We describe an approach to modelling of power GaN HEMTs, aimed at full sys-tem optimization through concurrent simulation of device, package, and applica-tion. We believe this “virtual prototyping” approach is an effective means to link fundamental understanding of the device properties to circuit- and system-level performance. Results are specifically presented from detailed simulations and comparison with experiments for both normally-on insulated-gate GaN HEMTs and normally-off pGaN devices in real switching applications.

Modelling of GaN HEMTs: From Device-Level Simulation to Virtual Prototyping / Curatola, Gilberto; Verzellesi, Giovanni. - (2017), pp. 165-196. [10.1007/978-3-319-43199-4_8]

Modelling of GaN HEMTs: From Device-Level Simulation to Virtual Prototyping

VERZELLESI, Giovanni
2017

Abstract

We describe an approach to modelling of power GaN HEMTs, aimed at full sys-tem optimization through concurrent simulation of device, package, and applica-tion. We believe this “virtual prototyping” approach is an effective means to link fundamental understanding of the device properties to circuit- and system-level performance. Results are specifically presented from detailed simulations and comparison with experiments for both normally-on insulated-gate GaN HEMTs and normally-off pGaN devices in real switching applications.
2017
Power GaN Devices
Meneghini, Matteo; Meneghesso, Gaudenzio; Zanoni, Enrico
978-3-319-43197-0
978-3-319-43199-4
Springer International Publishing
Modelling of GaN HEMTs: From Device-Level Simulation to Virtual Prototyping / Curatola, Gilberto; Verzellesi, Giovanni. - (2017), pp. 165-196. [10.1007/978-3-319-43199-4_8]
Curatola, Gilberto; Verzellesi, Giovanni
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11380/1134891
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