Investigation on the scaling properties of a novel electromagnetic band-gap structure for application to parallel-plate noise suppression

A. De Sabata, L. Matekovits, M. Silaghi, U. Rohde
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引用次数: 1

Abstract

A metamaterial based solution for parallel-plate noise reduction in power planes of digital and mixed-signal fast circuits is presented. The solution consists of embedding a periodic patterned surface between two dielectric layers and two metal planes. The novelty stems from the shape of the metal motif of the patterned surface of the unit cell. In each unit cell nine vias connect the metal patch to the ground; other four posts are posed on the metal patch in order to slow down the electromagnetic waves. The filtering properties of the device are assessed by numerically calculating the dispersion diagrams. Starting from small dimensions (2.5 mm), the device has been sequentially up-scaled until its selective properties met the requirements of the application, i.e. reduction of noise up to 6 GHz. Limits of the electromagnetic band-gaps are reported for various scales.
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用于平行板噪声抑制的新型电磁带隙结构的标度特性研究
提出了一种基于超材料的数字和混合信号快速电路功率平面平行板降噪方案。该解决方案包括在两个介电层和两个金属平面之间嵌入周期性图案表面。新颖性源于单元格表面图案的金属图案的形状。在每个单元单元中,有9个过孔将金属贴片连接到地面;另外四个柱子放在金属贴片上,以减缓电磁波的速度。通过数值计算色散图来评估器件的滤波性能。从小尺寸(2.5 mm)开始,该器件已按顺序放大,直到其选择特性满足应用要求,即降低高达6 GHz的噪声。报告了各种尺度下电磁带隙的极限。
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