Balanced low-loss 2-IDT double mode SAW filter with narrowed passband and improved selectivity

D. Sergei
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引用次数: 2

Abstract

This paper presents the new balanced low-loss DMS filter with the narrowed passband and improved selectivity on 42° YX LiTaO3. The filter is realized as two-transducer scheme. A narrow passband of the filter is obtained by choosing a definite gap length between the input and output IDTs. Also the both long weighted input IDT and reflectors are used. A shape of the frequency response of the filter is determined by the weighting function of the input IDT, number of the electrodes in output IDT and reflectors, relationship between the electrode pitches in the input IDT, output IDT and reflectors. An optimization of the mentioned parameters with a computer simulation using equivalent circuit model allows to get a specified high selectivity of the filter with a fractional bandwidth of 0.5-0.6% under condition that the insertion losses are low and input and output impedances are close to the specified real values. To decrease the input and output impedances the parallel connection of the two filters in the different acoustic tracks is used. To improve the selectivity of the filter the cascaded connection and phase weighting the input IDT are employed. The 300 MHz sample of the balanced SAW filter has shown an insertion loss of 3 dB, 2-dB bandwidth of 1.5 MHz, stopband attenuation of 70 dB at ±12 MHz offsets from a center frequency in a 75-Ω balanced system. The filter did not require the matching elements and housed in the 9.1×7.1×2 mm SMD package.
平衡低损耗2-IDT双模SAW滤波器,窄通带和提高选择性
本文在42°YX LiTaO3上提出了一种窄带、高选择性的新型平衡低损耗DMS滤波器。该滤波器采用双传感器方案实现。通过在输入和输出idt之间选择一定的间隙长度来获得滤波器的窄通带。同时使用了长加权输入IDT和反射器。滤波器的频率响应形状由输入IDT的权重函数、输出IDT和反射器中电极的数量、输入IDT、输出IDT和反射器中电极间距之间的关系决定。利用等效电路模型对上述参数进行计算机仿真优化,可以在插入损耗低、输入输出阻抗接近指定实值的条件下,获得分数带宽为0.5-0.6%的高选择性滤波器。为了减小输入和输出阻抗,采用在不同声道上并联两个滤波器的方法。为了提高滤波器的选择性,采用了级联连接和相位加权输入IDT。平衡SAW滤波器的300 MHz样本显示,在75-Ω平衡系统中,距离中心频率±12 MHz偏移时,插入损耗为3 dB, 2 dB带宽为1.5 MHz,阻带衰减为70 dB。该滤波器不需要匹配的元件,并安装在9.1×7.1×2 mm SMD封装中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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