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H6 Sodium Ion Car Battery, 12V, 10000mAh, Gold-Plated Terminals, Universal Fit, 14.33 Pounds (S95)

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US$189.59 cheaper than the new price!!

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Used  US$126.40
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Product details

Management number 212954059 Release Date 2026/04/12 List Price US$126.40 Model Number 212954059
Category
  • Charging:The cell is charged to 4.0V at a,constant current of 0.2C,and charged to 0.02C at,a constant, then put it aside for 10min;Discharging:The cell is discharged with 0.2C to 1.5V ,then put it aside for 10min; Repeat the above two steps 3 times,the average was calculated as the initial capacity,Discharge capacity ≥ 10Ah
  • Charging:The cell is charged to 3.9V at a,constant current of 0.5C,and charged to 0.02C at,a constant, then put it aside for 10min;Discharging:The cell is discharged with 0.5C to,1.5V ,then put it aside for 10min; Repeat the above two steps , and then the next charge and,discharge cycle less than 70% of the initial capacity,1500Cycles Capacity≥70% Cmin
  • Charging:The cell is charged to 4.0V at a constant current of 0.2C,and charged to 0.02C at a constant, thenput it aside for 1h;Discharging:The cell is discharged with different currents to 1.5V,to record the discharge capacity.1C Discharge capacity retention rate≥98% 5C Discharge capacity retention rate≥92% 10C Discharge capacity retention rate≥88%
  • Discharging:The cell is discharged with 0.5C to 1.5V and laid for 10 min;Charging:Put the battery into a low temperature box of(-10 ± 2) ℃ for 16 hours,then charged to 4.0V at a constant current of 0.1C, and charged to 0.02C in this temperature environment;Discharging: Set aside for 5h in (23 ± 2) ℃,environment,then discharged to 1.5V at 0.5C ,to record the discharge capacity.Discharge capacity≥80% of initial capacity
  • Room temperature charging and recovery ability: After the high-temperature charge retention ability test, the battery is charged to 4.0V at a constant current of 0.2C, then charged to 0.02C at a constant current, and left for 10 minutes; Discharge: The battery is discharged at a voltage of 0.5C to 1.5V and left for 10 minutes; Repeat the above two steps three times and record the maximum discharge capacity

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