Programmable On-Chip ESD Protection Using Nanocrystal Dots Mechanism and Structures

This paper reports a new nanocrystal quantum-dot (NC-QD)-based tunable on-chip electrostatic discharge (ESD) protection mechanism and structures. Experiments validated the programmable ESD protection concept. Prototype structures achieved an adjustable ESD triggering voltage range of 2.5 V, very fas...

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Veröffentlicht in:IEEE transactions on nanotechnology 2012-09, Vol.11 (5), p.884-889
Hauptverfasser: Zitao Shi, Xin Wang, Jian Liu, Lin Lin, Hui Zhao, Qiang Fang, Li Wang, Chen Zhang, Siqiang Fan, He Tang, Bei Li, Wang, Albert, Jianlin Liu, Yuhua Cheng
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Sprache:eng
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Zusammenfassung:This paper reports a new nanocrystal quantum-dot (NC-QD)-based tunable on-chip electrostatic discharge (ESD) protection mechanism and structures. Experiments validated the programmable ESD protection concept. Prototype structures achieved an adjustable ESD triggering voltage range of 2.5 V, very fast response to ESD transients of rising time tr ~ 100 ps and pulse duration td ; ~ ns, ESD protection density of 25 mA/μm in human body model and 400 mA/μm in charged device model equivalent stressing, and a very low leakage current of I leak ~ 15 pA. The NC-QD ESD protection concept can potentially be used to design field-programmable on-chip ESD protection circuitry for mixed-signal ICs in nanoscales.
ISSN:1536-125X
1941-0085
DOI:10.1109/TNANO.2012.2204767