In server AI application one of the biggest bottlenecks to keep up calculation capability is power management, hence high power density and high efficiency power supply are required. 48 V power-delivery architecture has been promoted to replace the 12 V power supply [1] where a two-stage approach is commonly adopted. First stage is typically implemented with an unregulated converter such as LLC or STC [2]. LLC converters with matrix transformer are suitable for these applications, however, where isolation is not needed a non-isolated resonant hybrid switched capacitor converter is a valuable candidate. In this paper a novel magnetic structure called matrix multi-tapped autotransformer is presented. This structure combines the benefit of matrix transformer with the advantages of hybrid switched capacitor structure. Experimental results for a 450 W prototype in 8th brick ultra-low profile factor achieving 1300 W/in3 power density, are proving the effectiveness of the proposed approach.

Ultra-low profile hybrid switched capacitor converter with matrix multi-tapped autostransformer

Rizzolatti R.;Saggini S.;
2021-01-01

Abstract

In server AI application one of the biggest bottlenecks to keep up calculation capability is power management, hence high power density and high efficiency power supply are required. 48 V power-delivery architecture has been promoted to replace the 12 V power supply [1] where a two-stage approach is commonly adopted. First stage is typically implemented with an unregulated converter such as LLC or STC [2]. LLC converters with matrix transformer are suitable for these applications, however, where isolation is not needed a non-isolated resonant hybrid switched capacitor converter is a valuable candidate. In this paper a novel magnetic structure called matrix multi-tapped autotransformer is presented. This structure combines the benefit of matrix transformer with the advantages of hybrid switched capacitor structure. Experimental results for a 450 W prototype in 8th brick ultra-low profile factor achieving 1300 W/in3 power density, are proving the effectiveness of the proposed approach.
2021
978-1-7281-8949-9
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11390/1213146
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