This article based on Frenetic webinar summarizes a practical design workflow using Frenetic AI, Frenetic Simulator and the new Planar...
Read moreDetailsFringing field effects at air gaps represent a significant but often underestimated source of additional winding losses in magnetic components....
Read moreDetailsThis post is based on edited tutorial video by Sam Ben-Yaakov that provides an educational content about power inductor design...
Read moreDetailsPower-line energy harvesting using current transformers offers an elegant way to power distributed electronics directly from existing AC conductors. This...
Read moreDetailsAccurate thermal prediction in magnetics is critical to avoid overheating, improve loss estimation and shorten design cycles. The Frenetic magnetic...
Read moreDetailsThe webinar by Frenetic examines two LLC transformers designed for a 300 W half‑bridge LLC stage with approximately 400 V...
Read moreDetailsMagnetic components such as inductors and transformers are central to every switched‑mode power supply, yet their design is notoriously difficult...
Read moreDetailsPlanar magnetics promise compact, low‑profile magnetics, but accurate loss, leakage, and capacitance modeling is significantly more complex than for conventional...
Read moreDetailsPower electronics teams entering 2026 face tighter space, efficiency and time‑to‑market constraints, while magnetics must still behave predictably across thermal...
Read moreDetailsThis article, based on the Würth Elektronik and onsemi webinar “Simplifying Vehicle Development with Automotive Ethernet and Zonal Smart Switch...
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© EPCI - Leading Passive Components Educational and Information Site