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首页> 外文期刊>IEEE sensors journal >Development of a Flexible Tunable and Compact Microstrip Antenna via Laser Assisted Patterning of Copper Film
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Development of a Flexible Tunable and Compact Microstrip Antenna via Laser Assisted Patterning of Copper Film

机译:通过激光辅助图案化铜膜的柔性可调和紧凑型微带天线的研制

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摘要

Design and rapid prototyping of a tunable and compact microstrip antenna for industrial, scientific and medical (ISM) band applications is presented in this paper. Laser machining is introduced as a fast and accurate method for the antenna fabrication. The antenna, with an overall dimension of 65 x 46 x 0.127 mm, was fabricated by sandwiching a flexible Kapton polyimide substrate, with a dielectric constant of 3.5, between two flexible copper tapes, as the radiating patch and ground plane, respectively. The radiating patch was patterned in a meander configuration, with three slots, demonstrating the capability to reduce the resonant frequency of the microstrip antenna from 2.4 GHz to 900 MHz, without increasing the overall size of the antenna (87% compact). The effect of mechanical stress on the antenna performance was investigated by performing bend and stretch tests. The antenna was subjected to compressive bend with a minimum radius of curvature of 86 mm and 150 mm along the x-axis and y-axis which resulted in a maximum increase of resonant frequency by 3.1% and 1.3%, respectively. Similarly, the antenna was subjected to tensile bend with a minimum radius of curvature of 79 mm and 162 mm along the x-axis and y-axis which resulted in a maximum decrease of the resonant frequency by 4.2% and 0.3%, respectively. An overall 0.9% decrease in the resonant frequency was measured for an applied strain of 0.09% during stretching the antenna along the y-axis.
机译:本文介绍了工业,科学和医疗(ISM)频段应用的可调和紧凑型微带天线的设计和快速原型。引入激光加工作为天线制造的快速准确的方法。通过将柔性的Kapton聚酰亚胺基板夹在两个柔性铜带之间,作为介电常数,作为辐射贴片和接地平面,通过将柔性Kapton聚酰亚胺基板夹在35×46×0.127mm的天线。辐射贴片以曲折配置图案化,具有三个槽,证明了将微带天线的谐振频率从2.4GHz降低到900 MHz的能力,而不会增加天线的整体尺寸(87%结构紧凑)。通过进行弯曲和拉伸试验研究了机械应力对天线性能的影响。将天线与沿X轴和y轴的最小曲率半径为86mm和150mm的压缩弯曲,导致谐振频率的最大增加分别为3.1%和1.3%。类似地,沿X轴和Y轴的曲率为79mm和162mm的最小曲率半径,将天线与x轴和y轴的曲率半径进行拉伸弯曲,导致谐振频率的最大降低分别为4.2%和0.3%。在沿着Y轴拉伸天线期间,测量谐振频率的总体上的0.9%的谐振频率降低。

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