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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >SAW filters including one-focus slanted finger interdigital transducers
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SAW filters including one-focus slanted finger interdigital transducers

机译:SAW滤波器,包括单焦点倾斜手指叉指换能器

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摘要

The present paper describes a new filter type, slanted finger interdigital transducer (SFIT) that allows fast analysis as a precondition for fast optimization. Therefore, filter structure and analysis are especially suitable for optimizing unidirectional SFIT (USFIT) filters. For analysis, a SFIT filter is usually divided into many narrow channels. Every channel is considered to be a subfilter and is analyzed separately. Therefore, the total filter analysis is very time consuming. For reducing computing time, we suggest a one-focus structure. In contrast to conventional SFIT filters, not only the finger and gap widths but also the spaces between transducers of different channels differ by one and the same scaling factor. As a consequence, all prolonged finger edges of both transducers intersect in one point called focus. As a result, the parameters of all subfilters can be calculated from the parameters of only one subfilter by simple frequency scaling. Consequently, the total time for analysis is essentially reduced. However, one-focus SFIT filters with continuous finger edges show a deep minimum within the passband. This problem can be overcome by using stepped one-focus structures.
机译:本文介绍了一种新的滤波器类型,即倾斜手指叉指式换能器(SFIT),它可以将快速分析作为快速优化的前提。因此,滤波器的结构和分析特别适合于优化单向SFIT(USFIT)滤波器。为了进行分析,通常将SFIT滤波器分为许多狭窄的通道。每个通道都被视为一个子过滤器,并进行单独分析。因此,整个过滤器分析非常耗时。为了减少计算时间,我们建议采用单焦点结构。与传统的SFIT滤波器相比,不仅指状部和间隙的宽度不同,而且不同通道的换能器之间的间距也不同,且比例因子相同。结果,两个换能器的所有延长的手指边缘在称为焦点的一个点相交。结果,可以通过简单的频率缩放从仅一个子滤波器的参数计算所有子滤波器的参数。因此,基本上减少了分析的总时间。但是,具有连续手指边缘的单焦点SFIT滤波器在通带内显示出极小的最小值。通过使用阶梯式单焦点结构可以解决此问题。

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