Advanced Tech : Ultra-fast battery charging

Fast charging has always carried a battery-life penalty. So BYD’s endurance test caught my attention. Its FLASH system is rated up to 1.5 MW, with 10-70% charging in 5mins.

BYD recently ran a production Yangwang U7 electric sedan for 30,000km in less than 9 days. It went through more than 350 high-power charging sessions in 9 days, and BYD reported 98.7% battery capacity remaining.

Battery Degradation due to Ultra Fast Charging

One major fast-charging problem is lithium plating. During charging, lithium ions move through the electrolyte and insert into the graphite anode. Push them in faster than the anode can accept them and some lithium can instead deposit as metallic lithium on its surface. Over time, that consumes usable lithium and reduces capacity.

BYD appears to be attacking that transport bottleneck directly. In Blade Battery 2.0, it says graphite particles in the anode are aligned more perpendicular to the electrode plane. This gives lithium ions a shorter path into the graphite, allowing faster intercalation with lower resistance. BYD also claims improved electrolyte transport and a thinner SEI layer, the protective film through which lithium ions must pass.

Thermal management is equally important. High current generates heat, but a battery that is too cold can make lithium plating worse because ion transport slows down. You need a controlled temperature window, as charge current changes with temperature and state of charge. That I think BYD does well. Fast charging is not determined by charger power or chemistry alone. Electrode geometry, internal resistance, temperature control and the charging profile all matter.

But please note that this result does not directly transfer to your phone or laptop. The same electrochemistry applies, but those cells are built and managed differently. BYD is showing how much faster charging can become when the battery itself is designed around it. They are definitely taking battery tech to new heights.

AdvancedTech #Battery

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