Unconventional digital computing approach: ...
Document type :
Compte-rendu et recension critique d'ouvrage
DOI :
Title :
Unconventional digital computing approach: memristive nanodevice platform
Author(s) :
Shahsavari, Mahyar [Auteur correspondant]
Centre de Recherche en Informatique, Signal et Automatique de Lille - UMR 9189 [CRIStAL]
Faisal Nadeem, M [Auteur]
Delft University of Technology [TU Delft]
Arash Ostadzadeh, S [Auteur]
Delft University of Technology [TU Delft]
Devienne, Philippe [Auteur]
Centre de Recherche en Informatique, Signal et Automatique de Lille - UMR 9189 [CRIStAL]
Boulet, Pierre [Auteur]
Centre de Recherche en Informatique, Signal et Automatique de Lille - UMR 9189 [CRIStAL]
Centre de Recherche en Informatique, Signal et Automatique de Lille - UMR 9189 [CRIStAL]
Faisal Nadeem, M [Auteur]
Delft University of Technology [TU Delft]
Arash Ostadzadeh, S [Auteur]
Delft University of Technology [TU Delft]
Devienne, Philippe [Auteur]
Centre de Recherche en Informatique, Signal et Automatique de Lille - UMR 9189 [CRIStAL]
Boulet, Pierre [Auteur]
Centre de Recherche en Informatique, Signal et Automatique de Lille - UMR 9189 [CRIStAL]
Journal title :
Physica Status Solidi (c)
Issue physica status solidi (c) physica status solidi (c) Special Issue: E-MRS 2014 Spring Meeting – Symposium E • E-MRS 2014 Spring Meeting – Symposium F • E-MRS 2014 Spring Meeting – Symposium S
Issue physica status solidi (c) physica status solidi (c) Special Issue: E-MRS 2014 Spring Meeting – Symposium E • E-MRS 2014 Spring Meeting – Symposium F • E-MRS 2014 Spring Meeting – Symposium S
Pages :
222 - 228
Publisher :
Wiley
Publication date :
2015-01
ISSN :
1610-1634
English keyword(s) :
digital computing
memristor nanodevice
material implication
nanoscale crossbar
memristor nanodevice
material implication
nanoscale crossbar
HAL domain(s) :
Informatique [cs]/Systèmes embarqués
English abstract : [en]
Memristor is a two-terminal nanodevice that has recently attracted the attention of many researchers. Its simple structure, non-volatility behavior, high-density integra-tion, and low-power consumption make the memristor ...
Show more >Memristor is a two-terminal nanodevice that has recently attracted the attention of many researchers. Its simple structure, non-volatility behavior, high-density integra-tion, and low-power consumption make the memristor a promising candidate to act as a switch in digital gates for future high-performance and low-power nanocom-puting applications. In this paper, we model the behavior of memristor by using Verilog-A. To investigate its char-acteristics in a circuit, we use the HSPICE simulator. Furthermore, a library of digital gates are provided by using two approaches to make digital gates: the first one is based on material implication (IMP) and the second one is based on crossbar arrays. Finally, we perform a comparison and evaluation between the two methods.Show less >
Show more >Memristor is a two-terminal nanodevice that has recently attracted the attention of many researchers. Its simple structure, non-volatility behavior, high-density integra-tion, and low-power consumption make the memristor a promising candidate to act as a switch in digital gates for future high-performance and low-power nanocom-puting applications. In this paper, we model the behavior of memristor by using Verilog-A. To investigate its char-acteristics in a circuit, we use the HSPICE simulator. Furthermore, a library of digital gates are provided by using two approaches to make digital gates: the first one is based on material implication (IMP) and the second one is based on crossbar arrays. Finally, we perform a comparison and evaluation between the two methods.Show less >
Language :
Anglais
Popular science :
Non
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