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Transformerless noninverting buck boost switching regulator

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TLDR
A buck boost type noninverting transformerless switching regulator utilizes two synchronized switches operating at either the same or different duty cycles to independently control energy storage and energy delivery from a two terminal inductor element to the output load as mentioned in this paper.
Abstract
A buck boost type noninverting transformerless switching regulator utilizes two synchronized switches operating at either the same or different duty cycles to independently control energy storage and energy delivery from a two terminal inductor element to the output load. A wide range of output voltage is available and is continuously regulated.

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Citations
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References
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Proceedings ArticleDOI

A new optimum topology switching DC-to-DC converter

TL;DR: In this paper, a novel switching dc-to-dc converter is presented, which has the same general conversion property (increase or decrease of the input dc voltage) as does the conventional buck-boost converter, and which offers through its new optimum topology higher efficiency, lower output voltage ripple, reduced EMI, smaller size and weight, and excellent dynamics response.
DissertationDOI

Modelling, analyses and design of switching converters

TL;DR: In this paper, a state-space averaging method for modeling switching dc-to-dc converters for both continuous and discontinuous conduction mode is developed, and the results for these converters are then easily tabulated owing to the fixed equivalent circuit topology of their canonical circuit model.
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Solid state regulated power transformer with waveform conditioning capability

TL;DR: In this article, an AC input signal is chopped in a solid state switching converter at a frequency very much larger than the input signal and then filtered to attenuate the high frequency component while passing the frequency of the AC input signals, and a feedback signal modulates the duty cycle of the switching converter to provide automatic voltage regulation under varying loads and lagging power factors.
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Push-pull switching power amplifier

TL;DR: In this paper, a push-pull switching power amplifier utilizing two dc-to-dc converters is described, where each converter is comprised of two inductances, one inductance in series with a DC source and the other inductance with the output load, with suitable switching means between the inductances to obtain DC level conversion.
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Buck/boost regulator

TL;DR: In this article, a voltage regulated DC-to-DC converter is disclosed which is operable over a wide range of input voltage including voltages greater or less than the desired output voltage.