Getting to the bottom of deep submicron
Rethinking Deep-Submicron Circuit Design
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Our goal in this paper is to get to the bottom of deep submicron effects and make an objective judgement of how they are likely to. Permission to make digital or.
Dennis Sylvester, Kurt Keutzer, Getting to the bottom of deep submicron, Proceedings of the IEEE/ACM international conference on Computer-aided .
Effect of Gas Species on the Depth Reduction in Silicon Deep-Submicron Trench Reactive Ion Etching
Description:Some effects, like the rising resistance-capacitance RC delay of on-chip wiring, noise considerations, reliability concerns, and increased power dissipation, manifest themselves in both the devices transistors and the interconnect, though not in ways previously anticipated. Their analysis shows that interconnect delay actually decreases for DSM processes in a modular design approach. Deep-submicron effects-particularly those relating to interconnects-have thus been billed as potential roadblocks to the continuation of Moore's law. The authors consider the effects of both devices and interconnect.
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