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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Multitone characterization and design of FET resistive mixers based on combined active source-pull/load-pull techniques
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Multitone characterization and design of FET resistive mixers based on combined active source-pull/load-pull techniques

机译:基于有源有源-牵引/负载牵引技术的FET电阻混频器的多音表征和设计

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A dual six-port-based measurement setup was developed to synthesize five source and load impedances simultaneously. The setup can perform nonlinear measurements with multifrequency excitation. Active source-pull/load-pull measurements obtained for an NE-9001 transistor operated in a C-band field-effect transistor (FET) resistive mixer mode allow one to optimize the linearity of the mixer while maintaining a typical conversion loss of approximately 7 dB. Two-tone verification at 3.9000 and 3.9005 GHz showed that the level of in-band third-order intermodulation products could be reduced to -50 dBc, with a well-chosen output intermediate frequency (IF) load impedance and sufficient local oscillator (LO) power. The measured performance of the realized mixer is in good agreement with that predicted at the transistor characterization step of the design.
机译:开发了基于双六端口的测量设置,以同时合成五个源阻抗和负载阻抗。该设置可以通过多频激励执行非线性测量。在C波段场效应晶体管(FET)电阻混频器模式下工作的NE-9001晶体管获得的有源源极/负载拉力测量结果使人们可以优化混频器的线性度,同时保持典型的转换损耗约为7 D b。在3.9000和3.9005 GHz进行的两音验证显示,带内三阶互调产物的水平可以降低到-50 dBc,并具有良好选择的输出中频(IF)负载阻抗和足够的本地振荡器(LO)功率。实现的混频器的测量性能与在设计的晶体管表征步骤中预测的性能非常吻合。

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