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    How to Select Ferrite Bead for Filtering in Buck Boost Converter

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    Samsung Releases Automotive Molded 2220 1kV C0G MLCC

    How to Select Ferrite Bead for Filtering in Buck Boost Converter

    VINATech Offers Smallest 100µF Al-Hybrid Capacitor

    Vishay Unveils SMD 1200V PTC Thermistors in Compact Size

    Power Inductors Future: Minimal Losses and Compact Designs

    Bourns Unveils Automotive 3 Watt Gate Driver Transformer

    Murata Opens EMC Test Lab in Nuremberg to Enhance Automotive Support

    Percolation Phenomenon: Degradation of Molded Power Inductors in DC/DC Converters

    Molex Acquires Smiths Interconnect

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    Power Inductors Future: Minimal Losses and Compact Designs

    Percolation Phenomenon: Degradation of Molded Power Inductors in DC/DC Converters

    Connector PCB Design Challenges

    Efficient Power Converters: Duty Cycle vs Conduction Losses

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Würth Elektronik Webinar: How Extremely High Speed Data Line Chokes Filter High Frequency Noise

9.7.2020
Reading Time: 1 min read
A A

With the increase in switching speeds in digital circuits like USB 3.1/3.2, the common-mode noise is being generated at higher and higher frequencies. This noise can interfere with 4G/LTE or Wi-Fi/ Bluetooth antennas resulting in “Antenna de-sense” and communication failure.

In this webinar we present and explain an innovative common mode choke based in the transmission lines principle as a best solution to filter that high frequency noise issue. At the same time we explain the main differences of this new technology with the current one in our portfolio, the ferrite core-based common mode chokes.

RelatedPosts

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On Board Chargers – Technical Requirements and Market Overview; Würth Elektronik Webinar

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This new technology will be a game changer for your designs!

The webinar will include below topics:

  • Introduction to modern day noise coming from new interfaces
  • Noise filtering mechanisms
  • Conventional common mode choke technology
  • New & evolutionary ceramic common mode choke concept
  • Comparison & conclusion

Related

Source: Würth Elektronik

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