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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >A 60-GHz Low-Power Active Phase Shifter With Impedance-Invariant Vector Modulation in 65-nm CMOS
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A 60-GHz Low-Power Active Phase Shifter With Impedance-Invariant Vector Modulation in 65-nm CMOS

机译:具有65-NM CMOS中的阻抗不变矢量调制的60 GHz低功耗激活液位器

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This study presents the design and analysis of a 60-GHz low-power active vector-sum phase shifter with 5-bit phase resolution. An impedance-invariant variable gain amplifier (VGA) is proposed and applied to the vector modulator. The proposed VGA not only demonstrates low phase and impedance variations during gain control but also high linearity under low supply voltage. Moreover, it reduces the gain/phase error in vector modulation. In addition, the transformer-based current-reuse technique is adopted to enhance the gain of the phased array channel while consuming low dc power. The prototype circuit implemented in 65-nm CMOS technology consumes only 5 mW of dc power and occupies an area of 0.3 mm(2) (excluding pads). The measurement results of the prototype circuit reveal that the proposed phase shifter achieves an average gain of -3.8 dB (including a 2-dB loss of the measurement balun), an rms gain error of 0.25-0.72 dB, and an rms phase error of 3 degrees-7 degrees in the 3-dB bandwidth from 51 to 66.3 GHz. The measured input 1-dB compression point is observed to be higher than -1.1 dBm at 60 GHz.
机译:本研究介绍了具有5位相位分辨率的60GHz低功耗主动矢量和相移器的设计和分析。提出了一种阻抗不变的可变增益放大器(VGA)并将其应用于矢量调制器。所提出的VGA不仅在增益控制期间展示了低相位和阻抗变化,而且在低电源电压下也具有高线性。此外,它降低了向量调制中的增益/相位误差。另外,采用基于变压器的电流再利用技术来增强相控阵通道的增益,同时消耗低直流电源。在65-NM CMOS技术中实现的原型电路仅消耗5兆瓦的直流电源,占地面积为0.3毫米(2)(不包括焊盘)。原型电路的测量结果表明,所提出的相移器达到-3.8dB的平均增益(包括测量平衡为2-dB损耗),RMS增益误差为0.25-0.72dB,以及RMS相位误差3 dB带宽3度-7度从51到66.3 GHz。测量的输入1-DB压缩点被观察到在60GHz处高于-1.1dBm。

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