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UHF Receiver Front-End: Implementation and Analog Baseband Design Considerations

机译:UHF接收机前端:实现和模拟基带设计注意事项

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An integrated ultrahigh-frequency (UHF) receiver is presented. A systematic analysis to quantify the interdependence of baseband filter and analog-to-digital converter (ADC) dynamic range in broadband receivers is presented. This analysis shows that: 1) low-order Butterworth filters are favorable when undesired power is dominated by far out blockers and 2) high-order inverse Chebyshev filters can reduce the resolution of a subsequent ADC by up to two additional bits in the presence of adjacent analog narrowband blockers. Based on the analysis, a cascaded, programmable, hybrid active-RC and switched-capacitor (SC) baseband filter is proposed. An all-digital nonoverlap clock tuning system to minimize the variation of available settling time window in SC circuits is also proposed. The receiver integrates the proposed filter with an RF variable gain amplifier (RFVGA) and a passive mixer. This receiver achieves a measured noise figure of 7.9 dB, an IIP3 of $-hbox{8 dBm}$ at maximum gain and $+hbox{2 dBm}$ at 9-dB RF attenuation. The chip consumes 120 mW (RFVGA, mixer and I-channel baseband) from 1.8-V analog/2.5-V digital dual supply and occupies ${hbox {2.14 mm}}^{2}$ in IBM 0.18-$mu{hbox {m}}$ RF CMOS technology.
机译:提出了一种集成的超高频(UHF)接收机。提出了一种系统分析,用于量化宽带接收机中基带滤波器和模数转换器(ADC)动态范围的相互依赖性。该分析表明:1)当不希望有的功率由遥远的阻塞器支配时,低阶巴特沃兹滤波器是有利的; 2)在存在噪声的情况下,高阶逆切比雪夫滤波器可以将后续ADC的分辨率最多降低两个附加位。相邻的模拟窄带阻塞器。在分析的基础上,提出了一种级联,可编程,混合有源RC和开关电容(SC)基带滤波器。还提出了一种全数字非重叠时钟调谐系统,以最大程度地减小SC电路中可用建立时间窗口的变化。接收器将建议的滤波器与RF可变增益放大器(RFVGA)和无源混频器集成在一起。该接收器的测量噪声系数为7.9 dB,IIP3在最大增益下为$ -hbox {8 dBm} $,在9 dB RF衰减下为$ + hbox {2 dBm} $。该芯片从1.8V模拟/2.5V数字双电源消耗120mW(RFVGA,混频器和I通道基带),在IBM 0.18-mu {hbox中占$ {hbox {2.14 mm}} ^ {2} $ {m}} $ RF CMOS技术。

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