IEEE Transactions on Nuclear Science · 2013 · 21 citations · 11 references
Electrical EngineeringEngineeringHeavy-ion IrradiationPower DeviceNanoelectronicsBias Temperature InstabilityApplied PhysicsPower Semiconductor DeviceAluminum Gallium NitrideGan Power DeviceDepletion ModePower ElectronicsStability EvaluationMicroelectronicsGate LeakageOptoelectronicsCategoryiii-v SemiconductorDrain Bias
Depletion mode insulated gate AlGaN/GaN power switching HEMTs were evaluated for stability under heavy-ion irradation. Experiments were performed for different types of heavy-ion species, values of gate bias, drain bias, and device geometry. For the insulated gate AlGaN/GaN devices, an as-of-yet unobserved single-event occurred, which we have termed single-event switching (SES). These SES events occurred next to previously observed single-event gate rupture (SEGR) events. It was found that the SES events were gate leakage dependent and stopped occurring above a certain threshold value of gate leakage. Statistical analysis showed that the cross section for single SES events exhibited a lognormal distribution with a median value close to the gate area, and the capture cross section exhibited a slight voltage dependence. The gate leakage after irradiation, on the other hand, was exponentially distributed and was strongly voltage and geometry dependent, indicating an electric field dependency.
11
Radiation hardness of gallium nitride
A. Ionascut-Nedelcescu, C. Carlone, A. Houdayer et al. · IEEE Transactions on Nuclear Science · 2002 · 335 citations
Electrical Engineering, Solid-state Lighting, Engineering +14