DocumentCode
1118362
Title
The effect of thin interfacial oxides on the electrical characteristics of silicon bipolar devices
Author
Sagara, Kazuhiko ; Nakamura, Tohru ; Tamaki, Yoichi ; Shiba, Takeo
Author_Institution
Hitachi, Ltd., Tokyo, Japan
Volume
34
Issue
11
fYear
1987
fDate
11/1/1987 12:00:00 AM
Firstpage
2286
Lastpage
2290
Abstract
The effect of thin interfacial oxides on the impurity diffusion from polysilicon to the silicon substrate has been studied in detail. Polysilicon films were deposited on the silicon substrate in two different process conditions to control the thickness of interfacial oxides. Results show that the presence of about 1-nm-thick oxides retarded the impurity diffusion by about 10 nm and an increase of the sheet resistance of about 10 percent has been observed. Bipolar devices, which are sensitive to the impurity profiles, were fabricated with identical processing apart from the polysilicon deposition conditions. A detailed analysis of their electrical characteristics shows the difference of collector current components and hence the increase of current gain by about two times. These results indicate that the effect of interfacial oxides on the impurity profile is expressed by the segregation coefficient
, which is the ratio of Csi /CpolySi at the interface. The sensitivity of
for the device characteristics was calculated by a process-device simulator, and it is demonstrated that the current gain is a strong function of
for shallow emitters.
, which is the ratio of C
for the device characteristics was calculated by a process-device simulator, and it is demonstrated that the current gain is a strong function of
for shallow emitters.Keywords
Electric resistance; Electric variables; Impurities; Ion implantation; Process control; Semiconductor films; Silicon; Surface treatment; Tail; Thickness control;
fLanguage
English
Journal_Title
Electron Devices, IEEE Transactions on
Publisher
ieee
ISSN
0018-9383
Type
jour
DOI
10.1109/T-ED.1987.23233
Filename
1486944
Link To Document