This paper presents an LLC resonant DC-DC converter for single-phase offline converters. A 1 MHz 400 V to 48 V prototype employing gallium nitride (GaN) switching devices is designed and implemented. A high-frequency magnetic material is used for the magnetic devices, with the resonant inductor integrated in the transformer. The converter operation is based on soft switching and achieves up to 65 W of output power with a peak efficiency of 96 % at full-load. Inherent load regulation capability is demonstrated from 5 to 65 W of power with fixed switching frequency, while line regulation for 360 to 440 V input is verified with a frequency modulation range of 816 to 1256 KHz respectively
International audienceThis article deals with the conception of a 42V-12V isolated DC-DC converter u...
Quasi-resonant flyback converter is realized with the aim to demonstrate the topology feasibility us...
A bidirectional full-bridge LLC resonant converter with a new symmetric LLC-type resonant network us...
Gallium Nitride (GaN) is known to provide the opportunity of producing power transistors with remark...
In this paper, the development of a compact LLC resonant converter based on GaN devices and with out...
Recently, high power-density, high power-efficiency, and wide regulation range isolated DC-DC conver...
Recently, high power-density, high power-efficiency, and wide regulation range isolated DC-DC conver...
LLC resonant converters with high switching frequency can show high power density by reducing the si...
As new wide band-gap (WBG) devices are developed and improved, new topologies and control schemes ar...
This paper proposes the design considerations of resonant network and transformer magnetics for 500 ...
In this paper, the method of the realization of a MHz level switching frequency DC-DC converter for ...
As GaN power devices emerge from research to industry, the characterization of these novel devices i...
Abstract This paper develops a railway power module with wide range voltage (dc 60—dc 160 V) input a...
The authors developed a high-efficiency gallium-nitride (GaN) Class-E converter for a 6.78 MHz magne...
Ever since inception of field of electronics, electronic devices are getting smaller, lighter and mo...
International audienceThis article deals with the conception of a 42V-12V isolated DC-DC converter u...
Quasi-resonant flyback converter is realized with the aim to demonstrate the topology feasibility us...
A bidirectional full-bridge LLC resonant converter with a new symmetric LLC-type resonant network us...
Gallium Nitride (GaN) is known to provide the opportunity of producing power transistors with remark...
In this paper, the development of a compact LLC resonant converter based on GaN devices and with out...
Recently, high power-density, high power-efficiency, and wide regulation range isolated DC-DC conver...
Recently, high power-density, high power-efficiency, and wide regulation range isolated DC-DC conver...
LLC resonant converters with high switching frequency can show high power density by reducing the si...
As new wide band-gap (WBG) devices are developed and improved, new topologies and control schemes ar...
This paper proposes the design considerations of resonant network and transformer magnetics for 500 ...
In this paper, the method of the realization of a MHz level switching frequency DC-DC converter for ...
As GaN power devices emerge from research to industry, the characterization of these novel devices i...
Abstract This paper develops a railway power module with wide range voltage (dc 60—dc 160 V) input a...
The authors developed a high-efficiency gallium-nitride (GaN) Class-E converter for a 6.78 MHz magne...
Ever since inception of field of electronics, electronic devices are getting smaller, lighter and mo...
International audienceThis article deals with the conception of a 42V-12V isolated DC-DC converter u...
Quasi-resonant flyback converter is realized with the aim to demonstrate the topology feasibility us...
A bidirectional full-bridge LLC resonant converter with a new symmetric LLC-type resonant network us...