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Recent results on compact broad-band and multi-band low-temperature co-fired ceramic components for radio frequency front-ends

机译:用于射频前端的紧凑型宽带和多频段低温共烧陶瓷组件的最新结果

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摘要

Compact components for radio frequency (RF) front-ends realised in low-temperature co-fired ceramics (LTCC) are presented. The aim of this study was to highlight recent advances in realisation of different components for modern RF/ microwave subsystems, stressing such attributes as compactness, wide bandwidth and operation in multiple bands. Two key components of every RF front-end are filters and couplers. To illustrate the feasibility of using LTCC technology to realise these components, several designs of filters and couplers are presented. Very compact LTCC ridge waveguide filter covering the whole US ultra-wide band is first discussed, followed by a dual-band LTCC ridge waveguide filter. Two types of wideband couplers are shown: ridge waveguide couplers realised in LTCC and empty metallic waveguide and also a strip-line LTCC coupler. A common characteristic that will be shown is that the presented components by the authors are modelled using computer-aided design tools based on modal analysis for waveguides as well as commercially available finite-element tools. The shown examples have simulation results compared by different methods as well as some experimental results in LTCC and empty metallic waveguide, used to demonstrate the proposed approach.
机译:介绍了在低温共烧陶瓷(LTCC)中实现的用于射频(RF)前端的紧凑型组件。这项研究的目的是突出实现现代RF /微波子系统的不同组件的最新进展,并强调诸如紧凑性,宽带宽和在多频带下运行等属性。每个射频前端的两个关键组件是滤波器和耦合器。为了说明使用LTCC技术实现这些组件的可行性,提出了几种滤波器和耦合器设计。首先讨论覆盖整个美国超宽带的非常紧凑的LTCC脊形波导滤波器,然后是双频带LTCC脊形波导滤波器。显示了两种类型的宽带耦合器:在LTCC中实现的脊形波导耦合器和空金属波导,以及带状线LTCC耦合器。将显示的一个共同特征是,作者提出的组件是使用基于波导模态分析的计算机辅助设计工具以及市售的有限元工具进行建模的。所示示例具有通过不同方法比较的仿真结果,以及在LTCC和空金属波导中的一些实验结果,用于证明所提出的方法。

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