DocumentCode
1494644
Title
Characterization of soft breakdown in thin oxide NMOSFETs based on the analysis of the substrate current
Author
Crupi, Felice ; Iannaccone, Giuseppe ; Crupi, Isodiana ; Degraeve, Robin ; Groeseneken, Guido ; Maes, Herman E.
Author_Institution
Dipartimento di Fisica, Messina Univ., Italy
Volume
48
Issue
6
fYear
2001
fDate
6/1/2001 12:00:00 AM
Firstpage
1109
Lastpage
1113
Abstract
We have investigated the properties of soft breakdown (SBO) in thin oxide (4.5 nm) nMOSFETs with measurements of the gate and substrate leakage currents using the carrier separation technique. We have observed that, at lower gate voltages, the level of the substrate current exhibits a plateau. We propose that the observed plateau is due to the Shockley-Hall-Read (SHR) generation of hole-electron pairs in the space charge region and at the Si-SiO2 interface. At higher voltages, the substrate current steeply increases with voltage, due to a tunneling mechanism, trap-assisted or due to a localized effective thinning of the oxide, from the substrate valence band to the gate conduction band, which becomes possible for gate voltages higher than the threshold voltage. The proposed interpretation Is consistent with the results of measurements performed at different operating conditions, in the presence of light and in the case of substrate reverse bias. The presented results are also useful for characterizing the performance of MOSFETs after SBD
Keywords
MOSFET; leakage currents; semiconductor device breakdown; semiconductor device reliability; space-charge-limited conduction; tunnelling; 4.5 nm; Shockley-Hall-Read generation; Si-SiO2; carrier separation technique; gate conduction band; gate voltages; hole-electron pairs; leakage currents; localized effective thinning; operating conditions; soft breakdown; space charge region; substrate current; substrate reverse bias; substrate valence band; thin oxide NMOSFETs; tunneling mechanism; Current measurement; Electric breakdown; Electrodes; Leakage current; MOSFETs; Performance evaluation; Silicon compounds; Space charge; Threshold voltage; Tunneling;
fLanguage
English
Journal_Title
Electron Devices, IEEE Transactions on
Publisher
ieee
ISSN
0018-9383
Type
jour
DOI
10.1109/16.925235
Filename
925235
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