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DOE optimization experiment, strict selection of incoming material, and strict manufacturing process control verify that the battery cell is stable in charge-discharge dynamic and static states of initial matching.
IFR26650-3000mAh, Lithium Iron Phosphate LFP chemical system
Diameter: 26.3±0.2mm, Height: 65.2±0.3mm

Energy storage system, Communication base station, Database UPS back up power, Medical instruments
To ensure cells' consistency and stability, only select the best raw material suppliers. Create a three-dimensional channel conductive network using array-type high conductivity carbon nanotubes and superconducting black. Multi-tabs should be designed with parallel structures. To reduce internal resistance and increase super high C rate discharge capability and high Crate continuous charging ability, apply spherical multi-direction graphite. Support 10C continuous discharge, 20C pulse discharge; 3C charge/discharge; >2000 cycles @100% DOD.
|
Parameter |
Product specification |
|
Typical Capacity |
3000mAh(0.5C) |
|
Nominal Voltage |
3.2V |
|
Energy Density |
113Wh/kg |
|
Cell AC Impedance (1KH) |
≤10mΩ |
|
Cell Weight (g) |
About 85g |
|
Operation Voltage |
2.0~3.65V |
|
Standard Charge Model |
Cell is charged with constant current of 1C to 3.65 V, and then converted to 3.65V constant voltage charging until the charging current is less than 0.02C (60mA). |
|
Standard Charge Current |
3000mA |
|
Max. Charge Current |
6000mA |
|
Standard Discharge Current |
3000mA |
|
Max. Discharge Current (Continuous) |
30000mA(10C) |
|
Max. Discharge Current (Long Pulse) |
45000mA, 15s(30C) |
|
Max. Discharge Current (Short Pulse) |
60000mA, 10s(20C) |
|
100%DOD cycle life |
≥4000Cycles (80%DOD) |
|
Charge Operating Temperature |
0℃~45℃(Environment temperature) |
|
Discharge Operating Temperature |
-20℃~60℃(Environment temperature |
|
Storage Temperature |
-20℃~45℃ |

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