首页> 外文会议>IEEE MTT-S International Microwave Symposium >60-GHz CMOS artificial magnetic conductor on-chip 2#x00D7;2 monopole - antenna phased array RF receiving system with integrated variable-gain low-noise amplifier and phase shifter
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60-GHz CMOS artificial magnetic conductor on-chip 2#x00D7;2 monopole - antenna phased array RF receiving system with integrated variable-gain low-noise amplifier and phase shifter

机译:集成了可变增益低噪声放大器和移相器的60GHz CMOS人造磁导体片上2×2单极-天线相控阵RF接收系统

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This paper presents a 60-GHz CMOS artificial magnetic conductor (AMC) on-chip 2×2 monopole - antenna phased array RF receiving system with integrated variable-gain low-noise amplifier (VGLNA) and 360° phase shifter ( PS ). With the AMC structure, the radiation efficiency and power gain of the antenna increases from 6% to 15% and from −9 to −5 dBi at 60 GHz, respectively. In VG-LNA design, variable gain is achieved by a current-steering structure and low phase variation is achieved by a body-floating technique. The proposed 360° phase shifter is implemented by cascading a 180° reflection-type and a 180° switch-type phase shifters. The measurement results show that a phase control range of 360° with a gain variation of 3.7 dB can be achieved. In terms of gain controlling capability, a 11.3-dB gain control range with a 13.5° phase variation is obtained. On-wafer beam steering measurement shows that the main beam can scan to ±25°. The total power consumption is 75 mW from a 1.5 V power supply. The chip size is 3.1 × 3.8 mm2.
机译:本文提出了一种具有集成可变增益低噪声放大器(VGLNA)和360°移相器(PS)的60GHz CMOS人工磁导体(AMC)片上2×2单极天线相控阵RF接收系统。使用AMC结构时,天线的辐射效率和功率增益在60 GHz时分别从6%增加到15%和从-9 dBi到-5 dBi。在VG-LNA设计中,电流控制结构可实现可变增益,体浮技术可实现低相位变化。所提出的360°移相器是通过级联180°反射型移相器和180°开关型移相器来实现的。测量结果表明,可以实现360°的相位控制范围,增益变化为3.7 dB。就增益控制能力而言,可获得具有13.5°相位变化的11.3 dB增益控制范围。晶圆上光束转向测量表明,主光束可以扫描到±25°。 1.5 V电源的总功耗为75 mW。芯片尺寸为3.1×3.8 mm 2

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