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A coupled-RTWO-based subharmonic receiver front-end for 5G E-Band backhaul links in 28nm bulk CMOS

机译:基于耦合的RTWO的次谐波接收器前端,用于5G宽宽度CMOS的5G电气回程链路

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A fully integrated receiver for high-capacity 5G E-Band Backhaul links (71 to 76GHz and 81 to 86GHz) needs a local-oscillator (LO) distribution network with >19% tuning range (TR) and accurate quadrature phases. Further, the LO phase noise (PN) at 10MHz offset should be as low as -119dBc/Hz to impair the SNR of the received 64-QAM signal by <;1dB at 10-6 BER [1]. Silicon-based solutions reported so far either do not meet such stringent requirements [1-4] or demand large power consumption in the LO distribution network [5].
机译:用于高容量5G e带回程链路的完全集成的接收器(71到76GHz和81至86GHz)需要一个本地振荡器(LO)分配网络,其中包含> 19 %调谐范围(TR)和准确的正交阶段。此外,10MHz偏移的LO相位噪声(PN)应低至-119dBc / hz,以损害所接收的64-qam信号的SNR <; 1db在10 -6 ber [1 ]。迄今为止报告的基于硅的解决方案不符合如此严格的要求[1-​​4]或要求LO配电网络中的大功耗[5]。

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