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首页> 外文期刊>Solid-State Circuits, IEEE Journal of >A Passive Mixer-First Receiver With Digitally Controlled and Widely Tunable RF Interface
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A Passive Mixer-First Receiver With Digitally Controlled and Widely Tunable RF Interface

机译:具有数字控制且可广泛调谐的射频接口的无源混频器优先接收器

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A software-defined radio (SDR) receiver with baseband programmable RF bandpass filter (BPF) and complex impedance match is presented. The passive mixer-first architecture used here allows the impedance characteristics of the receiver''s baseband circuits to be translated to the RF port of the receiver. Tuning the resistance at the baseband port allows for a real impedance match to the antenna. The addition of “complex feedback” between ${rm I}$ and ${rm Q}$ paths allows for matching to the imaginary component of the antenna impedance. By implementing both real and imaginary components with resistors in feedback around low noise baseband amplifiers, noise figure is also kept low. Tunable sampling capacitors on the baseband side of the passive mixer translate to tunable- ${rm Q}$ filters on the RF port which allow for very good out-of-band linearity. Furthermore, the concept of in-band and out-of-band must be redefined as the impedance match and BPF center frequency move with the LO frequency, such that matching and filtering track the receive frequency. Additionally, 8-phase mixing is shown to provide significant benefits such as impedance matching range, rejection of blockers at LO harmonics, and lower noise figure (NF). Measurements from the receiver implemented in 65 nm CMOS show 70 dB of gain, NF as low as 3$~$dB, and 25 dBm out-of-band IIP3. Furthermore, tunable impedance matching shows that $ S_{11}{<} {-}{hbox {30~dB}}$ can be achieved at any receive frequency from 0.1–1.3 GHz.
机译:提出了具有基带可编程RF带通滤波器(BPF)和复数阻抗匹配的软件定义无线电(SDR)接收器。此处使用的无源混频器优先架构允许将接收器的基带电路的阻抗特性转换为接收器的RF端口。调整基带端口的电阻可实现与天线的实际阻抗匹配。在$ {rm I} $和$ {rm Q} $路径之间添加“复杂反馈”可以匹配天线阻抗的虚部。通过在低噪声基带放大器周围的反馈中用电阻器实现实部和虚部分量,噪声系数也保持较低。无源混频器基带侧的可调采样电容器转换为RF端口上的可调滤波器,从而实现了很好的带外线性。此外,必须重新定义带内和带外概念,因为阻抗匹配和BPF中心频率随LO频率移动,以便匹配和滤波跟踪接收频率。此外,显示出8相混合还具有明显的优势,例如阻抗匹配范围,在LO谐波处抑制阻塞以及降低噪声系数(NF)。在65 nm CMOS中实现的接收器测量显示,增益为70 dB,NF低至3 $〜$ dB,带外IIP3为25 dBm。此外,可调谐阻抗匹配表明,可以在0.1–1.3 GHz的任何接收频率下实现$ S_ {11} {<} {-} {hbox {30〜dB}} $。

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