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Improved structures for programmable filters: application in a switched-capacitor adaptive filter design

机译:可编程滤波器的改进结构:在开关电容器自适应滤波器设计中的应用

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In designing switched-capacitor (SC) filters for high-frequency operation, there is a tradeoff to be made between the gain and the speed of the operational amplifiers (op amps). Taking into account this fact, we present in this paper new structures (an SC integrator and an SC gain stage) which relax the constraint requirements on the op amp while achieving improved performance accuracy. These structures use the double-sampled technique, which increases by a factor of two the maximum speed of operation and correctly operate even with low dc-gain op amps. In order to effectively use all features (low sensitivity to op-amp imperfections) of these SC building blocks in the implementation of an adaptive filter, we also describe an offset-cancelled tunable SC gain stage based on four-quadrant analog multiplier cells. Numerical results are reported to confirm the viability of the proposed design method, and techniques to further improve the adaptive filter electrical characteristics are discussed.
机译:在设计用于高频工作的开关电容器(SC)滤波器时,需要在增益和运算放大器(运放)的速度之间进行权衡。考虑到这一事实,我们在本文中提出了新的结构(SC积分器和SC增益级),该结构放宽了对运算放大器的约束要求,同时提高了性能精度。这些结构使用双采样技术,该技术可将最大工作速度提高两倍,并且即使在低直流增益运算放大器的情况下也能正常工作。为了在自适应滤波器的实现中有效地利用这些SC构建块的所有功能(对运算放大器缺陷的低灵敏度),我们还描述了一种基于四象限模拟乘法器单元的可抵消偏移的可调SC增益级。报告了数值结果,证实了所提出设计方法的可行性,并讨论了进一步改善自适应滤波器电特性的技术。

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