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A 90–96 GHz CMOS down-conversion mixer with high conversion gain and excellent LO-RF isolation

机译:具有高转换增益和出色的LO-RF隔离度的90–96 GHz CMOS下变频混频器

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A 90-96 GHz down-conversion mixer for 94 GHz image radar sensors using standard 90 nm CMOS technology is reported. RF negative resistance compensation (NRC) technique, i.e. NMOS LC-oscillator-based RF transconductance (GM) stage load, is used to increase the output impedance and suppress the feedback capacitance Cgd of RF GM stage. Hence, conversion gain (CG), noise figure (NF) and LO-RF isolation of the mixer can be enhanced. The mixer consumes 15 mW and achieves excellent RF-port input reflection coefficient of -10~-36.4 dB for frequencies of 85~105 GHz. The corresponding -10 dB input matching bandwidth is 20 GHz. In addition, for frequencies of 90~96 GHz, the mixer achieves CG of 6.3~9 dB (the corresponding 3-dB CG bandwidth is greater than 6 GHz) and LO-RF isolation of 40~45.1 dB, one of the best CG and LO-RF isolation results ever reported for a down-conversion mixer with operation frequency around 94 GHz. Furthermore, the mixer achieves an excellent input third-order intercept point (IIP3) of 1 dBm at 94 GHz. These results demonstrate the proposed down-conversion mixer architecture is very promising for 94 GHz image radar sensors.
机译:据报道,采用标准的90 nm CMOS技术的用于94 GHz图像雷达传感器的90-96 GHz下变频混频器。 RF负电阻补偿(NRC)技术,即基于NMOS LC振荡器的RF跨导(GM)级负载,用于增加输出阻抗并抑制RF GM级的反馈电容Cgd。因此,可以增强混频器的转换增益(CG),噪声系数(NF)和LO-RF隔离。该混频器功耗为15 mW,在85〜105 GHz的频率下具有出色的-10〜-36.4 dB的RF端口输入反射系数。相应的-10 dB输入匹配带宽为20 GHz。此外,对于90〜96 GHz的频率,混频器可实现6.3〜9 dB的CG(相应的3-dB CG带宽大于6 GHz)和40〜45.1 dB的LO-RF隔离,这是最好的CG之一对于工作频率在94 GHz附近的下变频混频器,曾报道过LO和RF隔离结果。此外,该混频器在94 GHz时实现了1 dBm的出色输入三阶交调点(IIP3)。这些结果表明,提出的下变频混频器架构对于94 GHz图像雷达传感器非常有前途。

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