基于BAW耦合谐振器滤波器的集成带通响应小型化功率分配器

M. Jiménez, Alfred Gimenez, E. Corrales, P. de Paco
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引用次数: 1

摘要

随着频谱越来越拥挤,滤波器和双工器是离散设备移动市场技术的驱动力。无线通信系统的用户部分利用基于声波谐振器的滤波设备的出色性能。但到目前为止,这些技术还没有涵盖前端模块中其余的射频无源元件。体声波技术的使用克服了小型化问题。声学技术显示出关键特性,可以显着减小尺寸。在射频前端模块中,无源器件承受着不断收缩的压力。一些传统的电源分压器不能满足高水平的小型化要求。为了满足分隔器尺寸减小的要求,我们研究了两种不同的拓扑设计,它们都采用了体声波技术。具体来说,这两种器件都是基于耦合谐振器滤波器结构。本文描述了这两种3db功率分压器的设计准则。我们举例说明了基于两种拓扑结构的分路器在W-CDMA上的应用及其仿真性能。两个分频器都嵌入了通带滤波响应,并且所有端口都匹配。此外,由于几乎所有的多层膜都是均匀的,因此所设计的分路器简化了CRF的制作。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Miniaturized power dividers with integrated bandpass response based on BAW coupled resonator filters
With the spectrum more and more overcrowded, filters and duplexers are drivers of the technology in the discrete device mobile market. The user segment of wireless communication systems leverages the outstanding performance of filtering devices based on acoustic wave resonators. But so far, these technologies have not covered the rest of the RF passive elements in a Front End Module. The use of Bulk Acoustic Wave technology overcomes the miniaturization issue. The acoustic technology exhibits key properties which allow a significant size reduction. In an RF-Front End Module, the passive devices are under continuous pressure to shrink. Some conventional power dividers are not adequate for the high level of miniaturization demanded. To contribute on the size reduction demands of dividers, we have studied two different topological designs which applies bulk acoustic wave technology. Specifically the two proposed devices are based on Coupled Resonators Filter structures. Guidelines for the design of both 3-dB power dividers are described on this paper. We illustrate the designs with two splitters based on the two topologies for application on W-CDMA and their simulated performances. Both dividers have embedded passband filtering responses and have all the ports matched. Furthermore, the designed splitters simplify the fabrication of CRF because almost all the multilayer films are uniform.
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