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LNA-ESD-PCB codesign for robust operation of IR-UWB non-coherent receiver

机译:LNA-ESD-PCB用于IR-UWB非相干接收器的鲁棒操作的代号

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摘要

In this paper, we present a radio frequency (RF) front-end design for increasing robustness of non-coherent energy detection based impulse radio (IR) ultra-wideband (UWB) receivers in impulsive noise environment. Robustness against impulsive noise is achieved by on chip LNA-bandpass filter (BPF) circuit, which also works as a clipper for high energy impulsive noise bursts. The electrostatic discharge (ESD), wirebond, pad capacitance, and the chip package model are co-designed with wideband cascode LNA structure. These unwanted capacitive and inductive elements are designed as a part of input BPF. The LNA output stage includes an inductor that is coupling with the input capacitance of the VGA block results in additional filtering. In the post-layout simulations, 45 dB impulsive noise compression has been achieved. It has been shown that the RF front-end and LNA output stage reduces the impulsive noise and increases the noise performance of the IR-UWB receiver, hence becoming robust against the impulsive noise.
机译:在本文中,我们介绍了一种射频(RF)前端设计,用于增加脉冲噪声环境中基于非相干能量检测的脉冲无线电(IR)超宽带(UWB)接收器的非相干能量检测的鲁棒性。通过芯片LNA带通滤波器(BPF)电路实现了对脉冲噪声的鲁棒性,这也适用于高能量脉冲噪声爆发的剪刀。静电放电(ESD),线路,焊盘电容和芯片封装模型与宽带共级LNA结构共同设计。这些不需要的电容和电感元件设计为输入BPF的一部分。 LNA输出级包括与VGA块的输入电容耦合的电感器导致额外的滤波。在后布局模拟中,已经实现了45 dB脉冲噪声压缩。已经表明,RF前端和LNA输出级降低了脉冲噪声并提高了IR-UWB接收器的噪声性能,因此变得鲁棒抵抗脉冲噪声。

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