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A novel UWB low-noise amplifier design using double capacitor cross-coupled feedback

机译:使用双电容交叉耦合反馈的新型UWB低噪声放大器设计

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In this paper, an ultra-wideband (UWB) low noise amplifier (LNA) with improvement in noise figure (NF) and gain flatness using 0.18-um RF CMOS technology is presented. Two cross-coupled capacitors (CCC) and new gain flattening technique in a cascode common-gate structure are used for NF and gain flatness improvement, respectively. In addition, NF calculation of CCC cascode common-gate amplifier is presented considering the noise of cascode stage. The LNA operates from 3.1 GHz up to 10.6 GHz with no change in power consumption compared with conventional one. The proposed LNA achieves average S21 of 21 dB and S11 less than -10 dB in the entire bandwidth. Additionally, the minimum NF of 2.38 dB is achieved. Furthermore, the power consumption at 1.8 V supply voltage is 4.34 mW and the core layout size for proposed LNA using CCC with and without including new gain flattening techniques are 881 mu m x 1201 mu m and 680 mu m x 733 mu m, respectively. (C) 2019 Elsevier GmbH. All rights reserved.
机译:本文提出了一种超宽带(UWB)低噪声放大器(LNA),具有噪声系数(NF)的改善和使用0.18-UM RF CMOS技术的增益平整度。共源共栅共栅结构中的两个交叉耦合电容器(CCC)和新增增益展平技术用于NF并分别增益平整度改善。另外,考虑到CASCODE级的噪声,提出了CCC CASCODE公共栅极放大器的NF计算。 LNA与3.1GHz高达10.6 GHz运行,与传统常规相比,电力消耗没有变化。所提出的LNA在整个带宽中实现21dB的平均S21和S11小于-10dB。另外,实现了2.38dB的最小NF。此外,1.8V电源电压的功耗为4.34mW,使用CCC具有和不包括新增增益展平技术的提出的LNA的核心布局尺寸分别为881μm×1201μm和680μmx733μm。 (c)2019年Elsevier GmbH。版权所有。

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