Design and Modeling of Millimeter-wave Cmos Circuits for Wireless Transceivers: Era of Sub-100nm Technology - Ivan Chee-hong Lai - Books - Springer - 9789048177837 - October 19, 2010
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Design and Modeling of Millimeter-wave Cmos Circuits for Wireless Transceivers: Era of Sub-100nm Technology 1st Ed. Softcover of Orig. Ed. 2008 edition

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Design and Modeling of Millimeter-wave CMOS Circuits for Wireless Transceivers describes in detail some of the interesting developments in CMOS millimetre-wave circuit design. This includes the re-emergence of the slow-wave technique used on passive devices, the license-free 60GHz band circuit blocks and a 76GHz voltage-controlled oscillator suitable for vehicular radar applications.

All circuit solutions described are suitable for digital CMOS technology. Digital CMOS technology developments driven by Moore?s law make it an inevitable solution for low cost and high volume products in the marketplace. Explosion of the consumer wireless applications further makes this subject a hot topic of the day.

The book begins with a brief history of millimetre-wave research and how the silicon transistor is born. Originally meant for different purposes, the two technologies converged and found its way into advanced chip designs. The second part of the book describes the most important passive devices used in millimetre-wave CMOS circuits. Part three uses these passive devices and builds circuit blocks for the wireless transceiver. The book completes with a comprehensive list of references for further readings.

Design and Modeling of Millimeter-wave CMOS Circuits for Wireless Transceivers is useful to show the analogue IC designer the issues involved in making the leap to millimetre-wave circuit designs. The graduate student and researcher can also use it as a starting point to understand the subject or proceed to innovative from the works described herein.


196 pages, black & white illustrations

Media Books     Paperback Book   (Book with soft cover and glued back)
Released October 19, 2010
ISBN13 9789048177837
Publishers Springer
Pages 196
Dimensions 156 × 234 × 10 mm   ·   281 g
Language English  

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