The Development History of Lithium Battery Chargers
With the development of portable products such as mobile phones and the widespread application of lithium-ion batteries, chargers for lithium-ion batteries have become increasingly sophisticated in design and function. However, the market also suffers from a large number of substandard products of poor quality, with major problems arising from issues related to AC mains connection, power terminal interference voltage, radiated interference field strength, and charging voltage. As a result, chargers are evolving towards standardization, universality, and low standby power consumption. Dual-slot chargers and chargers that automatically identify lithium or nickel-metal hydride batteries are gradually becoming mainstream.
Since October 15, 2024, China has implemented mandatory product certification (CCC certification) for chargers used in electric bicycles, and plans to mandate the use of the CCC mark for sales from November 1, 2025. This measure aims to improve product safety from the source and reduce the risk of fire caused by charger-battery incompatibility (such as lead-acid chargers mistakenly charging lithium batteries, leading to overcharging). The implementation of the new national standard GB 42296-2022 has driven technological upgrades in electric bicycle lithium battery chargers in areas such as interface anti-misplugging, communication coordination, and system-level security, resulting in a trend of industry consolidation among leading companies. In recent years, charger technology has continued to evolve towards higher efficiency, intelligence, safety, and specialization. For example, high-power chargers have emerged that employ a PFC+LLC high-efficiency power architecture, integrate an MCU for charging control, support wide voltage input, and are equipped with active cooling fans. Simultaneously, the industry has seen the emergence of patented designs for safety features such as shock resistance and short-circuit protection.








