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首页> 外文期刊>IEEE Journal of Solid-State Circuits >Wide-Band RF Front End for SAW-Less Receivers Employing Active Feedback and Far Out-of-Band Blocker Rejection Circuit
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Wide-Band RF Front End for SAW-Less Receivers Employing Active Feedback and Far Out-of-Band Blocker Rejection Circuit

机译:适用于SAW少接收器的宽带RF前端,采用有源反馈和远频带外的抑制器抑制电路

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摘要

Elimination of the surface acoustic wave (SAW) filter from the input of a receiver can render it extremely vulnerable to various blockers and interferers. The presence of large out-of-band (OOB) blockers will result in the required linearity of the SAW-less receiver to be considerably higher than that of the conventional receivers with the input SAW filter. The ever-present undesirable signals that arise in the absence of the input SAW filter can be divided into two classes of far and near OOB blockers and interferers. Removal of these harmful signals requires two distinct approaches according to their nature. Two different methods for blocker and interferer rejection are introduced in this paper. The first method employs active feedback to reject near OOB blockers, while the second method is employed to remove far OOB blockers. Combining the two methods enables the receiver to withstand all the near and far OOB blockers. The proposed front end is fabricated in 0.18-mu m CMOS technology with the die area of 1.26 mm(2). The receiver covers communication standards within 700 MHz-6-GHz bandwidth with in-band input third intercept point (IIP3) measured to be between -6 and 0.5 dBm and the effective OOB IIP3 measured to be from -5.3 dBm to as high as 35 dBm.
机译:从接收器的输入中消除表面声波(SAW)滤波器会使它极易受到各种阻塞和干扰因素的影响。大型带外(OOB)阻塞器的存在将导致无SAW接收机所需的线性度大大高于具有输入SAW滤波器的常规接收机的线性度。在没有输入SAW滤波器的情况下出现的不断出现的不良信号可以分为远和近OOB阻塞和干扰两类。消除这些有害信号需要根据其性质采取两种不同的方法。本文介绍了两种不同的阻塞和干扰抑制方法。第一种方法采用主动反馈来拒绝接近的OOB阻止程序,而第二种方法则采用移除远处的OOB阻止程序。两种方法的结合使接收器能够承受所有近距离和远距离OOB阻塞。拟议的前端采用0.18微米CMOS技术制造,管芯面积为1.26毫米(2)。接收器覆盖700 MHz-6 GHz带宽内的通信标准,带内输入第三拦截点(IIP3)测得介于-6和0.5 dBm之间,有效OOB IIP3测得介于-5.3 dBm至高达35之间dBm的

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