An equivalent circuit model including multi-section distributed parameters is proposed to analyze wideband photodiodes(PDs)with coplanar waveguide(CPW)electrodes.The model helps extract CPW parameters as well as intri...An equivalent circuit model including multi-section distributed parameters is proposed to analyze wideband photodiodes(PDs)with coplanar waveguide(CPW)electrodes.The model helps extract CPW parameters as well as intrinsic bandwidth parameters so that the influence of theCPW structure can be investigated,making it valuable for the design of high-performance PDs.PDs with an inductive 115Ωimpedance CPW are fabricated,and the 3 dB bandwidth is improved from 28 GHz to 37.5 GHz compared with PDs with a conventional 50Ωimpedance CPW.展开更多
基金This research was supported by the National Key R&D Program of China(No.2018YFB2201700)Science Challenge Project(No.TZ2016003)+5 种基金National Natural Science Foundation of China(Nos.61975093,61927811,61822404,61974080,61904093,and 61875104)Tsinghua University Initiative Scientific Research Program(No.20193080036)Key Lab Program of BNRist(No.BNR2019ZS01005)Basic Research Priorities Program of Shenzhen(No.JCYJ20160608170030295)China Postdoctoral Science Foundation(Nos.2018M640129 and 2019T120090)Collaborative Innovation Centre of Solid-State Lighting and Energy-Saving Electronics.
文摘An equivalent circuit model including multi-section distributed parameters is proposed to analyze wideband photodiodes(PDs)with coplanar waveguide(CPW)electrodes.The model helps extract CPW parameters as well as intrinsic bandwidth parameters so that the influence of theCPW structure can be investigated,making it valuable for the design of high-performance PDs.PDs with an inductive 115Ωimpedance CPW are fabricated,and the 3 dB bandwidth is improved from 28 GHz to 37.5 GHz compared with PDs with a conventional 50Ωimpedance CPW.