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A 20–32-GHz Quadrature Digital Transmitter Using Synthesized Impedance Variation Compensation

机译:一种20-32-GHz正交数字变送器,使用合成阻抗变异补偿

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This article presents a broadband quadrature digital transmitter (TX) architecture for part of the fifth-generation new radio (5GNR) frequency range 2 (FR2) and backhaul communication. Synthesized impedance variation compensation (IVC) is introduced to improve the efficiency by manipulating the load impedance variation of sub-arrays in the power digital-to-analog converter (power-DAC) at mm-wave. The operation bandwidth is extended by 5 GHz with reconfigurable circuits of output matching in power-DAC, interstage matching, and quadrature signal generator. A mixed-signal sign map is adopted to provide LO gain as well as constellation quadrant selection. As a proof of concept, a $2,,imes10$ -bit 20-32-GHz quadrature digital TX is designed and fabricated in 28-nm CMOS technology. With a 1-V supply, the proposed quadrature digital TX achieves the peak output power of 19.02 dBm at 22.5 GHz, the peak drain efficiency of 34.4% at 22 GHz, and the peak system efficiency of 22.1% at 22 GHz. At 23/28 GHz, it demonstrates the EVM of -28.9/-28.4 dB, the average power of 9.96/9.17 dBm, and adjacent channel power ratio (ACPR) of -33.6/-33.3 dBc for 3-Gb/s 64-QAM modulation, respectively. It also supports 1-Gb/s 256-QAM modulation signal.
机译:本文为第五代新型无线电(5GNR)频率范围2(FR2)和回程通信的一部分提供了宽带正交数字发射器(TX)架构。引入合成阻抗变异补偿(IVC)以通过在MM波以动力数字到模拟转换器(Power-DAC)中的子阵列的负载阻抗变化来提高效率。操作带宽由5 GHz扩展,具有在Power-DAC,级间匹配和正交信号发生器中的输出匹配的可重新配置电路。采用混合信号标志图提供LO增益以及星座象限选择。作为概念证明,2 ,, Times10 $ -bit 20-32-GHz正交数字TX设计和制造在28纳米CMOS技术中。通过1-V电源,所提出的正交数字TX在22.5GHz处实现19.02 dBm的峰值输出功率,峰值排水效率为34.4%,在22GHz时峰值系统效率为22.1%。在23/28GHz,它展示了-28.9 / -28.4 dB的EVM,平均功率为9.96 / 9.17 dBm,以及3-GB / s 64的-33.6 / -33.3 DBC的相邻信道功率比(ACPR) QAM调制分别。它还支持1 GB / S 256-QAM调制信号。

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