High Performance and Compact Balanced-Filter Design for WiMAX Front-End Modules (FEM) Using LCP-Based Organic Substrates

Renbin Wu, C. Mmasi, V. Govind, S. Dalmia, C. Ghiu, G. White
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引用次数: 15

Abstract

In this paper, high performance RF integrated balanced-filters were proposed and designed for single band WiMAX front end application. This FEM includes an on-chip RF power amplifier and one switch, with two receive and one transmit paths. In addition to module size requirement, the WiMAX standard presents several passive design challenges: (1) The power amplifier (PA) provides an increase in rated power, hence a higher transmit gain which forces a more stringent output spurious/harmonic levels specification. (2) Received unwanted signals and blockers levels deplete the linearity performance of the receiver lineup. The module was designed on a multilayer organic (MLO) substrate. The highly integrated, fully shielded RF module incorporates embedded passive components including filters and baluns. Simulated results show excellent electrical performance with low insertion loss, high rejection and good return loss. Additionally, the module exhibits excellent thermal stability over the range of operating parameters.
基于lcp有机基板的WiMAX前端模块(FEM)的高性能紧凑平衡滤波器设计
本文针对单频段WiMAX前端应用,提出并设计了高性能射频集成平衡滤波器。该FEM包括一个片上射频功率放大器和一个开关,具有两条接收路径和一条发射路径。除了模块尺寸要求外,WiMAX标准还提出了几个无源设计挑战:(1)功率放大器(PA)提供了额定功率的增加,因此具有更高的传输增益,从而强制执行更严格的输出杂散/谐波电平规范。(2)接收到的无用信号和阻滞器电平耗尽了接收机阵容的线性性能。该模块设计在多层有机(MLO)衬底上。高度集成的全屏蔽射频模块集成了嵌入式无源元件,包括滤波器和平衡器。仿真结果表明,该系统具有低插入损耗、高抑制和良好回波损耗等优良的电气性能。此外,该模块在工作参数范围内具有优异的热稳定性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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