Advanced Loss Modeling for Planar Magnetics in the Frenetic Planar Tool
Planar magnetics promise compact, low‑profile magnetics, but accurate loss, leakage, and capacitance modeling is significantly more complex than for conventional ...
Planar magnetics promise compact, low‑profile magnetics, but accurate loss, leakage, and capacitance modeling is significantly more complex than for conventional ...
Power electronics teams entering 2026 face tighter space, efficiency and time‑to‑market constraints, while magnetics must still behave predictably across thermal ...
Modern power electronics design relies on a diverse toolbox, from general‑purpose circuit simulators to highly specialized magnetics and component‑selection platforms. ...
Push‑pull converters remain attractive in isolated DC/DC stages where cost and simplicity are key, but their practical design window is ...
In this session, Marcos Luna, experienced power electronics engineer at Frenetic, broke down the most frequent (and costly) mistakes in ...
This session lead by Frenetic CTO, Jonas Mühlethaler, covers the core principles of Full-Bridge LLC resonant converters and showcase how ...
Designing a 60W Flyback Transformer requires careful selection of core materials, winding configurations, and optimization techniques. In this video, Iain ...
This article summarizes a technical webinar delivered by power electronics consultant Nicola Rosano, who walked engineers through the entire LLC ...
Frenetic published power electronics webinar recording with their research specialist Richard Schlesinger on transformer leakage inductance behaviour and modelling. Transformer leakage inductance is ...
In this Frenetic webinar, Bob White (President and Chief Engineer at Embedded Power Labs) presents an insightful lecture on the ...
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© EPCI - Leading Passive Components Educational and Information Site