首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >A 24-28-GHz Four-Element Phased-Array Transceiver Front End With 21.1/16.6 Transmitter Peak/OP1dB PAE and Subdegree Phase Resolution Supporting 2.4 Gb/s in 256-QAM for 5-G Communications
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A 24-28-GHz Four-Element Phased-Array Transceiver Front End With 21.1/16.6 Transmitter Peak/OP1dB PAE and Subdegree Phase Resolution Supporting 2.4 Gb/s in 256-QAM for 5-G Communications

机译:具有 21.1/16.6 发射器峰值/OP1dB PAE 和亚度相位分辨率的 24-28GHz 四元件相控阵收发器前端,在 256-QAM 中支持 2.4Gb/s,适用于 5G 通信

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This article presents a power efficient 24-28-GHz four-element phased-array transceiver (TRX) front end (FE) for 5-G base stations and user equipment communications. A power efficient hybrid quadrature vector interpolation-based phase-shifting architecture is proposed to increase the TX and RX power efficiency and phase resolution. A transformer-based embedded T/R switch is proposed which minimizes TX and RX losses to ensure high TX output power and power efficiency while maintaining a low noise figure (NF) and extremely compact chip area. The 24-28-GHz four-element TRX FE is implemented in a 65-nm CMOS process (1P9M) for large-scale phased-array applications. The TX and RX paths achieve 0.8 degrees phase resolution with <0.47 degrees/0.17-dB RMS phase/gain error as well as 24-dB gain control range with 0.75-dB gain step and <0.1 degrees/0.4-dB RMS gain/phase error over 24-30 GHz. The full TX path (including splitter and T/R switch) also achieves a measured 16.6-/18.9-dBm OP1dB/P-sat with 21.1/16.6 PAE(peak)/OP1dB for each FE element while maintaining a minimum 4.4-dB NF in the full RX path (including combiner, T/R switch, and oFF-mode PA) at 28 CHz. Under the 64-/256-QAM modulation measurements, the full TX path achieves a state-of-the-art average output power of 13.5410.2-dBm per element (8.4/3.5 full TX path PAE) with -26.4/-30.8 dB EVM and 27.8430.1-dB ACLR at 28 GHz, making the proposed TRX FE can he effectively deployed in both base stations and user equipment for 5-G communications. The chip size of the four-element TRX FE excluding I/O pads is only 3.4 x 1.1 mm(2).
机译:本文介绍了一种用于 5G 基站和用户设备通信的高能效 24-28GHz 四元件相控阵收发器 (TRX) 前端 (FE)。该文提出一种基于高能效的混合正交矢量插值相移架构,以提高TX和RX的功率效率和相位分辨率。提出了一种基于变压器的嵌入式T/R开关,该开关可最大限度地降低TX和RX损耗,以确保高TX输出功率和电源效率,同时保持低噪声系数(NF)和极其紧凑的芯片面积。24-28GHz 四元件 TRX FE 采用 65nm CMOS 工艺 (1P9M) 实现,适用于大规模相控阵应用。TX 和 RX 路径可实现 0.8 度相位分辨率和 <0.47 度/0.17dB RMS 相位/增益误差,以及 24 dB 增益控制范围和 0.75 dB 增益步进和 <0.1 度/0.4 dB RMS 增益/相位误差(在 24-30GHz 范围内)。整个 TX 路径(包括分路器和 T/R 开关)还实现了测得的 16.6/18.9dBm OP1dB/P-sat,每个 FE 元件的 PAE(峰值)/OP1dB 为 21.1%/16.6%,同时在 28 CHz 时,在全 RX 路径(包括合路器、T/R 开关和 oFF 模式 PA)中保持最小 4.4dB NF。在 64/256QAM 调制测量下,全 TX 路径可实现每元件 13.5410.2dBm(8.4%/3.5% 全 TX 路径 PAE)的先进平均输出功率,EVM 为 -26.4/-30.8dB,EVM 为 27.830。在 28 GHz 时具有 1 dB 的 ACLR,这使得所提出的 TRX FE 可以有效地部署在基站和用户设备中以进行 5G 通信。不包括 I/O 焊盘的四元件 TRX FE 的芯片尺寸仅为 3.4 x 1.1 mm(2)。

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