I’ve been hearing about these for a few years now. Huge if they work out at a large scale.

  • Natanael@infosec.pub
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    12 hours ago

    1 C is defined relative to 1 hour for full discharge and 3 C means a 3x faster discharge rate (full capacity can safely be discharged in 1/3 hour, or you can discharge 3 cells sequentially in an hour). Good lithium cells tend to be above 5C, can reach 10C for peak load or if cooled.

    For a large enough battery it doesn’t really matter, but for dense portable ones a lower C rating means you have to discharge from more cells simultaneously to maintain a given output. That makes it more complicated, and you have less headroom to the battery’s maximum Watt output if you need to accelerate a car hard suddenly.

    • Pelicanen@fedia.io
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      4 hours ago

      NMC cells typically operate around 1-2C and LFP cells 1-3C. If you want to achieve 10C then you’re probably gonna have to look at LTO cells. All of these are lithium-ion chemistries but they each have different characteristics.

      • Natanael@infosec.pub
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        3 hours ago

        (for context most my knowledge of these cells are from single cell +5000 lumen flashlights :)

        • ryannathans@aussie.zone
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          12 hours ago

          Sodium ion batteries are asymmetrical, pushing charge current hard can drive the anode negative enough to deposit metallic sodium causing formation of dendrites which destroys the battery