DocumentCode :
1116742
Title :
Optimum Biasing for Parallel Hybrid Switching-Linear Regulators
Author :
Stauth, Jason T. ; Sanders, Seth R.
Author_Institution :
California Univ., Berkeley
Volume :
22
Issue :
5
fYear :
2007
Firstpage :
1978
Lastpage :
1985
Abstract :
Hybrid combinations of switching and linear regulators have been proposed for both audio amplifiers and dynamic supply modulators for radio frequency (RF) power amplifiers (PAs). Such topologies may provide benefits in terms of efficiency, dynamic range, and speed of dynamic response compared to pure linear regulators or class-D switching amplifiers. This paper presents a framework for analyzing the bias constraints of switching and linear voltage regulators operated in a parallel-hybrid configuration. Particular emphasis is given to polar and envelope tracking RF power amplifier (RF PA) applications. Ideal expressions are derived for the optimum current contribution of the switching regulator under quasi-static operating conditions. In contrast to previous work, it is shown that the optimum mean current contribution of the switching regulator is not necessarily the dc current to the load. Explicit expressions for theoretical maximum efficiency are derived for envelope waveforms that result from two-tone and sinusoidal amplitude modulation of the RF carrier; IS-95 CDMA and IEEE 802.11a/g wireless LAN envelope waveforms are treated in simulation and experiment. Theoretical predictions are validated with measured results.
Keywords :
dynamic response; power amplifiers; radiofrequency amplifiers; waveform analysis; audio amplifiers; dynamic supply modulators; envelope waveforms; linear voltage regulators; optimum biasing; parallel hybrid switching-linear regulators; radio frequency power amplifiers; switching bias constraints; Amplitude modulation; Chirp modulation; Dynamic range; Frequency modulation; Power amplifiers; Radio frequency; Radiofrequency amplifiers; Regulators; Topology; Voltage; Class-D amplifier; dc–dc converter; dynamic supply; linear regulator; power amplifier (PA);
fLanguage :
English
Journal_Title :
Power Electronics, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-8993
Type :
jour
DOI :
10.1109/TPEL.2007.904220
Filename :
4300903
Link To Document :
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