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Multiple-Output DC-DC Converters: Applications and Solutions

Journal

ELECTRONICS
Volume 11, Issue 8, Pages -

Publisher

MDPI
DOI: 10.3390/electronics11081258

Keywords

DC-DC converters; multiple outputs; applications; solutions

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Multiple-output DC-DC converters play a crucial role in many applications, and integrated solutions are being developed by manufacturers. The current trends involve low losses, high-power density, high efficiency, and new architectures and control strategies. The use of wide band gap materials is expected to establish future trends, with pros and cons. This paper presents various topologies, configurations, applications, and trends of multiple-output DC-DC converters.
Multiple-output DC-DC converters are essential in a multitude of applications where different DC output voltages are required. The interest and importance of this type of multiport configuration is also reflected in that many electronics manufacturers currently develop integrated solutions. Traditionally, the different output voltages required are obtained by means of a transformer with several windings, which are in addition to providing electrical isolation. However, the current trend in the development of multiple-output DC-DC converters follows general aspects, such as low losses, high-power density, and high efficiency, as well as the development of new architectures and control strategies. Certainly, simple structures with a reduced number of components and power switches will be one of the new trends, especially to reduce the size. In this sense, the incorporation of devices with a Wide Band Gap (WBG), particularly Gallium Nitride (GaN) and Silicon Carbide (SiC), will establish future trends, advantages, and disadvantages in the development and applications of multiple-output DC-DC converters. In this paper, we present a review of the most important topics related to multiple-output DC-DC converters based on their main topologies and configurations, applications, solutions, and trends. A wide variety of configurations and topologies of multiple-output DC-DC converters are shown (more than 30), isolated and non-isolated, single and multiple switches, and based on soft and hard switching techniques, which are used in many different applications and solutions.

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