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SiO_(2)/grooved Al-Electrodes/LiTaO_(3) Structures having large Reflection Coefficient, large Coupling Factor, and excellent Temperature Characteristics even with thick Al electrode

机译:SiO_(2)/凹槽Al电极/ LiTaO_(3)结构具有大的反射系数,大的耦合因子,即使具有厚的Al电极也具有优异的温度特性

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A surface acoustic wave (SAW) substrate for a duplexer such as Personal Communication Service handy phone system in US is required to have a good temperature coefficient of frequency (TCF), an optimum electromechanical coupling factor, and a large reflection coefficient. However, there have been no SAW substrates satisfying all of them. Because the duplexer is composed of resonator-type devices such as a ladder filter or a multimode resonator filter, thick Al electrodes for interdigital transducer (IDT) and grating reflectors on a substrate are used in order to achieve the large reflection coefficient. The TCF of the SAW substrate such as LiTaO_(3) or LiNbO_(3) for a transversal SAW filter using a thin Al electrode is negative so that a SiO_(2) film having a positive TCF is often deposited on the substrate to improve the TCF. But, when a thick SiO_(2) film was deposited on a resonator and a longitudinally coupled multimode resonator filter composing of thick Al electrodes on 36 deg Y(centre dot)X-LiTaO_(3) substrates to improve the TCF, their frequency characteristics remarkably deteriorated, because of large convex portions (as thick as Al electrodes) yielded on a surface of the SiO_(2) film and the small coupling factor decreased due to their convex portions. The authors have considered that thick SiO_(2)/grooved Al-electrodes/LiTaO_(3) structures SAW substrate would have an excellent TCF, a large reflection coefficient, and an optimum coupling factor even if using thick Al electrodes. The results of the experiment and the calculation clarified that resonators consisting of the newly developed SAW structure had good frequency characteristics, the large reflection coefficient, the optimum coupling coefficient, and the excellent TCF (-3ppm/(deg C)).
机译:对于我们在美国的双工器(如个人通信服务方便电话系统)的表面声波(SAW)基板是具有良好的温度频率(TCF),最佳机电耦合因子和大反射系数的良好温度系数。然而,没有满足所有锯子的基板。因为双工器由诸如梯形滤波器或多模谐振器滤波器的谐振器型器件组成,所以用于衬底上的厚型换能器(IDT)和光栅反射器的厚Al电极以实现大的反射系数。使用薄Al电极的横向锯滤波器的锯基板的TCF如LiTaO_(3)或LINBO_(3)是负的,使得具有正TCF的SiO_(2)膜通常沉积在基板上以改善TCF。但是,当在谐振器上沉积厚的SiO_(2)膜和36°(中心点)X-LiTaO_(3)基板上的厚Al电极的纵向耦合的多模谐振器滤镜组合以改善TCF,它们的频率特性由于在SiO_(2)膜的表面上产生的大的凸部(尽可能厚的Al电极),因此由于它们的凸部而降低了小的耦合因子,因此显着劣化。作者认为厚的SiO_(2)/凹槽Al-电极/ LiTaO_(3)结构Saw基板将具有出色的TCF,大反射系数和即使使用厚的Al电极也具有最佳耦合因子。实验的结果和计算澄清说,由新开发的SAW结构组成的谐振器具有良好的频率特性,大反射系数,最佳耦合系数和优异的TCF(-3PPM /(DEG C))。

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