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

    Ripple Steering in Coupled Inductors: SEPIC Case

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    Ripple Steering in Coupled Inductors: SEPIC Case

    SEPIC Converter with Coupled and Uncoupled Inductors

    Coupled Inductors in SEPIC versus Flyback Converters

    Non-Linear MLCC Class II Capacitor Measurements Challenges

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

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    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

    SEPIC Converter with Coupled and Uncoupled Inductors

    Coupled Inductors in SEPIC versus Flyback Converters

    Vishay Releases High Current 3.3 V to 36 V ESD Protection Diodes

    TDK Extends SMT Gate Drive Transformers to 1000 V

    Non-Linear MLCC Class II Capacitor Measurements Challenges

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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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Tesla’s Maxwell Dry Battery and a Five Year Lead on the World

11.3.2019
Reading Time: 2 mins read
A A

Source: nextBIGfuture article

Tesla bought Maxwell Technologies for their dry battery technology.

RelatedPosts

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

Maxwell proved 300 Wh/kg energy density is which 20-40% better than current Tesla batteries. Maxwell has a path with 15-25% improvement every 2-3 years. This should lead to 500 Wh/kg by 2027.

This would give Tesla a 5 year battery lead on the rest of the world. Tesla could get a three year pure technology lead and a two year lead by more rapidly scaling production at its gigafactories. Tesla could reach $50 per kilowatt-hour with 500 Wh/kg.

This would mean half the weight in batteries while producing the save level of energy as the best 250 Wh/kg batteries of today. This would mean $4000 instead of $12000 in batteries for an 80 kWh battery pack.

This would enable far better electric trucks. Electric semi-trucks need to use up nearly half of their cargo capacity on heavy batteries. Energy dense batteries will make longer range electric trucks with competitive cargo capacity. The batteries could also enable electric planes to be competitive flying 100-200 passengers from Los Angeles to San Francisco.

The batteries will make new disruptive products feasible. Japan and China’s government battery programs have each targeted 500Wh/kg. The US DOE has a similar battery program called Battery500.

There are various programs mostly focused around solid state batteries and lithium sulfur batteries. Both have had some commercialization with gadgets or appliances but not cars. They are targeting the same kind of performance as Tesla’s Dry battery technology. However, it currently appears that Tesla could have an advantage getting the new technology into cars and using them to lower costs and boost performance. Tesla will be able to fund the rapid development of dry electrode battery technology

Solid Power is a startup working on solid state batteries. Various companies are making tiny solid state batteries for gadgets and appliances. Toyota and Panasonic are among other companies making big investments for solid state batteries for cars.

 

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