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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

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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

    Hirose Automotive FPC/FFC Connector Adds One-Action Mating up to 125°C

    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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Würth Elektronik Organized Exclusive Technology Seminars for Developers in Student e-Racing Teams

22.1.2021
Reading Time: 3 mins read
A A

Würth Elektronik is pleased to announce the addition of technology partnerships for eMobility, including three Exclusive Formula Student teams and Team Sonnenwagen Aachen e. V. Intensive virtual seminars were held for 2 days for the individual development teams. The content of the exclusive seminars was specially adapted to the needs and requests of the respective teams. Through these seminars, the student developers received support from proven experts from Würth Elektronik to help with selected technology areas.

“True to our motto “WE speed up the future”, we promote technology partnerships, which also include our three exclusive teams in Formula Student – Greenteam Uni Stuttgart e. V., KA RaceIng e. V., HHN Racing e. V. – and Team Sonnenwagen Aachen e.V.. Our primary aim here is to support the racing teams with our services in their developments in the field of eMobility from the very beginning and to familiarize them with our product portfolio at an early stage,” explains Marion Wagner, Strategy & Coordination Manager for Group Technology Partnerships eMotorsports of the Würth Elektronik Group. “Intensive support in the development phase is important here, so that errors, for example in the area of electromagnetic compatibility, can be avoided in advance. Our specialists are available to the teams at all times with advice and support to drive the project forward together.”

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Virtual in the Innovation Center

Ingenuity is required during these times, so the first intensive seminar, initially planned as a face-to-face event for the end of October 2020, was moved to a virtual space. Spontaneously, the Research & Innovation Center of the Reinhold-Würth-Hochschule in Künzelsau was used to meet with the developers of the Sonnenwagen Aachen team via video conference. Sonnenwagen Aachen has already developed two solar-powered vehicles and participates annually in international competitions such as the European Solar Challenge in Belgium, and the World Solar Challenge in Australia. Twelve developers received exclusive training on surge, burst and ESD protection, EMC with design tips and filter circuits, SMD ferrites, EMC and efficiency optimization of high-power DC/DC converters, common mode chokes and industrial radio standards. In this way, the latest technology trends are incorporated into the development or challenges in the electronics design of the Sonnenwagen Aachen and can be discussed directly with the experts from Würth Elektronik.

Individual program

In mid-December, Würth Elektronik then held an intensive seminar for the Formula Student team Greenteam Uni Stuttgart, and another one for the KA-RaceIng team of KIT Karlsruhe. The topics ranged from EMC-compliant design of AC/DC converters, to Bluetooth Low Energy and LAN transceivers. The technical contents were supplemented by a module on the topic of new product development in the field of New Mobility – from the original idea to market maturity. The career tips section of the program gave the audience an understanding of the process and content of a successful job interview, as well as entry-level opportunities in the company. After positive feedback, the University Marketing Team of Würth Elektronik eiSos then organized another seminar, in which all other Formula Student teams supported by Würth Elektronik in Germany could participate. Here, the number of participants was larger and the audience had the opportunity to choose between topics presented simultaneously in various virtual rooms. The seminar series was a complete success and has aroused interest for further joint seminars.

Related

Source: Würth Elektronik

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