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EMC Issues and How to Avoid it

1.11.2021

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    Waveguides and Transmission Lines Explained

    Electron microscope images show the precise atom-by-atom structure of a barium titanate (BaTiO3) thin film sandwiched between layers of strontium ruthenate (SrRuO3) metal to make a tiny capacitor. (Credit: Lane Martin/Berkeley Lab)

    Researchers Developed BaTiO3 Ultrathin Ceramic Capacitors for Microchips

    Common-mode Choke Parameters Explained; WE Webinar

    Bourns Releases Power Line Communication (PLC) Transformers

    Murata to Begin Closed-loop Recycling of PET Film Used at MLCC Production

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    Ceramic Capacitors Loss Modelling under High DC Bias Voltage and High Current Stress

    MLCC Case Size Impact to Parameters

    NTC Thermistor in Fire Alarm Application LTSpice Simulation

    MLCC Ageing; Samsung Video

    Vishay NTC Thermistor LTspice Simulation for PID Optimization; Vishay Webinar

    Coverlay – More than a Flexible Soldermask Substitute; WE Webinar

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EMC Issues and How to Avoid it

1.11.2021
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Designers, manufacturers, importers, and installers of electronic systems must demonstrate that their products do not generate or suffer from electromagnetic interference (EMC). And this is not easy!

Really, it is difficult! Delays, unexpected costs, nerves and stress, or loss of image with a potential client, are some of the most important effects derived from non-compliance with the Electromagnetic Compatibility regulations. To avoid failing in EMC, it is critical to include EMC philosophy as soon as possible in the development stage of a product. But it is common to find companies where that strategy is not implemented as required. Let’s review what EMC is, why EMC is so difficult to comply, and how to minimize the risks of problems in this conference including real examples, technical information, and fun.

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This presentation was part of Würth Elektronik virtual conference (25-28 Oct.): WE meet @ EMC Digital Days 2021

Source: EPCI

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