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A 30 GHz 90-nm CMOS Passive Subharmonic Mixer with 15 GHz Differential LO

机译:30 GHz 90 nm CmOs无源次谐波混频器,具有15 GHz差分LO

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摘要

A new passive subharmonic mixer topology is presented and compared to a previously published passive topology. The comparison is conducted using simulations at 30 GHz with a 90-nm CMOS design kit. The advantage of the new passive subharmonic mixer is that it only requires a differential local oscillator (LO) signal, compared to the previously published mixer that requires a quadrature LO signal. The mixer consists of two cascaded passive mixers with an interstage second order filter suppressing harmonics while providing some 10 dB of voltage gain at the LO frequency. The noise performance of the differential mixer is slightly worse than for the quadrature one, with a simulated down conversion SSB NF of 10 dB compared to 7 dB. The voltage conversion gain is - 1 dB for both mixers, all with a 1 V LO amplitude.
机译:提出了一种新的无源次谐波混频器拓扑,并将其与以前发布的无源拓扑进行了比较。比较是使用90 nm CMOS设计套件在30 GHz的仿真条件下进行的。新型无源次谐波混频器的优势在于,与先前发布的需要正交LO信号的混频器相比,它仅需要差分本地振荡器(LO)信号。该混频器由两个级联的无源混频器组成,该混频器具有级间二阶滤波器,可抑制谐波,同时在LO频率上提供约10 dB的电压增益。差分混频器的噪声性能比正交混频器稍差,模拟下变频SSB NF为10 dB,而7 dB。两个混频器的电压转换增益均为-1 dB,均具有1 V LO幅度。

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