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My research is primarily in the area of computer-aided design (CAD) of VLSI systems. Advances in integrated circuit technologies allow us to build progressively larger systems, with increasing numbers of transistors. On the other hand, circuit components, such as transistors and wires, shrink in size from one technology generation to the next. Under such a scenario, CAD techniques are essential, both to model physical effects at the nanoscale and to solve large-scale problems with large numbers of variables. The research in our group is centered around design automation for optimization and analysis, concentrating on timing, power and layout issues. Some specific problems that we have worked on in the recent past include thermal analysis, reliability, power grid analysis, and 3D integration. Our focus has been on being able to build practical algorithms that can provide accurate solutions with a reasonable amount of computation.
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IEEE Transactions on Computer-Aided Design of Integrated Circuits and Systemsno. 99 (2024): 1-1
Npj unconventional computingno. 1 (2024): 3-3
CoRR (2024)
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IEEE VLSI Test Symposiumpp.1-4, (2024)
ASPDAC '24: Proceedings of the 29th Asia and South Pacific Design Automation Conferencepp.478-483, (2024)
Ulya Karpuzcu, Hüsrev Cıl,William Moy,Ziqing Zeng,Tahmida Islam, Hao Lo, Alex Vanasse, Megan Tan, Mohammad Anees,Ramprasath S, Abhimanyu Kumar,Sachin Sapatnekar,
crossref(2024)
Hüsrev Cılasun,Ziqing Zeng,Ramprasath S, Abhimanyu Kumar, Hao Lo, William Cho,William Moy,Chris H Kim,Ulya R Karpuzcu,Sachin S Sapatnekar
Scientific reportsno. 1 (2024): 10757-10757
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