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          Manufacturer of:  | 
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           IFR21700 3.2V3000mAh cell  | 
          ISR21700 3.6V4000mAh cell  | 
          ISR21700 3.6V4500mAh cell  | 
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          LMFP33140 3.6V15Ah cell  | 
          ISR18650 3.7V2600mAh cell  | 
          HEV 20C rate 3.6V8Ah cell  | 
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    | SINC battery - LFP cell - IFR21700 3.2V3000mAh cell >>cell datasheet download | 
  
  
    
      
        | ITEM | 
        SPECIFICATION | 
       
      
        | Normal capacity | 
        3000mAh | 
       
      
        | Minimum capacity | 
        2900mAh | 
       
      
        | Normal voltage | 
        3.2 V | 
       
      
        | Charge voltage | 
        3.65 V | 
       
      
        | Discharge end voltage | 
        2.0 V | 
       
      
        | Standard charge current | 
        0.5C(1500 mA) | 
       
      
        | Standard discharge current | 
        0.5C(1500 mA) | 
       
      
        | Max charge current | 
        1C(T>10℃)  
          0.2C(0℃-10℃) | 
       
      
        | Max continuous discharge current | 
        contiuous discharge current 2C, peak discharge current 3C(T>0℃)  
          1C(-10℃<T≤0℃)  
          0.5C(-20℃<T≤-10℃) | 
       
      
        | Surface charge and discharge batteries maximum temperature | 
        Charge:0℃-55℃;  
          Discharge:-20℃-60℃  | 
       
      
        | Working Temperature | 
        Charge: 10°C ~ 45°C  
          Discharge: -20°C ~ 55°C  | 
       
      
        | Recommended Storage temperature | 
        15°C ~ 35°C | 
       
      
        | Internal resistance | 
        ≤25 mΩ(AC Impedance, 1000 Hz) | 
       
      
        | Cell dimension | 
        Height : 72.0 mm Max  
          Diameter :21.9 mm Max | 
       
      
        | Weight | 
        ≤64g | 
       
      
        | Life cycle | 
        >1000 times | 
       
     
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    Cell Electric performance  | 
  
  
    
      
      
      
        ITEM  | 
        CRITERION  | 
        TESTING METHOD  | 
       
      
        Discharge    rate performance  | 
        A)Discharge Performance (0.2C) ≥100%Rated    Capacity  
          B)Discharge    Performance (0.5C) ≥95%Rated Capacity  
          C)Discharge Performance (1C) ≥90%Rated Capacity   
          D)Discharge Performance (2C) ≥80%Rated Capacity   | 
        The cell is charged according to    standard charge method, and then, it is discharged to 2.0V using 0.2C    current; after, the cell is charged according to standard charge method, and    then, it is discharged to 2.0V using 0.5C current; The cell is charged    according to standard charge method, and then, it is discharged to 2.0V    using 1.0C current; At the end, the cell is charged according to standard    charge method, and then, it is discharged to 2.0V using 2.0C current;The    discharge capacities under different current shall be recorded. 
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        Cycle    life  | 
        >2000cycle  | 
        Under room temprature, the cell    is charged to 3.65V using 0.5C current and then store it for 10 min. Then it    is discharged to 2.0V using 1C    current. Recycle it continuously till the residual capacity is less than 80%    of the rated capacity.  | 
       
      
        | High-Low temperature discharge performance | 
        Discharge capacity/ initial capactiy×100% A)60℃≥95% rated capacity  
          B)0℃≥80%rated capacity  
          C)-10℃≥70% rated capacity  
          D)-20℃≥55% rated capacity No obvious outside damage, No leakage, No smoke, No explosion | 
        Test the batteries’ initial state and capacity , after standard charging, store it at 60±2℃ for 3 hours, discharge at 0.2C5mA to 2.0V, then make standard charging under room temperature. Then Store it at corresponding constant temperature for 3h under 0±2 ℃/-10±2 ℃/-20±2 ℃ in order. Then discharge the cell at 0.2C5mA to 2.0V and meanwhile make a capacity record. At last store it at room temperature for 2 hours and observe the cell appearance. | 
       
      
        Storage    performance  | 
        Residual Capacity≥90% 
          Rated Capacity   Recovery Capacity≥98% Rated Capacity Internal resistance increase rate≤30%  | 
        After standard fully    charge, make standard discharge. This capacity is    recorded as initial discharge current. Then the    cell is fully charged according to standard charge method and stored at 25℃    for 28 days. After storage, the cell is discharged according to the    requirement of standard discharge method. This discharge capacity is named as the Residual capacity. And then charge and discharge the cell by    0.5C. This discharge    capacity is recorded as the    Recovery capacity.  | 
       
        
        
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    Cell Safety characteristics  | 
  
  
    
      
      
      
      
        ITEM  | 
        CRITERION  | 
        TESTING METHOD  | 
       
      
        Overcharge    test  | 
        No flame、No fire、No    explode  | 
        The cell is discharged following    the standard discharge method. Apply a 10V power supply and a 2C charge current for 1.5hrs.  | 
       
      
        130℃ hot oven test  | 
        When the temperature of the cell    is 130℃. Cell must not fire or explode in    30 minutes  | 
        The cell is charged following    the standard charge method. After charging the cell is put in the oven. And    then the oven temperature will be ramped at 5℃ per minute to 130℃ and held at 130℃.  When the temperature    of the cell reach 130℃,    the cell is maintained in the 130℃ oven for a maximum of 30 minutes or until a fire or explosion is obtained.  | 
       
      
        Over    discharge test  | 
        No flame、No fire、No    explode  | 
        Cell shall first be charged    according to standard charge method,and then cell is to be discharged by 0.2C current for 12    hours; The test is completed when the cell is to be discharged up to    250% of rate capacity or the other protective devices prevent the discharge.  | 
       
      
        Crush    test  | 
        No fire、No explode  | 
        After charging a cell following    the standard charge method, the cell shall be crushed between two flat    surfaces. The direction of the crushing force shall be vertical to axis of    the cylinder. The crushing force is to be applied by a hydraulic ram with a 32mm    diameter piston. Crushing force is approximately 13 KN. Once the maximum    pressure has been obtained it is to be released.  | 
       
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    Lifepo4 cell 21700 3.2v3000mah  | 
  
  
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