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Design of a Noise-Canceling CMOS Wideband Receiver Front-End with Inherent Active Balun

机译:具有固有有源巴伦的降噪CMOS宽带接收器前端的设计

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This paper presents the design of an ESD-protected noise-canceling CMOS wideband receiver front-end for cognitive and ultra-wideband (UWB) radio-based wireless communications. Designed in a 0.13-um CMOS technology, the RF front-end integrates a broadband low-noise amplifier (LNA) and a quadrature down-conversion mixer. While having ESD and package parasitics absorbed into a wideband input matching network, the LNA exploits a combination of a common-gate (CG) stage and a common-source (CS) stage to cancel the noise of the CG-stage and to provide a well balanced differential output for driving the double-balance mixer, which has a merged quadrature topology. A variable-gain method is developed for the LNA to achieve a large factor of gain switch without degrading the input impedance match and the balun function. Drawing 24 mA from 1.5 V, simulations show that the proposed front-end has a 3-dB bandwidth of around 10 GHz spanning from 1.8 GHz up to 11.8 GHz with a maximum voltage conversion gain of 30 dB and a noise figure of 4.3-6.7 dB over the entire band.
机译:本文介绍了用于认知和超宽带(UWB)无线电无线通信的ESD保护的降噪CMOS宽带接收机前端的设计。 RF前端采用0.13um CMOS技术进行设计,集成了宽带低噪声放大器(LNA)和正交下变频混频器。 LNA在将ESD和封装寄生效应吸收到宽带输入匹配网络中的同时,利用了共栅(CG)级和共源(CS)级的组合来消除CG级的噪声并提供噪声。均衡的差分输出,用于驱动具有合并正交拓扑的双平衡混频器。为LNA开发了一种可变增益方法,以实现较大的增益切换因子,而不会降低输入阻抗匹配和平衡-不平衡转换器的功能。仿真从1.5 V汲取24 mA电流,仿真结果表明,所提议的前端具有3 dB的带宽,从1.8 GHz到11.8 GHz大约为10 GHz,最大电压转换增益为30 dB,噪声系数为4.3-6.7整个频带上的dB。

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