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Design of compact wideband multi-band and ultrawideband band pass filters based on coupled half wave resonators with reduced coupling gap

机译:基于耦合间隙减小的耦合半波谐振器的紧凑型宽带多频带和超宽带带通滤波器的设计

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摘要

In this paper we propose a technique to design compact multi-band and UWB bandpass filters based on coupled half wave resonators. The proposed design consists of the modification of a conventional parallel coupled Chebyshev bandpass filter structure by setting a very small or null coupling gap between the resonators of the center sections jointly with a very small spacing between resonators of the extremity sections. This spacing determines the performances of selected frequency bands. An ultrawideband response is accomplished by applying null spacing between all the adjacent resonators. We analysed the effect of the separation distance between the coupled lines on both the fractional bandwidth and group velocity of the filter response. The effect of the order assumed for the initial Chebyshev filter was also discussed. As an illustration of the proposed technique, we designed and measured a dual band and a tri-band filter for the frequencies covering the WiMAX/WLAN/X system bands demonstrating an excellent performance, with a fractional bandwidth covering the 40% and 100% of the FCC bandwidth respectively. The proposed technique alleviates the fabrication accuracy requirements. The designs show an optimal improvement in terms of group velocity flatness.
机译:在本文中,我们提出了一种基于耦合半波谐振器设计紧凑型多频带和UWB带通滤波器的技术。所提出的设计包括对常规并联耦合切比雪夫带通滤波器结构的修改,方法是在中心部分的谐振器之间设置很小或为零的耦合间隙,而在末端部分的谐振器之间设置很小的间距。该间隔确定所选频带的性能。通过在所有相邻谐振器之间施加零间距来实现超宽带响应。我们分析了耦合线之间的分隔距离对分数带宽和滤波器响应的群速度的影响。还讨论了初始切比雪夫滤波器假定的阶数的影响。为了说明所提出的技术,我们针对覆盖WiMAX / WLAN / X系统频段的频率设计并测量了双频段和三频段滤波器,展示了出色的性能,小部分带宽覆盖了40%和100%的带宽。 FCC带宽。所提出的技术减轻了制造精度要求。这些设计在组速度平坦度方面显示了最佳的改进。

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