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    Highly Reliable Flex Rigid PCBs, Würth Elektronik Webinar

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    Inductor Resonances and its Impact to EMI

    Developing Low Inductance Film Capacitor using Bode 100 Analyzer

    Highly Reliable Flex Rigid PCBs, Würth Elektronik Webinar

    Würth Elektronik Releases High Performance TLVR Coupled Inductors

    YAGEO Extends Rectangular Aluminum Electrolytic Capacitor Family

    Dr. Tomas Zednicek Vision for Europe 2025 Passive Electronics Market

    Littelfuse Releases Industry-First SMD Fuse with 1500A Interrupting Rating at 277V

    TDK Unveils Industry Highest Rated Current Multilayer Chip Beads

    Vishay Releases Automotive SMD Thick Film Power Resistor for Enhanced Protection Against Short Transient Pulses

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    How to design a 60W Flyback Transformer

    Modeling and Simulation of Leakage Inductance

    Power Inductor Considerations for AI High Power Computing – Vishay Video

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Inductor Resonances and its Impact to EMI

16.5.2025
Reading Time: 2 mins read
A A

In his video published by Omicron Lab, Arturo Mediano – University of Zaragoza studies impact of inductor resonance to its performance and how it impacts EMI Electromagnetic Interference.

Inductors are one of the essential components in the design of any electronic system, alongside capacitors.

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They come in various types, including air-core and magnetic-core inductors, and are utilized in low-signal applications as well as in power electronics. Inductors play critical roles in the design of filters, impedance matching networks, DC/DC converters, oscillators, and more.

However, inductors are not ideal components. Their resonant frequencies can pose significant challenges, particularly in the context of Electromagnetic Compatibility (EMC) and EMI design. These resonances can lead to unintended oscillations or issues, which are often complex and challenging to diagnose.

In this video, we will introduce the nature of these resonant frequencies, exploring how they can be measured and modeled in a basic form. We will also present some examples such as buck converter illustrating the critical problems that arise when attempting to achieve designs compliant with EMC standards. Understanding these resonances is vital for developing robust electronic systems that minimize interference and optimize performance.

further read posts:

Causes of Oscillations in Flyback Converters

Buck Converter Design and Calculation

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Source: Omicron Lab, University of Zaragoza

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