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Titlebook: Emerging Memory Technologies; Design, Architecture Yuan Xie Book 2014 Springer Science+Business Media New York 2014 Emerging Memory.Memory

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https://doi.org/10.1007/978-3-662-33887-2rarchies. We demonstrate that an ReRAM-based cache hierarchy on an 8-core CMP system can achieve a 28 % EDP (Energy-Delay Product) improvement and a 39 % EDAP (Energy-Delay-Area Product) improvement compared to a conventional hierarchy with SRAM on-chip caches and DRAM main memory.
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A Circuit-Architecture Co-optimization Framework for Exploring Nonvolatile Memory Hierarchies,rarchies. We demonstrate that an ReRAM-based cache hierarchy on an 8-core CMP system can achieve a 28 % EDP (Energy-Delay Product) improvement and a 39 % EDAP (Energy-Delay-Area Product) improvement compared to a conventional hierarchy with SRAM on-chip caches and DRAM main memory.
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Book 2014 practical information included in this book will enable designers to exploit emerging memory technologies to improve significantly the performance/power/reliability of future, mainstream integrated circuits.
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https://doi.org/10.1007/978-1-4419-9551-3Emerging Memory; Memory Architecture; Memory Circuit Design; Memory Design; NVM SIM; Non-volatile Memory;
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978-1-4939-4199-5Springer Science+Business Media New York 2014
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Yuan XieProvides a comprehensive reference on designing modern circuits with emerging, non-volatile memory technologies, such as MRAM and PCRAM.Explores new design opportunities offered by emerging memory tec
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https://doi.org/10.1057/9780230593107fer memory (STT-RAM, or MRAM), phase change memory (PCRAM), and resistive memory (ReRAM) are regarded as the most promising candidates. As the ultimate goal of this NVM research is to deploy them into multiple levels in the memory hierarchy, it is necessary to explore the wide NVM design space and f
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