18650 rechargeable battery lithium 3.7v 3500mah
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18650 rechargeable battery lithium 3.7v 3500mah
18650 rechargeable battery lithium 3.7v 3500mah
polymer lithium battery

Primary battery

Rechargeable Battery

LR03 alkaline battery

button battery cr2032

release time:2024-08-20 Hits:     Popular:AG11 battery

What is the difference between the performance of lithium iron phosphate button battery cr2032 and ternary button battery cr2032?

 

The so-called lithium iron phosphate battery refers to a lithium-ion battery that uses lithium iron phosphate as the positive electrode material. This type of battery is characterized by not containing precious metal elements (such as cobalt, etc.). In actual use, lithium iron phosphate batteries have the advantages of high temperature resistance, strong safety and stability, low price, and better cycle performance.

 

Ternary material button battery cr2032 refer to button battery cr2032 that use nickel cobalt manganese oxide as the positive electrode material and graphite as the negative electrode material. Unlike lithium iron phosphate, the voltage platform of ternary button battery cr2032 is very high, which means that at the same volume or weight, the specific energy and specific power of ternary button battery cr2032 are greater. In addition, ternary button battery cr2032 also have great advantages in high-rate charging and low-temperature resistance.

 

The nominal voltage of lithium iron phosphate is 3.2-3.3V, and that of manganese system is 3.6-3.7V, which is the most obvious difference. Advantages of the lithium iron system: long theoretical life and excellent theoretical overcharge and over-discharge resistance. Advantages of the ternary system: high energy density, good low-temperature performance, small size, and good discharge linearity. Disadvantages of iron lithium: large volume, heavy weight, poor discharge linearity, poor low temperature performance.

 

Disadvantages of ternary system: slightly poor cycle life, poor life under high temperature conditions.

 

When it comes to batteries alone, there is no so-called better or worse. It is just applied to actual use scenarios. Ternary button battery cr2032 are more suitable for current and future household electric vehicles than lithium iron phosphate batteries.

 

Ternary material batteries are more suitable for passenger cars

 

Better low temperature discharge performance

 

my country has a vast territory and complex climate. The temperature changes from the three northeastern provinces in the north to the Hainan Islands in the south are very rich. Take Beijing as an example. As the main market for electric vehicles, Beijing's highest temperature in summer is around 40, while in winter it is basically maintained at around minus 16, or even lower. Such a temperature range is obviously suitable for ternary button battery cr2032 with better low temperature performance. However, lithium iron phosphate batteries that focus on high temperature resistance will appear a bit weak in Beijing's winter.

 

Relative 25capacity refers to the ratio of discharge capacity under different temperature conditions to discharge capacity at 25. This value can accurately reflect the attenuation of battery life under different temperature conditions. The closer it is to 100%, the better the battery performance.

 

As can be seen from the above figure, with 25as the base temperature, the discharge capacity of the two types of batteries at 55and 25is almost the same. However, at minus 20, ternary button battery cr2032 have obvious advantages over lithium iron phosphate batteries.

 

Higher energy density

 

According to the information supplied by BAK Battery, the leading company of domestic ternary material 18650 cylindrical batteries, the energy density of its 18650 batteries has reached 232Wh/kg, which will be further increased to 293Wh/kg in the future. In contrast, the energy density of the current mainstream lithium iron phosphate batteries in China is only about 150Wh/kg. According to the analysis of domestic battery industry experts, the hope that the energy density of lithium iron phosphate batteries can reach 300Wh/kg in the next few years is very slim.

 

Unlike the bulky electric buses, space is always the first priority for household electric vehicles. Lithium iron phosphate batteries with lower energy density will occupy the limited space in the car, and due to their heavier weight, the discharge range during use will also be greatly affected. Relatively speaking, ternary button battery cr2032 with higher energy density not only solve the weight problem but also save space for family cars.

 

Higher charging efficiency

 

In addition to battery life, charging is also an important part of electric vehicles in actual use, and ternary button battery cr2032 have a great advantage over lithium iron phosphate batteries in terms of charging efficiency.

 

At present, the more common charging method on the market is constant current and constant voltage charging. Generally, constant current charging is used at the beginning of charging. At this time, the current is larger and the charging efficiency is relatively higher. After the voltage reaches a certain value, the current is reduced and changed to constant voltage charging, so that the battery can be charged more fully. In this process, the ratio of constant current charging capacity to the total battery capacity is called constant current ratio. It is a key value to measure the charging efficiency of a group of batteries during the charging process. Generally, the larger the percentage, the higher the amount of electricity charged in the constant current stage, which proves that the charging efficiency of the battery is higher.

 

As can be seen from the table, when the ternary lithium-ion battery and the lithium iron phosphate battery are charged below 10C, there is no obvious difference in the constant current ratio. When the charging rate is above 10C, the constant current ratio of the lithium iron phosphate battery decreases rapidly, and the charging efficiency decreases rapidly.

 

Cycle life is guaranteed

 

For family cars, the rated cycle life of ternary materials and lithium iron phosphate power lithium batteries far exceeds the actual user's usage habits, so you can be completely assured of the service life.

 

Taking the current high-capacity 18650 battery of BAK Battery as an example, after 1,000 charge and discharge cycles, the battery capacity can still be maintained at more than 90% of the original.

 

Since the author is also an electric car owner, only in the coldest month of winter, when the heater is frequently turned on, can it be charged every 2 days, and the rest of the time is basically charged every 3-4 days. Assuming that the average charge is calculated every 3 days throughout the year, it takes about 6 times to charge in 1 year, and it takes about 8 years to use 1,000 times of cycle life, which is basically more than the average car replacement cycle of Chinese consumers.

 

Safe materials and processes

 

The most dangerous part of traditional internal combustion engine vehicles is the fuel that contains huge energy. Once a liquid fuel with a low ignition point and easy to explode, such as gasoline, leaks, it is very easy to cause great safety hazards.

 

The power lithium battery of new energy vehicles is monitored by a complete battery management system (BMS), and each battery can be controlled most accurately to prevent accidents.


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