BAW梯型滤波器带外抑制调节电感的优化方法
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国家自然科学基金资助项目(61574131);中国工程物理研究院超精密加工技术重点实验室基金资助项目(2014ZA001);核探测与核电子学国家重点实验室开放课题基金资助项目(2016KF-02);西南科技大学特殊环境机器人技术四川省重点实验室开放基金资助项目(14ZXTK01)

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Optimizing Methods of the Inductor for Regulating Band Rejection of BAW Ladder-type Filter
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    摘要:

    为了使用最小的电感改善体声波(BAW)梯型滤波器的带外抑制,提出了一种BAW梯型滤波器带外抑制调节电感的优化方法,该方法对电感值进行了两次连续优化。首先分析了电感改善BAW梯型滤波器带外抑制的原理、结合单个薄膜体声波谐振器(FBAR)的静态电容公式并推导并联FBAR支路串联一个电感的输入阻抗表达式,得到在FBAR谐振区面积较大的并联支路,比在其他支路串联电感,对滤波器带外抑制的改善程度较大、电感值较小,该步确定了电感的最佳位置,随之确定的电感值较小;在此基础上,通过使上述卓越的带外抑制性能退化到带外抑制指标附近,电感值进一步减小。通过以上两次连续优化,能迅速确定一个最小的电感值及所在位置。结合一个31/2阶BAW梯型滤波器,验证了该优化方法的有效性。

    Abstract:

    In order to use the smallest inductor to improve the band rejection of BAW ladder filter, an optimizing methods for inductor which regulate the band rejection characteristic of BAW laddertype filter are proposed in this paper, the methods include two sequential optimizations for the value of inductor. Firstly, the principle of improving the band rejection of BAW ladder filter by the inductor is analyzed, the formula of static capacitance, and the formula of electrical input impedance of FBAR with a series inductor, the conclusion of “the improvement results of band rejection is larger and the value of inductor is smaller when the inductor series in shunt branch with a larger FBAR resonator area than in the other branches” is achieved, which determines the best position of inductor’s, followed by which the determined value of inductor is smaller. On this basis, by degrading the excellent value of band rejection approximately equal to the specification of band rejection, the value of inductor will be reduced further. Through two sequential optimizations for the value of inductor,the position and the smallest value of inductor will be determined rapidly. Lastly, a 31/2-stage BAW ladder filter is used to verify the validity of the optimizing method.

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赵坤丽 高杨 蔡洵. BAW梯型滤波器带外抑制调节电感的优化方法[J].压电与声光,2016,38(6):843-846. ZHAO Kunli GAO Yang CAI Xun. Optimizing Methods of the Inductor for Regulating Band Rejection of BAW Ladder-type Filter[J]. PIEZOELECTRICS AND ACOUSTOOPTICS

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  • 在线发布日期: 2016-12-20
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