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    Schematic illustration of the electric double layer of porous carbon electrodes at elevated potentials in a a conventional electrolyte and b a weakly solvating electrolyte; source: authors

    Researchers Presented Lignin-based Electrolyte for 4V Supercapacitors with Low Self‑Discharge

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    Standard vs Planar LLC transformers Comparison for Battery Chargers

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    2026 Power Magnetics Design Trends: Flyback, DAB and Planar

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    Inductor Technology Dossier

    Coilcraft Releases TLVR Inductors for High Density VRMs and PoL Converters

    Rutheniums Critical Role in Passive Component Supply Chains

    Bourns Expands its Modular Contacts for Power-Dense Systems

    Murata to Decouple China Rare Earth Supply in 3 Years

    Samtec AcceleRate Slim ARC6 Cable Assemblies with New Signaling Options

    Hirose Electric to Establish Automotive Connector Plant in India

    Schematic illustration of the electric double layer of porous carbon electrodes at elevated potentials in a a conventional electrolyte and b a weakly solvating electrolyte; source: authors

    Researchers Presented Lignin-based Electrolyte for 4V Supercapacitors with Low Self‑Discharge

    Samsung Outlines Growth Roadmap at its 52nd General Shareholders Meeting

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    Standard vs Planar LLC transformers Comparison for Battery Chargers

    How Modern Tools Model Magnetic Components for Power Electronics

    Advanced Loss Modeling for Planar Magnetics in the Frenetic Planar Tool

    2026 Power Magnetics Design Trends: Flyback, DAB and Planar

    Enabling Software‑Defined Vehicle Architectures: Automotive Ethernet and Zonal Smart Power

    Calculating Resistance Value of a Flyback RC Snubber 

    One‑Pulse Characterization of Nonlinear Power Inductors

    Thermistor Linearization Challenges

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Skeleton Supercapacitors Contribute to Sustainable AI

12.2.2025
Reading Time: 2 mins read
A A

Skeleton Technologies are proud to announce membership in the Coalition for Sustainable AI, an initiative launched by France in collaboration with the UN Environment Programme (UNEP) and the International Telecommunications Union (ITU), supported by various international organizations. Skeleton’s contribution to sustainable AI is based on its graphene based supercapacitors.

Unveiled at the Paris AI Action Summit, the Coalition brings together a global community of stakeholders—companies, associations, and research institutes—willing to align AI development with global sustainability goals and foster responsible AI that advances environmental policies. At the same event, President Macron unveiled plans for €109bn of AI investment in France.

RelatedPosts

Skeleton Technologies Expands in U.S. to Power AI Data Centers

Skeleton Opens €220M Supercapacitor Leipzig Factory

Skeleton Opens SuperBattery Factory in Finland 

By joining the Coalition, alongside companies such as Nvidia, Schneider Electric, Mistral AI, IBM, Engie, and many others, Skeleton Technologies reinforces our commitment to developing energy-efficient solutions for AI data centers and ensuring that AI’s transformative potential contributes to a more sustainable future for all.

Skeleton’s contribution to sustainable AI is clear: our supercapacitor-based GrapheneGPU solutions:

  • Reduce the power connection required for AI data centres by 40% by handling fluctuating peak loads
  • Reduce total electricity consumption in data centres by 1/3 by storing excess energy in supercapacitors, instead of overheating
  • Increase computing power by up to 40%.

Energy-efficiency is the key to sustainable and powerful AI tools and the Sustainable AI Coalition offers a platform for companies, organization, associations, and research institutes around the world to combine their efforts into a better solution for all.

Related

Source: Skeleton

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