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Multimode Stepped-Impedance Resonator (SIR) with Central Via-Coupling for UWB Filter Design

机译:具有中央通孔耦合的多模步进阻抗谐振器(SIR),用于UWB滤波器设计

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This paper discusses a new type of planar stepped-impedance resonator (SIR) - a structure centrally loaded with a via to the ground. The novel SIR has unique properties which can be used to design wideband and ultra-wideband (UWB) filters. The shunt via provides a strong inductive coupling in the centre of the structure, which determines a new mechanism of coupling the SIR modes. The central via modifies electromagnetic field distribution of the SIR filter creating in its frequency response an additional transmission pole in the passband. It also provides a transmission zero at DC, which allows for a direct contact port coupling, with no need for the more problematic, very narrow gaps to couple the structure with input/output lines. Thanks to this, the new SIR can be successfully designed and fabricated on thin dielectric substrates. The gapless couplings require impedance matching between input/output lines and the SIR. This is realized by stepped-impedance transformer sections. Depending on the filter bandwidth, these port matching sections can be non-resonating, or begin to resonate generating additional transmission poles. These properties are discussed in the paper based on two example microstrip bandpass filters: a 4-pole 3.1 - 4.8 GHz and a 6-pole 3.1 - 10.6 GHz UWB filter.
机译:本文讨论了一种新型的平面步进阻抗谐振器(SIR)-一种在中央装有通孔的结构。新颖的SIR具有独特的属性,可用于设计宽带和超宽带(UWB)滤波器。并联过孔在结构的中心提供了强大的电感耦合,这确定了耦合SIR模式的新机制。中央过孔修改SIR滤波器的电磁场分布,从而在其频率响应中在通带中创建一个附加的传输极点。它还在DC处提供零传输,从而允许直接接触端口耦合,而无需将结构与输入/输出线耦合的更多问题,非常狭窄的间隙。因此,可以在薄介电基片上成功设计和制造新的SIR。无间隙耦合需要输入/输出线和SIR之间的阻抗匹配。这是通过步进阻抗变压器部分实现的。根据滤波器带宽的不同,这些端口匹配部分可以是非谐振的,也可以是谐振的,从而产生额外的传输极点。本文基于两个示例微带通滤波器讨论了这些特性:一个4极3.1-4.8 GHz和一个6极3.1-10.6 GHz UWB滤波器。

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