Impact of process variation in inductive integrated voltage regulator on delay and power of digital circuits
Author:
Affiliation:
1. Georgia Institute of Technology,, Atlanta, GA, USA
2. Intel Corporation, Hillsboro, OR, USA
3. Georgia Institute of Technology, Atlanta, GA, USA
Funder
Semiconductor Research Corporation
Division of Computer and Network Systems
Publisher
ACM
Link
https://dl.acm.org/doi/pdf/10.1145/2627369.2627637
Reference16 articles.
1. Gardner D.S. et. al. "Integrated on-chip inductors using magnetic material (invited) " Journal of Applied Physics Apr 2008 Gardner D.S. et. al. "Integrated on-chip inductors using magnetic material (invited) " Journal of Applied Physics Apr 2008
2. A. V. Peterchev et. al "Architecture and IC implementation of a digital VRM controller " IEEE TPEL Jan 2003 A. V. Peterchev et. al "Architecture and IC implementation of a digital VRM controller " IEEE TPEL Jan 2003
3. J. Wibben et. al "A High Efficiency DC-DC Converter Using 2nH On-Chip Inductors " IEEE VLSI Circuits June 2007 J. Wibben et. al "A High Efficiency DC-DC Converter Using 2nH On-Chip Inductors " IEEE VLSI Circuits June 2007
4. P. Hazucha et. al "A 233-MHz 80%-87% efficient four-phase DC-DC converter utilizing air-core inductors on package " IEEE JSSC April 2005 P. Hazucha et. al "A 233-MHz 80%-87% efficient four-phase DC-DC converter utilizing air-core inductors on package " IEEE JSSC April 2005
5. N. Sturcken et. al "A Switched-Inductor Integrated Voltage Regulator With Nonlinear Feedback and Network-on-Chip Load in 45 nm SOI " IEEE JSSC Aug. 2012 N. Sturcken et. al "A Switched-Inductor Integrated Voltage Regulator With Nonlinear Feedback and Network-on-Chip Load in 45 nm SOI " IEEE JSSC Aug. 2012
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