DocumentCode
19948
Title
TID and Displacement Damage Resilience of 1T1R
Resistive Memories
Author
Weeden-Wright, Stephanie L. ; Bennett, W.G. ; Hooten, N.C. ; En Xia Zhang ; McCurdy, Michael W. ; King, Michael P. ; Weller, Robert A. ; Mendenhall, Marcus H. ; Alles, Michael L. ; Linten, D. ; Jurczak, Malgorzata ; Degraeve, Robin ; Fantini, Andrea ; Ree
Author_Institution
Dept. of Electr. & Comput. Eng., Vanderbilt Univ., Nashville, TN, USA
Volume
61
Issue
6
fYear
2014
fDate
Dec. 2014
Firstpage
2972
Lastpage
2978
Abstract
RRAM memory cells demonstrate resilience to ionizing dose and displacement damage, despite the presence of a nonhardened access transistor. Degradation in RRAM performance was not observed until large displacement damage doses and complete functionality was regained by cycling. A significant reduction in both the high and low resistance memory states and a complete collapse of the resistive window was observed for large proton fluences in RRAMs tested. Degradation in resistance states is associated with the generation of additional vacancies, which leads to (an) additional filament(s) in parallel to the existing conductive filament. Additional vacancies from displacement damage in the oxide of the resistive element do not permanently degrade device operation. The low resistance state is recovered to the pre-irradiation resistance through cycling at nominal high-speed switching conditions. Recovery of the resistive window to pre-irradiation values is obtained by applying longer write pulses which migrate remnants of radiation-induced filaments.
Keywords
hafnium compounds; radiation hardening (electronics); resistive RAM; 1T1R resistive memories; HfO2-Hf; RRAM memory cells; TID; displacement damage doses; displacement damage resilience; low resistance state; radiation induced filaments; resistance states; total ionizing dose; Degradation; Hafnium; Hafnium oxide; Protons; Radiation effects; Resistance; Transistors; DD; Hf/HfO2; RRAM; TID; emerging memory; radiation effects; resistive memory;
fLanguage
English
Journal_Title
Nuclear Science, IEEE Transactions on
Publisher
ieee
ISSN
0018-9499
Type
jour
DOI
10.1109/TNS.2014.2362538
Filename
6940332
Link To Document