An Isolated Active-Clamped Circuit Current-Fed Half-Bridge Converter

This paper presents an isolated regenerative active-clamped circuit designed for the current-fed half-bridge (IRACCFHB) converter. Its primary function is to reduce high voltage spikes across the main switches caused by energy stored in the leakage inductance of the power transformer using a clampin...

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Detalles Bibliográficos
Autores: da Silva, Glauco E. R, Stein , Carlos M. de O., da Costa , Jean P., Carati, Emerson G., Cardoso, Rafael, Denardin, Gustavo W., Quispe , Jhon B. B.
Tipo de recurso: artículo
Estado:Versión publicada
Fecha de publicación:2025
País:Brasil
Institución:Associação Brasileira de Eletrônica de Potência (SOBRAEP)
Repositorio:Eletrônica de Potência (Online)
Idioma:inglés
OAI Identifier:oai:ojs2.journal.sobraep.org.br:article/1008
Acceso en línea:https://journal.sobraep.org.br/index.php/rep/article/view/1008
Access Level:acceso abierto
Palabra clave:Current-fed half-bridge
isolated regenerative active-clamped circuit
zero current switching
zero voltage switching
Descripción
Sumario:This paper presents an isolated regenerative active-clamped circuit designed for the current-fed half-bridge (IRACCFHB) converter. Its primary function is to reduce high voltage spikes across the main switches caused by energy stored in the leakage inductance of the power transformer using a clamping capacitor. This recovered energy is delivered efficiently to the load, maintaining the converter's high efficiency and voltage ratio. The proposed auxiliary circuit employs a single active switch with the same ground reference as the main switches, eliminating the need for an isolated gate driver. The converter achieves zero voltage switching (ZVS) during the turn-off of the main switches and zero current switching (ZCS) during the turn-on of the auxiliary switch. Energy recovery to the load is accomplished without compromising galvanic isolation due to employing a coupled inductor in the auxiliary circuit. To validate the proposed analysis and design, a $350~\mathrm{W}$ prototype was implemented.