GaN HEMT Modeling Including Trapping Effects Based on Chalmers Model and Pulsed S-Parameter Measurements

(Autor)

Buch
160 Seiten
2019
Cuvillier Verlag
978-3-7369-9906-0 (ISBN)
48,00 inkl. MwSt
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GaN HEMTs are regarded as one of the most promising RF power transistor technologies thanks to their high-voltage high-speed characteristics. However, they are still known to be prone to trapping effects, which hamper achievable output power and linearity. Hence, accurately and efficiently modeling the trapping effects is crucial in nonlinear large-signal modeling for GaN HEMTs.
This work proposes a trap model based on Chalmers model, an industry standard large-signal model. Instead of a complex nonlinear trap description, only four constant parameters of the proposed trap model need to be determined to accurately describe the significant impacts of the trapping effects, e.g., drain-source current slump, typical kink observed in pulsed I/V characteristics, and degradation of the output power. Moreover, the extraction procedure of the trap model parameters is based on pulsed S-parameter measurements, which allow to freeze traps and isolate the trapping effects from self-heating. The model validity is tested through small- and large-signal model verification procedures. Particularly, it is shown that the use of this trap model enables to dramatically improve the large-signal simulation results.
Erscheinungsdatum
Reihe/Serie Innovationen mit Mikrowellen und Licht ; 46
Verlagsort Göttingen
Sprache englisch
Maße 148 x 210 mm
Gewicht 222 g
Themenwelt Technik Elektrotechnik / Energietechnik
Schlagworte A1GAN/GaN • Abbreviations • Capacitances • Circuit • Conductance Match • Device • Drain-Lag • extraction • Extrinsic • GaN Hemt • Gate-Lag • Ham • intrinsic • large-signal • Large-Signal Model Types • Load Pull Performance • Mechanism • Modeling • Model Limitations • Nonlinear • Outline of the Thesis • Output • Parameter • Physical • Published Models • Pulsed Measurements • reduction • self-heating • Trapping Effects • Traps Isolation • verification
ISBN-10 3-7369-9906-2 / 3736999062
ISBN-13 978-3-7369-9906-0 / 9783736999060
Zustand Neuware
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