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A 60 GHz SiGe BiCMOS double receive channel transceiver for radar applications

机译:用于雷达应用的60 GHz SiGe BiCMOS双接收通道收发器

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In this paper, a 60 GHz double receive channel FMCW transceiver measurement results together with the design procedure and simulations are presented, considering the license free ISM band. 0.13 μm SiGe BiCMOS technology having 250/340 GHz of fT/fmax is utilized to fabricate this fully integrated chip with a die area of 1.65 × 1.05 mm2. The chip is composed of two receiver channels including I/Q based downconverter with a conversion gain and input referred 1 dB compression point of 23 dB and -26 dBm respectively at 60 GHz and a transmitter block of over 10 dBm output power combined with a 3-way power divider for the LO signal generated by a 3-bit push-push VCO and a divide-by-32 frequency divider. The total current consumption of this block is 230 mA at 3.3 V of single supply. With the help of three 4-patch on-board antennas designed on a standard high frequency material and I/Q signal processing baseband boards, successful outdoor FMCW system measurements with the proposed transceiver are achieved where obstacles above 70 m are detectable.
机译:本文提出了60 GHz双接收通道FMCW收发器的测量结果以及设计过程和仿真,并考虑了免许可证ISM频段。利用具有250/340 GHz f T / f max 的0.13μmSiGe BiCMOS技术来制造这种完全集成的芯片,其芯片面积为1.65×1.05 mm 2 。该芯片由两个接收器通道组成,包括基于I / Q的下变频器,其转换增益和60 GHz时的输入参考1 dB压缩点分别为23 dB和-26 dBm,输出模块的输出功率超过10 dBm,并结合了3 3位推压VCO和32分频分频器生成的LO信号的双向功率分配器。在3.3 V单电源下,该模块的总电流消耗为230 mA。借助在标准高频材料和I / Q信号处理基带板上设计的三个4片车载天线,可以在建议的收发器中成功检测到70 m以上的障碍物,从而成功进行户外FMCW系统的测量。

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