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Park, Heechun
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Pseudo-3D Physical Design Flow for Monolithic 3D ICs: Comparisons and Enhancements

Author(s)
Park , HeechunKu, Bon WoongChang, KyungwookShim, Da EunLim, Sung Kyu
Issued Date
2021-09
DOI
10.1145/3453480
URI
https://scholarworks.unist.ac.kr/handle/201301/81624
Citation
ACM TRANSACTIONS ON DESIGN AUTOMATION OF ELECTRONIC SYSTEMS, v.26, no.5, pp.37
Abstract
Studies have shown that monolithic 3D (M3D) ICs outperform the existing through-silicon-via (TSV) -based 3D ICs in terms of power, performance, and area (PPA) metrics, primarily due to the orders of magnitude denser vertical interconnections offered by the nano-scale monolithic inter-tier vias. In order to facilitate faster industry adoption of the M31) technologies, physical design tools and methodologies are essential. Recent academic efforts in developing an EDA algorithm for 3D ICs, mainly targeting placement using TSVs, are inadequate to provide commercial-quality GDS layouts. Lately, pseudo-3D approaches have been devised, which utilize commercial 2D IC EDA engines with tricks that help them operate as an efficient 3D IC CAD tool. In this article, we provide thorough discussions and fair comparisons (both qualitative and quantitative) of the state-of-the-art pseudo-3D design flows, with analysis of limitations in each design flow and solutions to improve their PPA metrics. Moreover, we suggest a hybrid pseudo-3D design flow that achieves both benefits. Our enhancements and the inter-mixed design flow, provide up to an additional 26% wirelength, 10% power consumption, and 23% of power-delay-product improvements.
Publisher
ASSOC COMPUTING MACHINERY
ISSN
1084-4309
Keyword (Author)
Monolithic 3D ICpseudo-3D approachcomputer-aided design3D placementtiming closure
Keyword
ANALYTICAL PLACEMENT

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