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    Nanocrystalline Cores for Low‑Loss MHz Chip Inductors

    Exxelia Miniaturized 400 MHz Inverted‑F Antenna

    Würth Elektronik Unveils High-Current Automotive Power Inductor

    Transformer-Based Power-Line Harvester Magnetic Design

    Tantalum Capacitor Anode Manufacturing Quality Management

    Middle East Conflict: The Potential Impact to Passive Components

    Wk 12 Electronics Supply Chain Digest

    Designing a 2 kW LLC Transformer with Integrated Resonant Inductor

    Inductor Technology Dossier

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    Thermal Modeling of Magnetics

    Standard vs Planar LLC transformers Comparison for Battery Chargers

    How Modern Tools Model Magnetic Components for Power Electronics

    Advanced Loss Modeling for Planar Magnetics in the Frenetic Planar Tool

    2026 Power Magnetics Design Trends: Flyback, DAB and Planar

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    Calculating Resistance Value of a Flyback RC Snubber 

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Exxelia will be showcasing High-Rel Power Magnetics Components at PCIM 2019

17.4.2019
Reading Time: 1 min read
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Source: Exxelia news

April 16th, 2019 – Paris, France – Exxelia, a leading global designer and manufacturer of highly engineered passive components, will exhibit innovative ranges of magnetics at PCIM in Nuremberg, Germany, from May 7th to 9th 2019. Notable at Exxelia’s booth #136 at Hall 6 will be custom design power transformers and inductors as well as power capacitors.
Ferrite Transformer 100kVA-20kHz

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This transformer combines high power up to 100kVA, at very high frequency 20kHz, while still providing a weak leakage inductance.

Used in an isolated DC/DC converter, its unique morphology made of U and I 126 magnetic circuit improves considerably thermal dissipation while the litz wire winding reduces high frequency losses. Characterized by a primary circuit at 540V / 350Arms and a secondary winding at 270A, this transformer ensures high performance and maximum leakage current reduction.

3 phase Inductor 3×5,5mH – 9kHz

Used in a high performance converter, this three-phase common mode choke withstands the highest current up to 580A thanks to the use of copper bar for winding while ensuring a minimal inductance of 1,4mH and filtering the far-reaching noise.

This deisgn is characterized by its extreme reliability thanks to its magnetic circuit made of 24 nanocrystalline tores, chosen to guarantee a stable inductance value across the temperature range -30°C to +140°C.

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