DocumentCode
1070110
Title
Filament Conduction and Reset Mechanism in NiO-Based Resistive-Switching Memory (RRAM) Devices
Author
Russo, Ugo ; Ielmini, Daniele ; Cagli, Carlo ; Lacaita, Andrea L.
Author_Institution
Dipt. di Elettron. e Inf., Politec. di Milano, Milano
Volume
56
Issue
2
fYear
2009
Firstpage
186
Lastpage
192
Abstract
The physical understanding of the programming and reliability mechanisms in resistive-switching memory devices requires a detailed characterization of the electrical and thermal conduction properties in the low-resistance state of the memory cell. The aim of this paper is the characterization of the conductive filament (CF), which controls the localized current flow in the low resistive state of the cell. Based on a new technique for evaluating the CF temperature during operation, we perform a statistical characterization of the critical filament temperature for the reset operation, i.e., the transition to the high-resistance state by the thermal dissolution of the CF. The thermal resistance of the CF and the activation energy for the dissolution mechanism are then evaluated, allowing for a physics-based numerical modeling of the reset operation based on CF thermal breakup.
Keywords
DRAM chips; circuit reliability; circuit switching; dissolving; nickel compounds; thermal conductivity; NiO; conductive filament; dissolution mechanism; filament conduction; programming; reliability; reset mechanism; resistive-switching memory devices; thermal dissolution; thermal resistance; Educational institutions; Electric resistance; Mechanical factors; Nanoelectronics; Nonvolatile memory; Switches; Temperature distribution; Thermal conductivity; Thermal resistance; Voltage; Nonvolatile memories; resistive-switching memory (RRAM); transition metal oxide;
fLanguage
English
Journal_Title
Electron Devices, IEEE Transactions on
Publisher
ieee
ISSN
0018-9383
Type
jour
DOI
10.1109/TED.2008.2010583
Filename
4752764
Link To Document