• 21700 Lithium Battery 3.7V 3000MAH 30C High Power for EV  E-Car
  • 21700 Lithium Battery 3.7V 3000MAH 30C High Power for EV  E-Car
  • 21700 Lithium Battery 3.7V 3000MAH 30C High Power for EV  E-Car
  • 21700 Lithium Battery 3.7V 3000MAH 30C High Power for EV  E-Car
21700 Lithium Battery 3.7V 3000MAH 30C High Power for EV  E-Car

21700 Lithium Battery 3.7V 3000MAH 30C High Power for EV E-Car

Product Details:

Place of Origin: Shenzhen zhuhai
Brand Name: TAC OEM & ODM
Certification: MSDS REACH ROHS
Model Number: 20700

Payment & Shipping Terms:

Minimum Order Quantity: 500 pcs for single cell , 50pack for battery packs
Price: usd 3-5
Packaging Details: meet UN38.3 Certification
Delivery Time: 7-10 days after order confirm for stock model
Payment Terms: 30% advance for battery Pack
Supply Ability: 100000PCS EACH WEEK
Get Best Price Contact Now

Detail Information

Material: Lithium Ion Battery Voltage: 3.7v
Capacity: 3000mah Discharge Rate: 30C
Size: D: 21mm H:70mm PVC Color: Blue
Circle Life: 500 Times Current: Max Discharge Current 30C
High Light:

3.7v lithium ion battery

,

lithium ion phosphate batteries

Product Description

21700 Lithium Battery 3.7V 3000MAH 30C High Power for EV E-Car

Feature for 21700 Lithium Battery 3.7V 3000MAH 30C High Power for EV E-Car

  1. new model 21700 similar with Tesla ,
  2. high capacity 3000mah and high power support 30c discharge current
  3. 21700 / 20700 size
  4. circle life : 500 times
  5. The performance similar with Panasonic NCR21700A 5000mAh 15A high drain battery 
  6. Good price to support for your company only provides asssembly and formation equipment. 

Specification for 21700  Lithium Battery 3.7V 3000MAH 30C High Power for EV E-Car

 

No. Items Specifications

Remark

1

Nominal Capacity

3000mAh

0.5C Standard discharge

 

2

Minimum Capacity

2800mAh
3

Nominal Voltage

3.7V

Mean Operation Voltage

 

4

Delivery voltage

3.70~3.9V

Within 10 days from Factory

 

5

Charge Voltage

 

4.2V±0.03V

By standard charge method

 

6

Standard charging method

 

0.5C constant current,4.2V constant voltage charge to 4.2V,continue charging till current decline to ≤0.01C

 

7

Charge current

0.2C 600mA

Standard charge, charge time about 7h(Ref)

 

0.5C 1500mA

Rapid Charge, charge time about: 3.5h(Ref)

 

8

Standard discharging method

 

0.5C constant current discharge to3.0V,  
9

Cell Internal Impedance

 

≤35mΩ

Internal resistance measured at AC 1KHZ after 50% charge

 

 

 

Similar Model

 

 

 

 

 

Rated Capacity at 0.5C(Min.)

 

After standard charge, the capacity shall be
measured on 0.5C discharge till the voltage,discharge to2.75V, the capacity is ≥2800mAh

 

Cycle Life:

 

Charging and discharging battery as blew
conditions 0.5C standard charge to 4.2V end-off1C standard discharge to 2.75V cut-off Continuous charge and discharge for 500cycles ,the capacity will be measure after the 500th cycle

 

Capacity retention

 

The battery to be charge in accordance with standard charge condition at 20~25℃,then storage
the battery at an ambient temperature 20~25℃ for 28 days.
Measure the capacity after 28 days with 0.2C at 20~25℃ as retention capacityThe battery to be charge in accordance with standard charge condition at 20~25℃,then storage battery at an ambient temperature 20~25℃ for 28 days.
Measure the capacity after 28 days with 0.2C at  20~25℃ as retention capacity the Retention capacity

should be over 80%

 

 

Battery Photos

 

21700 Lithium Battery 3.7V 3000MAH 30C High Power for EV  E-Car 0

 

21700 Lithium Battery 3.7V 3000MAH 30C High Power for EV  E-Car 1

 

Packing

21700 Lithium Battery 3.7V 3000MAH 30C High Power for EV  E-Car 2

 50pcs for one inner box ,  6 box for one carton

 

Period of Warranty

 

The period of warranty is one year from the date of shipment. We guarantees to give a ccin case of cells with defects proven due to manufacturing process instead of the customer abuse and misuse.

 

Storage of the Batteries

The batteries should be stored at room temperature, charged to about 30% to 50% of capacity.
We recommend that batteries be charged about once per half a year to prevent over discharge.

 

Other The Chemical Reaction

Because batteries utilize a chemical reaction, battery performance will deteriorate over time even if stored for a long period of time without being used. In addition, if the various usage conditions such as charge, discharge, ambient temperature, etc. are not maintained within the specified ranges the life expectancy of the battery may be shortened or the device in which the battery is used may be damaged by electrolyte leakage. If the batteries cannot maintain a charge for long periods of time, even when they are charged correctly, this may indicate it is time to change the battery.

 

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