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Physical modeling of direct current and radio frequency characteristics for In P-based InAlAs/InGaAs HEMTs 被引量:1
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作者 孙树祥 吉慧芳 +4 位作者 姚会娟 李胜 金智 丁芃 钟英辉 《Chinese Physics B》 SCIE EI CAS CSCD 2016年第10期509-512,共4页
Direct current(DC) and radio frequency(RF) performances of InP-based high electron mobility transistors(HEMTs)are investigated by Sentaurus TCAD. The physical models including hydrodynamic transport model, Shock... Direct current(DC) and radio frequency(RF) performances of InP-based high electron mobility transistors(HEMTs)are investigated by Sentaurus TCAD. The physical models including hydrodynamic transport model, Shockley–Read–Hall recombination, Auger recombination, radiative recombination, density gradient model and high field-dependent mobility are used to characterize the devices. The simulated results and measured results about DC and RF performances are compared, showing that they are well matched. However, the slight differences in channel current and pinch-off voltage may be accounted for by the surface defects resulting from oxidized InAlAs material in the gate-recess region. Moreover,the simulated frequency characteristics can be extrapolated beyond the test equipment limitation of 40 GHz, which gives a more accurate maximum oscillation frequency( f;) of 385 GHz. 展开更多
关键词 InP-based HEMT hydrodynamic model the current gain cutoff frequency(f_T) the maximum oscillation frequency(f_(max))
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