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Temperature Compensated Bulk Acoustic Wave Resonator and its Predictive 1D Acoustic Tool for RF Filtering

机译:用于RF滤波的温度补偿散装声波谐振器及其预测1D声学工具

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The design of Bulk Acoustic Wave "BAW" resonators should take into account the stringent requirements of thermal effects. In this paper, we propose a thermal model, allowing the reduction of the Temperature Coefficient of Frequency "TCF" with a slightly modified process while retaining a good coupling and quality factor. For a significant reduction of the TCF, a SiO{sub}2 layer is added above the upper electrode. A TCF of +1.5 ppm/°C was obtained at 2.08 GHz. The present accuracy of the 1D model is approximately 1ppm/°C. Most material parameters were extracted by comparison between the modeling and the measurement of BAW resonators with different stacks. To improve the dispersion of the TCF, the uniformity of each layer is introduced into the model. Firstly, the reduction of the top SiO{sub}2 Bragg layer thickness dispersion from 2% to 0.2% is achieved, using an ion etching. The compensation of BAW resonators in our process has been improving for PCS diversity standard. This model was used to design a Personal Communications Service "PCS" RX diversity filter (1.93-1.99 GHz). The compensated loaded and unloaded resonators were used in the filtering function and present TCFs between 0.8 and -7 ppm/°C with a coupling factor of approximately 5.2%.
机译:散装声波“BAW”谐振器的设计应考虑到热效应的严格要求。在本文中,我们提出了一种热模型,允许在保持良好的耦合和质量因子的同时减少频率“TCF”的温度系数“TCF”。对于TCF的显着降低,在上电极上方加入SiO {Sub} 2层。在2.08GHz获得+1.5ppm /°C的TCF。 1D模型的本准确性约为1ppm /°C。通过使用不同堆叠的建模和测量凸谐谐振器的建模和测量来提取大多数材料参数。为了改善TCF的分散,将每层的均匀性引入模型中。首先,使用离子蚀刻,实现了顶部SiO {亚} 2布拉格层厚度分散体的2%至0.2%。在PCS多样性标准的过程中,BAW谐振器的补偿一直在改善。该模型用于设计个人通信服务“PCS”RX分集过滤器(1.93-1.99 GHz)。补偿的加载和卸载的谐振器用于过滤功能,并在0.8至-7ppm /°C之间存在TCF,其耦合因子约为5.2%。

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