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A 28 GHz Highly Accurate Phase- and Gain-Steering Transmitter Frontend for 5G Phased-Array Applications

机译:适用于5G相控阵应用的28 GHz高精度相位和增益控制发射机前端

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This paper presents a 28 GHz highly accurate phase-and gain-steering transmitter frontend for 5G phased-array repeater applications. It is designed in a 130 nm SiGe BiCMOS technology. The transmitter chain consists of a highly accurate 7-bit phase shifter, a 5-bit variable gain amplifier and an exceedingly linear analog predistorted power amplifier. The frontend provides up to 31.9 dB gain at 28 GHz and offers steering ranges of 9 dB for gain and 360° for phase. The root mean square (RMS) phase error of the transmitter frontend is less than 3.1 °, the RMS gain error results to 0.5 dB. An output-referred 1 dB-compression point (P1 dB) of 9.9 dBm is achieved with a DC power consumption of 127.9 mW at voltage levels of 3.3/4.0 V.
机译:本文介绍了一种适用于5G相控阵中继器的28 GHz高精度相位和增益控制发射机前端。它采用130 nm SiGe BiCMOS技术设计。发送器链包括一个高精度的7位移相器,一个5位可变增益放大器和一个非常线性的模拟预失真功率放大器。前端在28 GHz时提供高达31.9 dB的增益,并且提供9 dB的增益和360°的相位控制范围。发射机前端的均方根(RMS)相位误差小于3.1°,RMS增益误差为0.5 dB。输出参考1 dB压缩点(P 1 在3.3 / 4.0 V的电压电平下,DC功耗为127.9 mW,可实现9.9 dBm的dB)。

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