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A Monolithic CMOS Realization of the Double-Quadrature Image-Reject Weaver Receiver

机译:双正交拒像韦弗接收机的单片CMOS实现

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This work presents a fully-integrated double-quadrature Weaver receiver for monitoring the NIST time and frequency reference radio station WWV across multiple channels in the 2.5–20 MHz range. The design takes advantage of the Weaver architecture's elimination of image rejection filters. The receiver uses a broadband low-noise amplifier (LNA) with an input-referred noise power spectral density (PSD) of < 2.25 nv/Hz1/2 for high sensitivity. Instead of large filters, a double-quadrature down-conversion process is used to remove the image signal. Both local oscillators (LOs) are frequency- and phase-locked to each other via an on-chip frequency divider, and their I and Q components are generated by highly-precise digital phase splitters. The receiver was fabricated in the TSMC 180 nm CMOS process and consumes 24.9 mW. Measurements show in-band gain > 40 dB, noise figure (NF) < 2.9 dB, and maximum image rejection ratio (IRR) of 29 dB without calibration.
机译:这项工作介绍了一个完全集成的双正交织布变量接收器,用于监视NIST时间和频率参考无线电台WWV在2.5-20 MHz范围内的多个通道。该设计利用了WEAVER体系结构的图像抑制滤波器的消除。接收器使用宽带低噪声放大器(LNA)具有<2.25 NV / Hz的输入参考噪声功率谱密度(PSD) 1/2 对于高灵敏度。代替大滤波器,双正交次转换过程用于去除图像信号。本地振荡器(LOS)都是通过片上分频器彼此耦合的频率和锁相,并且它们的I和Q分量由高精度的数字相分配器产生。接收器在TSMC 180nm CMOS工艺中制造并消耗24.9mW。测量显示带内增益> 40 dB,噪声图(NF)<2.9 dB,以及29 dB的最大图像抑制比(IRR)而无需校准。

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