Microstrip Fabrication.

11.6 Mounting and Packaging.

11.7 Monolithic Microwave Integrated Circuits.

Annotated Bibliography.

Exercises.

12. Microwave Tubes.

12.1 Advantages and Disadvantages.

12.2 Comparison.

12.3 Gridded Tubes.

12.4 Klystrons.

12.5 Traveling Wave Tubes.

12.6 Crossed-Field Amplifiers.

12.7 Magnetrons.

12.8 High Power Microwave Tubes.

Annotated Bibliography.

Exercises.

13. Microwave Antennas.

13.1 Requirements.

13.2 Types.

13.3 Arrays.

13.4 Parabolic.

13.5 Phased Array.

Annotated Bibliography.

Exercises.

PART III: MICROWAVE SYSTEMS.

14. Introduction to Microwave Systems.

14.1 Spectrum Analysis of Electronic Signals.

14.2 Communication System Signals.

14.3 Signal-to-Noise Requirements.

14.4 Pulse Code Modulation.

14.5 Baseband Signals.

14.6 Transmission Systems.

14.7 Modulation.

14.8 Carrier Modulation with Digital Baseband Signals.

Annotated Bibliography.

Exercises.

15. Microwave Relay.

15.1 Introduction.

15.2 Block Diagrams.

15.3 Antennas.

15.4 Path Loss Calculations.

15.5 Diversity Systems.

15.6 Diffraction and Troposcatter Systems.

15.7 Wireless Local Area Networks.

Annotated Bibliography.

Exercises

16. Satellite Communications.

16.1 Introduction.

16.2 Path Loss Calculations (ERP and G/T).

16.3 International Satellites.

16.4 Domestic Satellites.

16.5 Ship-to-Shore Communication by Satellite.

16.6 Direct Broadcast Satellites.

16.7 Comparison of Communication Satellites.

16.8 Remote-Sensing Satellites.

Annotated Bibliography.

Exercises.

17. Radar Systems.

17.1 Introduction.

17.2 Velocity Measurement.

17.3 Range Measurement.

17.4 Combined Range and Velocity Measurement.

17.5 Angle Measurement.

17.6 Techniques to Improve Angular Resolution.

17.7 Phased Array Radar.

17.8 Block Diagrams.

17.9 The Radar Equation.

Annotated Bibliography.

Exercises.

18. Electronic Warfare Systems.

18.1 Introduction.

18.2 Stealth.

18.3 Antiradiation Missiles.

18.4 Chaff and Decoys.

18.5 Noise Jamming.

18.6 Deceptive Jamming.

18.7 Electronic Counter-Countermeasures.

Annotated Bibliography.

Exercises.

19. Navigation and Other Microwave Systems.

19.1 Global Positioning System.

19.2 Cellular Telephones.

19.3 Microwave Ovens.

19.4 Medical Applications of Microwaves.

19.5 Scientific Applications of Microwaves.

Annotated Bibliography.

Exercises.

Exercise Answers.

Index.

商品描述(中文翻譯)

描述:
《理解微波》是對微技術這一重要領域的完整且易於理解的介紹。該書涵蓋了所有重要的微波術語、設備和系統,並提供了對如何將這些元素結合在一起以製造通信、導航和雷達設備的理解。文本針對新進微波行業的工程師、技術人員、管理者和學生。這本經過實地測試的書籍呈現了作者在工業培訓課程中使用的材料,已經培訓了數千名學生。內容易於理解,避免了複雜的數學。每章末尾都有大量練習題,書末提供答案,適合自學或作為工業研討會和大學課程的教材。

首先,內容詳細介紹了微波的特殊語言。然後,概述了在微波設備中使用的所有獨特設備,並解釋這些設備如何組合成典型的微波系統,描述它們的功能、工作原理及其重要的性能特徵。最後,該書涵蓋了所有重要類型的微波系統,包括其結構、功能和應用。《理解微波》是對這一重要領域的完整介紹。

目錄:
第一部分:微波基礎
1. 微波系統和設備概述
1.1 微波與其他電子設備的關係
1.2 微波系統
1.3 微波系統
1.4 為什麼需要微波設備
1.5 基本微波系統設計
1.6 微波傳輸線
1.7 信號控制元件
1.8 半導體放大器和振盪器
1.9 微波管
1.10 低噪聲微波接收器
1.11 微波天線
註釋書目
練習題

2. 微波場
2.1 電場和磁場
2.2 電磁波
2.3 電磁波的特性
2.4 微波在傳輸線中的表現
2.5 表皮深度
註釋書目
練習題

3. 微波功率--dB和dBm
3.1 微波功率
3.2 dB術語
3.3 dBm術語
3.4 測量微波功率的設備
註釋書目
練習題

4. 插入損耗、增益和回波損耗
4.1 插入損耗
4.2 累積元件的插入損耗
4.3 增益
4.4 累積插入損耗和增益
4.5 不匹配和回波損耗
4.6 指定反射功率的替代方法
4.7 S-參數
4.8 測量插入損耗和回波損耗的設備
註釋書目
練習題

5. 使用史密斯圖進行匹配
5.1 史密斯圖的推導
5.2 在史密斯圖上繪製不匹配
5.3 使用史密斯圖進行匹配計算
5.4 向負載移動
5.5 串聯的集中感應
5.6 並聯的匹配元件
5.7 匹配支路
5.8 四分之一波變壓器
5.9 組合的集中元件
5.10 選擇最佳匹配技術
註釋書目
練習題

第二部分:微波設備
6. 微波傳輸線
6.1 傳輸線的比較
6.2 導波長和特徵阻抗
6.3 同軸電纜
6.4 波導
6.5 條形線和微帶線
6.6 連接器和適配器
註釋書目
練習題

7. 微波信號控制元件
7.1 微波半導體
7.2 微波鐵氧體
7.3 終端
7.4 定向耦合器
7.5 合併器
7.6 隔離器和循環器
7.7 濾波器
7.8 衰減器
7.9 開關
7.10 相位移器
7.11 探測器
註釋書目
練習題

8. 微波半導體放大器
8.1 放大器性能特徵
8.2 微波半導體放大器的類型
8.3 雙極晶體管
8.4 場效應晶體管
8.5 HEMT
8.6 晶體管封裝和安裝
8.7 S-參數
8.8 晶體管偏置和匹配
8.9 IMPATT放大器
註釋書目
練習題

9. 微波振盪器
9.1 振盪器原理
9.2 振盪器性能要求
9.3 固定調諧和機械調諧振盪器
9.4 電子調諧振盪器
9.5 諧波倍增器
9.6 鎖相振盪器
9.7 上變頻器
註釋書目
練習題

10. 低噪聲接收器
10.1 低噪聲接收器的重要性
10.2 噪聲來源
10.3 噪聲單位
10.4 混頻器
10.5 低噪聲晶體管
10.6 參數放大器
註釋書目
練習題

11. 微波集成電路
11.1 微波集成電路的類型
11.2 混合微波集成電路
11.3 微帶材料和設計
11.4 微帶電路元件
11.5 微帶製造後添加的元件
11.6 安裝和封裝
11.7 單片微波集成電路
註釋書目
練習題

12. 微波管
12.1 優點和缺點
12.2 比較
12.3 網格管
12.4 克萊斯特龍
12.5 行波管
12.6 交叉場放大器
12.7 磁控管
12.8 高功率微波管
註釋書目
練習題

13. 微波天線
13.1 要求
13.2 類型
13.3 陣列
13.4 拋物面
13.5 相控陣列
註釋書目
練習題

第三部分:微波系統
14. 微波系統介紹

最後瀏覽商品 (1)