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A 28-GHz CMOS Phased-Array Transceiver Based on LO Phase-Shifting Architecture With Gain Invariant Phase Tuning for 5G New Radio

机译:基于LO相移架构的28-GHz CMOS相控阵收发器,增益不变相位调谐为5G新无线电

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摘要

This paper presents a 28-GHz CMOS four-element phased-array transceiver chip for the fifth-generation mobile network (5G) new radio (NR). The proposed transceiver is based on the local-oscillator (LO) phase-shifting architecture, and it achieves quasi-continuous phase tuning with less than 0.2-dB radio frequency (RF) gain variation and 0.3 degrees phase error. Accurate beam control with suppressed sidelobe level during beam steering could be supported by this work. At 28 GHz, a single-element transmitter-mode output P-1dg of 15.7 clBm and a receiver-mode noise figure (NF) of 4.1 dB are achieved. The eight-element transceiver modules developed in this work are capable of scanning the beam from -50 degrees to +50 degrees with less than 9-dB sidelobe level. A saturated equivalent isotropic radiated power (EIRP) of 39.8 clBm is achieved at 0 degrees scan. In a 5-m over the -air measurement, the proposed module demonstrates the first 512 quadrature amplitude modulation (QAM) constellation in the 28-GHz band. A data stream of 6.4 Gb/s in 256-QAM could be supported within a beam angle of +/- 50 degrees. The achieved maximum data rate is 15 Gb/s in 64-QAM. The proposed transceiver chip consumes L2 NV/chip in transmitter mode and 0.59 %V/chip in receiver mode.
机译:本文介绍了第五代移动网络(5G)新型无线电(NR)的28-GHz CMOS四元件相控阵收发器芯片。所提出的收发器基于局部振荡器(LO)相移架构,并且它实现了较小0.2-dB射频(RF)增益变化和0.3度误差的准连续相位调谐。可以通过这项工作支持在光束转向过程中具有抑制侧瓣级的精确光束控制。在28 GHz,实现了4.1dB的15.7 CLBM的单元素变送器模式输出P-1DG和4.1dB的接收模式噪声系数(NF)。在本工作中开发的八个元件收发器模块能够将光束从-50度扫描到+ 50度,具有小于9 dB侧链电平。在0度扫描下实现39.8CLBM的饱和等效各向同性辐射功率(EIRP)。在-Air测量的5米中,所提出的模块演示了28-GHz频带中的前512正交幅度调制(QAM)星座。在256-QAM中为6.4 Gb / s的数据流可以在+/- 50度的光束角内支撑。在64-QAM中实现的最大数据速率为15 GB / s。所提出的收发器芯片在发射机模式下消耗L2 NV /芯片和在接收器模式下的0.59%V /芯片。

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