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* Our paper is accepted in a leading journal in design automation [http://ieeexplore.ieee.org/xpl/RecentIssue.jsp?punumber=43 IEEE TCAD].  
 
* Our paper is accepted in a leading journal in design automation [http://ieeexplore.ieee.org/xpl/RecentIssue.jsp?punumber=43 IEEE TCAD].  
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* We present our work "''Synthesis on Switching Lattices of Dimension-Reducible Boolean Functions''" in [http://ati.ttu.ee/vlsi-soc2016/ VLSI-Soc 2016].
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* We present our project and our work on ''logic synthesis of switching nan oarrays'' in [http://dsd-seaa2016.cs.ucy.ac.cy/index.php?p=DSD2016 DSD 2016].
  
 
* We give an invited talk "''EU H2020 Success Story''" in [http://msca-association.teamwork.fr/en/programme H2020 MSCA 2016 Istanbul Training & Info Event].
 
* We give an invited talk "''EU H2020 Success Story''" in [http://msca-association.teamwork.fr/en/programme H2020 MSCA 2016 Istanbul Training & Info Event].
  
 
* We present our work "''Power-Delay-Area Performance Modeling and Analysis for Nano-Crossbar Arrays''" in [http://www.isvlsi.org/ IEEE-ISVLSI 2016].
 
* We present our work "''Power-Delay-Area Performance Modeling and Analysis for Nano-Crossbar Arrays''" in [http://www.isvlsi.org/ IEEE-ISVLSI 2016].
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* We organize [http://sintesilogica.di.unimi.it/ the National Workshop on Logic Synthesis, July 2016] with introducing our project and preliminary research results.
  
 
* We give an invited talk "''Circuit Design and Optimization of Nano-Crossbar Arrays''" in [http://www.nanotr12.org/ NanoTR-12].
 
* We give an invited talk "''Circuit Design and Optimization of Nano-Crossbar Arrays''" in [http://www.nanotr12.org/ NanoTR-12].

Revision as of 22:45, 10 April 2017

Welcome to the NANOxCOMP Project

Nano-crossbar arrays have emerged as a strong candidate technology to replace CMOS in near future. They are regular and dense structures, and fabricated by exploiting self-assembly as opposed to purely using lithography based conventional and relatively costly CMOS fabrication techniques. Currently, nano-crossbar arrays are fabricated such that each crosspoint can be used as a conventional electronic component such as a diode, a FET, or a switch. This is a unique opportunity that allows us to integrate well developed conventional circuit design techniques into nano-crossbar arrays. Motivated by this, we aim to develop a complete synthesis and performance optimization methodology for switching nano-crossbar arrays that leads to the design and construction of an emerging nanocomputer.


Research-nanoarray-1.png

Project details

title: Synthesis and Performance Optimization of a Switching Nano-Crossbar Computer
acronym: NANOxCOMP
principal investigator / coordinator: Mustafa Altun, Istanbul Technical University
partner(s):
funding agency & program: European Union/European Commission H2020 MCSA
Research and Innovation Staff Exchange Program (RISE)
budget: 724.500 EURO
duration: 2015-2019
This project
  • gathers globally leading research groups working on nanoelectronics and EDA;
  • targets variety of emerging technologies including nanowire/nanotube crossbar arrays, magnetic switch-based structures, and crossbar memories; and
  • contributes to the construction of emerging computers beyond CMOS by proposing nano-crossbar based computer architectures.
Nanoxcomp logo.png

PRESENTATIONS

  • PPT.jpg
    Slides
  • SPACE
  • PDF.png
    Poster

  • Project news

    • We successfully have our midterm review meeting in Lausanne, Switzerland on March 2017. For the agenda click here.
    • We present our work "Computing with Nano-Crossbar Arrays: Logic Synthesis and Fault Tolerance" in a premier conference on electronic design automation DATE 2017.
    • Our paper is accepted in a leading journal in design automation IEEE TCAD.
    • We present our work "Synthesis on Switching Lattices of Dimension-Reducible Boolean Functions" in VLSI-Soc 2016.
    • We present our project and our work on logic synthesis of switching nan oarrays in DSD 2016.
    • We present our work "Power-Delay-Area Performance Modeling and Analysis for Nano-Crossbar Arrays" in IEEE-ISVLSI 2016.
    • We give an invited talk "Circuit Design and Optimization of Nano-Crossbar Arrays" in NanoTR-12.
    • We give a plenary talk "Implementation of a Switching Nano-Crossbar Computer" in ACT 2016.
    • We present and exhibit our EU H2020 project NANOxCOMP in a premier conference on electronic design automation DATE 2016 with over 1000 attendees from academia and industry.
    Funding-3.png

    If interested in our group, please contact Mustafa at altunmus@itu.edu.tr or stop by EEF 3005 (coffee guaranteed).
    Retrieved from "https://www.nanoxcomp.itu.edu.tr/index.php?title=Main_Page&oldid=2499"
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