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JSSC 2024第12期Power ManagementIntel 16Neural Network Accelerator

A Monolithic 12.7 W/mm 2, 92% Peak-Efficiency Switched-Capacitor DC–DC Converter Using CSCR-First Topology

提出一种新型单片开关电容电压调节器,实现高功率密度和高效率。
12.7 W/mm²峰值功率密度,92%峰值效率
开关电容电压调节器高功率密度高效率单片设计CSCR拓扑
结合固定比例2:1级和CSCR级,提升输入电压范围
通过异相运行固定比例和CSCR级,提高效率
采用可扩展的阵列化电压调节器核心设计
Abstract
This article introduces the continuously scal- able conversion-ratio (CSCR)-first topology for monolithic switched-capacitor voltage regulators (SCVRs), substantially improving the performance of CSCR SCVRs for higher input voltages. The topology combines fixed-ratio 2:1 stages together with a CSCR stage to limit the voltage across the CSCR stage while boosting the allowable input voltage higher without relying on stacking capacitors or transistors. Furthermore, by running the fixed-ratio and CSCR stage out of phase, the effectiveness of the CSCR’s intermediate rails and switches is doubled, thus reducing the required transistor footprint. This article discusses a scalable implementation of this technology, leveraging an array-able voltage regulator (VR) core that encompasses the required powertransistors, capacitors, as well as local signal generation circuits, that is then combined with a single central- ized controller to meet the current demands of small and large power domains. Measurement results of the VR, realized on Intel 16 technology using high-density metal-insulator–metal (MIM) capacitors, demonstrate the transient performance and reliability of the proposed approach, while showcasing a record 12.7 W/mm2 peak power density for monolithic voltage conversion, and 92% peak efficiency.