Fast charging is a key differentiator for OEMs, but avoiding lithium plating remains a fundamental challenge in lithium-ion battery system design. Lithium plating can lead to capacity loss and severe safety risks—until now.

Fast charging is a key differentiator for OEMs, but avoiding lithium plating remains a fundamental challenge in lithium-ion battery system design. Lithium plating can lead to capacity loss and severe safety risks—until now.
TWAICE’s latest Anode Potential Model revolutionizes fast charging protocol design by providing electrode-level insights over the lifetime of batteries, enabling engineers to:
Discover how our pioneering simulation model helps mitigate lithium plating risks and optimize fast charging strategies.
Want a deeper technical dive? Our battery experts recently hosted a webinar, where we demonstrated the real-world application of our anode-potential simulation model and how it helps prevent plating in fast-charging scenarios.
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TWAICE’s latest advancements empower EV engineers to push battery performance further—without the risks. Let’s talk!Â
In the first session of the TWAICE & Camelot BESS Lifecycle Webinar Series, experts from Camelot Energy Group and TWAICE share hard-won lessons from real-world energy storage projects—helping you get BESS development right from the start.
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