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3.8 A fully integrated highly reconfigurable discrete-time superheterodyne receiver

机译:3.8完全集成的高度可配置的离散时间超外差接收机

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Since the invention of radio, superheterodyne has been the architecture of choice for receivers (RX). Thanks to its high intermediate-frequency (IF), the problems related to flicker noise, time-varying dc offsets, in-band LO leakage and sensitivity to 2nd-order intermodulation are simply avoided. Unfortunately, the high IF requires high-quality-factor (Q) band-pass filters for image rejection, which cannot be easily integrated in CMOS. This forced the CMOS receivers to migrate to zero (or low) IF and suffer from the abovementioned problems. Recently, there have been attempts to revisit the high IF operation by exploiting N-path filtering [1] and a combination of a discrete-time (DT) band-pass charge-sharing filtering with feedback filtering [2]. Here, we propose a superheterodyne RX architecture with full DT operation using only gm stages, switches and capacitors. The transfer function is accurate and controlled by the clock frequency and precise capacitor ratios.
机译:自无线电发明以来,超外差已成为接收机(RX)的首选架构。由于其较高的中频(IF),可以避免与闪烁噪声,随时间变化的dc偏移,带内LO泄漏以及对2阶互调的灵敏度有关的问题。不幸的是,高IF需要高品质因数(Q)带通滤波器来抑制图像,因此无法轻松地将其集成到CMOS中。这迫使CMOS接收器迁移到零(或低)IF,并遭受上述问题。最近,已经尝试通过利用N路径滤波[1]和离散时间(DT)带通电荷共享滤波与反馈滤波[2]的组合来重新审视高中频操作。在这里,我们提出了一种仅使用gm级,开关和电容器即可实现完全DT操作的超外差RX体系结构。传递函数是准确的,并且受时钟频率和精确的电容器比率控制。

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