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    Modeling Planar Magnetics Temperature: Practical Guidelines for Power Electronics Engineers

    YAGEO Releases Ferrite Shielded Power Inductors for High‑Density Designs

    Samsung Presents MLCC Selection Guide for Humanoids and Robotic Applications

    AI-Assisted Structural Diagnostics and Physics-Based Reliability Interpretation of Tantalum Capacitor Anodes

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    Modeling Planar Magnetics Temperature: Practical Guidelines for Power Electronics Engineers

    YAGEO Releases Ferrite Shielded Power Inductors for High‑Density Designs

    Samsung Presents MLCC Selection Guide for Humanoids and Robotic Applications

    AI-Assisted Structural Diagnostics and Physics-Based Reliability Interpretation of Tantalum Capacitor Anodes

    YAGEO Introduces EMI Suppression High‑Current 3‑phase Common Mode Chokes

    KYOCERA AVX MIL-PRF-32535 BME NP0 MLCCs Approved to the DLA QPD

    ECIA March 2026 Industry Pulse Points to Best Sales Climate in Five Years

    Vishay Releases 2-Way Wilkinson Divider / Combiner for 15–20 GHz RF Front Ends

    Wk 15 Electronics Supply Chain Digest

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    Thermal Modeling of Magnetics

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    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

    Enabling Software‑Defined Vehicle Architectures: Automotive Ethernet and Zonal Smart Power

    Calculating Resistance Value of a Flyback RC Snubber 

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Coilcraft’s Application Note on Choosing Inductors for Energy Efficient Power Applications

29.3.2017
Reading Time: 1 min read
A A

source: Coilcraft article

Coilcraft has released its application note on choosing inductors for energy efficient power applications.

RelatedPosts

Modeling Planar Magnetics Temperature: Practical Guidelines for Power Electronics Engineers

YAGEO Releases Ferrite Shielded Power Inductors for High‑Density Designs

Samsung Presents MLCC Selection Guide for Humanoids and Robotic Applications

In high frequency DC-DC converters for battery-powered applications, improving power supply efficiency is critical and can mean the difference between a device working when it needs to or not. Inductors play a large a role in this – perhaps as large as the circuit topology itself. Inductors filter out the AC ripple current superimposed on the DC output, smoothing the ripple to provide a pseudo-DC output. The goal of highest efficiency is met by selecting an inductor that provides sufficient inductance to smooth the ripple current while simultaneously minimizing losses. This application note examines core and winding losses and the impact they have on inductor – and overall power supply – efficiency.

to read the full pdf article see the link here

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