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首页> 外文期刊>AEU: Archiv fur Elektronik und Ubertragungstechnik: Electronic and Communication >A 261-mu W ultra-low power RF mixer with 26-dBm IIP3 using complementary pre-distortion technique for IEEE 802.15.4 applications
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A 261-mu W ultra-low power RF mixer with 26-dBm IIP3 using complementary pre-distortion technique for IEEE 802.15.4 applications

机译:261μW超低功率RF混频器,具有26-DBM IIP3,用于IEEE 802.15.4应用的互补预失真技术

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摘要

The wireless mobile communication is being replaced by wireless personal communication due to the advent of the Internet-of-things (IoT). The IoT applications in the 2.4 GHz band face critical trade-off with respect to signal linearity and battery power. The IoT devices require more power to overcome the nonlinear effects in the channel, resulting in rapid discharge of battery. The wireless industry faces a challenge of providing proper signal processing without draining the battery drastically. In this paper, an ultra-low power RF mixer using complementary pre-distortion (CPD) technique is proposed to overcome the trade-off between linearity and power consumption. The proposed CPD based mixer is designed in UMC 180 nm CMOS process, and the post layout simulations using Cadence SpectreRF tool shows an IIP3 of 26.36 dBm and an IIP2 of 137.1 dBm while consuming only 261.6 mu W from a 1-V supply. The proposed CPD method gives the better linearity per mW ratio when compared to other recently proposed mixer circuits. The proposed mixer also provides a gain of 11.45 dB while contributing a very low double-sideband noise figure (DSB-NF) of 8.5 dB. The CPD based mixer has a spurious free dynamic range (SFDR) of 91.57 dB which is 10 dB higher than the recently proposed RF front-end while occupying a core area of 0.33 mm(2). (C) 2019 Elsevier GmbH. All rights reserved.
机译:由于内容互联网的出现(物联网),无线移动通信正在被无线个人通信所取代。 2.4 GHz带中的物联网应用于信号线性和电池电源面临关键权衡。物联网设备需要更多的功率来克服通道中的非线性效果,从而快速放电。无线行业面临着提供适当的信号处理的挑战,而无需彻底排出电池。在本文中,提出了一种使用互补预失真(CPD)技术的超低功率RF混频器,以克服线性度和功耗之间的折衷。所提出的基于CPD的混频器设计在UMC 180nm CMOS工艺中,使用Cadence Spectrerf工具的后布局模拟显示了26.36 dBm的IIP3和137.1dBm的IIP2,同时仅在1-V电源中消耗261.6μW。当与最近提出的混频器电路相比,所提出的CPD方法为每个MW比提供更好的线性。所提出的混合器还提供11.45 dB的增益,同时有助于8.5 dB的非常低的双边带噪声系数(DSB-NF)。基于CPD的混频器具有91.57 dB的杂散自由动态范围(SFDR),比最近提出的RF前端高10dB,同时占据0.33mm(2)的核心区域。 (c)2019年Elsevier GmbH。版权所有。

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