User Disclaimer and Agreements

This blog is maintained for the personal use of the author, with the intention of creating a list of bookmarks of free audio-books, comics, e-books, games, magazine, music, series, softwares, tutorials and other materials available on the net therefore neither you can't sell, nor use it for any commercial purposes. The author of this blog respects the copyright law and did not upload any of those you find here. We just collects (by using google and other search engines) link(s) hosted or posted by other server/people. The creator of this page or the ISP(s) hosting any content on this site take no responsibility for the way you use the information provided on this site. These audio-books, e-books, magazine, softwares, tutorials etc here are for educational purposes only and SHOULD BE VIEWED ONLY. If you download any files to view them, you are agreeing to delete them within a 24 hour period. It is strictly recommended to buy the products from the original owner/publisher of the products. The link(s) will be removed as soon as any complaint received from the original publisher/author of any material is published herein. Wish you have a good education.

Saturday, August 30, 2008

Advanced Design Techniques for RF Power Amplifiers

Advanced Design Techniques for RF Power Amplifiers (Analog Circuits and Signal Processing)
by Anna Rudiakova, Vladimir Krizhanovski


Publisher: Springer
Number Of Pages: 136
Publication Date: 2006-08-18
ISBN/ ASIN: 1402046383
EAN: 9781402046384

Advanced Design Techniques for RF Power Amplifiers' main aim is to provide the reader with a deep analysis of theoretical aspects, modelling, and design strategies of RF high-efficiency power amplifiers. Advanced Design Techniques for RF Power Amplifiers begins with an analytical review of current state of the problem. Then it moves to the theoretical analysis of BJT class-F power amplifier near transition frequency and presents the necessary realization conditions. The next part concerns the practical verification and demonstration of the theoretical results. It is followed by the part devoted to the output networks of high-efficiency power ampifiers. The novel type of photonic band-gap structure providing improved characteristics both in the pass and stop bands is proposed. Finally, the fifth-harmonic peaking class F power amplifier design based on the above structure is presented.

Download

No comments: