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A uniplanar compact photonic-bandgap (UC-PBG) structure and its applications for microwave circuit

机译:单平面紧凑型光子带隙(UC-PBG)结构及其在微波电路中的应用

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This paper presents a novel photonic bandgap (PBG) structure for microwave integrated circuits. This new PBG structure is a two-dimensional square lattice with each element consisting of a metal pad and four connecting branches. Experimental results of a microstrip on a substrate with the PEG ground plane displays a broad stopband, as predicted by finite-difference time-domain simulations. Due to the slow-wave effect generated by this unique structure, the period of the PBG lattice is only 0.1/spl lambda//sub 0/ at the cutoff frequency, resulting in the most compact PEG lattice ever achieved. In the passband, the measured slow-wave factor (/spl beta//k/sub 0/) is 1.2-2.4 times higher and insertion loss is at the same level compared to a conventional 50-/spl Omega/ line. This uniplanar compact PBG (UC-PBG) structure can be built using standard planar fabrication techniques without any modification. Several application examples have also been demonstrated, including a nonleaky conductor-backed coplanar waveguide and a compact spurious-free bandpass filter. This UC-PBG structure should find wide applications for high-performance and compact circuit components in microwave and millimeter-wave integrated circuits.
机译:本文提出了一种用于微波集成电路的新型光子带隙(PBG)结构。这种新的PBG结构是一个二维方格,每个元素都包含一个金属焊盘和四个连接分支。如有限差分时域模拟所预测的,具有PEG接地平面的基板上微带的实验结果显示出较宽的阻带。由于这种独特结构产生的慢波效应,PBG晶格的周期在截止频率下仅为0.1 / splλ// sub 0 /,从而实现了有史以来最紧凑的PEG晶格。在通带中,测得的慢波系数(/ spl beta // k / sub 0 /)比传统的50- / spl Omega /线高1.2-2.4倍,插入损耗处于相同水平。这种单平面紧凑型PBG(UC-PBG)结构可以使用标准的平面制造技术来构建,而无需进行任何修改。还展示了几个应用示例,包括非泄漏导体支持的共面波导和紧凑的无杂散带通滤波器。这种UC-PBG结构应该为微波和毫米波集成电路中的高性能和紧凑型电路组件找到广泛的应用。

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