Measurement result shows that this novel EBG structure has good stopband characteristic in a wide band.
测量结果显示,新型EBG结构在宽频带内具有良好的阻带特性。
This discovery provides an alternative option for the potential electromagnetic application of the EBG structure.
这一发现,为电磁带隙结构的工程应用提供了新的材料选择。
Then, we focused on the EMI problem from the power bus structure using both such EBG structures and the magnetic material coating on the power and ground planes.
然后,研究在各种EBG结构下,在电源和接地层内侧(即靠近介质层的一侧)增加高磁导率材料涂层对供电系阻抗特性的影响。
A new EBG structure is proposed through a lot of experiments and analysis. A filter with a wide stop-band and another filter with two stop-bands are further designed.
最后通过大量实验和研究,提出了一种新型EBG结构,在此基础上设计出宽阻带并具有双频段带隙特性的滤波电路。
We expect that the use of the some EBG structure can reduce the magnitude of the transfer impedances and the number of the resonance peaks, thus contribute to the EMI reduction of the power bus.
因此可以预期,某些EBG结构可以降低阻抗的幅度、减少谐振峰的个数,从而有效地减轻供电系的电磁干扰问题。
In this paper, a cone pattern is realized by covering an electromagnetic band-gap (EBG) structure.
该文采用电磁带隙(EBG)结构层覆盖的方式实现了一种锥形方向图。
The Electromagnetic bandgap(EBG)is a periodic structure with obvious bandstop characteristic.
电磁带隙结构(EBG)是一种周期性结构,具有明显的带阻特性。
A novel sandwich EBG (electromagnetic band gap) structure-assisted microstrip antenna is investigated.
研究了一种新型夹层电磁带隙(EBG)结构在微带天线中的应用。
A novel sandwich EBG (electromagnetic band gap) structure-assisted microstrip antenna is investigated.
研究了一种新型夹层电磁带隙(EBG)结构在微带天线中的应用。
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