Low MOQ for 37v 16ah Lithium Battery - 14.8V 12V 26AH lithium ion battery Li(NiCoMn) – Futehua

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Low MOQ for 37v 16ah Lithium Battery - 14.8V 12V 26AH lithium ion battery Li(NiCoMn) – Futehua Detail:

Lithium iron phosphate has good high temperature resistance. Basically, the temperature reaches about 500°C, and it will not destroy the PO covalent bond and release oxygen. (Under the fully charged state, the lithium iron phosphate battery needs to be about 700°C. Thermal decomposition will occur). This explains why the blade battery based on lithium iron phosphate still did not catch fire after acupuncture.

This feature allows the cycle life of energy-type lithium iron phosphate batteries to be as long as 3000-4000 times, and the cycle life of rate-type lithium iron phosphate batteries can even reach tens of thousands of times.

14.8V Lithium-ion Li(NiCoMn) Batteries

Model

Nominal Voltage
(V)

Capacity
(Ah)

Temperature

Max Weight
(g)

Charge temperature

Working
temperature

FTH-RN 14.8-6

14.8

6

0℃-+55℃

-40℃-+70℃

≥488

FTH-RN 14.8-8

14.8

8

0℃-+55℃

-40℃-+70℃

≥637

FTH-RN 14.8-10

14.8

10

0℃-+55℃

-40℃-+70℃

≥787

FTH-RN 14.8-12

14.8

12

0℃-+55℃

-40℃-+70℃

≥936

FTH-RN 14.8-16

14.8

16

0℃-+55℃

-40℃-+70℃

≥1235

FTH-RN 14.8-20

14.8

20

0℃-+55℃

-40℃-+70℃

≥1533

FTH-RN 14.8-26

14.8

26

0℃-+55℃

-40℃-+70℃

≥1981

FTH-RN 14.8-30

14.8

30

0℃-+55℃

-40℃-+70℃

≥2280

FTH-RN 14.8-34

14.8

34

0℃-+55℃

-40℃-+70℃

≥2579

FTH-RN 14.8-38

14.8

38

0℃-+55℃

-40℃-+70℃

≥2877

FTH-RN 14.8-42

14.8

42

0℃-+55℃

-40℃-+70℃

≥3176

FTH-RN 14.8-46

14.8

46

0℃-+55℃

-40℃-+70℃

≥3475

FTH-RN 14.8-50

14.8

50

0℃-+55℃

-40℃-+70℃

≥3773

FTH-RN 14.8-56

14.8

56

0℃-+55℃

-40℃-+70℃

≥4221

FTH-RN 14.8-60

14.8

60

0℃-+55℃

-40℃-+70℃

≥4520

The weight is a reference value, and the actual product shall prevail

Please consult us if you don’t find your products here.We provide customized service for you.

14.8V8AH

14.8V8AH

14.8V12AH

14.8V12AH

14.8V20AH

14.8V20AH

14.8V26AH

14.8V26AH

application

Because the adjacent FeO6 octahedrons in the structure of lithium iron phosphate are connected by conjugate, this structure makes the conductivity low; at the same time, the three-dimensional network olivine structure of lithium iron phosphate forms a one-dimensional lithium ion transmission channel , In a low temperature environment, the activity of the material is reduced, and the number of lithium ions that can move is reduced. Therefore, lithium iron phosphate performs poorly at low temperatures.

In addition, compared with ternary materials, the discharge specific capacity of lithium iron phosphate materials is lower, and the average voltage is also lower, so the mass specific energy of lithium iron phosphate batteries is generally lower than that of ternary lithium. In addition, because the lithium iron phosphate particles are not compact, their tap density and compaction density are low (the compaction density of the lithium iron phosphate pole piece is about 2.3-2.4g/cm, while the ternary pole piece can reach 3.3- 3.5 g/cm). Therefore, in layman’s terms, under the same volume conditions, less lithium iron phosphate is installed, the natural capacity is small, and the energy density is also low.

Another outstanding advantage of the ternary material is its low temperature performance. Objectively speaking, it is the poor performance of lithium iron phosphate that highlights the low temperature performance of the ternary material. Because the polarity of lithium iron phosphate PO4 is too strong, the binding ability to Li is large, and the diffusion coefficient is low. However, ternary materials do not have this problem, so in a low-temperature environment, charging and discharging are less affected.

Of course, ternary materials also have their own shortcomings. The three elements themselves are not resistant to high temperatures and will release oxygen molecules in extreme cases. At the same time, their own cycle life is also far behind that of lithium iron phosphate.

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We are manufacture, not reseller , so we have experienced R&D team and professional marketing team, this allows us to offer more options for you,from project evaluation, program design, battery cell matching, BMS research and development, to SMT, battery assembly production, product inspection, logistics and transportation, and after-sales service.

We are committed to providing customers with safe, efficient, clean and low-carbon products and overall solutions .


Product detail pictures:

Low MOQ for 37v 16ah Lithium Battery - 14.8V 12V 26AH lithium ion battery Li(NiCoMn) – Futehua detail pictures

Low MOQ for 37v 16ah Lithium Battery - 14.8V 12V 26AH lithium ion battery Li(NiCoMn) – Futehua detail pictures


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Our team through professional training. Skilled professional knowledge, strong sense of service, to meet the service needs of customers for Low MOQ for 37v 16ah Lithium Battery - 14.8V 12V 26AH lithium ion battery Li(NiCoMn) – Futehua , The product will supply to all over the world, such as: Vancouver, Plymouth, Iran, We mainly sell in wholesale, with the most popular and easy ways of making payment, which are paying via Money Gram, Western Union, Bank Transfer and Paypal. For any further talk, just feel free to contact our salesmen, who are really good and knowledgeable about our prodcuts.
  • We are old friends, the company's product quality has been always very good and this time the price is also very cheap.
    5 Stars By Anna from Panama - 2017.12.19 11:10
    In general, we are satisfied with all aspects, cheap, high-quality, fast delivery and good procuct style, we will have follow-up cooperation!
    5 Stars By Marjorie from Philadelphia - 2018.06.28 19:27
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