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References in periodicals archive ?
The design of the custom planar flyback transformer is based on a Discontinuous Conduction Mode (DCM) Flyback Converter topology with valley switching and synchronous rectification.
Bourns set out to demonstrate how a customized planar flyback transformer could maximize energy efficiencies, and tested its design in a variety of functions.
A solution to these challenges is the availability of customized planar flyback transformers. Working with a knowledgeable component supplier gives designers the ability to offer peak power supply efficiencies of over 90 percent.
Results of experimental investigation and design optimization of flyback transformer are presented.
Keywords: flyback transformer, flux leakage, voltage spikes, flyback clamping circuit, power losses.
Design of flyback transformer experimental model: a--circuit diagram of windings; b--windings of the bobbin
Power losses calculations in windings of gapped magnetic components: the i2D method applied to flyback transformers, in 2015 IEEE Energy Conversion Congress and Exposition (ECCE), 20-24 September, Montreal, Canada, 5675-5681.
6) show that employment of secondary winding in flyback transformer using parallel connected windings reduces the voltage spikes by 25% and voltage overshoot by 67% at 50W output power.
The enlargement of flyback transformer core air gap reduces the converter switch transistor drain voltage spikes, which become minimal at 0.7mm air gap.
Biela, "Accurate and computationally efficient modeling of flyback transformer parasitics and their influence on converter losses", in Conf.
Wei, "Novel winding loss analytical model of flyback transformer", in 3 7th IEEE Conf.