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Reconfigurable RF Power Amplifiers on Silicon for Wireless Handsets (Analog Circuits and Signal Processing),Used
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Reconfigurable RF Power Amplifiers on Silicon for Wireless Handsets is intended to designers and researchers who have to tackle the efficiency/linearity tradeoff in modern RF transmitters so as to extend their battery lifetime. High data rate 3G/4G standards feature broad channel bandwidths, high dynamic range and critical envelope variations which generally forces the power amplifier (PA) to operate in a low efficiency backedoff regime. Classic efficiency enhancement techniques such as Envelope Elimination and Restoration reveal to be little compliant with handsetdedicated PA implementation due to their channelbandwidthlimited behavior and their increased die area consumption and/or billofmaterial. The architectural advances that are proposed in this book circumvent these issues since they put the stress on low diearea /low powerconsumption control circuitry. The advantages of silicon over III/V technologies are highlighted by several analogue signal processing techniques that can be implemented onchip with a power amplifier. Systemlevel and transistorlevel simulations are combined to illustrate the principles of the proposed power adaptive solutions. Measurement on BICMOS demonstrators allows validating the functionality of dynamic linearity/efficiency management. In Reconfigurable RF Power Amplifiers on Silicon for Wireless Handsets, PA designers will find a review of technologies, architectures and theoretical formalisms (Volterra series) that are traditionally related to PA design. Specific issues that one encounters in power amplifiers (such as thermal / memory effects, stability, VSWR sensitivity) and the way of overcoming them are also extensively considered throughout this book.
⚠️ WARNING (California Proposition 65):
This product may contain chemicals known to the State of California to cause cancer, birth defects, or other reproductive harm.
For more information, please visit www.P65Warnings.ca.gov.