2023Unpublished venueRequires access

Isolated Multi-Output Power Supply Based on Flyback Converter

Pratik Kumar Padhee, P. C. Sekhar

Open publisher page 14 citations

Abstract

In the case of DC systems, there is a need to obtain different regulated output voltage levels from variable input voltage. To achieve this, flyback converter can be used in single input multi-output topology with closed loop configuration. In this connection, this paper presents an overview of the conceptual understanding behind the working principle of flyback converter and the design of multi-output flyback converter. To produce regulated multi-output voltages, a model of multi-output flyback converter is developed using Matlab/Simulink platform. In addition, the comparison of the flyback converter with other isolated DC-DC converters such as forward and push-pull converters is discussed to present the case of flyback converters and its superiority over other types of converters. The working of the designed flyback converter is verified through a laboratory prototype.

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What this paper is about

In the case of DC systems, there is a need to obtain different regulated output voltage levels from variable input voltage. To achieve this, flyback converter can be used in single input multi-output topology with closed loop configuration. In this connection, this paper presents an overview of the conceptual understanding behind the working principle of flyback converter and the design of multi-output flyback converter. To produce regulated multi-output voltages, a model of multi-output flyback converter is developed using Matlab/Simulink platform. In addition, the comparison of the flyback converter with other isolated DC-DC converters such as forward and push-pull converters is discussed to present the case of flyback converters and its superiority over other types of converters. The working of the designed flyback converter is verified through a laboratory prototype.

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Available abstract

In the case of DC systems, there is a need to obtain different regulated output voltage levels from variable input voltage. To achieve this, flyback converter can be used in single input multi-output topology with closed loop configuration. In this connection, this paper presents an overview of the conceptual understanding behind the working principle of flyback converter and the design of multi-output flyback converter. To produce regulated multi-output voltages, a model of multi-output flyback converter is developed using Matlab/Simulink platform. In addition, the comparison of the flyback converter with other isolated DC-DC converters such as forward and push-pull converters is discussed to present the case of flyback converters and its superiority over other types of converters. The working of the designed flyback converter is verified through a laboratory prototype.

Key concepts: Flyback converter, Flyback transformer, Converters, Buck–boost converter, Flyback diode, Forward converter, Buck converter, Boost converter

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