Publication | Closed Access
32 and 45 nm Radiation-Hardened-by-Design (RHBD) SOI Latches
59
Citations
20
References
2011
Year
Single Event UpsetSeu PredictionsVlsi DesignEngineeringComputer ArchitectureHardware SecurityPhysical Design (Electronics)Heavy Ion DataElectrical EngineeringSoi LatchesHardware ReliabilityRadiation-hard DesignPhysicsBias Temperature InstabilityComputer EngineeringAtomic PhysicsSemiconductor Device FabricationMicroelectronicsSilicon Debugging
Single event upset (SEU) experimental heavy ion data and modeling results for CMOS, silicon-on-insulator (SOI), 32 nm and 45 nm stacked and DICE latches are presented. Novel data analysis is shown to be important for hardness assurance where Monte Carlo modeling with a realistic heavy ion track structure, along with a new visualization aid (the Angular Dependent Cross-section Distribution, ADCD), allows one to quickly assess the improvements, or limitations, of a particular latch design. It was found to be an effective technique for making SEU predictions for alternative 32 nm SOI latch layouts.
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