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Home / programming language / Online Matlab Projects / Synchronous Non-Volatile Logic Gate Design Based on Resistive Switching Memories
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Synchronous Non-Volatile Logic Gate Design Based on Resistive Switching Memories

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SKU: PROJ3590 Categories: 2015 Projects, Final Year Projects, Online Matlab Projects Tags: academic projects, Android project 2013-2014, Android project 2015-2016, Android project Abstract, Android project list, btech projects, dotnet project 2013-2014, dotnet project 2015-2016, dotnet project Abstract, dotnet project list, elysium technologies abstract, elysium technologies chennai, elysium technologies coimbatore, elysium technologies company, elysium technologies courses, elysium technologies erode, elysium technologies inpant traning, elysium technologies internship, elysium technologies jobs, elysium technologies madurai, elysium technologies mou, elysium technologies pondychery, elysium technologies projectlist, elysium technologies projects, elysium technologies ramnad, elysium technologies salem, elysium technologies software, elysium technologies tirunelveli, elysium technologies trichy, Final Year Projects, java projects 2013-2014, java projects 2015-2016, java projects Abstract, madurai software company, matlab project 2013-2014, matlab project 2015-2016, matlab project Abstract, matlab project list, mtech projects, phd research work, Php project 2013-2014, Php project 2015-2016, Php project Abstract, Php project list, Power Electronic project 2013-2014, Power Electronic project 2015-2016, Power Electronic project Abstract, Power Electronic project list, project center Bangalore, project center chennai, project center coimbatore, project center Erode, project center Hyderabad, project center Kollam, project center madurai, project center Pandicherry, project center ramnad, project center Salem, project center Tiruneveli, project center trichy, research center, Students Projects, Vlsi project 2013-2014, Vlsi project 2015-2016, Vlsi project Abstract, Vlsi project list
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Synchronous Non-Volatile Logic Gate Design Based on Resistive Switching Memories

Abstract—Emerging non-volatile memories (NVM) based on resistive switching mechanism (RS) such as STT-MRAM, OxRRAM and CBRAM etc., are under intense R&D investigation by both academics and industries. They provide high write/read speed, low power and good endurance (e.g., > 1012) beyond mainstream NVMs, < Final Year Projects > which allow them to be embedded directly with logic units for computing purpose. This integration could increase significantly the power/die area efficiency, and then overcome definitively the power/speed bottlenecks of modern VLSIs. This paper presents firstly a theoretical investigation of synchronous NV logic gates based on RS memories (RS-NVL). Special design techniques and strategies are proposed to optimize the structure according to different resistive characteristics of NVMs. To validate this study, we simulated a non-volatile full-adder (NVFA) with two types of NVMs: STT-MRAM and OxRRAM by using CMOS 40 nm design kit and compact models, which includes related physics and experimental parameters. They show interesting power, speed and area gain compared with synchronized CMOS FA while keeping good reliability.

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