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    TDK Releases Ultra-small PFC Capacitors

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    TDK Releases 140C Compact Vibration Robust Automotive Aluminum Capacitors

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    source: Samtec

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    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

    Understanding Inductor Dot Markings and Their Application in LTspice

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    TDK Releases Ultra-small PFC Capacitors

    KYOCERA AVX Releases Novel Mini BME Stacked Ceramic Capacitors

    Vishay Releases Class 1 Leaded High Voltage Ceramic Disc Capacitors

    TDK Releases 140C Compact Vibration Robust Automotive Aluminum Capacitors

    DigiKey Presents Factory Tomorrow Season 5 Video Series

    Samsung MLCCs Lineup for In-Vehicle Infotainment

    source: Samtec

    Best Practices for Cable Management in High-Speed and High-Density Systems

    Würth Elektronik Unveils Compact Common-Mode Data Lines Chokes

    Bourns Releases TCO 240 Watt USB Mini-Breaker

    Trending Tags

    • Ripple Current
    • RF
    • Leakage Current
    • Tantalum vs Ceramic
    • Snubber
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    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

    Understanding Inductor Dot Markings and Their Application in LTspice

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    • Inductors explained
    • Resistors explained
    • Filters explained
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Power Supply Efficiency Improvements at Low Load Conditions; WE Webinar

1.2.2024
Reading Time: 2 mins read
A A

Performance of modern power supplies must demonstrate excellent efficiency at all power levels. Lear in this Würth Elektronik and NXP webinar how to improve power supply efficiency at low load conditions.

Traditionally, power supply efficiency is important for high power levels to reduce energy consumption of the overall application during normal operation.

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Würth Elektronik Releases Push-Button and Main Switches

To minimize the size and cost pf component and power supplies by operating at a lower temperature due to reduced losses in the power supply.

But more and more applications have become “smart” and run in different operation modes, even at lower power levels. Due to environmental objectives, energy consumption in standby mode has become a subject of legal requirements. And there is more competition between companies on showing how “green” their products are.

Selecting Efficient Passive Components will primarily delve into the discussion of various passive elements employed in power converters. It will also provide design tips and highlight their advantages compared to different technologies available in the market.

Agenda:

  1. Introduction to the importance of power supply efficiency – specially at low power loads (NXP)
  2. How can we achieve good efficiency at low loads in PFC+LLC power supply systems – using NXP control ICs (NXP)
  3. Laboratory bench demonstration of efficiency improvements and the interaction with output voltage ripple and audible noise (NXP)
  4. Design Considerations for LLC transformer
  5. Important Considerations for Leakage
  6. Overview of Traditional Bobbin PFC Series (WE-PFC) vs WE-TORPFC: New Toroidal PFC Chokes
  7. Advantages of Flat Wire vs Round Wire

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Source: Würth Elektronik

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