DocumentCode :
642712
Title :
Architectures for nanoscale hybrid computing systems
Author :
Corinto, Fernando ; Horvath, Andras ; Roska, Tamas
Author_Institution :
Dept. of Electron. & Telecommun., Politec. di Torino, Turin, Italy
fYear :
2013
fDate :
8-12 Sept. 2013
Firstpage :
1
Lastpage :
4
Abstract :
Spin torque oscillator (STO) nanodevices have been brought into focus of engineering hoping they could provide for a platform of computation beyond Moore´s law. In this paper we propose hybrid-architectures (i.e. combining CMOS units and STO nanodevices) useful to realize Oscillatory Cellular Nonlinear Network (O-CNN) arrays that can be used for associative memory (AM) problem-solving. The fundamental components of the AM O-CNN are (1) a CMOS preprocessing unit generating input feature vectors from picture inputs, (2) an AM cluster generating signature outputs composed of spin torque oscillator (STO) cells and local spin-wave interactions, as an oscillatory CNN (O-CNN) array unit, applied several times arranged in space, and (3) a classification unit (CMOS). In this manuscript we focus on the AM cluster composed of several STO and we aim at showing how local spin-wave interactions lead to global indirect interactions. In addition, a mathematical methodology is proposed in order to design the fully-connected AM cluster of STO exploiting the local spin-wave interactions due to physical limits of the implementation.
Keywords :
cellular neural nets; neural chips; AM cluster; AM problem-solving; CMOS preprocessing unit; Moore law; O-CNN arrays; STO nanodevice; associative memory; classification unit; complimentary metal oxide semiconductors; input feature vectors; local spin-wave interactions; nanoscale hybrid computing systems; oscillatory cellular nonlinear network; spin torque oscillator; Couplings; Equations; Mathematical model; Nanoscale devices; Oscillators; Torque; Vectors;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Circuit Theory and Design (ECCTD), 2013 European Conference on
Conference_Location :
Dresden
Type :
conf
DOI :
10.1109/ECCTD.2013.6662264
Filename :
6662264
Link To Document :
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