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首页> 外文期刊>International Journal Of Modelling & Simulation >Low-Loss Gigahertz range surface acoustic wave filters using harmonic two-phase unidirectional transducers
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Low-Loss Gigahertz range surface acoustic wave filters using harmonic two-phase unidirectional transducers

机译:使用谐波两相单向换能器的低损耗千兆赫范围声表面波滤波器

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摘要

The fabrication of surface acoustic wave(SAW) filters employing the conventional interdigital transducer(IDT) involves significant loss in the transmitted signals. An inherent problem in IDT is that the minimum insertion loss is 6 dB(1) owing to bidirectionality and strong passband ripple from triple-transit echo and secondary effects. To avoid these flaws and gain a simple structure of the filter, two-phase unidirectional transducers were chosen in this study. The fabrication of devices for frequencies above 1.5 GHz is still difficult and hence expensive. In this paper, a computer simulation model is built and used to study the frequency response of two GHz harmonic filters using unidirectional transducers. The proposed design provides moderate insertion loss. A simple model to find the input impedance of the proposed transducer is discussed.
机译:使用常规的叉指换能器(IDT)的表面声波(SAW)滤波器的制造涉及发射信号的大量损耗。 IDT的固有问题是,由于双向性以及三重回波和次级效应引起的强通带纹波,最小插入损耗为6 dB(1)。为了避免这些缺陷并获得简单的滤波器结构,本研究选择了两相单向换能器。用于高于1.5 GHz的频率的设备的制造仍然很困难,因此很昂贵。本文建立了一个计算机仿真模型,并使用它来研究使用单向换能器的两个GHz谐波滤波器的频率响应。提出的设计提供了中等的插入损耗。讨论了一个简单的模型来找到所提出的传感器的输入阻抗。

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