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    TDK Extends SMT Gate Drive Transformers to 1000 V

    Non-Linear MLCC Class II Capacitor Measurements Challenges

    Researchers Demonstrated HfO Anti-Ferroelectric Flexible Capacitors

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    Non-Linear MLCC Class II Capacitor Measurements Challenges

    Percolation Phenomenon and Reliability of Molded Power Inductors in DC/DC converters

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    Switched Capacitor Converter Explained

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    Accelerating Full Bridge LLC Resonant Converter Design with Frenetic AI

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    TDK Extends SMT Gate Drive Transformers to 1000 V

    Non-Linear MLCC Class II Capacitor Measurements Challenges

    Researchers Demonstrated HfO Anti-Ferroelectric Flexible Capacitors

    Connector Industry Achieves Double-Digit Growth

    Stackpole Unveils Metal Element High Current Chip Jumpers

    Common Mistakes in Flyback Transformer Specs

    Vishay Releases Miniature SMD Trimmers for Harsh Environments

    Würth Elektronik Releases Push-Button and Main Switches

    Littelfuse Unveils High-Precision TMR Angle Magnetic Sensors

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    Non-Linear MLCC Class II Capacitor Measurements Challenges

    Percolation Phenomenon and Reliability of Molded Power Inductors in DC/DC converters

    Root Causes and Effects of DC Bias and AC in Ceramic Capacitors

    How to Calculate the Output Capacitor for a Switching Power Supply

    Switched Capacitor Converter Explained

    Understanding Inductor Dot Markings and Their Application in LTspice

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    Understanding Switched Capacitor Converters

    Coupled Inductors Circuit Model and Examples of its Applications

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Supercapacitors Now Preferred for Island Wind Power Stations over Batteries

14.10.2020
Reading Time: 2 mins read
A A
Small windmill on the ranch.

Small windmill on the ranch.

Supercapacitors are increasingly preferred in WInd Power generators according to Dr.Peter Harrop from IDtechEx supercapacitor market researcher.

First orders have been taken for Airborne Wind Energy (AWE) by tethered kite or drone. AWE flies higher than a wind turbine – up where winds are stronger and more continuous – stronger still at night to offset dead solar.

RelatedPosts

TDK Extends SMT Gate Drive Transformers to 1000 V

Non-Linear MLCC Class II Capacitor Measurements Challenges

Researchers Demonstrated HfO Anti-Ferroelectric Flexible Capacitors

KiteNRG of Italy is developing its AWE to 500kW and they told IDTechEx supercapacitors are needed in an island configuration to accept the surges of power created. The new moveable, rapidly installed energy harvesting such as AWE, tidal stream and ocean wave must avoid the high cost of parts maintenance and replacement in remote places.

Supercapacitors do that, wasting less electricity and grabbing more of the incoming electricity surges than batteries. In cycling applications supercapacitors have 100 times the life and deep discharge, whereas only 15% of the battery can be sipped. The kWh of the supercapacitor needed to replace batteries in such situations is therefore much less, offsetting cost, something already demonstrated in hybrid cars.

Large supercapacitors cost thousands of dollars. They save millions of dollars when preventing self-destruction as with pitch control of the blades of a wind turbine in a storm when the electrics fail. 

Lithium-ion batteries were selling at the billions of dollars a year level when they hit 100Wh/kg. Aowei and Toomen newly sell supercapacitors with that compactness, Nippon Chemicon, Skeleton Technology and others promising to join the party. With lower leakage than pure supercapacitors and many battery-beating advantages, these may cover long no-wind intervals.

Compared to batteries, supercapacitors are safer, tolerate overcharge, avoid complex battery management systems. Most are now non-flammable, non-toxic, incur no costly misery of controlled disposal and often deliver lowest total cost of ownership. Wasting 14% less electricity, they grab up to twice as much regenerative energy from helical or spiral surging AWE kite-action. Energy density is ten times lithium-ion batteries.

Related

Source: IDTechEx

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