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    Researchers developed a polymer capacitor by combining two cheap, commercially available plastics. The new polymer capacitor makes use of the transparent material — pictured here, with vintage Penn State athletic marks visible through it — to store four times the energy and withstand significantly more heat.  Credit: Penn State

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    Modelithics Library for MATLAB: Measurement-Based Models for Microwave and RF Passive Components

    Bourns Extends Multilayer Chip Inductors Offer for RF and Wireless Designs

    Researchers developed a polymer capacitor by combining two cheap, commercially available plastics. The new polymer capacitor makes use of the transparent material — pictured here, with vintage Penn State athletic marks visible through it — to store four times the energy and withstand significantly more heat.  Credit: Penn State

    Penn State Demonstrated Polymer Alloy Capacitor Film with 4× Energy Density up to 250C

    ECIA January 2026 Reports Strong Sales Confidence

    Vishay Unveils Ultra-Compact 0201 Thick Film Chip Resistors

    Würth Elektronik Component Data Live in Accuris

    Coilcraft Releases Automotive Common Mode Chokes

    MLCC Manufacturers Consider Price Increase as AI Demand Outpaces Supply

    YAGEO Extends Antenna Portfolio with Wi‑Fi 6E/7 and Tri‑band GNSS Solutions

    Trending Tags

    • Ripple Current
    • RF
    • Leakage Current
    • Tantalum vs Ceramic
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    2026 Power Magnetics Design Trends: Flyback, DAB and Planar

    Enabling Software‑Defined Vehicle Architectures: Automotive Ethernet and Zonal Smart Power

    Calculating Resistance Value of a Flyback RC Snubber 

    One‑Pulse Characterization of Nonlinear Power Inductors

    Thermistor Linearization Challenges

    Coaxial Connectors and How to Connect with PCB

    PCB Manufacturing, Test Methods, Quality and Reliability

    Transformer Behavior – Current Transfer and Hidden Feedback

    Choosing the Right Capacitor: The Importance of Accurate Measurements

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RECOM line inductors easy EMC compliance for DC/DC converters

26.2.2019
Reading Time: 1 min read
A A

Source: Recom news

Complementary to its DC/DC converter portfolio, RECOM now offers its RLS line inductor series, which have been pre-tested to meet both conducted and radiated interference limits.
It is often necessary to add additional filter components to a DC/DC converter module to meet Class A or Class B EMC limits. To build such an EMC filter, inductors from a range of different manufacturers can be selected.

RelatedPosts

Modelithics Library for MATLAB: Measurement-Based Models for Microwave and RF Passive Components

Bourns Extends Multilayer Chip Inductors Offer for RF and Wireless Designs

Penn State Demonstrated Polymer Alloy Capacitor Film with 4× Energy Density up to 250C

 

Although these different inductors have similar technical specifications, they can show a significant deviation when handling EMI frequency interferences. As it is also essential that the filter circuit matches the DC/DC converter characteristics over the full frequency range, RECOM now offers its RLS series of inductors which have been pre-tested and matched with RECOM converters to pass both conducted and radiated interference limits.

Many other manufacturers only test for conducted noise because it can be measured without needing an expensive EMC chamber, but when test house approval is required, designs can fail EMC due to radiated noise. With RECOM’s solution, the customer can be confident that they can pass both conducted and radiated EMC tests.

Samples and OEM pricing are available from all authorized distributors or directly from RECOM.

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