DocumentCode
1058583
Title
Frequency and temperature tests for lateral nonuniformities in MIS capacitors
Author
Chang, C.C. ; Johnson, Walter C.
Author_Institution
Industrial Technological Research Institute, Hsinchu, Taiwan
Volume
24
Issue
10
fYear
1977
fDate
10/1/1977 12:00:00 AM
Firstpage
1249
Lastpage
1255
Abstract
Interface states and lateral nonuniformities produce very similar abnormalities in the
curves of MIS capacitors. Two
techniques are presented here to aid in distinguishing between them. The first technique is based on the frequency dependence of the interface-state capacitance and utilizes the resulting frequency dispersion of the "high-frequency" capacitance in the depletion regime, which occurs in a frequency range typically between a few hundred Hz and 1 MHz. The second method utilizes a freeze-in of carriers in the interface states at liquid nitrogen temperature. A sweep of bias from accumulation into deep depletion at low temperature produces a
characteristic which, when compared with the corresponding ideal characteristic for the same semiconductor doping profile, reveals the presence of lateral nonuniformities. A complementary test is provided by temporary illumination of the deep-depleted structure followed by a sweep of bias from inversion into accumulation. A ledge in the
characteristic reveals the presence of interface states in the central half of the bandgap.
curves of MIS capacitors. Two
techniques are presented here to aid in distinguishing between them. The first technique is based on the frequency dependence of the interface-state capacitance and utilizes the resulting frequency dispersion of the "high-frequency" capacitance in the depletion regime, which occurs in a frequency range typically between a few hundred Hz and 1 MHz. The second method utilizes a freeze-in of carriers in the interface states at liquid nitrogen temperature. A sweep of bias from accumulation into deep depletion at low temperature produces a
characteristic which, when compared with the corresponding ideal characteristic for the same semiconductor doping profile, reveals the presence of lateral nonuniformities. A complementary test is provided by temporary illumination of the deep-depleted structure followed by a sweep of bias from inversion into accumulation. A ledge in the
characteristic reveals the presence of interface states in the central half of the bandgap.Keywords
Capacitance; Capacitance-voltage characteristics; Capacitors; Frequency dependence; Interface states; Lighting; Nitrogen; Semiconductor device doping; Temperature; Testing;
fLanguage
English
Journal_Title
Electron Devices, IEEE Transactions on
Publisher
ieee
ISSN
0018-9383
Type
jour
DOI
10.1109/T-ED.1977.18988
Filename
1479180
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