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首页> 外文期刊>Microwave Theory and Techniques, IEEE Transactions on >A 2G/3G/4G SAW-Less Receiver Front-End Adopting Switchable Front-End Architecture
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A 2G/3G/4G SAW-Less Receiver Front-End Adopting Switchable Front-End Architecture

机译:采用可交换前端架构的2G / 3G / 4G少SAW接收机前端

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摘要

In this paper, a surface acoustic wave (SAW)-less receiver (RX) front-end adopting switchable front-end architecture has been presented for second-generation/third-generation/fourth-generation cellular applications. Depending on the RX–transmitter (TX) frequency separation, a favorable down-mixing architecture is selected between a current-sampling mixer and a voltage-sampling mixer. The proposed switchable architecture meets the specification of an input-referred second-order intercept point (IIP2) for the SAW-less RX while minimizing the power consumption. The implemented RX front-end consists of a wideband capacitor cross-coupled common-gate low-noise amplifier, a 25% duty-cycle passive mixer with IIP2 calibration circuitry, a baseband transconductor, and a trans-impedance amplifier. Fabricated in a 65-nm CMOS process, the SAW-less RX front-end provides conversion gain of 42 dB, and achieves noise figure of below 3.3 dB, out-of-band input-referred third-order intercept point of ${-}{hbox{2}}$ dBm, and IIP2 of more than 56 dBm. It draws an average current of 14.8 mA from 1.2 V. The die area is 1.71 mm$^{2}$ .
机译:<?Pub Dtl?>本文针对第二代/第三代/第四代蜂窝应用提出了采用可切换前端架构的无声表面波(SAW)接收器(RX)前端。根据RX-发射器(TX)的频率间隔,在电流采样混频器和电压采样混频器之间选择一种有利的下混架构。所提出的可切换架构满足了无SAW RX的输入参考二阶截取点(IIP2)的规范,同时将功耗降至最低。已实现的RX前端包括一个宽带电容器交叉耦合的共栅低噪声放大器,一个具有IIP2校准电路的25%占空比无源混频器,一个基带跨导器和一个跨阻放大器。无SAW的RX前端采用65 nm CMOS工艺制造,可提供42 dB的转换增益,并实现低于3.3 dB的噪声系数,带外输入参考为<公式式的三阶交调点=“ inline”> $ {-} {hbox {2}} $ dBm,IIP2大于56 dBm。它从1.2 V汲取的平均电流为14.8 mA。管芯面积为1.71 mm。 $ ^ {2} $ 。< / p>

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