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Noncollimating MMW Polyethylene Lens Mitigating Dual-Source Offset From a Tx/Rx WiGig Module

机译:非准直MMW聚乙烯透镜可减轻Tx / Rx WiGig模块的双光源偏移

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The design of a micromachined polyethylene lens for WiGig modules is described and its electromagnetic characteristics are measured. The lens is electromagnetically fed by linearly polarized Tx and Rx patch antennas integrated in an existing ball-grid-array (BGA) organic module. Antennas are separated from each other by a distance of 4.45 mm ( at 60 GHz). The goal of the lens is to increase the gain of each antenna while lowering the beam depointing effect due to their offset position regarding the focal point of the lens. A geometrical optics/physical optics (GO/PO) hybrid method is applied to the design and analysis of the lens shape for noncollimating purpose. Using a lens height of 30 mm for both Tx and Rx antennas, a 13-dBi minimum realized gain from 54 to 66 GHz is obtained. Compared to an elliptical lens providing an equivalent realized gain over the same bandwidth, the depointing angle from the boresight direction is reduced from 15° to 4°. Full-wave simulations are verified by measurements.
机译:描述了用于WiGig模块的微加工聚乙烯透镜的设计,并测量了其电磁特性。透镜由集成在现有球栅阵列(BGA)有机模块中的线性极化Tx和Rx贴片天线电磁供电。天线彼此分开4.45毫米(60 GHz)。透镜的目标是增加每个天线的增益,同时由于其相对于透镜焦点的偏移位置而降低波束指向效果。几何光学/物理光学(GO / PO)混合方法应用于非准直目的镜片形状的设计和分析。对于Tx和Rx天线使用30mm的透镜高度,可以获得从54至66GHz的13-dBi最小实现增益。与在相同带宽上提供等效实现增益的椭圆透镜相比,与视轴方向的指向角从15°减小到4°。通过测量验证了全波模拟。

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