电子工程
放大器
波束赋形
可变增益放大器
电气工程
工程类
噪声系数
天线(收音机)
移相模块
相控阵
天线阵
低噪声放大器
计算机科学
阵列增益
端口(电路理论)
无线电频率
炸薯条
线性
增益压缩
操作点
基站
频道(广播)
噪音(视频)
真延时
功率(物理)
相位畸变
收发机
比克莫斯
射频功率放大器
功率增益
非线性失真
CMOS芯片
巴伦
宽带
印刷电路板
补偿(心理学)
链接预算
作者
Tian Liang,Jurui Qi,Zhaoxin Hu,Omar Hassan,Mir H. Mahmud,Gabriel M. Rebeiz
标识
DOI:10.1109/tmtt.2025.3622668
摘要
This article presents a high-linearity eight-channel phased-array receiver operating at 3–28 GHz, designed for multiband base station applications using a 90-nm SiGe BiCMOS process. The chip employs RF beamforming and integrates eight channels with dual 4:1 combiner networks for dual-polarized, dual-beam operation. Each channel includes a switchable low-noise amplifier (LNA), an active phase shifter (PS) with a vector modulator (VM), and a variable gain amplifier (VGA), all optimized for high-linearity performance to mitigate interference. The input features a differential port to support ultrawideband antenna designs, while the output is converted to a single-ended port to simplify printed circuit board (PCB) routing. Measurements show an electronic gain of 25–34 dB, a noise figure (NF) of 2–4.5 dB, an input 1 dB compression point ( ${IP} _{1{dB}}$ ) of −35 to −28 dBm, and a power consumption of 150 mW across the operating bandwidth. The design targets 6G base station applications, with gain peaking at higher frequencies to compensate for PCB routing loss. For demonstration, a 16-element linear array with Vivaldi antennas is developed to showcase system-level performance. Over-the-air (OTA) testing shows ±50° beam scanning capability while maintaining high linearity with 64-QAM-modulated signals. These results highlight the potential of the proposed receiver for future multiband 6G FR3 systems.
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