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122 GHz Aperture-Coupled Mushroom EBG Antenna in LTCC Technology

机译:LTCC技术中的122 GHz孔径耦合蘑菇EBG天线

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This paper presents two variants of a Mushroom Electromagnetic Bandgap (MEBG)-based antenna with an extremely thin antenna substrate, yet a high bandwidth-efficiency product. An MEBG unit cell (UC) exhibits two interesting electromagnetic (EM) properties, namely, it shows a strong compression of resonance frequencies and it acts as a high impedance surface in specific frequency bands, thereby transforming surface waves into space waves. The EM properties of an MEBG UC are optimized around 122 GHz by simulating its dispersion diagram. Thereafter, a 4×4 and 6×6 matrix of the optimized MEBG UCs are used to form two multilayered antennas in Low Temperature Co-fired Ceramic (LTCC) technology. Both antennas are fed using aperture coupling and a stripline-to-grounded coplanar waveguide signal transition. Simulation and probe-based measurement results of the antennas are presented between 110 and 150 GHz.
机译:本文介绍了基于蘑菇电磁带隙(MEBG)的天线的两种变体,该天线具有极薄的天线基板,但具有高带宽效率。 MEBG晶胞(UC)具有两个有趣的电磁(EM)特性,即,它显示出对共振频率的强烈压缩,并且在特定频带中充当高阻抗表面,从而将表面波转换为空间波。通过模拟其色散图,可在122 GHz左右优化MEBG UC的EM特性。此后,在低温共烧陶瓷(LTCC)技术中,将经过优化的MEBG UC的4×4和6×6矩阵用于形成两个多层天线。使用孔径耦合和带状线到地面的共面波导信号过渡为两个天线供电。天线的仿真和基于探头的测量结果显示在110至150 GHz之间。

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