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* For current '''open positions''' [[Media:Altun-H2020-Tubitak-1001-is-ilani-2016.pdf | '''click here''']] (in Turkish).
 
* For current '''open positions''' [[Media:Altun-H2020-Tubitak-1001-is-ilani-2016.pdf | '''click here''']] (in Turkish).
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<div style="margin-left:0.8em;"> If interested in our group, please contact [[Mustafa_Altun|Mustafa]] at '''altunmus@itu.edu.tr''' or stop by '''EEF 3005''' (coffee guaranteed).
 
<div style="margin-left:0.8em;"> If interested in our group, please contact [[Mustafa_Altun|Mustafa]] at '''altunmus@itu.edu.tr''' or stop by '''EEF 3005''' (coffee guaranteed).
 
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{|  style="width:100%; margin:4px 0 0 0; border:1px solid #4682B4; align=center; vertical-align:top; background:#f1f5f8;"
 
 
| style="padding:2px;" | <h2 id="mp-tafi-h2" style="margin:3px; background:#5F9EA0; font-size:125%; font-weight:bold; border:1px solid #4682B4; text-align:center; color:#000; padding:0.2em 0.4em;">Selected recent publications</h2>
 
 
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<li style="display: inline-block;"> [[File:Main-pub-1.png|link=http://www.ecc.itu.edu.tr/images/c/cc/Tunali_Altun_Permanent_and_Transient_Fault_Tolerance_for_Reconfigurable_Nano-Crossbar_Arrays.pdf|thumb|none|350px|[http://www.ecc.itu.edu.tr/images/c/cc/Tunali_Altun_Permanent_and_Transient_Fault_Tolerance_for_Reconfigurable_Nano-Crossbar_Arrays.pdf The paper] published in [http://ieeexplore.ieee.org/xpl/RecentIssue.jsp?punumber=43 TCAD], 2016]]
 
<li style="display: inline-block;"> [[File:Main-pub-3.png|link=http://www.ecc.itu.edu.tr/images/1/16/Altun_Comert_A_Change-Point_based_Reliability_Prediction_Model_using_Field_Return_Data.pdf|thumb|none|412px|[http://www.ecc.itu.edu.tr/images/1/16/Altun_Comert_A_Change-Point_based_Reliability_Prediction_Model_using_Field_Return_Data.pdf The paper] published in [http://www.journals.elsevier.com/reliability-engineering-and-system-safety RESS], 2016]]
 
<li style="display: inline-block;"> [[File:Main-pub-4.png|link=http://www.ecc.itu.edu.tr/images/d/d6/Vahapoglu_Altun_Accurate_Synthesis_of_Arithmetic_Operations_with_Stochastic_Logic.pdf|thumb|none|350px|[http://www.ecc.itu.edu.tr/images/d/d6/Vahapoglu_Altun_Accurate_Synthesis_of_Arithmetic_Operations_with_Stochastic_Logic.pdf The paper] presented at  [http://www.isvlsi.org/ IEEE-ISVLSI], 2016]]
 
<li style="display: inline-block;"> [[File:Main-pub-2.png|link=http://www.ecc.itu.edu.tr/images/c/cd/Susam_Altun_Fast_Synthesis_of_Reversible_Circuits_using_a_Sorting_Algorithm_and_Optimization.pdf|thumb|none|330px|[http://www.ecc.itu.edu.tr/images/c/cd/Susam_Altun_Fast_Synthesis_of_Reversible_Circuits_using_a_Sorting_Algorithm_and_Optimization.pdf The paper] published in [http://www.oldcitypublishing.com/journals/mvlsc-home/ MVLSC], 2016]]
 
<!--  <li style="display: inline-block;"> [[File:ECC_ofis_foto_1.jpg|link=http://www.ecc.itu.edu.tr/index.php?title=People|thumb|none|360px|Our office space, 2015]] -->
 
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<li style="display: inline-block;"> [[File:ECC_iftar_2016.jpg|link=http://www.ecc.itu.edu.tr/index.php?title=People|thumb|none|380px|ECC having iftar in Baltalimani, 2016]]
 
<li style="display: inline-block;"> [[File:ECC_grup_foto_3.jpg|link=http://www.ecc.itu.edu.tr/index.php?title=People|thumb|none|380px|Group dining in Baltalimani, 2015]]
 
<li style="display: inline-block;"> [[File:ECC_grup_foto_2.jpg|link=http://www.ecc.itu.edu.tr/index.php?title=People|thumb|none|380px|ECC show up, 2015]]
 
<li style="display: inline-block;"> [[File:ECC_grup_foto_1.jpg|link=http://www.ecc.itu.edu.tr/index.php?title=People|thumb|none|380px|Group meeting with pizza, 2014]]
 
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Revision as of 23:40, 9 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

    • For current open positions click here (in Turkish).
    • For current open postdoc positions click here.
    • Visiting professors/researchers and postdoc scholars are very welcome. Postdoc applicants are highly encouraged to apply for the following programs:
      • European Union H2020 Individual Fellowships (MSCA - IF)
      • TUBITAK Research Fellowship Program For Foreign Citizens (2216)
      • TUBITAK National Postdoctoral Research Fellowship Program (2218)
      • TUBITAK Postdoctoral Reintegration Fellowship Program (2232)
    • Various funded research projects available for graduate and undergraduate students on the following topics:
      • Circuit design and performance optimization for emerging technologies based on nano-crossbar arrays
      • Reliability of electronic circuits and systems
      • Reversible circuit design
      • Stochastic computing
      • Approximate computing

    Collaborating with our group

    • We are wide open to national/international collaborations with academia and industry.
    • We are dedicated to establish new partnerships for European Union H2020 and EUREKA work programmes/projects including:
      • Future and Emerging Technologies (FET)
      • Information and Communication Technologies (ICT) including ICT-05 and ICT-31
      • Cluster for Application and Technology Research in Europe on NanoElectronics (CATRENE)
      • The projects needed expertise in reliability, circuit design, and electronic design automation
    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=2490"
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