首页> 外文期刊>IEEE transactions on circuits and systems . I , Regular papers >A 56-to-66 GHz CMOS Low-Power Phased-Array Receiver Front-End With Hybrid Phase Shifting Scheme
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A 56-to-66 GHz CMOS Low-Power Phased-Array Receiver Front-End With Hybrid Phase Shifting Scheme

机译:56至66 GHz CMOS低功耗相控阵接收器前端,具有混合相位移位方案

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This paper presents a millimeter-wave phased-array receiver front-end with compact size and low-power consumption. A combination of local oscillator (LO) and radio frequency (RF) phase-shifting schemes is used to reduce the power consumption and RF path loss. Moreover, in the implementation of active circuits, a bulk isolation technique is used to achieve a higher power gain with a minimum number of stages. This technique is also utilized in the RF path phase shifter switches to mitigate the loss. To validate the proposed architecture, a single-element 56-to-66 GHz phased-array receiver front-end is fabricated in a 65-nm bulk CMOS process. Based on the measurement results, the receiver achieves a power gain of ~14.85 dB and a minimum noise figure (NF) of 5.7 dB. The measured average RMS phase and gain errors are ~3.5° and ~0.45 dB, respectively. The input 1-dB compression point ( $ext{P}_{mathrm {-1dB}}$ ) of the receiver chain is about −19 dBm. The complete receiver, including active balun and required buffers (excluding the LO), consumes ~50 mW from a 1-V power supply and excluding the pads occupies a silicon area of 0.93 mm2.
机译:本文介绍了一个毫米波相控阵接收器前端,具有紧凑的尺寸和低功耗。使用本地振荡器(LO)和射频(RF)相移方案的组合来降低功耗和RF路径损耗。此外,在实现有源电路的实施方式中,批量隔离技术用于实现具有最小阶段的更高功率增益。该技术也用于RF路径移相器开关,以减轻损耗。为了验证所提出的架构,在65nm散装CMOS工艺中制造单个元件56到66 GHz相控阵阵列接收器前端。基于测量结果,接收器实现了〜14.85dB的功率增益和5.7dB的最小噪声系数(NF)。测量的平均RMS相和增益误差分别为3.5°和〜0.45dB。输入1-dB压缩点(<内联公式XMLNS:MML =“http://www.w3.org/1998/math/mathml”xmlns:xlink =“http://www.w3.org/1999/xlink”> $ text {p} _ { mathrm {-1db}} $ )接收器链约为-19 dBm。完整的接收器,包括有源平衡和所需的缓冲器(不包括LO),从1V电源消耗〜50 MW,并排除焊盘占硅面积0.93 mm 2

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