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A Novel Tri-Band Wilkinson Power Divider for Multiband Wireless Applications

机译:适用于多频带无线应用的新型三频威尔金森功率分配器

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This letter presents a novel and simple technique for the design of an arbitrary tri-band Wilkinson power divider. The proposed technique is based on the use of quarter-wave open stubs (QWOS) at the desired operation frequencies, placed at appropriate positions along the divider’s 50- output transmission lines, to create the targeted tri-band response. These stubs present a high impedance at the frequencies of interest, while introducing transmission zeroes between the operation bands. For a compact design, slow-wave structure has been adopted to miniaturize the conventional divider’s arms. To validate the above concept, a power divider—intended to operate in the 1.5-, 1.9-, and 2.35-GHz frequency bands—is designed. The results of the fabricated circuit present low insertion loss of less than 0.45 dB while offering an isolation better than 15 dB in the three bands of operation. Compared to recently published results, the proposed divider exhibits the largest fractional bandwidth at each operation frequency. Furthermore, it can be easily extended to more bands by adding QWOS depending on the required number of bands.
机译:这封信提出了一种新颖而简单的技术,用于设计任意三频威尔金森功率分配器。提出的技术基于在所需工作频率下使用四分之一波长开路短截线(QWOS),并将其放置在分频器的50条输出传输线上的适当位置,以产生目标三频响应。这些短截线在感兴趣的频率上呈现出高阻抗,同时在工作频带之间引入传输零。对于紧凑型设计,采用了慢波结构来使常规分频器的臂小型化。为了验证上述概念,设计了一种功率分配器(旨在在1.5 GHz,1.9 GHz和2.35 GHz频带内工作)。制成电路的结果显示出小于0.45 dB的低插入损耗,同时在三个工作频带中提供了优于15 dB的隔离度。与最近发布的结果相比,建议的分频器在每个工作频率下均表现出最大的分数带宽。此外,根据所需的频段数量,可以通过添加QWOS轻松将其扩展到更多频段。

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