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    Improving SMPS Performance with Thermal Interface Material

    Polymer Tantalum Capacitors Beyond AEC-Q200 LEO Satellites

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    Development of Nitrogen-Doped Graphene Supercapacitors 

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    Efficient Power Converters: Duty Cycle vs Conduction Losses

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    Improving SMPS Performance with Thermal Interface Material

    Polymer Tantalum Capacitors Beyond AEC-Q200 LEO Satellites

    Components Thermal and Frequency Challenges in 6G Base Stations

    Development of Nitrogen-Doped Graphene Supercapacitors 

    Layer-by-Layer Fabrication of Thin Polypropylene-based Dielectrics

    Kyocera Launches New SAW Filter for GNSS 1.6GHz Satellite Communications

    Reliability of E-Textile Conductive Paths and Passive Component Interfaces

    Flaked Tantalum Powders: High Capacitance Powders for High Reliable Tantalum Capacitors

    Efficient Power Converters: Duty Cycle vs Conduction Losses

    Trending Tags

    • Ripple Current
    • RF
    • Leakage Current
    • Tantalum vs Ceramic
    • Snubber
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    Efficient Power Converters: Duty Cycle vs Conduction Losses

    Ripple Steering in Coupled Inductors: SEPIC Case

    SEPIC Converter with Coupled and Uncoupled Inductors

    Coupled Inductors in SEPIC versus Flyback Converters

    Non-Linear MLCC Class II Capacitor Measurements Challenges

    Percolation Phenomenon and Reliability of Molded Power Inductors in DC/DC converters

    Root Causes and Effects of DC Bias and AC in Ceramic Capacitors

    How to Calculate the Output Capacitor for a Switching Power Supply

    Switched Capacitor Converter Explained

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KEMET Design it Day: Safety Capacitors

27.7.2022
Reading Time: 1 min read
A A

RelatedPosts

Tantalum Capacitor History

Understanding the Influence of ESR and Ripple Current for the Capacitor Selection

Resonant MLCC OBC Application Guide

Sometimes called EMI safety capacitors, these capacitors that are placed across-the-line or from line-to-neutral must be carefully selected to ensure safety in devices that unless otherwise carefully selected may cause harm. The specifics of which technology to use is a careful trade-off of performance features while still maintaining uncompromising safety.

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Source: KEMET Electronics

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