Title :
Asymmetric Aging: Introduction and Solution for Power-Managed Mixed-Signal SoCs
Author :
Jain, Paril ; Cano, Frank ; Pudi, Bapana ; Arvind, N.V.
Author_Institution :
CMOS Design Backplane Group, Texas Instrum. India, Bangalore, India
Abstract :
A detailed introduction to the problem of asymmetric aging of mixed signal CMOS circuits is given in this paper, with special focus on clock skew, pulse width, and aspects of burn-in. A comprehensive look into the origin and aggravation of the problem due to power management techniques is presented. Additionally, various asymmetric aging analyses and management techniques, including conventional timing analysis frameworks, are shared. For the first time, problem formulation and desensitization schemes in a statistical framework are presented. Subsequently, design guidelines are shared that can be applied on production clock designs to significantly alleviate the asymmetric aging problem. Several of these techniques must be applied to advanced production designs to enable higher performance and integrity.
Keywords :
mixed analogue-digital integrated circuits; negative bias temperature instability; system-on-chip; asymmetric aging; clock skew; conventional timing analysis frameworks; mixed signal CMOS circuits; power managed mixed signal SoC; power management techniques; pulse width; Aging; asymmetric aging; clock tree; negative bias temperature instability (NBTI); skew;
Journal_Title :
Very Large Scale Integration (VLSI) Systems, IEEE Transactions on
DOI :
10.1109/TVLSI.2013.2251022