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Continuous-Time Low-Pass Filters for Integrated Wideband Radio Receivers

机译:用于集成宽带无线电接收器的连续时间低通滤波器

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摘要

This thesis concentrates on the design and implementation of analog baseband continuous-time low-pass filters for integrated wideband radio receivers. A total of five experimental analog baseband low-pass filter circuits were designed and implemented as a part of five single-chip radio receivers in this work. After the motivation for the research work presented in this thesis has been introduced, an overview of analog baseband filters in radio receivers is given first. In addition, a review of the three receiver architectures and the three wireless applications that are adopted in the experimental work of this thesis is presented. The relationship between the integrator non-idealities and integrator Q-factor, as well as the effect of the integrator Q-factor on the filter frequency response, are thoroughly studied on the basis of a literature review. The theoretical study that is provided is essential for the gm-C filter synthesis with non-ideal lossy integrators that is presented after the introduction of different techniques to realize integrator-based continuous-time low-pass filters. The filter design approach proposed for gm-C filters is original work and one of the main points in this thesis, in addition to the experimental IC implementations. Two evolution versions of fourth-order 10-MHz opamp-RC low-pass filters designed and implemented for two multicarrier WCDMA base-station receivers in a 0.25-µm SiGe BiCMOS technology are presented, along with the experimental results of both the low-pass filters and the corresponding radio receivers. The circuit techniques that were used in the three gm-C filter implementations of this work are described and a common-mode induced even-order distortion in a pseudo-differential filter is analyzed. Two evolution versions of fifth-order 240-MHz gm-C low-pass filters that were designed and implemented for two single-chip WiMedia UWB direct-conversion receivers in a standard 0.13-µm and 65-nm CMOS technology, respectively, are presented, along with the experimental results of both the low-pass filters and the second receiver version. The second UWB filter design was also embedded with an ADC into the baseband of a 60-GHz 65-nm CMOS radio receiver. In addition, a third-order 1-GHz gm-C low-pass filter was designed, rather as a test structure, for the same receiver. The experimental results of the receiver and the third gm-C filter implementation are presented.
机译:本文主要研究集成宽带无线电接收机的模拟基带连续时间低通滤波器的设计和实现。在这项工作中,总共设计并实现了五个实验模拟基带低通滤波器电路,并将其作为五个单芯片无线电接收器的一部分。在介绍了本文提出的研究动机之后,首先概述了无线电接收机中的模拟基带滤波器。另外,对本文的实验工作中采用的三种接收机架构和三种无线应用进行了综述。在文献综述的基础上,深入研究了积分器非理想性与积分器Q因子之间的关系,以及积分器Q因子对滤波器频率响应的影响。所提供的理论研究对于采用非理想有损积分器的gm-C滤波器合成至关重要,该研究是在引入各种技术以实现基于积分器的连续时间低通滤波器之后提出的。提出的用于gm-C滤波器的滤波器设计方法是原始工作,也是本论文的重点之一,除了实验性的IC实现之外。展示了为0.25μmSiGe BiCMOS技术中的两个多载波WCDMA基站接收机设计和实现的两个四阶10MHz opamp-RC低通滤波器的演进版本,以及两个低通的实验结果。滤波器和相应的无线电接收机。描述了在这项工作的三种gm-C滤波器实现中使用的电路技术,并分析了伪差分滤波器中的共模感应偶数阶失真。分别介绍了两种演化版本的五阶240-MHz gm-C低通滤波器,它们分别是为两个采用标准0.13-μm和65-nm CMOS技术的单芯片WiMedia UWB直接转换接收器设计和实现的。 ,以及低通滤波器和第二个接收器版本的实验结果。第二个UWB滤波器设计也与ADC一起嵌入到60 GHz 65 nm CMOS无线电接收器的基带中。此外,针对同一接收机设计了三阶1 GHz gm-C低通滤波器,而不是将其作为测试结构。给出了接收器和第三种gm-C滤波器实现的实验结果。

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