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Item Details
Title: CONTINUOUS-TIME DIGITAL FRONT-ENDS FOR MULTISTANDARD WIRELESS TRANSMISSION
By: Pieter A. J. Nuyts, Patrick Reynaert, Wim Dehaene
Format: Paperback

List price: £109.99


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ISBN 10: 3319378813
ISBN 13: 9783319378817
Publisher: SPRINGER INTERNATIONAL PUBLISHING AG
Pub. date: 1 October, 2016
Edition: Softcover reprint of the original 1st ed. 2014
Series: Analog Circuits and Signal Processing
Pages: 309
Description: This book describes the design of fully digital multistandard transmitter front-ends which can directly drive one or more switching power amplifiers, eliminating all other analog components. Describes two chips designed using nanometer CMOS technologies.
Synopsis: This book describes the design of fully digital multistandard transmitter front-ends which can directly drive one or more switching power amplifiers, thus eliminating all other analog components. After reviewing different architectures, the authors focus on polar architectures using pulse width modulation (PWM), which are entirely based on unclocked delay lines and other continuous-time digital hardware. As a result, readers are enabled to shift accuracy concerns from the voltage domain to the time domain, to coincide with submicron CMOS technology scaling. The authors present different architectural options and compare them, based on their effect on the signal and spectrum quality. Next, a high-level theoretical analysis of two different PWM-based architectures - baseband PWM and RF PWM - is made. On the circuit level, traditional digital components and design techniques are revisited from the point of view of continuous-time digital circuits. Important design criteria are identified and different solutions are presented, along with their advantages and disadvantages.Finally, two chips designed in nanometer CMOS technologies are described, along with measurement results for validation.
Illustrations: 161 black & white illustrations, 3 colour illustrations, 23 black & white
Publication: Switzerland
Imprint: Springer International Publishing AG
Returns: Returnable
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