DocumentCode
1341243
Title
Impact of Low Temperatures
on the Total Ionizing Dose Response and ELDRS in Gated Lateral PNP BJTs
Author
Adell, Philippe C. ; Esqueda, Ivan S. ; Barnaby, Hugh J. ; Rax, Bernard ; Johnston, Allan H.
Author_Institution
Jet Propulsion Lab., California Inst. of Technol., Pasadena, CA, USA
Volume
59
Issue
6
fYear
2012
Firstpage
3081
Lastpage
3086
Abstract
Total ionizing dose characteristics and dose rate dependence are evaluated under low temperature conditions for gated lateral PNP bipolar junction transistors. The results show that the dose rate sensitivity of the examined linear bipolar circuit technology is reduced when irradiations are performed at low temperature. The results are supported by numerical simulations that model low temperature behaviors through the suppression of hole and proton transport in the irradiated oxide. These findings agree well with previous studies of CMOS technologies, which reported on the time and bias dependence of defect buildup in MOS capacitors and transistors. This study of temperature effects on the total dose and dose rate response of PNP BJTs expands upon these works by examining the impact of low temperature on ELDRS in bipolar technologies.
Keywords
MOS capacitors; bipolar analogue integrated circuits; bipolar transistors; dosimetry; nuclear electronics; proton effects; radiation effects; CMOS technologies; ELDRS; MOS capacitors; defect buildup bias dependence; defect buildup time dependence; dose rate sensitivity; enhanced-low-dose-rate-sensitivity; gated lateral PNP bipolar junction transistors; hole transport suppression; irradiation effects; linear bipolar circuit technology; numerical simulations; proton transport suppression; total ionizing dose response characteristics; Bipolar transistor circuits; CMOS technology; Cryogenics; Radiation effects; Cryogenic; ELDRS; gated lateral PNP; hole transport; total dose; yield;
fLanguage
English
Journal_Title
Nuclear Science, IEEE Transactions on
Publisher
ieee
ISSN
0018-9499
Type
jour
DOI
10.1109/TNS.2012.2224372
Filename
6365385
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