IEEE Transactions on Electron Devices · 2009 · 15 citations · 13 references
Device ModelingElectrical EngineeringCompanion Symmetric PfetEngineeringElectronic EngineeringBias Temperature InstabilityApplied PhysicsPower Semiconductor DeviceDrain Junction CapacitanceLateral Asymmetric ChannelAsymmetric NfetMicroelectronicsSemiconductor Device
Lateral asymmetric channel doping is applied to 45-nm technology NFET devices. The measured effective drain-current enhancement over coprocessed symmetric control devices is 10%. Analysis reveals that the dominant physical mechanism, which accounts for two-third of the total enhanced drain current, is an 8% increase in the source-side injection velocity. The remaining one-third is attributed to the decreased drain-induced barrier lowering. This paper concludes with an analysis of the switching characteristics of CMOS inverters composed of an asymmetric NFET and a companion symmetric PFET and shows a 5% improvement in the delay. The improvement is explained in terms of the increased velocity and 30% reduction in drain junction capacitance.
13
The effective drive current in CMOS inverters
Mulun Na, E. Nowak, Wilfried Haensch et al. · 2003 · 238 citations
P. Agnello, T. Ivers, C. Warm et al. · 2006 · 115 citations