2012Unpublished venueRequires access

Electronic design automation (EDA) solutions for ESD-robust design and verification

Michael G. Khazhinsky, Shuqing Cao, Harald Goßner, Gianluca Boselli, M. Etherton

Open publisher page 8 citations

Abstract

The paper describes the essential requirements of the Electrostatic Discharge (ESD) EDA verification flow to be aligned within the IC design community. The proposed flow offers a systematic approach to check ESD robustness across all IC blocks during the product definition, chip architecture, main module and full IC design phases, and during the final IC verification. This flow is substantiated by case studies of key ESD checks at different IC design stages, demonstrating the necessity of replacing manual checks with EDA tool enabled verification.

About this research paper

What this paper is about

The paper describes the essential requirements of the Electrostatic Discharge (ESD) EDA verification flow to be aligned within the IC design community. The proposed flow offers a systematic approach to check ESD robustness across all IC blocks during the product definition, chip architecture, main module and full IC design phases, and during the final IC verification. This flow is substantiated by case studies of key ESD checks at different IC design stages, demonstrating the necessity of replacing manual checks with EDA tool enabled verification.

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OpenAlex reports 8 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

The paper describes the essential requirements of the Electrostatic Discharge (ESD) EDA verification flow to be aligned within the IC design community. The proposed flow offers a systematic approach to check ESD robustness across all IC blocks during the product definition, chip architecture, main module and full IC design phases, and during the final IC verification. This flow is substantiated by case studies of key ESD checks at different IC design stages, demonstrating the necessity of replacing manual checks with EDA tool enabled verification.

Key concepts: Design flow, Electronic design automation, Electrostatic discharge, Functional verification, Integrated circuit design, Computer science, Robustness (evolution), Physical design

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