$lambda /4$ stepped-impedance resonators (SIRs) and presen'/> Synthesis Design of Dual-Band Bandpass Filters With <formula formulatype='inline'><tex Notation='TeX'>$lambda/4$</tex></formula> Stepped-Impedance Resonators
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Synthesis Design of Dual-Band Bandpass Filters With $lambda/4$ Stepped-Impedance Resonators

机译:具有 $ lambda / 4 $ 阶跃阻抗谐振器的双带通滤波器的综合设计

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This paper proposes a class of dual-band bandpass filters with $lambda /4$ stepped-impedance resonators (SIRs) and presents a rigorous synthesis method for these compact filters. Firstly, $lambda/4$ SIRs are designed to generate their first two resonant modes in the two specified passbands, and they are sequentially cascaded by alternative $J$ and $K$ inverters. In design, $lambda/4$ SIRs need to be chosen not only to satisfy the prescribed dual-band central frequencies, but also to compensate for the deficient values of $K$ inverters at these two frequencies. Following that, a generalized synthesis method is extensively described for design and exploration of novel dual-band filters on the microstrip-line topology. The two types of second-order dual-band Chebyshev bandpass filters with dual passbands are at 5.8 and 1.8 GHz (large frequency ratio), as well as 5.8 and 2.4 GHz (small frequency ratio), respectively. Furthermore, a fourth-order dual-band filter is designed using the proposed synthesis method to demonstrate improved dual-passband performance with sharpened out-of-band rejection skirts and high in-between-band isolation. Finally, five filter prototypes are fabricated for the experiment, and both simulated and measured results validate the theoretical ones successfully.
机译:<?Pub Dtl?>本文提出了一种具有 $ lambda / 4 $ 步进阻抗的双带通滤波器。谐振器(SIR),并提出了针对这些紧凑型滤波器的严格合成方法。首先, $ lambda / 4 $ SIR被设计为在两个指定的通带中产生它们的前两个共振模式,它们是由替代 $ J $ $ K $ 逆变器。在设计中,不仅需要选择 $ lambda / 4 $ SIR,不仅要满足规定的双频段中心频率,还需要选择SIR。还可以补偿这两个频率下 $ K $ 逆变器的不足值。随后,广泛地描述了一种通用的合成方法,用于在微带线拓扑上设计和探索新型双波段滤波器。具有双通带的两种二阶双频Chebyshev带通滤波器的频率分别为5.8和1.8 GHz(大频率比),以及5.8和2.4 GHz(小频率比)。此外,使用提出的合成方法设计了四阶双带滤波器,以展示改进的双带性能,并具有更清晰的带外抑​​制裙和高带内隔离度。最后,为实验制作了五个滤波器原型,仿真和测量结果均成功验证了理论上的效果。

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