A noval weighting method for low loss SAW wideband filters: topological weighting

Y. Shui, Haodong Wu, Ning Wang, Jiming Lin
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引用次数: 2

Abstract

There are two kinds of traditional weighting methods for SAW interdigital transducers: apodization and withdrawal weighting. The former has been abandoned in many low loss filters design on account of the additional loss due to the weighting. The latter can be used only for narrow band filters with many fingers. In order to design low loss wideband filters, we propose a new method: topological weighting. We use Green's function to calculate accurately the COM (Coupling-of-Modes) parameters of the cells with different geometry (different finger widths and different finger gaps) for so called EWC (Electrode Width Controlled) structure, i.e. there are three electrodes in one cell, one of them is applied the voltage and other two are grounded. On the 128/spl deg/ rotated LiNbO/sub 3/, we get a filter with /spl sim/6.6% bandwidth, 3.8 dB loss and >41dB sidelobe Suppression by the calculation. In the experiment, because of the bad processing technology and electrode resistance effect, we have the result with loss 5 dB, sidelobe suppression 35.8 dB and the bandwidth of 5.5%. The interdigital transducers have the dimension /spl sim/25/spl times/15 wavelengths.
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低损耗声表面波宽带滤波器的一种新型加权方法:拓扑加权
声表面波数字式换能器的传统加权方法有两种,一种是点阵加权,另一种是提取加权。在许多低损耗滤波器设计中,由于加权带来的额外损耗,前者已被抛弃。后者只能用于多指窄带滤波器。为了设计低损耗宽带滤波器,我们提出了一种新的方法:拓扑加权。对于所谓的EWC(电极宽度控制)结构,我们使用Green函数精确地计算了具有不同几何形状(不同手指宽度和不同手指间隙)的电池的COM(模式耦合)参数,即在一个电池中有三个电极,其中一个施加电压,另外两个接地。在128/spl度/旋转LiNbO/sub / 3/上,通过计算得到一个带宽/spl sim/6.6%,损耗3.8 dB,旁瓣抑制41dB的滤波器。在实验中,由于处理工艺和电极电阻的影响,我们得到的结果是损耗5db,旁瓣抑制35.8 dB,带宽为5.5%。数字间换能器的尺寸为/spl sim/25/spl倍/15波长。
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