An Extensive Experimental Analysis of the Kink Effects in ${ S}_{22}$ and ${ h}_{21}$ for a GaN HEMT
Комплексный экспериментальный анализ эффектов излома в S22 и h21 для GaN HEMT
2014-01-31
SCID: 54.1/38fua7dy
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GaN HEMTS22 scattering parameterh21 current gainintrinsic output conductancekink effect
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Abstract (AI)
This paper, for the first time, analyzes in detail the kink phenomenon in S22as observed in GaN HEMT technology. To gain a comprehensive understanding, the kink effect (KE) is studied with respect to temperature and bias conditions. The achieved results clearly show that the dependence of the KE on the operating condition should be mainly ascribed to the transconductance, which plays a determinant role in the appearance of this effect. Furthermore, the analysis is extended to investigate the peak in the magnitude of h21showing its disappearance at low drain-source voltage, due to the increase of the intrinsic output conductance. The importance of this investigation originates from the fact that an accurate and complete characterization of these anomalous phenomena enables microwave engineers to properly take them into account during the modeling and design phases.enables microwave engineers to properly take them into account during the modeling and design phases.
Key Findings
1
Accurate characterization of these anomalous S22 and h21 phenomena is important for reliable microwave modeling and circuit design.
2
The dependence of the S22 kink effect on temperature and bias conditions is mainly attributed to transconductance, which determines its appearance.
3
The magnitude of h21 exhibits a peak that disappears at low drain-source voltage because intrinsic output conductance increases.
4
The paper provides the first detailed analysis of the kink phenomenon in the S22 parameter of GaN HEMTs.
Research Object
GaN HEMT technology, specifically the S22 and h21 frequency-parameter behavior under varying temperature and bias conditions
Research Subject
Kink effects in S22 and the h21 magnitude peak, including their dependence on operating conditions and the roles of transconductance and intrinsic output conductance
Publication Details
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2014-01-31
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