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A Wideband Beamforming Lowpass Filter for 60 GHz Phased-Array Receivers

机译:用于60 GHz相控阵接收器的宽带波束成形低通滤波器

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摘要

This paper presents an analog baseband beamforming topology, which combines phase shifting, signal combination, and biquadratic lowpass filtering in one block. This reduces the number of stages cascaded in a receiver chain, leading to a shorter signal path, thus improving the dynamic range. Flexibility of the proposed solution is illustrated with different possible implementations depending on the top-level chip floorplan. It is shown that the proposed structure does not introduce extra power consumption compared to the conventional approach, while obtaining a higher SNR. A four-antenna-path version of the proposed topology is implemented in 40 nm low-power CMOS as a prototype together with a variable gain block forming a complete analog baseband section for a phased-array receiver. The functionality includes beamforming with a resolution better than 6.8 degrees, fourth-order lowpass filtering with a 1 GHz cutoff frequency, variable gain between 10.6 and 30 dB and automatic DC offset compensation. Output IP3 above 10 dBm and output noise below 4.2 mVrms over the whole gain range yield an SFDR larger than 31.2 dB, which is sufficient for 16-QAM modulation according to IEEE 802.11ad. The circuit consumes between 30 and 42 mW.
机译:本文提出了一种模拟基带波束成形拓扑,该拓扑在一个块中结合了相移,信号组合和双二次低通滤波。这减少了接收器链中级联的级数,从而缩短了信号路径,从而提高了动态范围。根据顶层芯片的平面布置图,以不同的可能实现方式说明了所提出解决方案的灵活性。结果表明,与传统方法相比,所提出的结构没有引入额外的功耗,同时获得了更高的SNR。拟议拓扑的四天线路径版本在40 nm低功耗CMOS中作为原型实现,并与可变增益模块一起构成相控阵接收机的完整模拟基带部分。该功能包括分辨率高于6.8度的波束成形,具有1 GHz截止频率的四阶低通滤波,介于10.6和30 dB之间的可变增益以及自动DC偏移补偿。在整个增益范围内,输出IP3高于10 dBm,输出噪声低于4.2 mVrms,产生的SFDR大于31.2 dB,足以满足IEEE 802.11ad的16-QAM调制要求。该电路的功耗在30至42 mW之间。

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