DocumentCode
1298649
Title
Evaluation for Anomalous Stress-Induced Leakage Current of Gate
Films Using Array Test Pattern
Author
Kumagai, Y. ; Teramoto, A. ; Inatsuka, T. ; Kuroda, Rihito ; Suwa, T. ; Sugawa, Shigetoshi ; Ohmi, Tadahiro
Author_Institution
Grad. Sch. of Eng., Tohoku Univ., Sendai, Japan
Volume
58
Issue
10
fYear
2011
Firstpage
3307
Lastpage
3313
Abstract
Using the array test pattern, gate current through the tunnel oxide on the order of 10-16 A can be measured for about 1 000 000 transistors within 4 min. Because this test pattern can be fabricated by simple processes and its peripheral circuits are simple structures, the tunnel dielectric formation method and condition can be changed drastically. It was found that anomalous stress-induced leakage current (SILC) appears or disappears by applying electrical stress, and it is annealed out during a relatively high temperature measurement at 60 °C. Random telegraph signal in SILC can be observed in some transistors. These are very similar phenomena observed in Flash memory cells. We consider that, using this test pattern for the development of tunnel oxide, we can clarify the origin of anomalous SILC and promote the downscaling of tunnel oxide thickness.
Keywords
MOS integrated circuits; annealing; automatic test pattern generation; flash memories; integrated circuit noise; integrated circuit testing; leakage currents; logic arrays; random noise; silicon compounds; tunnelling; SiO2; annealing; anomalous stress induced leakage current; array test pattern; current 10 A to 16 A; electrical stress; peripheral circuits; random telegraph signal; temperature 60 C; temperature measurement; tunnel dielectric formation method; tunnel oxide thickness; Capacitors; Current measurement; Flash memory; Leakage current; Logic gates; Stress; Temperature measurement; Electrical stress; Flash memory; gate leakage current; low current detection; test pattern; tunnel oxide;
fLanguage
English
Journal_Title
Electron Devices, IEEE Transactions on
Publisher
ieee
ISSN
0018-9383
Type
jour
DOI
10.1109/TED.2011.2161991
Filename
5985516
Link To Document