DocumentCode
146133
Title
FDSOI molecular flash cell with reduced variability for low power flash applications
Author
Georgiev, Vihar P. ; Amoroso, Salvatore Maria ; Vila-Nadal, Laia ; Busche, Christoph ; Cronin, Leroy ; Asenov, Asen
Author_Institution
Device Modelling Group, Univ. of Glasgow, Glasgow, UK
fYear
2014
fDate
22-26 Sept. 2014
Firstpage
353
Lastpage
356
Abstract
In this work we present a modeling study of a conceptual low power non-volatile memory cell based on inorganic molecular metal oxide clusters (polyoxometalates (POM)) as a storage media embedded in the gate dielectric of a Fully Depleted SOI (FD SOI) with reduced statistical variability. The simulations were carried out using a multi-physics simulation framework, which allows us to evaluate the variability in the programming window of the molecular based flash cell with an 18 nm gate length. We have focused our study on the threshold voltage variability influenced by random dopant fluctuations and random special fluctuations of the molecules in the floating gate of the flash-cell. Our simulation framework and conclusions can be applied not only to POM-based flash cell but also to flash cells based on alternative molecules used as a storage media.
Keywords
low-power electronics; random-access storage; semiconductor device models; storage media; FDSOI molecular flash cell; fully depleted SOI; gate dielectric; inorganic molecular metal oxide clusters; low power flash applications; low power nonvolatile memory cell; random dopant fluctuations; random special fluctuations; reduced variability; size 18 nm; storage media; threshold voltage variability; Computer architecture; Doping; Microprocessors; Nonvolatile memory; Probability density function; Resource description framework; Threshold voltage;
fLanguage
English
Publisher
ieee
Conference_Titel
Solid State Device Research Conference (ESSDERC), 2014 44th European
Conference_Location
Venice
ISSN
1930-8876
Print_ISBN
978-1-4799-4378-4
Type
conf
DOI
10.1109/ESSDERC.2014.6948833
Filename
6948833
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