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How to Choose the Right Lithium Battery Type for Your Product: Key Parameters and Recommendations

How to Choose the Right Lithium Battery Type for Your Product: Key Parameters and Recommendations

IntroductionChoosing the right lithium battery for an end product is a critical decision that directly impacts performance, durability, safety, and user satisfaction. With various lithium battery types on the market, each designed with unique characteristics, understanding the factors that influence...
Short circuit current calculation of ternary lithium-ion batteries

Short circuit current calculation of ternary lithium-ion batteries

1、 Basic concepts and structures of ternary lithium batteriesTernary lithium battery is a high-performance lithium-ion battery with advantages such as high energy density, long cycle life, and good safety performance. It is widely used in fields such as electric vehicles and energy storage systems....
What is the short-circuit current of lithium iron phosphate batteries in parallel

What is the short-circuit current of lithium iron phosphate batteries in parallel

The magnitude of the parallel short-circuit current of lithium iron phosphate batteries depends on the rated current and quantity of the batteries.The calculation formula is: parallel short-circuit current=maximum battery current x number of batteries.For example, if the maximum battery current of a...
Is it better to fully charge a lithium iron phosphate battery to 100% or to 95%?

Is it better to fully charge a lithium iron phosphate battery to 100% or to 95%?

Fully charging a lithium iron phosphate battery to 100% is better than charging it to 90%, and it is advisable to fully charge the battery at least once a week. There are some differences between it and ternary lithium batteries. For ternary lithium batteries, it is sufficient to charge them to 90%...
Deep analysis of voltage (platform voltage, median voltage, average voltage, cut-off voltage) of lithium-ion batteries

Deep analysis of voltage (platform voltage, median voltage, average voltage, cut-off voltage) of lithium-ion batteries

In the charge-discharge testing or actual use of lithium-ion batteries, the voltage parameters mainly include plateau voltage, median voltage, average voltage, cut-off voltage, etc. The typical discharge curve is shown in Figure 1.The plateau voltage refers to the voltage value corresponding to the...
How to properly store idle lithium battery packs

How to properly store idle lithium battery packs

Many people think that as long as the unused lithium battery packs are stored away, they can still be used normally in the future. However, this is not the case. Even if lithium batteries are not in use, they will discharge at a rate of 0.2% to 0.3% per day. Moreover, after being stored for a period...
The optimal storage temperature and humidity for lithium batteries

The optimal storage temperature and humidity for lithium batteries

Storing Lithium-ion Batteries at the Appropriate TemperatureThe typical storage temperature range for lithium-ion batteries in a household or storage unit is usually suitable for the safe storage of lithium batteries. The safe storage temperature range is quite wide, as shown in the following table....
Analysis of the Production Numbering Rules for Lithium Batteries

Analysis of the Production Numbering Rules for Lithium Batteries

I. What is the Production Serial Number of Lithium Batteries?The production serial number of lithium batteries refers to the unique code assigned to distinguish similar products during the production process. Through the production serial number of lithium batteries, information such as different pr...
Detailed explanation of UN numbers for transportation of lithium batteries and rechargeable batteries

Detailed explanation of UN numbers for transportation of lithium batteries and rechargeable batteries

UN Numbers for Lithium Batteries:UN 3480: Lithium-ion BatteriesUN 3480: Lithium-ion Batteries Contained in Equipment PackagingUN 3480: Lithium-ion Batteries Built into EquipmentUN 3090: Lithium Metal BatteriesUN 3091: Lithium Metal Batteries Contained in Equipment PackagingUN 3091: Lithium Metal Bat...
Introduction to IEC/EN 63056:2020 European Energy Storage Battery Safety Certification Standards

Introduction to IEC/EN 63056:2020 European Energy Storage Battery Safety Certification Standards

The European energy storage battery safety certification standard IEC/EN 63056:2020 is an important certification standard that provides consumers with confidence and assurance, ensuring that the purchased energy storage batteries meet the highest safety standards. As a lithium battery manufacturer...