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A Novel Microstrip Symmetric Diagonal Cross-Coupling Quadruplet Bandpass Filter Using Even/Odd- Mode Stepped Impedance Resonators

机译:一种新型微带对角线交叉耦合四元型带通滤波器使用偶数/奇数模式阶梯式阻抗谐振器

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In this paper, a novel symmetric quadruplet coupling scheme for two symmetric/asymmetric transmission zeros (TZs) is introduced, and its new symmetric microstrip filter is proposed for a bandpass filter (BPF) design having high skirt selectivity at passband and high attenuation at stopband. In conventional quadruplets such as box section, two TZs are hard to produce at arbitrary frequencies owing to their coupling schemes and physical structures. The quadruplet employed in the paper is simply realized by a symmetric microstrip structure using even/odd-mode stepped impedance resonators (SIRs) and quarter-wavelength resonators (QWRs), thereby intrinsically generating a negative coupling required for two prescribed TZs. Moreover, the combination of SIRs and QWRs leads to a wide, high attenuation stopband response due to the suppression of direct source/load coupling as well as spurious resonances. The validity of the proposed BPF is proved through design and measurement of a 2-GHz fourth-order BPF with two TZs.
机译:在本文中,引入了一种用于两个对称/不对称传输零(TZS)的新型对称四重组耦合方案,并提出了一种新的对称微带滤波器,用于在通带处具有高裙带选择性的带通滤波器(BPF)设计,并且在停机带上高衰减。在诸如盒子部分的传统四分之一中,由于其耦合方案和物理结构,两个TZ难以在任意频率下产生。本文中采用的四分之一是通过使用偶数/奇数模式阶梯式阻抗谐振器(SIR)和四个波长谐振器(QWRS)的对称微带结构来实现,从而为两个规定的TZS本质地产生负耦合。此外,由于抑制直接源/负载耦合以及杂散共振,SIRS和QWRS的组合导致宽,高衰减的阻带响应。通过设计和测量具有两个TZ的2 GHz四阶BPF,证明了所提出的BPF的有效性。

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