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Design of millimeter-wave microstrip BPF using dual-mode ring resonator and folded half-wavelength resonators

机译:利用双模环形谐振器和折叠半波长谐振器设计毫米波微带BPF

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In this work, the design of microstrip bandpass filter (BPF) at the millimeter-wave band is investigated using a method that is based on dual-mode ring resonator and folded half-wavelength resonators. Earlier such structure has been reported to realize BPF in quasi-millimeter waveband. The filter design parameters are optimized using the EM simulation tool. A couple of filter structures are designed by deploying this method with a fractional bandwidth of 18% at a center frequency of 34 GHz and fractional bandwidth of 15% at a center frequency of 40 GHz and subsequently manufactured on Rogers 5880 10-mil substrate. The measured insertion losses of these two filters are 2.27±0.35dB and 2.50±0.4 dB respectively. The filters exhibited flat response in the passband, sharp roll-off skirt, and good stopband suppression over a wide frequency range. The sizes of core structures of filters are 5.4×2.95mm and 4.7×2.66 mm, while connecting transmission lines were extended to fit the circuit in mechanical housing having a size of 13.8×7.6mm. Measured parameters of physical circuits are in close agreement with simulation results.
机译:在这项工作中,使用基于双模环形谐振器和折叠半波长谐振器的方法,研究了毫米波段微带通滤波器(BPF)的设计。早先有报道称这种结构可以在准毫米波段实现BPF。滤波器设计参数使用EM仿真工具进行了优化。通过采用以下方法设计了几种滤波器结构,该方法在34 GHz的中心频率下的带宽为18%,在40 GHz的中心频率下的带宽为15%,随后在Rogers 5880 10密耳基板上制造。这两个滤波器的测量插入损耗分别为2.27±0.35dB和2.50±0.4dB。该滤波器在通带中表现出平坦的响应,尖锐的滚降裙边,并在很宽的频率范围内具有良好的阻带抑制能力。滤波器的核心结构尺寸分别为5.4×2.95mm和4.7×2.66mm,同时扩展了连接传输线以将电路安装在尺寸为13.8×7.6mm的机械外壳中。物理电路的测量参数与仿真结果非常吻合。

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