Investigating the Temperature Effects on ZnO, TiO2, WO3 and HfO2 Based Resistive Random Access Memory (RRAM) Devices

dc.contributor.authorDongale, T.D .
dc.contributor.authorKhot, K.V.
dc.contributor.authorMohite, S.V.
dc.contributor.authorKhandagale, S.S.
dc.contributor.authorShinde, S.S.
dc.contributor.authorPatil, V.L.
dc.contributor.authorVanalkar, S.A.
dc.contributor.authorMoholkar, A.V.
dc.contributor.authorRajpure, K.Y.
dc.contributor.authorBhosale, P.N.
dc.contributor.authorPatil, P.S.
dc.contributor.authorGaikwad, P.K.
dc.contributor.authorKamat, R.K.
dc.date.accessioned2017-01-31T09:46:34Z
dc.date.available2017-01-31T09:46:34Z
dc.date.issued2016
dc.description.abstractIn this paper, we report the effect of filament radius and filament resistivity on the ZnO, TiO2, WO3 and HfO2 based Resistive Random Access Memory (RRAM) devices. We resort to the thermal reaction model of RRAM for the present analysis. The results substantiate decrease in saturated temperature with increase in the radius and resistivity of filament for the investigated RRAM devices. Moreover, a sudden change in the saturated temperature at a lower value of filament radius and resistivity is observed as against the steady change at the medium and higher value of the filament radius and resistivity. Results confirm the dependence of saturated temperature on the filament size and resistivity in RRAM.ru_RU
dc.identifier.citationT.D. Dongale, K.V. Khot, S.V. Mohite, et al., J. Nano- Electron. Phys. 8 No 4(1), 04030 (2016)ru_RU
dc.identifier.urihttp://essuir.sumdu.edu.ua/handle/123456789/49557
dc.language.isoenru_RU
dc.publisherSumy State Universityru_RU
dc.rights.uricneen_US
dc.subjectRRAMru_RU
dc.subjectThermal reaction modelru_RU
dc.subjectReliabilityru_RU
dc.subjectNanoelectronicsru_RU
dc.titleInvestigating the Temperature Effects on ZnO, TiO2, WO3 and HfO2 Based Resistive Random Access Memory (RRAM) Devicesru_RU
dc.typeArticleru_RU

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