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首页> 外文期刊>Microwave Theory and Techniques, IEEE Transactions on >Wideband Inductorless Balun-LNA Employing Feedback for Low-Power Low-Voltage Applications
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Wideband Inductorless Balun-LNA Employing Feedback for Low-Power Low-Voltage Applications

机译:宽带无电感Balun-LNA利用反馈实现低功耗低电压应用

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A wideband inductorless low-noise-amplifier (LNA) with single-to-differential conversion for multistandard radio applications is proposed. Noise-suppressed current-mirror-based biasing is utilized to ensure stable operation under process, voltage, and temperature variations. The inherent gain of the common-source (CS) stage is re-used to boost the trans-conductance of the common-gate (CG) stage, and hence, a noise- and power-efficient design is achieved without hurting the noise and distortion cancellation properties of the CG–CS-based balun topology. The gain and phase balance is improved by employing an efficient compensation scheme. The prototype was realized in 0.13- $mu{hbox {m}}$ CMOS, operates from 0.1 to 2 GHz, and dissipates 3 mW from 1.2-V supply while occupying a 0.075-${hbox {mm}}^{2}$ active area. The balun-LNA, including the output buffer, provides 7.6-dB maximum power gain, 4.15-dB minimum noise figure, better than $-$10-dB input matching, and 0.5-dBm ${rm IIP}_{3}$ without any on-chip inductor.
机译:提出了一种用于单标准差分转换的宽带无电感低噪声放大器(LNA),用于多标准无线电应用。基于噪声抑制的电流镜偏置可确保在工艺,电压和温度变化下稳定运行。共源(CS)级的固有增益被重新利用,以提高共栅(CG)级的跨导,因此,在不损害噪声和基于CG–CS的巴伦拓扑的失真消除特性。通过采用有效的补偿方案,可以改善增益和相位平衡。该原型在0.13- $ mu {hbox {m}} $ CMOS中实现,工作于0.1至2 GHz,在1.2V电源下耗散3 mW,同时占用0.075-$ {hbox {mm}} ^ {2} $活动区域。平衡-不平衡变压器(LNA)包括输出缓冲器,可提供7.6dB的最大功率增益,4.15dB的最小噪声系数,优于$-$ 10-dB的输入匹配以及0.5dBm的$ {rm IIP} _ {3} $,而无需任何片上电感器。

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