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Design of a Compact Microstrip Quint-Band Filter Based on the Tri-Mode Stub-Loaded Stepped-Impedance Resonators

机译:基于三模短管负载步进阻抗谐振器的紧凑型微带五通带滤波器的设计

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A simple and efficient method has been presented to design multi-band microstrip bandpass filters (BPFs) without a significant increase in circuit size. By utilizing multiple coupling paths, all passbands can then be fully controlled and, thus, the design is flexible so as to independently realize different bands. In addition, by adjusting the structural parameters of the proposed trimode stub-load stepped-impedance resonator, its first three resonant frequencies can be controlled. Thus, it can be utilized to implement a third-order BPF with a transmission zero at the upper side of the passband when these resonant frequencies are suitably assigned. For our demonstration, a compact quint-band BPF formed by only five tri-mode resonators has been designed and fabricated. It is shown that the quint-band filter occupies an extremely small area, i.e., 0.34 λ0 by 0.03 λ0 (0.52 λgby 0.045 λg). Good agreement is also achieved between simulation and measurement.
机译:已经提出了一种简单有效的方法来设计多频带微带带通滤波器(BPF),而不会显着增加电路尺寸。通过利用多个耦合路径,然后可以完全控制所有通带,因此,设计灵活,可以独立实现不同的带。此外,通过调整建议的三模短负载步进阻抗谐振器的结构参数,可以控制其前三个谐振频率。因此,当适当分配这些谐振频率时,可以利用它在通带的上侧实现零传输的三阶BPF。对于我们的演示,仅设计和制造了仅由五个三模谐振器组成的紧凑型五频带BPF。结果表明,五重带滤波器的面积非常小,即0.34λ 0 乘以0.03λ 0 (0.52λ g 乘0.045λ g )。在仿真和测量之间也达成了良好的协议。

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