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Design and Analysis of a Broadband Current-Mode CMOS Direct-Conversion Receiver Frond-End Circuit

机译:宽带电流模式CMOS直接转换接收器前端电路的设计与分析

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A broadband (0.8-5 GHz) CMOS current-mode direct-conversion receiver has been integrated in a 0.18-mu m CMOS process. The proposed receiver front-end features a broadband active-balun low-noise transconductance amplifier (LNTA) driving a current-mode passive mixer terminated by a low-input-impedance transimpedance amplifier (TIA). The receiver chain has improved robustness to out-of-band interference, conversion gain and outstanding linearity. With the technique of noise and distortion cancellation which performs a better input impedance matching, we employ a broadband common-gate-common-source (CG-CS) LNTA and a current mirror to improve both gain and noise figure (NF) performance. Compared to the 50% duty-cycle switching stage, the 25% duty-cycle I-Q switching stage is implemented by using serial switches driven by 50% quadrature local oscillator (LO) signals separately, which improves the down-conversion gain by 3 dB and lowers the noise figure. The transimpedance amplifier employs the g(m)-boosting technique to realize low input impedance and high transimpedance gain. The core circuit (RF and baseband signal path) consumes 26 mW, and the prototype receiver achieves approximately 33-34.5-dB conversion gain, 8.1-9.35-dB NF and 7.5-9.8-dBm IIP3 from 0.8 GHz to 5 GHz.
机译:宽带(0.8-5 GHz)CMOS电流模式直接转换接收器已集成在0.18微米CMOS工艺中。拟议中的接收器前端具有一个宽带有源巴伦低噪声跨导放大器(LNTA),该放大器驱动由低输入阻抗跨阻放大器(TIA)终止的电流模式无源混频器。接收器链对带外干扰,转换增益和出色的线性度具有增强的鲁棒性。通过噪声和失真消除技术,该技术可以实现更好的输入阻抗匹配,我们采用了宽带共栅共源(CG-CS)LNTA和电流镜来提高增益和噪声系数(NF)性能。相较于50%占空比切换级,通过分别使用由50%正交本地振荡器(LO)信号驱动的串行开关来实现25%占空比IQ切换级,从而将下变频增益提高了3 dB,并且降低噪声系数。跨阻放大器采用g(m)增强技术来实现低输入阻抗和高跨阻增益。核心电路(RF和基带信号路径)的功耗为26 mW,原型接收机在0.8 GHz至5 GHz的频率下可获得约33-34.5 dB的转换增益,8.1-9.35-dB的NF和7.5-9.8 dBm的IIP3。

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