首页> 外文期刊>IEEE transactions on circuits and systems . I , Regular papers >Improving Receiver Close-In Blocker Tolerance by Baseband $G_m-C$ Notch Filtering
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Improving Receiver Close-In Blocker Tolerance by Baseband $G_m-C$ Notch Filtering

机译:通过基带 $ G_m-C $ 陷波滤波来提高接收器近距离阻塞容限

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This paper presents a receiver front end with improved blocker handling implemented in a 65-nm CMOS technology. Since close-in blockers are challenging to reject at RF, the receiver features a baseband (BB) notch filter, which effectively sinks close-in blocker current directly from the output of an LNTA and passive mixer structure. The notch-filter frequency can be tuned to match the blocker offset frequency, and the measurements indicate a significant improvement in the overall front-end interference robustness, while sensitivity remains unaffected. To optimize notch performance, the BB impedance is analyzed in detail. The front-end RF range is 750 MHz-3 GHz with an RF channel bandwidth of 20 MHz corresponding to 10-MHz BB bandwidth. The notch frequency is programmable from 16, which is less than one octave from the channel edge, up to 160 MHz. The gain-compression improvement is upto 9 dB, while 11P2 can be increased by more than 26 dB without calibration and 11P3 is 1 dBm. The current overhead for the notch function is between 7.5 and 30 mA, but it only exists under strong blocker conditions as the notch filter can be switched OFF if strong blockers are absent. The total front-end current consumption excluding the notch filter varies with LO frequency from 31 to 44 mA from a 1.2-V supply.
机译:本文介绍了一种采用65纳米CMOS技术实现的具有改进的阻塞处理功能的接收器前端。由于近距离阻隔器很难在RF抑制,因此接收器具有一个基带(BB)陷波滤波器,可有效地从LNTA和无源混频器结构的输出中直接吸收近距离阻隔器电流。陷波滤波器的频率可以调整为与阻塞偏移频率匹配,并且测量结果表明总体前端干扰鲁棒性得到了显着改善,而灵敏度保持不变。为了优化陷波性能,将对BB阻抗进行详细分析。前端RF范围为750 MHz-3 GHz,RF信道带宽为20 MHz,对应于10 MHz BB带宽。陷波频率的可编程范围是16,距离通道边缘不到一个八度,最高可达160 MHz。增益压缩改进高达9 dB,而无需校准,11P2可以增加26 dB以上,而11P3为1 dBm。陷波功能的电流开销在7.5至30 mA之间,但仅在强阻塞条件下存在,因为如果没有强阻塞,则可以关闭陷波滤波器。对于1.2V电源,除陷波滤波器外的总前端电流消耗随LO频率在31至44 mA之间变化。

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