DocumentCode
1956957
Title
Effects of temperature and defects on breakdown lifetime of thin SiO/sub 2/ at very low voltages
Author
Schuegraf, Klaus F. ; Hu, Chenming
Author_Institution
Dept. of Electr. Eng. & Comput. Sci., California Univ., Berkeley, CA, USA
fYear
1994
fDate
11-14 April 1994
Firstpage
126
Lastpage
135
Abstract
This paper investigates the physics of voltage and temperature accelerated breakdown testing of silicon dioxide within the framework of an anode hole injection model which can predict low voltage (3.3 V and below) breakdown lifetime. The field acceleration rate is shown to be independent of temperature, while the reduction of oxide breakdown lifetime at increased temperature is due to the oxide´s enhanced susceptibility to damage caused by the holes´ transport through the oxide. This paper also investigates defect related breakdown, showing that defects can be mathematically modeled as effective thinning even for aggressively scaled oxides. The effective thickness statistic derived from ramp breakdown or high-field lifetime or charge-to-breakdown tests enables determination of the oxide integrity of a specific oxide technology. For 3.3 Volt operation, an oxide technology must provide an effective thickness of 44 /spl Aring/; for 2.5 Volt operation, 34 /spl Aring/.<>
Keywords
dielectric thin films; electric breakdown of solids; insulated gate field effect transistors; life testing; reliability; semiconductor device testing; silicon compounds; 2.5 to 3.5 V; 34 to 44 angstrom; MOSFETs; SiO/sub 2/; aggressively scaled oxides; anode hole injection model; breakdown lifetime; charge-to-breakdown tests; defect related breakdown; effective thickness statistic; field acceleration rate; high-field lifetime; oxide integrity; ramp breakdown; temperature accelerated breakdown testing; voltage accelerated breakdown testing; Anodes; Breakdown voltage; Electric breakdown; Life estimation; Life testing; Low voltage; Physics; Predictive models; Silicon compounds; Temperature;
fLanguage
English
Publisher
ieee
Conference_Titel
Reliability Physics Symposium, 1994. 32nd Annual Proceedings., IEEE International
Conference_Location
San Jose, CA, USA
Print_ISBN
0-7803-1357-7
Type
conf
DOI
10.1109/RELPHY.1994.307846
Filename
307846
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