Žemgulytė Justina, Sadauskas Modestas, Ragulis Paulius, Trusovas Romualdas, Ratautas Karolis, Simniškis Rimantas, Kancleris Žilvinas, Račiukaitis Gediminas
Department of Physical Technologies, Center for Physical Sciences and Technology, Sauletekio Ave. 3, 10257, Vilnius, Lithuania.
Department of Laser Technologies, Center for Physical Sciences and Technology, Sauletekio Ave. 3, 10257, Vilnius, Lithuania.
Sci Rep. 2023 Dec 15;13(1):22510. doi: 10.1038/s41598-023-49726-6.
This study investigates antenna performance based on its manufacturing process. Two types of planar antennas are manufactured on FR-4 dielectric using three different techniques: traditional lithography, laser ablation, and the novel SSAIL (selective surface activation by laser) technique. Various characteristics, such as reflection coefficient, gain, half-power beamwidth, and surface conductivity, are measured to compare the results. These findings offer invaluable insights for choosing the most suitable antenna manufacturing technique, particularly since the SSAIL technique has not been previously compared to alternative methods in the context of antenna production. In both types of antennas, the highest gain is achieved using laser ablation, with the slot-loaded patch antenna reaching 8.5 dBi and the Yagi-Uda antenna reaching 9.76 dBi. Antennas manufactured using SSAIL technology are notable for their excellent resolution and usefulness in constructing structures on non-metallized dielectrics.
本研究基于天线的制造工艺来研究其性能。使用三种不同技术在FR - 4介质上制造了两种类型的平面天线:传统光刻技术、激光烧蚀技术和新型的SSAIL(激光选择性表面激活)技术。测量了诸如反射系数、增益、半功率波束宽度和表面电导率等各种特性以比较结果。这些发现为选择最合适的天线制造技术提供了宝贵的见解,特别是因为此前尚未在天线生产的背景下将SSAIL技术与其他方法进行比较。在这两种类型的天线中,使用激光烧蚀获得了最高增益,缝隙加载贴片天线达到8.5 dBi,八木 - 宇田天线达到9.76 dBi。使用SSAIL技术制造的天线以其出色的分辨率以及在非金属化介质上构建结构的实用性而著称。