Physics-based RRAM compact model for multilevel programming across multiple timescalesOA
Physics-based RRAM compact model for multilevel programming across multiple timescales
Tommaso Zanotti;Tommaso Rizzi;Emilio Pérez-Bosch Quesada;Andrea Baroni;Keerthi Dorai Swamy Reddy;Eduardo Pérez;Christian Wenger;Paolo Pavan;Francesco Maria Puglisi
Engineering department"Enzo Ferrari",University of Modena and Reggio Emilia,Modena,ItalyIHP-Leibniz institute for high performance microelectronics,Frankfurt(Oder),GermanyIHP-Leibniz institute for high performance microelectronics,Frankfurt(Oder),GermanyIHP-Leibniz institute for high performance microelectronics,Frankfurt(Oder),GermanyIHP-Leibniz institute for high performance microelectronics,Frankfurt(Oder),GermanyIHP-Leibniz institute for high performance microelectronics,Frankfurt(Oder),Germany||BTU Cottbus-Senftenberg,Cottbus,GermanyIHP-Leibniz institute for high performance microelectronics,Frankfurt(Oder),Germany||BTU Cottbus-Senftenberg,Cottbus,GermanyEngineering department"Enzo Ferrari",University of Modena and Reggio Emilia,Modena,ItalyEngineering department"Enzo Ferrari",University of Modena and Reggio Emilia,Modena,Italy
RRAMcompact modelmultilevelconductive filament
RRAMcompact modelmultilevelconductive filament
《半导体学报(英文版)》 2026 (6)
68-80,13
This research was partially funded by the Brandenburg Ministry of Science,Research,and Cultural Affairs for the project within the StaF project INSEKT and by Deutsche Forschungsgemeinschaft(DFG,German Research Founda-tion)under the grant No.WE 3594/30-1.T.Zanotti and F.M.Puglisi acknowledge financial support from PNRR-M4C2INV1.5,NextGenerationEU-Avviso 3277/2021-ECS_00000033-ECOSISTER-spk6.
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