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电流增益截止频率为441 GHz的InGaAs/InAlAs InP HEMT
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作者 封瑞泽 曹书睿 +4 位作者 冯识谕 周福贵 刘同 苏永波 金智 《红外与毫米波学报》 SCIE EI CAS CSCD 北大核心 2024年第3期329-333,共5页
本文设计并制作了fT>400 GHz的In_(0.53)Ga_(0.47)As/In_(0.52)Al_(0.48)As铟磷高电子迁移率晶体管(InP HEMT)。采用窄栅槽技术优化了寄生电阻。器件栅长为54.4 nm,栅宽为2×50μm。最大漏极电流IDS.max为957 mA/mm,最大跨导gm.... 本文设计并制作了fT>400 GHz的In_(0.53)Ga_(0.47)As/In_(0.52)Al_(0.48)As铟磷高电子迁移率晶体管(InP HEMT)。采用窄栅槽技术优化了寄生电阻。器件栅长为54.4 nm,栅宽为2×50μm。最大漏极电流IDS.max为957 mA/mm,最大跨导gm.max为1265 mS/mm。即使在相对较小的VDS=0.7 V下,电流增益截止频率fT达到了441 GHz,最大振荡频率fmax达到了299 GHz。该器件可应用于太赫兹单片集成放大器和其他电路中。 展开更多
关键词 铟磷高电子迁移率晶体管(InP HEMTs) INGAAS/INALAS 电流增益截止频率(f_(T)) 最大振荡频率(f_(max)) 栅槽
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Extrinsic equivalent circuit modeling of InP HEMTs based on full-wave electromagnetic simulation
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作者 Shi-Yu Feng Yong-Bo Su +4 位作者 Peng Ding Jing-Tao Zhou Song-Ang Peng Wu-Chang Ding Zhi Jin 《Chinese Physics B》 SCIE EI CAS CSCD 2022年第4期638-646,共9页
With the widespread utilization of indium-phosphide-based high-electron-mobility transistors(InP HEMTs)in the millimeter-wave(mmW)band,the distributed and high-frequency parasitic coupling behavior of the device is pa... With the widespread utilization of indium-phosphide-based high-electron-mobility transistors(InP HEMTs)in the millimeter-wave(mmW)band,the distributed and high-frequency parasitic coupling behavior of the device is particularly prominent.We present an InP HEMT extrinsic parasitic equivalent circuit,in which the conductance between the device electrodes and a new gate-drain mutual inductance term L_(mgd)are taken into account for the high-frequency magnetic field coupling between device electrodes.Based on the suggested parasitic equivalent circuit,through HFSS and advanced design system(ADS)co-simulation,the equivalent circuit parameters are directly extracted in the multi-step system.The HFSS simulation prediction,measurement data,and modeled frequency response are compared with each other to verify the feasibility of the extraction method and the accuracy of the equivalent circuit.The proposed model demonstrates the distributed and radio-frequency behavior of the device and solves the problem that the equivalent circuit parameters of the conventional InP HEMTs device are limited by the device model and inaccurate at high frequencies when being extracted. 展开更多
关键词 extrinsic equivalent circuit modeling InP HEMT HFSS and ADS co-simulation S-PARAMETERS
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