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首页> 外文期刊>Terahertz Science and Technology, IEEE Transactions on >Fully Integrated ASK Receiver MMIC for Terahertz Communications at 300 GHz
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Fully Integrated ASK Receiver MMIC for Terahertz Communications at 300 GHz

机译:用于300 GHz太赫兹通信的全集成ASK接收器MMIC

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An ASK receiver MMIC operating at 300 GHz for future terahertz communications is presented. In the receiver IC, we fully integrated all necessary components—a receiving dipole antenna, high gain RF amplifier, envelop detector for demodulating ASK signal and output differential data amplifier—in a 1000$times$2500 $mu{hbox{m}}^{2}$ area. A silicon lens was used to compensate for the small gain of the on-chip antenna. To ensure reliable and stable operation, we designed the MMIC with a thin-film microstrip line, which is expected to suppress crosstalk between the on-chip antenna and the RF amplifier through the substrate and silicon lens. The packaged receiver module with the silicon lens is expected to provide approximately 24-dBi beam directivity. Measured RF and baseband bandwidths are around 30 and 15 GHz, respectively, when a single bias of 3.3 V and total current of around 86 mA are applied. With the receiver module, simple wireless data transmission was conducted for up to 24 Gbps in the 300-GHz band. At 12.5 Gbps, error-free data transmission $({hbox{bit~error~rate}}<{hbox{10}}^{-9})$ over 0.3 m was achieved with the transmission power of $-{hbox{ 16}}mathchar"702D {hbox{dBm}}$ and a 25-dBi transmitting antenna. With $-{hbox{10}}mathchar"702D {hbox{dBm}}$ transmission power, measured $Q$ -factors of the received eye patterns were larger than 6 for up to 20 Gbps, which implies that the bit error rate will be less than ${hbox{10}}^{-9}$.
机译:提出了一种工作在300 GHz的ASK接收机MMIC,用于将来的太赫兹通信。在接收器IC中,我们将所有必要的组件(接收偶极天线,高增益RF放大器,用于解调ASK信号的包络检波器和输出差分数据放大器)完全集成为1000 $ times $ 2500 $ mu {hbox {m}} ^ {2} $ 区域。硅透镜用于补偿片上天线的小增益。为了确保可靠和稳定的运行,我们设计了带有薄膜微带线的MMIC,有望抑制片上天线与RF放大器之间通过基板和硅透镜的串扰。带有硅透镜的封装接收器模块有望提供约24-dBi的光束方向性。当施加3.3 V的单偏置电压和86 mA的总电流时,测得的RF和基带带宽分别约为30 GHz和15 GHz。使用接收器模块,可以在300 GHz频带内以24 Gbps的速度进行简单的无线数据传输。在12.5 Gbps的速度下,无错误数据传输 $({hbox {bit〜error〜rate}} <{hbox {10}} ^ {-9})通过 $-{hbox {16}} mathchar“ 702D {hbox {dBm }} $ 和25-dBi发射天线。使用 $-{hbox {10}} mathchar“ 702D {hbox { dBm}} $ 传输功率,测量到的接收眼图的 $ Q $ 因子在最高20 Gbps的速率下大于6,这意味着误码率将小于 $ {hbox {10}} ^ {-9} $

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