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Patent

Power converter possessing zero-voltage switching and output isolation

TLDR
In this article, a modified boost converter accomplishes power transfer to a load with an electrical isolation, a zerovoltage and a zero-current switching, a transformer core resetting mechanism, and component stresses identical to those in the conventional boost converters.
Abstract
A modified boost converter accomplishes power transfer to a load with an electrical isolation, a zero-voltage and a zero-current switching, a transformer core resetting mechanism, and component stresses identical to those in the conventional boost converters. The power converter contains two switching devices, a main one connected in parallel and a secondary one connected in series with a transformer primary winding. A secondary winding of the transformer is connected through an output rectifier to the load. Zero-voltage switching and proper transformer-core resetting are achieved from the resonance that exists between the parasitic capacitance of the secondary switching device and the magnetization inductance of the transformer. A transformer leakage inductance facilitates zero-current switching; thus, reducing the recovery time and current in the output rectifier, and the turn-on switching loss in the conventional main switching device. The switching converter contains a lossless clamping circuit, to limit the voltage stresses across both of the power switching devices to the reflected output voltage appearing across the primary.

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Citations
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Proceedings ArticleDOI

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References
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Patent

Transformer isolated AC to DC power conditioner with resistive input current

TL;DR: In this article, a single-stage power conditioner which produces an isolated DC output while drawing resistive input current from the utility has been described, and a high frequency switch-mode technique was used which operates in continuous conduction mode to reduce electro-magnetic interference (EMI) generation and ripple losses.