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

    Molex Acquires Smiths Interconnect

    Murata Integrates Component Models into Cadence EDA Tools

    Wk 42 Electronics Supply Chain Digest

    Stackpole Introduces Automotive Thick Film Wide Termination Chip Resistors

    September 2025 ECIA US Components Sales Sentiment Continues in Optimism

    Bourns Release Automotive 4-Terminal Shunt Resistors

    Bourns Releases High Inductance Common Mode Choke

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    Connector PCB Design Challenges

    Efficient Power Converters: Duty Cycle vs Conduction Losses

    Ripple Steering in Coupled Inductors: SEPIC Case

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TDK Presents Various Large-Size Ferrite Cores for Industrial Applications

25.7.2025
Reading Time: 2 mins read
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TDK introduces various large-size ferrite cores with different shapes for a wide range of industrial applications.

TDK Corporation presents a variety of new large-size ferrite cores with different core shapes, making this the industry’s largest lineup of shapes, sizes, and materials for such large cores.

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These are used in a wide range of industrial applications such as motor drives, EV charging stations, various railway/traction applications, power transformers, welding, medical, uninterruptible power supplies (UPS), solar inverters, and other renewable energy applications.

These cores allow for optimizing magnetic design for efficiency and thermal performance. 

The new standardized large-size core program contains E, U, I, PM, and PQ cores in the N27, N87, N88, N92, N95, and N97 power materials. Accessories like coil former and mounting hardware are available. 

For simulation, TDK offers the Ferrite Magnetic Design Tool. This is free of charge. 

Features

  • Significantly increased power 
  • Low losses at high switching frequencies 
  • Low losses at high temperatures (+100 °C to +140 °C) 
  • Coil former for multiple stacked E-cores 

Applications

  • Traction and railway 
  • EV and battery charging 
  • Renewable energies (wind/solar) 
  • Energy storage 
  • Welding 
  • Medical 

Related

Source: TDK

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