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An Optically Invisible Antenna-on-Display Concept for Millimeter-Wave 5G Cellular Devices

机译:毫米波5G蜂窝设备的光学不可见天线显示概念

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This paper proposes the novel concept of an optically invisible antenna built using photolithography that can be integrated in active display panels such as organic light emitting diodes and liquid crystal displays. Represented as antenna-on-display (AoD), this proposed approach is exemplified for future millimeter-wave (mmWave) 5G cellular devices. Empirical examinations confirm that the devised diamond-grid-shaped 2000 A-thick Ag-alloy electrodes on a glass substrate feature electrical loss characteristics of approximately 0.4 dB/mm at 28 GHz amid 88% optical transparency. Using the aforementioned material, a transparent diamond-grid antenna element is formulated and verified. Complete optical invisibility is achieved by implementing identical dummy grids around the antenna region. A multilayer schematic is designed in order to expand the antenna element into a phased-array configuration. The designed and fabricated 1 x 8 optically invisible AoD exhibits 6.66 dBi boresight gain at 28 GHz while maintaining 88% optical transparency. This gain includes 1.5 dB feedline loss and approximately 4 dB anisotropic conductive film (ACF) bonding loss. Current challenges include the immaturity of the ACF bonding process and the gain degradation caused by the dummy grids, and these need to be addressed to further improve the presented AoD concept. Nonetheless, this paper aims to serve as a foremost example for future optically invisible AoD.
机译:本文提出了一种使用光刻技术构建的光学不可见天线的新颖概念,该天线可以集成在有源显示面板(例如有机发光二极管和液晶显示器)中。表示为显示天线(AoD),此提议的方法以未来的毫米波(mmWave)5G蜂窝设备为例。经验检查证实,在玻璃基板上设计的菱形网格形状的2000 A厚的Ag合金电极在88%的光学透明性下,在28 GHz时具有约0.4 dB / mm的电损耗特性。使用上述材料,配制并验证了透明的菱形格栅天线元件。通过在天线区域周围实施相同的虚拟栅格,可以实现完全的光学不可见性。设计了多层示意图,以将天线元件扩展为相控阵配置。设计和制造的1 x 8光学不可见AoD在28 GHz时具有6.66 dBi的视轴增益,同时保持88%的光学透明度。该增益包括1.5 dB的馈线损耗和大约4 dB的各向异性导电膜(ACF)粘结损耗。当前的挑战包括ACF键合工艺的不成熟以及虚设栅极引起的增益降低,​​这些问题需要加以解决,以进一步改善现有的AoD概念。尽管如此,本文旨在作为未来光学上不可见的AoD的最重要的例子。

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