首页> 外文期刊>Microwave Theory and Techniques, IEEE Transactions on >A 60-GHz CMOS Sub-Harmonic RF Receiver With Integrated On-Chip Artificial-Magnetic-Conductor Yagi Antenna and Balun Bandpass Filter for Very-Short-Range Gigabit Communications
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A 60-GHz CMOS Sub-Harmonic RF Receiver With Integrated On-Chip Artificial-Magnetic-Conductor Yagi Antenna and Balun Bandpass Filter for Very-Short-Range Gigabit Communications

机译:具有集成的片上人造电磁导体八木天线和巴伦带通滤波器的60 GHz CMOS次谐波RF接收器,用于超短距离千兆位通信

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摘要

This paper presents a first reported 60-GHz CMOS sub-harmonic RF receiver with an integrated on-chip artificial-magnetic-conductor (AMC) Yagi antenna and a balun bandpass filter (BPF) fabricated in 90-nm technology. The on-chip antenna with an AMC structure can reduce the substrate loss and increase the antenna radiation efficiency and power gain. The on-chip balun BPF combines the integrated design of the balun and RF BPF to reduce the circuit size and the insertion loss. The sub-harmonic receiver is adopted to mitigate the dc offset problem. The probe-station based on-wafer continuous wave wireless transmission test is conducted $(R=1~{hbox{m}})$ and the measured total receiving conversion gain ${rm CG}_{rm ant+Rx}$ and output third-order intercept point of the integrated RF receiver (with the on-chip AMC antenna and the balun BPF) are 16.2 dB and 3 dBm at 60 GHz, respectively. In error vector magnitude/bit error rate (BER) tests, the measured maximum data rate is 1.152 Gb/s in the 16QAM mode at a 25-cm wireless link (transmitting ${rm EIRP}=23~{hbox{dBm}}$ ) approximately with a BER of ${hbox{10}}^{-3}$. The presented integrated RF receiver will be very useful for the design of a 60-GHz fully integrated CMOS single-chip radio for very-short-range communication applications.
机译:本文介绍了第一个报告的60 GHz CMOS次谐波RF接收器,该接收器具有集成的片上人造电磁导体(AMC)Yagi天线和采用90 nm技术制造的巴伦带通滤波器(BPF)。具有AMC结构的片上天线可以减少基板损耗并增加天线辐射效率和功率增益。片内平衡-不平衡变换器BPF结合了平衡-不平衡变换器和RF BPF的集成设计,以减小电路尺寸和插入损耗。采用子谐波接收器来减轻直流偏移问题。进行基于探针台的晶片连续波无线传输测试 $(R = 1〜{hbox {m}})$ < / formula>和测得的总接收转换增益 $ {rm CG} _ {rm ant + Rx} $ 并输出第三集成RF接收器(带有片上AMC天线和巴伦BPF)的2阶截取点在60 GHz时分别为16.2 dB和3 dBm。在误差矢量幅度/误码率(BER)测试中,在25厘米无线链路上的16QAM模式下,测得的最大数据速率为1.152 Gb / s(发送 $ {rm EIRP} = 23〜{hbox {dBm}} $ ),BER的 $ {hbox {10}} ^ {-3} $ 。提出的集成RF接收器对于用于超短距离通信应用的60 GHz完全集成CMOS单芯片无线电的设计非常有用。

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