Lithium Battery 3.7V Lithium Polymer Battery 3.2V LifePo4 Battery 1.2V Ni-MH Battery Button Coin Battery
3.7V Battery Pack 7.4V Battery Pack 11.1V Battery Pack 14.8V Battery Pack Other Battery Pack
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Shenzhen Green Power Energy Battery Co.,ltd specializes in a wide range of digital battery such as environmental cylindrical 18650 21700 32700 26650 14500 18500 lithium ion rechargeable battery, LifePO4 battery, 3.7V lithium polymer battery, NiMH battery, NiCD battery, dry cell battery, alkaline battery, heavy duty battery, button cell battery etc. we devote to R&D, innovation, production & sales. With automatic production machines we have been exported goods to all over the world over 15years. We have complete exported certificate such as KC, CE, UL, BSCI, ROHS, BIS, SGS, PSE etc
Dongguan Datapower New Energy Co.,ltd is a high-tech production enterprise which specialize in the R&D and production&sale of lithium polymer batteries,drone battery,airplane batteries &battery pack etc.
Anhui Seong-hee New Energy Technology Co.,ltd is a high-tech production enterprise which specialize in the R&D and production of primary batteries. And mainly produces and sells alkaline batteries & carbon zinc batteries. there are size AA, AAA, C, D, 9V etc
Guizhou STD Battery Co.,ltd is a high-tech production enterprise which specialize in the R&D and production & sale of lithium polymer batteries, drone battery, airplane batteries & battery pack etc.
release time:2024-05-07 Hits: Popular:AG11 battery
How to test button battery cr2032
To understand how to perform lithium battery testing, you first need to understand the performance indicators of button battery cr2032. What are the performance indicators of button battery cr2032? The three main indicators are electrical performance, lifespan and safety. Then the lithium battery test is divided into single battery test and module battery test. The specific method steps are as follows:
Lithium Ion Battery
Charging test after storage
The detection of charge recovery capacity after storage is mainly to check the capacity recovery of lithium-ion batteries after storage for a period of time.
1. At ambient temperature (20±5)°C, at a specified termination voltage (usually 3.0V), the lithium-ion battery is discharged to a constant current of 0.2C, and then charged to the termination voltage (usually 0.2C). 4.2V), provided by constant voltage charging (charging termination current is usually 0.02C);
2. Discharge the lithium-ion battery at a constant current of 0.2C at the specified discharge end voltage at an ambient temperature of (20±5)°C.
3. Lithium-ion batteries should be discharged to the specified discharge termination voltage at a constant current of 0.2C at an ambient temperature of (20±5)°C.
4. Calculate the discharged capacity (Ah) of the battery in step ⑤.
5. Lithium-ion batteries should be opened at ambient temperature (40±2)℃ for 90 days.
6. Lithium-ion batteries should be charged according to step ① at ambient temperature (20±5)℃.
The charge recovery capacity after storage is expressed as the ratio of the calculated capacity to the rated capacity.
Secondly, the lithium battery is continuously charged and detects charge recovery:
The detection of charge retention capability and charge recovery capability mainly involves checking the capacity retention rate of lithium-ion batteries after storage, and then charging the battery after the charge retention test to check the capacity recovery rate.
1. Discharge the lithium-ion battery at a constant current of 0.2C at the specified termination voltage (usually 3.0V) at ambient temperature (20±5)°C, and then charge to 0.2C (usually 4.2V) Termination voltage, switch to constant voltage charging (charging termination current is generally 0.02C);
2. Lithium-ion batteries should be opened at an ambient temperature of (20±5)℃ for 28 days.
3. Lithium-ion batteries should be discharged to the specified discharge termination voltage at a constant current of 0.2C at an ambient temperature of (20±5)°C.
4. Calculate the capacity (Ah) released by the lithium-ion battery in step ③;
5. The charge holding capacity should be expressed as the percentage of the calculated capacity compared to the rated capacity in step ④.
6. Lithium-ion batteries should be charged according to step 1 within 24 hours after being discharged in step 3.
7. Lithium-ion batteries should be discharged to the specified discharge end voltage at a constant current of 0.2C at an ambient temperature of (20±5)°C.
8. In step ⑦, calculate the capacity (Ah) released by the lithium-ion battery.
9. Charge recovery capacity should be expressed as a percentage of the calculated capacity compared to the rated capacity of step the.
Three, life test cycle life test mainly tests the charging and discharging time of lithium-ion batteries when the available capacity drops to an acceptable value.
① Discharge the lithium-ion battery to the specified termination voltage (usually 3.0V) at a constant current of 0.2C at ambient temperature (20±5)°C, and then charge it to a termination voltage of 0.2C (usually 4.2). V), provided by constant voltage charging (charge termination current is usually 0.02C);
②Lithium-ion batteries should be discharged to the specified discharge end voltage at a constant current of 0.2C at an ambient temperature of (20±5)°C.
③Lithium-ion batteries should be cycled at ambient temperature (20±5)℃, and should not be left for more than 1 hour between charging and discharging or between discharging and charging;
④ Follow steps ① and ② to charge the lithium battery until the discharge capacity is less than 70% of the rated capacity.
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