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A Low-Power Wideband Receiver Front-End for NB-IoT Applications

机译:NB-IoT应用的低功耗宽带接收器前端

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A low-power wideband receiver front-end is proposed for the narrow-band internet of things (NB-IoT) wireless standard to cover frequency bands from 0.6GHz to 1.4GHz. The front-end receiver integrates a programmable gain quadrature RF-to-baseband (BB) current-reuse receiver (CRR) architecture using conventional double-balanced passive-mixer with 25% duty-cycle local oscillator (LO) followed by a passive polyphase filter (PPF), high pass filter (HPF), programmable gain $g_{m}-C$ filter and RC-low pass filter (LPF). Low-power consumption is achieved by employing RF-to-BB CRR that shares a single supply with a wideband transconductor and a transimpedance amplifier (TIA). Moreover, power consumption is reduced by employing a single path PPF and $g_{m}-C$ filter to attenuate the blocker frequency at 7.5MHz above the intermediate frequency (IF). The proposed architecture is post-layout simulated in TSMC 130-nm CMOS technology. It achieves a voltage gain of 59.4dB, a noise figure (NF) of 4.9dB and a out-of-band IIP3 of −34.2dBm at 900MHz while consuming 1.8mW from a 1.2V supply at the maximum gain setting. In addition, the input matching covers several NB-IoT frequency-bands.
机译:针对窄带物联网(NB-IoT)无线标准,提出了一种低功率宽带接收器前端,以覆盖0.6GHz至1.4GHz的频带。前端接收器集成了可编程增益正交射频至基带(BB)电流重用接收器(CRR)架构,该架构使用传统的双平衡无源混频器和2​​5%占空比本地振荡器(LO),然后是无源多相滤波器(PPF),高通滤波器(HPF),可编程增益 $ g_ {m} -C $ 滤波器和RC低通滤波器(LPF)。通过使用RF-to-BB CRR实现了低功耗,该CRR与宽带跨导器和跨阻放大器(TIA)共享一个电源。此外,通过采用单路径PPF可以降低功耗。 $ g_ {m} -C $ 滤波器以在高于中频(IF)的7.5MHz处衰减阻塞频率。所提议的架构是在台积电130纳米CMOS技术中进行布局后仿真的。它在900MHz时达到59.4dB的电压增益,4.9dB的噪声系数(NF)和-34.2dBm的带外IIP3,同时在最大增益设置下从1.2V电源消耗1.8mW的功率。此外,输入匹配涵盖了几个NB-IoT频段。

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