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AlN 的声、压电和介电非线性在用于高射频功率水平的耦合谐振器滤波器中的应用。

Acoustic, piezoelectric, and dielectric nonlinearities of AlN in coupled resonator filters for high RF power levels.

机构信息

Institut de Microélectronique, Electromagnétisme et Photonique-Laboratoire d'Hyperfréquence de Chambéry (IMEP-LAHC), Minatec, Grenoble, France.

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2011 Oct;58(10):2162-70. doi: 10.1109/TUFFC.2011.2065.

Abstract

Coupled resonator filters (CRFs) are the new generation of BAW filters recently designed for the front-end modules of mobile transmission systems. Looking for designers' requirements, CRF devices have been characterized and modeled. The model based on equivalent circuits relies on material constants such as stiffness and electro-coupling coefficients, and works only for linear-mode propagation. Because of their positions between antennas and power amplifiers, they often work under high RF power, inducing nonlinear response in the AlN piezoelectric layer. In this work, we analyze for the first time the nonlinear behavior of AlN material particularly for coupled BAW resonators. To characterize the nonlinear effects in CRFs, we measure the 1-dB gain compression point (P1dB) and the intercept point (IP(3)). Then, we develop a nonlinear model of CRFs using harmonic balance (HB) simulation in commercially available software. The HB environment allows fitting simulations to measurements in terms of P(1dB) and IP(3). We find that a high RF power induces nonlinear changes in the material constants' real parts: elastic stiffness c(33) (4.9%), piezoelectric e(33) (17.4%), and permittivity ϵ(33) (5.2%). These nonlinear variations of material constants describe the nonlinear behavior of CRF devices using the same deposit process for AlN material.

摘要

耦合谐振滤波器 (CRF) 是最近专为移动传输系统前端模块设计的新一代 BAW 滤波器。根据设计人员的要求,对 CRF 器件进行了特性和建模。基于等效电路的模型依赖于刚度和电耦合系数等材料常数,并且仅适用于线性模式传播。由于它们位于天线和功率放大器之间,因此它们通常在高射频功率下工作,从而在 AlN 压电层中引起非线性响应。在这项工作中,我们首次分析了 AlN 材料的非线性行为,特别是对于耦合 BAW 谐振器。为了表征 CRF 中的非线性效应,我们测量了 1-dB 增益压缩点 (P1dB) 和截距点 (IP(3))。然后,我们使用商业可用软件中的谐波平衡 (HB) 仿真开发了 CRF 的非线性模型。HB 环境允许根据 P(1dB) 和 IP(3) 拟合仿真测量值。我们发现,高射频功率会导致材料常数实部的非线性变化:弹性刚度 c(33) (4.9%)、压电 e(33) (17.4%) 和介电常数 ϵ(33) (5.2%)。这些材料常数的非线性变化使用相同的 AlN 材料沉积工艺描述了 CRF 器件的非线性行为。

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