Charging method for lithium ion battery
A lithium-ion battery and charging method technology, applied in the field of lithium-ion batteries, can solve the problems of poor battery cell cycle performance, rise in battery internal temperature, and reduced charging current, so as to improve cycle reversibility, reduce temperature rise, and prevent The effect of lithium analysis
- Summary
- Abstract
- Description
- Claims
- Application Information
AI Technical Summary
Problems solved by technology
Method used
Image
Examples
Embodiment 1
[0038] A battery made of positive electrode (lithium cobaltate), negative electrode, diaphragm, electrolyte and packaging bag, and then assembled, formed and aged. Under normal temperature conditions, the fully charged capacity of this battery is 2000mAh. According to this capacity, in the following, when the charging current is 1C, it is equivalent to 2A. Charge the battery as follows:
[0039] Using current I a Charge the battery to Cap with a constant current of 1A a , let stand for 1min;
[0040] Using current I b Continue to charge the battery at a constant current to Cap for 4A b , let stand for 1min;
[0041] Using current I c Continue to charge the battery with constant current for 0.5A Cap c , let stand for 1min;
[0042] When the battery reaches 4.4V, switch to constant voltage charging until the current drops to 0.15A.
[0043] where Cap a About 10% full charge capacity, Cap b About 60% full charge capacity and Cap c Respectively approximately 90% full c...
Embodiment 2
[0045] A battery made of positive electrode (lithium cobaltate), negative electrode, diaphragm, electrolyte and packaging bag, and then assembled, formed and aged. Under normal temperature conditions, the full charge capacity of this battery is 2000mAh. Charge the battery as follows:
[0046] Using current I a Charge the battery to Cap with a constant current of 1A a , let stand for 1min;
[0047] Using current I b Continue to charge the battery at a constant current to Cap for 4A b , let stand for 1min;
[0048] Using current I c Continue to charge the battery with constant current for 0.5A Cap c , let stand for 1min;
[0049] When the battery reaches 4.4V, switch to constant voltage charging until the current drops to 0.15A.
[0050] where Cap a About 20% full charge capacity, Cap b About 60% full charge capacity and Cap c Respectively approximately 90% full charge capacity.
Embodiment 3
[0052] A battery made of positive electrode (lithium cobaltate), negative electrode, diaphragm, electrolyte and packaging bag, and then assembled, formed and aged. Under normal temperature conditions, the full charge capacity of this battery is 2000mAh. Charge the battery as follows:
[0053] Using current I a Charge the battery to Cap with a constant current of 1A a , let stand for 1min;
[0054] Using current I b Continue to charge the battery at a constant current to Cap for 4A b , let stand for 1min;
[0055] Using current I c Continue to charge the battery with constant current for 0.5A Cap c , let stand for 1min;
[0056] When the battery reaches 4.4V, switch to constant voltage charging until the current drops to 0.15A.
[0057] where Cap a About 30% full charge capacity, Cap b About 60% full charge capacity and Cap c Respectively approximately 90% full charge capacity.
PUM
Abstract
Description
Claims
Application Information
- R&D Engineer
- R&D Manager
- IP Professional
- Industry Leading Data Capabilities
- Powerful AI technology
- Patent DNA Extraction
Browse by: Latest US Patents, China's latest patents, Technical Efficacy Thesaurus, Application Domain, Technology Topic, Popular Technical Reports.
© 2024 PatSnap. All rights reserved.Legal|Privacy policy|Modern Slavery Act Transparency Statement|Sitemap|About US| Contact US: help@patsnap.com