We are excited to share one of the March 2025 paper highlights titled "Electrical and Thermal Characteristics Optimization in Interposer-Based 2.5-D Integrated Circuits." ?? Authored by: Changle Zhi; Gang Dong; Deguang Yang; Daihang Liu; Yinghao Feng; Yang Wang; Zhangming Zhu In this work, a comprehensive analysis and optimization method of electrical and thermal characteristics in 2.5-D integrated circuits (ICs) is performed, including rapid heat distribution modeling, integrated voltage regulator (IVR) chip modeling, and power delivery network (PDN) modeling. Based on the proposed method, chiplet placement, decoupling placement, and IVR parameter settings that compromise the total PDN impedance, IVR impedance, and thermal distribution characteristics can be obtained. ?? Continue reading here: https://loom.ly/v2FAA5o #IEEE #EditorialBoard #TVLSI #VeryLargeScaleIntegrationSystems #VeryLargeScaleIntegration
IEEE Transactions on VLSI Systems
图书期刊出版业
Piscataway,NJ 1,918 位关注者
IEEE Transactions on Very Large Scale Integration Systems (TVLSI)
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Includes all major aspects of the design and implementation of VLSI/ULSI and microelectronic systems. Topics of special interest include systems specifications, design and partitioning, high-performance computing and communication systems, neural networks, wafer-scale integration, and multichip module systems and their applications.
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https://ieeexplore.ieee.org/xpl/RecentIssue.jsp?punumber=92
IEEE Transactions on VLSI Systems的外部链接
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- 图书期刊出版业
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IEEE Transactions on VLSI Systems员工
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Mircea Stan
Director of Computer Engineering, Virginia Microelectronics Consortium (VMEC) Professor at UVa, Editor-in-Chief IEEE TVLSI, budding entrepreneur
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Huawei Li
Professor at ICT, CAS
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Bhupendra Singh Reniwal, Ph.D
Assistant Professor IIT Jodhpur | Ex-Intel | Ex-IBM | Memory Design | I/O Design | AMS IC Design |
动态
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?? We invite you to join us for "The Best of TVLSI" Webinar Series! This talk will take place on 25 March 2025 12:00 PM Eastern Time (+4:00 UTC) and features a talk by Prof. Luca Benini (ETH/U of Bologna) and Tim Fischer (ETH) , titled "FlooNoC: A 645-Gb/s/link 0.15-pJ/B/hop Open-Source NoC With Wide Physical Links and End-to-End AXI4 Parallel Multistream Support." ?? For more information, please visit: https://loom.ly/btEVv7Q ?? Event link: https://loom.ly/xVezeAE #TVLSI #Webinar #WebinarSeries
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?? Become a Volunteer TVSLI Reviewer! Are you an expert in circuits and systems? Help shape the future of research by reviewing manuscripts for IEEE Transactions on Very Large Scale Integration Systems (TVSLI). ??Sign up today: https://loom.ly/R9h3w0k #IEEECASS #TVSLI #Circuits #Systems
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I am happy and honored to have been reappointed as Editor in Chief (EiC) for the IEEE Transactions on VLSI Systems (TVLSI) for another two-year term. As I continue my efforts to improve the quality of the journal, I am grateful for the renewed trust placed in me by the three IEEE sponsoring societies (CASS, SSCS and CS) and by the VLSI community at large. Contrary to a feared slowdown due to increased difficulties with scaling, the field of Very Large Scale Integration (VLSI) has actually grown at an increasingly fast rate as it provides the hardware backbone for the insatiable AI applications which are taking over the world. The H100/200 GPUs, which are essential for AI training, are the largest “conventional” integrated circuits (IC) with 80 billion transistors, while the wafer-scale WSE2/3, which can provide significant improvements in AI inference, are absolute behemoths with 4 trillion transistors! Mr. Moore can be proud there in heaven for what our industry is able to deliver! Read more in IEEE Xplore in Volume 33, Issue 3, March 2025: https://loom.ly/3p0PFBw #IEEE #EditorialBoard #TVLSI #VeryLargeScaleIntegrationSystems #VeryLargeScaleIntegration
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We encourage you to check out the March 2025 issue of the IEEE Transactions on Very Large Scale Integration (VLSI) Systems. ?? Read the latest on IEEE Xplore here: https://loom.ly/BEeCRds IEEE Circuits and Systems Society (CASS) IEEE Computer Society IEEE Solid-State Circuits Society #IEEE #IEEEXplore #TVLSI #LatestIssue #VeryLargeScaleIntegration #VeryLargeScaleIntegrationSystems
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We're thrilled to announce the 2025 Editorial Board for IEEE Transactions on VLSI Systems (TVLSI)! With renewed leadership and a dynamic team, we're committed to pushing the boundaries of VLSI research. Join us in celebrating this milestone and stay tuned for the latest advancements. Learn more & connect: https://loom.ly/3p0PFBw #VLSI #IEEE #EditorialBoard #TechInnovation
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Meet Magdy Abadir, a esteemed Associate Editor for the IEEE Transactions on Very Large Scale Integration Systems! We are incredibly fortunate to have them on our editorial board. Learn more on editorial board by visiting the conference website: https://loom.ly/RhyQ7hs #IEEETVSLI #AssociateEditor
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Discover the latest research in circuits and systems with the latest popular articles from the IEEE Transactions on Very Large Scale Integration Systems. Read the latest by visiting the IEEE Xplore website: https://loom.ly/9qRuBG4 #CircuitsandSystems #Research #Innovation
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Want to enhance your expertise in VLSI systems? Dive into the newest issue of IEEE Transactions on Very Large Scale Integration Systems. Read now: https://loom.ly/rrNaWSo #TVLSI #Engineering #Innovation
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We are excited to share one of the February 2025 paper highlights "SCOPE: Schoolbook-Originated Novel Polynomial Multiplication Accelerators for NTRU-Based PQC". ?? Authored by: Yazheng Tu; Shi Bai; Jinjun Xiong; Jiafeng Xie The Nth-degree truncated polynomial ring units (NTRUs)-based postquantum cryptography (PQC) has drawn significant attention from the research communities, e.g., the National Institute of Standards and Technology (NIST) PQC standardization process selected algorithm Fast Fourier lattice-based compact (Falcon). Following the research trend, efficient hardware accelerator design for polynomial multiplication (an important component of the NTRU-based PQC) is crucial. Unlike the commonly used number theoretic transform (NTT) method, in this article, we have presented a novel SChoolbook-Originated Polynomial multiplication accElerators (SCOPE) design framework. ?? Continue reading here: https://loom.ly/gNU3mQg #IEEE #TVLSI #VeryLargeScaleIntegrationSystems #VeryLargeScaleIntegration
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