DocumentCode
3554828
Title
VLSI Dynamic nMOS design constraints due to drain induced primary and secondary impact ionization
Author
Chatterjee, Pallab K.
Author_Institution
Texas Instruments Incorporated, Dallas, Texas
Volume
25
fYear
1979
fDate
1979
Firstpage
14
Lastpage
17
Abstract
Evidence of primary and secondary impact ionization have been reported recently in small geometry MOSFETs. We confirm the generation of secondary electrons by the impact ionization of primary holes accelerated through the drain to substrate voltage. A quantitative measure of the secondary electrons that diffuse into bulk is established and diffusion lengths of ∼400-650 µm are measured. This represents a non-thermal leakage source which is a dominant leakage phenomena below ∼60°C. We show that for high temperature operation this mechanism does not degrade dynamic nMOS performance at 3 µm, but could be severe at smaller geometry. This non-thermal process precludes the advantages claimed for a cold FET VLSI technology.
Keywords
Acceleration; Charge carrier processes; Electrons; Geometry; Impact ionization; Length measurement; MOS devices; MOSFETs; Very large scale integration; Voltage measurement;
fLanguage
English
Publisher
ieee
Conference_Titel
Electron Devices Meeting, 1979 Internationa
Type
conf
DOI
10.1109/IEDM.1979.189527
Filename
1480392
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