IEEE Transactions on Nuclear Science · 2014 · 20 citations · 9 references
Device ModelingElectrical EngineeringSingle Heavy IonEngineeringHigh LetsStress-induced Leakage CurrentBias Temperature InstabilityRadiation ExposurePower Semiconductor DeviceTime-dependent Dielectric BreakdownSingle Event EffectsPower Trench MosfetsMicroelectronicsTrench Power MosfetsSemiconductor DeviceRadiation Protection
We study experimentally and theoretically the micro-dose induced drain-source leakage current in the trench power MOSFETs under irradiation with high-LET heavy ions. We found experimentally that cumulative increase of leakage current occurs by means of stochastic spikes corresponding to a strike of single heavy ion into the MOSFET gate oxide. We simulate this effect with the proposed analytic model allowing to describe (including Monte Carlo methods) both the deterministic (cumulative dose) and stochastic (single event) aspects of the problem. Based on this model the survival probability assessment in space heavy ion environment with high LETs was proposed.
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Heavy-Ion Induced Charge Yield in MOSFETs
Arto Javanainen, James R. Schwank, M.R. Shaneyfelt et al. · IEEE Transactions on Nuclear Science · 2009 · 27 citations