An 82%-efficient multiphase voltage-regulator 3D interposer with on-chip magnetic inductors

K. Tien, N. Sturcken, Naigang Wang, J. Nah, B. Dang, E. O'Sullivan, P. Andry, M. Petracca, L. Carloni, W. Gallagher, K. Shepard
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引用次数: 6

Abstract

This paper presents a three-dimensional (3D) fully integrated high-speed multiphase voltage regulator. A complete switched-inductor regulator is integrated with a four-plane NoC in a two-high chip stack combining integrated magnetics, through-silicon vias (TSVs), and 45-nm SOI CMOS devices. Quasi-V2 hysteretic control is implemented over eight injection-locked fixed-frequency phases to achieve fast response, steady-state regulation, and fixed switching frequency. Peak efficiency of 82% for conversion from 1.66 V to 0.83 V is observed at a 150 MHz per-phase switching frequency. This is the first demonstration of high-speed voltage regulation using on-chip magnetic-core inductors in a 3D stack and achieves sub-μs dynamic supply voltage scaling for high-density embedded processing applications.
一种具有片上磁电感器的82%效率的多相电压调节器3D中间体
本文提出了一种三维(3D)全集成高速多相稳压器。一个完整的开关电感调节器与一个四平面NoC集成在一个两高芯片堆栈中,结合了集成磁性、硅通孔(tsv)和45纳米SOI CMOS器件。准v2滞后控制在8个注入锁定固定频率相位实现快速响应,稳态调节和固定开关频率。在每相开关频率为150 MHz时,从1.66 V转换到0.83 V的峰值效率为82%。这是首次在3D堆栈中使用片上磁芯电感实现高速电压调节,并实现了高密度嵌入式处理应用的亚μs动态电源电压缩放。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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