2012Unpublished venueRequires access

GaN HEMT large-signal model research

Dan Liu, Liang Wang, Chen Xiaojuan

Open publisher page 6 citations

Abstract

This paper gives an AlGaN/GaN HEMT large-signal model for large-scaled device. It's the first time to add sub-threshold current based on [1], and introduces self-heating effect under high Vds large Ids in the device. AlGaN/GaN HEMT semi-empirical DC model is optimized. I-V curves are fitted well. An AlGaN/GaN HEMT large-signal model is developed. A comparison of simulation results with experiments data is made, and good agreements of (output power) and Gain at the bias of Vgs = -2V, Vds = -25V have been obtained at operational frequency of 5.4 GHz. Accurate model is offered for GaN HEMTs MIC and MMIC design, and it enhanced the practicability of GaN HEMTs' large-signal model.

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What this paper is about

This paper gives an AlGaN/GaN HEMT large-signal model for large-scaled device. It's the first time to add sub-threshold current based on [1], and introduces self-heating effect under high Vds large Ids in the device. AlGaN/GaN HEMT semi-empirical DC model is optimized. I-V curves are fitted well. An AlGaN/GaN HEMT large-signal model is developed. A comparison of simulation results with experiments data is made, and good agreements of (output power) and Gain at the bias of Vgs = -2V, Vds = -25V have been obtained at operational frequency of 5.4 GHz. Accurate model is offered for GaN HEMTs MIC and MMIC design, and it enhanced the practicability of GaN HEMTs' large-signal model.

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Available abstract

This paper gives an AlGaN/GaN HEMT large-signal model for large-scaled device. It's the first time to add sub-threshold current based on [1], and introduces self-heating effect under high Vds large Ids in the device. AlGaN/GaN HEMT semi-empirical DC model is optimized. I-V curves are fitted well. An AlGaN/GaN HEMT large-signal model is developed. A comparison of simulation results with experiments data is made, and good agreements of (output power) and Gain at the bias of Vgs = -2V, Vds = -25V have been obtained at operational frequency of 5.4 GHz. Accurate model is offered for GaN HEMTs MIC and MMIC design, and it enhanced the practicability of GaN HEMTs' large-signal model.

Key concepts: High-electron-mobility transistor, Large-signal model, SIGNAL (programming language), Gallium nitride, Monolithic microwave integrated circuit, Wide-bandgap semiconductor, Materials science, Optoelectronics

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