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    onsemi solid-state transformer concept for 800 V HVDC AI data center power conversion with SiC modules, DC-link capacitors and high-frequency magnetics

    Solid-State Transformers for 800 V AI Data Centers: Passive Component Design Considerations

    Littelfuse TX00AT314AMA omnipolar TMR magnetic switch sensor in a leaded TO-92-3 through-hole package

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    TDK CN series 10 µF 100 V X7R soft-termination multilayer ceramic capacitor in 3225 EIA 1210 package

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    Compact inductive rotary position encoder sensor near a motor shaft, representing the Vishay RAIK045I MP encoder category

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    Overview of fabricated ferroelectric capacitors improving hyperdimensional computing task learning accuracy. a The experimental work reported in this study comprises ferroelectric capacitor (FeCAP) device fabrication, structural and electrical characterization, analog state identification and their reliability study. b The computational part of the work explores the benefits of using characteristics from the fabricated devices in a hyperdimensional computing scheme; source: authors

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    onsemi solid-state transformer concept for 800 V HVDC AI data center power conversion with SiC modules, DC-link capacitors and high-frequency magnetics

    Solid-State Transformers for 800 V AI Data Centers: Passive Component Design Considerations

    Littelfuse TX00AT314AMA omnipolar TMR magnetic switch sensor in a leaded TO-92-3 through-hole package

    Littelfuse Expands Omnipolar TMR Switch with Leaded TO-92 Package Option

    SCHURTER THT DIP Switches Support Hardware-Level Configuration

    TDK CN series 10 µF 100 V X7R soft-termination multilayer ceramic capacitor in 3225 EIA 1210 package

    TDK Releases 100 V Soft-Termination X7R MLCCs 10 uF in 3225 Package

    Compact inductive rotary position encoder sensor near a motor shaft, representing the Vishay RAIK045I MP encoder category

    Vishay Introduces 16-Bit Inductive Encoder for Motor-Adjacent Position Sensing

    Hirose FH51 automotive FPC/FFC connector with low-profile receptacle construction and top-and-bottom contact arrangement

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    Overview of fabricated ferroelectric capacitors improving hyperdimensional computing task learning accuracy. a The experimental work reported in this study comprises ferroelectric capacitor (FeCAP) device fabrication, structural and electrical characterization, analog state identification and their reliability study. b The computational part of the work explores the benefits of using characteristics from the fabricated devices in a hyperdimensional computing scheme; source: authors

    High-Precision Hyperdimensional Computing with Multi-Level Ferroelectric HZO Capacitors

    Coilcraft Introduces Automotive Common Mode Chokes Target CISPR 25 Class 5 EMC Compliance

    Murata Expands Automotive Metal Power Inductor Range

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Kemet Video | Tantalum Polymer Capacitors Extended Life for Automotive Applications

27.4.2020
Reading Time: 2 mins read
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Kemet video introducing tantalum polymer capacitors with extended capability under high temperature and moisture environment suitable for automotive applications.

A few years ago, Kemet introduced the first automotive tantalum polymer capacitors, T598 series. It was no small feat bringing polymer technology to the automotive space. The very high volumetric efficiency of our technology allows for fitting a significant amount of capacitance in a small space.

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Polymer technologies also bring with them stability and reduced losses, both of which are necessary to make electrically robust and efficient systems. Bringing such electrical advantages to the stringent requirements of the automotive market was a challenge to be sure. The story of automotive polymer doesn’t end there. Being a trusted supplier of automotive components means continually pushing the envelope, including that of temperature.

Automotive mission profiles will continue to extend, especially as autonomous technologies start to take hold. The nature of our transportation needs means that systems will start seeing increasing duty cycles and extended “up” times. Automotive powertrains and control units are requiring elevated levels of reliability.

It is for that reason that Kemet has extended the overall robustness and reliability of our automotive polymer offering by extending the 150ºC maximum operational temperature. All the while keeping the extreme harsh environmental capability of 85ºC/85%HR at rated voltage up to 2,000 hours. Regardless of which level of self-driving vehicles, the amount of electronics in cars in ever increasing. So much so that some cars are more akin to supercomputers on wheels.

The overall usable space of electronics in a car, however, is not increasing. That means that the density of electronics in increasing. It is for this reason that we have launched a series of automotive grade polymer capacitors with reduced case sizes to satisfy the needs of highly dense electronic systems. Volumetric efficiency allows these small case size polymer capacitors to possibly serve as space-saving alternatives to other energy storage options.

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Source: Kemet

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