转换器
电容器
电压
材料科学
压电
能量转换效率
CMOS芯片
电子工程
电容
电气工程
炸薯条
缩放比例
光电子学
功率(物理)
电压转换器
谐振器
充电泵
升压变换器
能量转换
电感器
高压
计算机科学
动态电压标度
MOSFET
低压
电效率
功率MOSFET
作者
Jae-Young Ko,Wen-Chin Liu,Patrick P. Mercier
标识
DOI:10.1038/s41467-026-70494-0
摘要
Piezoelectric resonators are becoming attractive alternatives to conventional magnetics in DC-DC converters due to their favorable scaling and manufacturing properties. However, the efficiency and current handling capabilities of baseline piezoelectric resonator-based DC-DC converters degrade at higher voltage conversion ratios due to charge utilization limitations imposed by topological operation. Here we present an Always-Multi-Path Embedded Flying Capacitor Piezoelectric Resonator-based DC-DC converter that uses flying capacitors to add both hybrid multi-path output power delivery features and to reduce the internal charge redistribution losses within the piezoelectric resonator. Specifically, the proposed integrated circuit modifies the optimal voltage conversion of the piezo network from 2:1 to 3:1 while adding a switched-capacitor output network that enables multi-path operation at all times, resulting in a net optimal voltage conversion ratio of 9:1 for the converter, with 4x improved output current. Fabricated in a 180 nm high-voltage CMOS process, the developed chip achieves a peak efficiency of 96.2% at a 48-to-4.8 V conversion ratio.
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