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Analytical synthesis of high-order single-ended-input OTA-grounded C all-pass and band-reject filter structures

机译:高阶单端输入OTA接地的C全通和带阻滤波器结构的解析综合

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The synthesis method based on the analytical solution of a single nth-order filter transfer function and the generation of n+1 simple and realizable transfer functions implemented using lossless integrators and one additional constraint is applied to facilitate the development of new voltage-mode high-order operational transconductance amplifiers and capacitors (OTA-C) all-pass and band-reject filters. The presented nth-order all-pass and band-reject filters contain n+2, i.e., at least n fewer OTAs and enjoy lower component spread than the recently published filter structures in addition to achieving three criteria: all single-ended-input OTAs, all grounded capacitors, and the least number of component counts, simultaneously. Furthermore, two different types of the synthesized filter structures, equal capacitance and equal transconductance, are suggested for easier IC manufacture and simpler biasing architecture, respectively. H-Spice simulations, using 0.25-mum process and plusmn1.25-V supply voltages, validate theoretical predictions
机译:基于单个n阶滤波器传递函数的解析解以及使用无损积分器和一个附加约束实现n + 1个简单可实现的传递函数的生成的综合方法,可以促进新型电压模式高功率器件的开发。订购运算跨导放大器和电容器(OTA-C)全通和带阻滤波器。提出的n阶全通滤波器和带阻滤波器包含n + 2,即,除了达到三个标准外,与最近发布的滤波器结构相比,OTA至少少n个,并享受更低的分量扩展:所有单端输入OTA ,所有接地电容器以及最少数量的组件。此外,建议两种不同类型的合成滤波器结构,即相等的电容和相等的跨导,分别用于更容易的IC制造和更简单的偏置架构。 H-Spice仿真,使用0.25-um的工艺和1.25m的电源电压,验证了理论预测

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