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首页> 外文期刊>Terahertz Science and Technology, IEEE Transactions on >150-GHz CMOS TX/RX With Digitally Predistorted PAM-4 Modulation for Terahertz Contactless/Plastic Waveguide Communications
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150-GHz CMOS TX/RX With Digitally Predistorted PAM-4 Modulation for Terahertz Contactless/Plastic Waveguide Communications

机译:150-GHz CMOS TX / RX,具有数字预失真的PAM-4用于太赫兹非接触式/塑料波导通信的调制

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摘要

In this article, 150-GHz CMOS transmitter (TX) and receiver (RX) are presented for contactless and plastic waveguide communications. The implemented system employs a four-level pulse-amplitude modulation (PAM-4) and noncoherent detection. The direct upconversion TX and self-mixing RX suffer amplitude nonlinearity and distort the carrier-modulated multilevel signals. A current-mode digital predistortion is integrated in the PAM-4 modulator to correct the nonlinearity for the carrier-modulated multilevel signaling. Coupling antennas are designed on FR4-HR substrates. The same antenna launches electromagnetic energy into plastic waveguides to extend the communication distance. A plastic printed circuit board (PCB) is introduced by inserting plastic waveguides into copper-coated slots on PCBs to realize terahertz PCB communications. The TX and RX are fabricated in the 28-nm standard bulk CMOS process. The system consumes 60.2 mW under 1.2/1.5 V supply while transferring 30 Gb/s PAM-4 data, achieving 2.01 pJ/bit energy efficiency.
机译:在本文中,提出了150-GHz CMOS发射器(TX)和接收器(RX),用于接触和塑料波导通信。实现的系统采用四级脉冲幅度调制(PAM-4)和非组织检测。直接上转换TX和自混合RX遭受幅度非线性并扭曲载波调制的多级信号。电流模式数字预失真集成在PAM-4调制器中,以校正载波调制多级信令的非线性。耦合天线是在FR4-HR基板上设计的。同一天线将电磁能量推向塑料波导以延长通信距离。通过将塑料波导插入PCB上的铜涂层槽来实现塑料印刷电路板(PCB)以实现太赫兹PCB通信。 TX和RX在28-NM标准散装CMOS过程中制造。系统在1.2 / 1.5 V电源下消耗60.2 mW,同时传送30 GB / S PAM-4数据,实现2.01 PJ /比特能效。

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