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LiFePO4 Battery Pack 36V

LiFePO4 Battery Pack 36V

LiFePO4 Battery Pack 36V 100AH The solar system requires a durable and efficient Li-ion battery pack to store energy effectively. With a capacity of 100ah, the 36v or 48v options of the battery pack are ideal for solar applications. These battery packs are specifically designed using lifepo4...

LiFePO4 Battery Pack 36V 100AH

The solar system requires a durable and efficient Li-ion battery pack to store energy effectively. With a capacity of 100ah, the 36v or 48v options of the battery pack are ideal for solar applications. These battery packs are specifically designed using lifepo4 lithium-ion technology, which ensures a longer lifespan and reliable performance. By rearranging the provided information, a highly similar content is generated.


Product Specification

Nominal Voltage

36V

Nominal Capacity
(at 0.5C, 25 degC)

100Ah

Min. Capacity
(at 0.5C, 25 degC)

100Ah

Expected Cycle Life

25°C,0.2C,80%,4000。,,。

Depth

Customized

Width

Customized

Height

Customized

Net Weight

~55Kg

Charge Method

CC-CV

Max. Charge Voltage

43.8V

Continuous Charge Current

Max.100A

Charge Temperature

0ºC~45ºC

Continuous Discharge Current

Max. 100A

Peak Instant Discharge Current
(10 Seconds)

110A

Discharge Cut-off Voltage

30V

Discharge Temperature

-20ºC~65ºC

Storage Temperature

-20ºC~45ºC

Self Discharge
(Stored at 50% SOC)

<= 3%/month


Product features

Our Li-Ion battery guarantees the highest levels of safety, boasting CE and UL certifications, as well as a built-in BMS for added protection.

2. Clean and Green energy. 

The LP battery boasts impressive power, with the ability to discharge at rates ranging from 5C to 10C. This means it can deliver a high level of energy in a short amount of time, making it a reliable choice for applications that require a lot of power quickly. Its low rate allows for efficient use of energy, making it a cost-effective option as well. Overall, the LP battery is a powerful solution for a variety of power needs.

The life cycle of this product is exceptionally long, lasting for more than 2000 deep cycles. This demonstrates its high durability and ability to withstand repeated use over an extended period of time. Additionally, the deep cycle feature allows for efficient energy management and utilization, making it an ideal choice for those seeking a reliable and long-lasting solution. Overall, this product is designed to meet the needs of individuals and businesses alike, providing a sustainable and cost-effective option for powering various devices and systems.

One of the advantages of this battery is that it has no memory effect. This means you can charge it at any time without diminishing its capacity. Additionally, it is highly efficient, ensuring that you get the most out of every charge. Unlike some batteries, this one won't experience a reduction in capacity over time.

6. Operation temperature: -20~60°C 

7. Small size and light weight.   

8. Low self-discharge rate: < 5% monthly

Comparing lithium-based batteries is crucial in understanding their differences and advantages. By analyzing data from various types of lithium-based batteries, we can gain insights into their unique features and functionalities.
It is important to note that lithium-based batteries come in various forms, such as lithium-ion, lithium-polymer, and lithium iron phosphate (LiFePO4) batteries. These batteries differ in their chemical compositions and performance characteristics.
In terms of energy density, lithium-ion batteries offer a higher energy density compared to other types of lithium-based batteries. This means that they can store more energy in a smaller and lighter package, making them suitable for portable electronic devices like smartphones and laptops.
Lithium-polymer batteries, on the other hand, offer flexibility in terms of form factor. Unlike lithium-ion batteries, which have rigid structures, lithium-polymer batteries can be made into different shapes and sizes. This makes them ideal for thin devices like smartwatches and medical devices.
LiFePO4 batteries are known for their superior safety features. They have a higher thermal stability compared to other lithium-based batteries, reducing the risk of thermal runaway and fire hazards. Additionally, LiFePO4 batteries have a longer lifespan and can withstand a higher number of charge-discharge cycles.
When it comes to charging and discharging rates, lithium-ion batteries excel in rapid charging. They can be charged at a faster rate compared to other types of lithium-based batteries. This makes them suitable for electric vehicles and other high-power applications.
Overall, the choice of lithium-based battery depends on the specific application and requirements. While lithium-ion batteries offer high energy density, lithium-polymer batteries provide flexibility in design, and LiFePO4 batteries prioritize safety and longer lifespan. Understanding the differences and comparing their data helps in selecting the most suitable battery for different applications.

Cells

Safety

CYCLE

POWER

LONG

Temperature

LIFE

WEIGHT

TERM

Range


DENSITY

COST


LiFePO4

The world's most

Excellent Cycle life can be as long as

Acceptable

Excellent

Excellent

secure battery,

over 2,000 cycle,

(can be discharged

no explosion,

best among all

at -45~ 70 Centigrade)

no pollution,

the listed groups.


long life


Most economic


LiCoO2

LiCoO2 is expensive,

Acceptable Cycle life

Good

High

Decayed beyond

the actual capacity

only up to

55 ~ -20

than its theoretical

300~500 cycle. Not good for high

Centigrade

capacity of only

C-rate discharge.


(274mAh g-1)



about 50%,



lower utilization



of cobalt;



LiCoO2 cycle life



has reached 500



LiMn2O4

Have to handle with care,

Unacceptable Cycle

Acceptable

Acceptable

High

or it might explode

life only

or catch fire under collision

up to1 500~800 cycle,

or over-charged.

depending on the


discharge C-rate.

Li(NiCo)O2

Very unstable, must handle

Acceptable Cycle

Good

High

Decayed extremely

with extremely care,

life can

fast over 55~ -20

it might explode or catch fire under collision, over-charged, short circuit or

be 300~500 cycle.

Centigrade

when heat build-up.

Not good for



high C-rate discharge.


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