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Design and Simulation of a Sixth Order Band-Pass Gm-C Filter

机译:第六阶带通GM-C滤波器的设计和仿真

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This paper is focused on achieving high-frequency CMOS circuits for continuous-time filters used in the range of tens of megahertz, used in wireless systems. The implementation and the performance of a 6thorder differential band-pass filter using the Gm-C (transconductance - capacitor) topology are analyzed. The Butterworth type of approximation is evaluated. The performances of the circuits are proved by using two basic methods to build a high-order filter: one by cascading Tow-Thomas biquads sections and the second one by emulating a passive LC ladder filter. The accuracy of Gm-C filters design is demonstrated by simulating all possible test scenarios. As a main contribution, the design of the building blocks was made based on the mathematical model. A comparison between the synthesis methods has been performed.
机译:本文集中于实现用于在无线系统中使用的数十兆赫兹范围内使用的连续时间过滤器的高频CMOS电路。实施和6的执行和性能 th 分析了使用GM-C(跨导 - 电容)拓扑的顺序差分带通滤波器。评估Butterworth类型的近似。通过使用两种基本方法来证明电路的性能来构建高阶滤波器:通过模拟无源LC梯形滤波器通过级联牵引托马斯双层部分和第二次来构建高阶滤波器。通过模拟所有可能的测试场景,通过模拟所有可能的测试场景来展示GM-C过滤器设计的准确性。作为主要贡献,基于数学模型进行了构建块的设计。已经进行了合成方法之间的比较。

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