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Wide Band Tunable Filter Design Implemented in CMOS

机译:CMOS实现的宽带可调滤波器设计

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Generation of filters using operational transconductance amplifiers and capacitors (OTA-C) has become more and more popular over recent years. A simple yet effective method of analytical synthesis is presented that makes use of ladder circuits, which are much more widely understood. Given the ladder circuit of a filter of any order, an equivalent OTA-C filter can be easily synthesized. The synthesis process is shown for both a low pass and a band pass filter. Higher order filters can easily be synthesized by extending the design process described. The design of the band pass filter is implemented in CMOS with a linearly tunable OTA to show the effect of non-ideal elements. The CMOS filter implementation is capable of linear center frequency tuning across three degrees of magnitude. Because of the wide band width tunability, this type of design lends itself to intelligent frequency scanning techniques. Such a system, to be used in military applications, is presented as an application of this filter design.
机译:近年来,使用运算跨导放大器和电容器(OTA-C)生成滤波器已变得越来越流行。提出了一种简单但有效的分析合成方法,该方法利用了梯形电路,梯形电路得到了更广泛的了解。给定任意阶数的滤波器的梯形电路,就可以轻松合成等效的OTA-C滤波器。示出了针对低通滤波器和带通滤波器的合成过程。通过扩展所述设计过程,可以轻松合成高阶滤波器。带通滤波器的设计是在具有线性可调OTA的CMOS中实现的,以显示非理想元件的影响。 CMOS滤波器的实现能够在三个数量级上进行线性中心频率调谐。由于宽带可调谐性,这种类型的设计使其适用于智能频率扫描技术。提出了一种用于军事应用的系统,作为该滤波器设计的一种应用。

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