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    Influence of Tantalum Capacitor Pellets Size on Stability During Oxide Film Formation

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    Influence of Tantalum Capacitor Pellets Size on Stability During Oxide Film Formation

    Modelithics Release Discrete Components Optimization Article for RF/Microwave Designers

    Samsung Extends Capacitance of MLCC 0805 X7T 250V to 100nF

    Samtec Releases 800-Position High-Performance Array Connectors  

    DigiKey Announces Back to School Giveaway to Empower Tomorrow’s Innovators

    Ripple Steering in Coupled Inductors: SEPIC Case

    TDK Releases Low Loss Thin-Film Inductors for AI Data Centers

    Samsung Releases Ultra–High-Capacitance 4.7uF 2.5V MLCC in 0201 for AI GPU

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

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New ultra-capacitor tech could drastically boost battery EV range

9.5.2018
Reading Time: 2 mins read
A A

Source: Autocar article

Ultra-capacitor is claimed to store and discharge electrical energy much more quickly than lithium ion cell. The very latest EVs, including the upcoming Audi E-Tron, use large lithium ion battery packs. A fast-acting carbon ‘ultra-capacitor’ that could take 30% off the weight of a lithium ion EV battery pack is under development in France.

RelatedPosts

Influence of Tantalum Capacitor Pellets Size on Stability During Oxide Film Formation

Modelithics Release Discrete Components Optimization Article for RF/Microwave Designers

Samsung Extends Capacitance of MLCC 0805 X7T 250V to 100nF

The ultra-capacitor, which is built using carbon and graphene nano-technology, is claimed to store and discharge electrical energy much more quickly than a lithium ion cell.

“Our advantage is the speed of charge and discharge,” said Ulrik Grape, chief executive of NAWA Technology, the company responsible for the device.

“Our carbon battery can pick up energy from regenerative braking and supply it back to the motor very quickly.”

Ultra-capacitors offer very fast energy transfer but don’t have a large storage capacity. According to NAWA, the ultra-capacitor could be integrated into a lithium ion battery to provide instant power for improved performance, while reducing the number of charge and discharge cycles the main battery performs, thus extending its life.

It is claimed that a simulation on the battery pack of a Formula E racing car modified to include a NAWA ultra-capacitor demonstrated the same performance and range but weighed 30% less.

The design of the ultra-capacitor is said to be unique. It offers a higher stored energy density than rivals by combining an electrolyte with microscopic coatings on the billions of carbon nano-tubes inside the stack.

NAWA is looking at developing the design for production. It said it is targeting premium European car firms first with the “aim of full production in 2022”, although it expects to start making capacitors for power tools and material handling firms next year.

One option is to mould the nano-tubes into body panels. Last year, Lamborghini showed the Terzo Millennio concept, built in conjunction with the Massachusetts Institute of Technology, that had bodywork made of carbon nano-tube ultra-capacitors.

featured image credit: Audi

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