Introduction to RF Power Amplifier Design and Simulation (Hardcover)
Abdullah Eroglu
- 出版商: CRC
- 出版日期: 2015-07-29
- 售價: $5,980
- 貴賓價: 9.5 折 $5,681
- 語言: 英文
- 頁數: 449
- 裝訂: Hardcover
- ISBN: 1482231646
- ISBN-13: 9781482231649
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相關分類:
電力電子 Power-electronics、電子學 Eletronics、電磁學 Electromagnetics
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商品描述
Introduction to RF Power Amplifier Design and Simulation fills a gap in the existing literature by providing step-by-step guidance for the design of radio frequency (RF) power amplifiers, from analytical formulation to simulation, implementation, and measurement. Featuring numerous illustrations and examples of real-world engineering applications, this book:
- Gives an overview of intermodulation and elaborates on the difference between linear and nonlinear amplifiers
- Describes the high-frequency model and transient characteristics of metal–oxide–semiconductor field-effect transistors
- Details active device modeling techniques for transistors and parasitic extraction methods for active devices
- Explores network and scattering parameters, resonators, matching networks, and tools such as the Smith chart
- Covers power-sensing devices including four-port directional couplers and new types of reflectometers
- Presents RF filter designs for power amplifiers as well as application examples of special filter types
- Demonstrates the use of computer-aided design (CAD) tools, implementing systematic design techniques
Blending theory with practice, Introduction to RF Power Amplifier Design and Simulation supplies engineers, researchers, and RF/microwave engineering students with a valuable resource for the creation of efficient, better-performing, low-profile, high-power RF amplifiers.
商品描述(中文翻譯)
《射頻功率放大器設計與模擬入門》填補了現有文獻中的一個空白,提供了從分析公式到模擬、實現和測量的射頻(RF)功率放大器設計的逐步指導。本書包含了眾多實際工程應用的插圖和例子,內容如下:
- 概述互調現象,並詳細說明線性和非線性放大器之間的差異
- 描述金屬-氧化物-半導體場效應晶體管的高頻模型和瞬態特性
- 詳細介紹晶體管的主動器件建模技術和主動器件的寄生元件提取方法
- 探討網絡和散射參數、諧振器、匹配網絡以及Smith圖等工具
- 講解功率感測器,包括四端口定向耦合器和新型反射計
- 提供功率放大器的射頻濾波器設計以及特殊濾波器類型的應用示例
- 示範使用計算機輔助設計(CAD)工具,實施系統化設計技術
《射頻功率放大器設計與模擬入門》將理論與實踐相結合,為工程師、研究人員和射頻/微波工程學生提供了一個寶貴的資源,用於創建高效、性能更好、低輪廓、高功率的射頻放大器。