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充电比加油快!巨湾技研完成充电新国标行业首测
Zhong Guo Qi Che Bao Wang·2025-05-21 09:08

Core Viewpoint - The new national standard for high-power charging will be fully implemented by the end of 2024, increasing the current limit from 250A to 800A and the voltage limit from 1000V to 1500V, which aims to enhance safety, cost-effectiveness, and energy efficiency in charging infrastructure [1]. Group 1: Industry Developments - The new charging standard allows for compatibility between old and new interfaces, preventing significant cost increases in component upgrades due to higher current levels [1]. - The first public test of the new charging standard showcased the performance of Giant Bay Technology's XFC ultra-fast charging battery, which charged from 5% to 63% SOC in just 3 minutes and 58 seconds, outperforming competitors [3]. - Giant Bay Technology's ultra-fast charging products are positioned as mature and ready for mass production, with software updates enabling significant performance enhancements [6]. Group 2: Technological Advancements - The XFC ultra-fast charging battery emphasizes constant and sustainable charging power rather than peak power, achieving an average charging rate of 8.8C while maintaining a peak capability of 16C [7]. - The battery's design allows for a long lifespan, with over 3000 charge cycles and minimal degradation, ensuring reliable performance over time [7]. - Giant Bay Technology is advancing high-end production capacity for ultra-fast charging batteries, with full-scale production expected by 2024 [8]. Group 3: Market Positioning - The company aims to democratize ultra-fast charging technology, making it accessible across various electric vehicle models at a cost only about 5% higher than standard batteries [9]. - Predictions indicate that ultra-fast charging vehicles could achieve over 50% market penetration within five years, potentially reaching 70% [10]. - Giant Bay Technology is also developing next-generation solid-state battery technology, targeting energy densities of 450Wh/kg and charging rates of 6C, with significant government project support [12].