DocumentCode
3124466
Title
Advanced flash memory reliability
Author
Modelli, A. ; Visconti, A. ; Bez, R.
Author_Institution
STMicroelectronics, Agrate Brianza, Italy
fYear
2004
fDate
2004
Firstpage
211
Lastpage
218
Abstract
With reference to the mainstream technology, the most relevant failure mechanisms that affect reliability of Flash memory are reviewed, showing the primary role played by tunnel oxide defects. The degradation of device. performance induced by program/erase cycling is discussed, specifically for what concern the leakage that affect a very small fraction of memory cells after cycling. The dependence of the leakage on tunnel oxide thickness, number of cycles, and temperature is analyzed. The leakage current is explained by trap-assisted tunneling involving one, two or more traps, with decreasing occurrence probability. Finally, data are presented showing the robustness of scaled Flash memory to alpha particles and electromagnetic radiation.
Keywords
flash memories; hot carriers; integrated circuit reliability; leakage currents; radiation hardening (electronics); tunnelling; Fowler-Nordheim tunneling; advanced flash memory reliability; alpha particles robustness; channel hot-electron injection; data retention; device. performance degradation; electromagnetic radiation robustness; electron-hole pairs; failure mechanisms; leakage current; memory endurance; number of cycles; program-erase cycling; single floating-gate transistor; temperature dependence; trap-assisted tunneling; tunnel oxide defects; tunnel oxide thickness; Degradation; Dielectric substrates; Failure analysis; Flash memory; Leakage current; Nonvolatile memory; Robustness; Temperature dependence; Tunneling; Voltage;
fLanguage
English
Publisher
ieee
Conference_Titel
Integrated Circuit Design and Technology, 2004. ICICDT '04. International Conference on
Print_ISBN
0-7803-8528-4
Type
conf
DOI
10.1109/ICICDT.2004.1309947
Filename
1309947
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