This paper discusses some models useful to analyze ferrite inductors operating in partial saturation in Switch-Mode Power Supplies (SMPSs). Inductance vs current curves are needed to assess if the level of saturation is sustainable for the inductor, in order to achieve SMPS volume reduction. The models discussed in the paper are generated from experimental voltage and current waveforms of the inductor in SMPSs. Two dual approaches are presented, based on the local and global characterization of the inductor under small- and large-amplitude current ripple conditions. The resulting curves provide inductor current prediction in agreement with experimental data
This paper proposes a new modeling approach for ferrite-core (FC) power inductors used in switch-mod...
This paper proposes a new modeling approach for ferrite-core (FC) power inductors used in switch-mod...
This paper proposes a new modeling approach for ferrite-core (FC) power inductors used in switch-mod...
This paper discusses some models useful to analyze ferrite inductors operating in partial saturation...
This paper discusses some models useful to analyze ferrite inductors operating in partial saturation...
This paper discusses some models useful to analyze ferrite inductors operating in partial saturation...
This paper discusses some models useful to analyze ferrite inductors operating in partial saturation...
This paper discusses some models useful to analyze ferrite inductors operating in partial saturation...
In this paper a nonlinear model is proposed to characterize ferrite-core inductors operating in satu...
This paper presents a method to predict the real operation current wave-shape of Ferrite Core (FC) i...
This paper presents a method to predict the real operation current wave-shape of Ferrite Core (FC) i...
This paper presents a method to predict the real operation current wave-shape of Ferrite Core (FC) i...
This paper presents a method to predict the real operation current wave-shape of Ferrite Core (FC) i...
This paper proposes a new modeling approach for ferrite-core (FC) power inductors used in switch-mod...
This paper proposes a new modeling approach for ferrite-core (FC) power inductors used in switch-mod...
This paper proposes a new modeling approach for ferrite-core (FC) power inductors used in switch-mod...
This paper proposes a new modeling approach for ferrite-core (FC) power inductors used in switch-mod...
This paper proposes a new modeling approach for ferrite-core (FC) power inductors used in switch-mod...
This paper discusses some models useful to analyze ferrite inductors operating in partial saturation...
This paper discusses some models useful to analyze ferrite inductors operating in partial saturation...
This paper discusses some models useful to analyze ferrite inductors operating in partial saturation...
This paper discusses some models useful to analyze ferrite inductors operating in partial saturation...
This paper discusses some models useful to analyze ferrite inductors operating in partial saturation...
In this paper a nonlinear model is proposed to characterize ferrite-core inductors operating in satu...
This paper presents a method to predict the real operation current wave-shape of Ferrite Core (FC) i...
This paper presents a method to predict the real operation current wave-shape of Ferrite Core (FC) i...
This paper presents a method to predict the real operation current wave-shape of Ferrite Core (FC) i...
This paper presents a method to predict the real operation current wave-shape of Ferrite Core (FC) i...
This paper proposes a new modeling approach for ferrite-core (FC) power inductors used in switch-mod...
This paper proposes a new modeling approach for ferrite-core (FC) power inductors used in switch-mod...
This paper proposes a new modeling approach for ferrite-core (FC) power inductors used in switch-mod...
This paper proposes a new modeling approach for ferrite-core (FC) power inductors used in switch-mod...
This paper proposes a new modeling approach for ferrite-core (FC) power inductors used in switch-mod...