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Titlebook: Beyond-CMOS Technologies for Next Generation Computer Design; Rasit O. Topaloglu,H.-S. Philip Wong Book 2019 Springer International Publis

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期刊全稱Beyond-CMOS Technologies for Next Generation Computer Design
影響因子2023Rasit O. Topaloglu,H.-S. Philip Wong
視頻videohttp://file.papertrans.cn/186/185371/185371.mp4
發(fā)行地址Provides an overview of CMOS scaling challenges and motivation for considering “beyond-CMOS devices;”.Discusses challenges posed by beyond-CMOS integration.Sheds light on how device architecture and s
圖書封面Titlebook: Beyond-CMOS Technologies for Next Generation Computer Design;  Rasit O. Topaloglu,H.-S. Philip Wong Book 2019 Springer International Publis
影響因子.This book describes the bottleneck faced soon by designers of traditional CMOS devices, due to device scaling, power and energy consumption, and variability limitations. This book aims at bridging the gap between device technology and architecture/system design. Readers will learn about challenges and opportunities presented by “beyond-CMOS devices” and gain insight into how these might be leveraged to build energy-efficient electronic systems..
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978-3-030-08003-7Springer International Publishing AG, part of Springer Nature 2019
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Volker P. Andelfinger,Till H?nisch forward are suffering from diminishing returns. How then can digital computing systems meet future energy efficiency requirements, for example, for future Internet-of-Everything (IoE) and abundant-data applications? To answer this outstanding question, a wide range of emerging nanotechnologies are
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Sergey Libert,Razvan Chisu,Artur Lufte introduce emerging memory technologies, including resistive RAM (ReRAM), phase change memory (PCM), and spin-torque transfer magnetic RAM (STT-MRAM). Next, we examine circuit design challenges for read and write operations, and review some of the advanced circuit techniques. Lastly, we discuss the
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Internet der Dinge in der Intralogistikcation demand for main memory continues to grow, DRAM-based main memory is increasingly becoming a larger system bottleneck in terms of both performance and energy consumption. A major reason for poor memory performance and energy efficiency is memory’s inability to perform computation. Instead, dat
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