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Investigation of environmental reliability of optical polymer waveguides embedded on printed circuit boards

机译:嵌入印刷电路板上的光学聚合物波导的环境可靠性研究

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In this paper, the effects of environmental stresses on the properties of polymeric optical waveguides were investigated. Optical multimode waveguides were embedded on printed circuit boards by employing commercial polymers. Three optical-PCB constructions varying in board structure and in optical build-up materials were compared. The guide systems were subjected to four different tests: damp heat-high humidity, isothermal annealing, thermal shock and environmental flowing multigas test. Isothermal annealing reduced the refractive index to greatest extent. The optical-PCB structure with optical surface build-up layer was observed to be more vulnerable under temperature shock when compared with the O-PCB with optical inner layer. The buffer layer beneath the optical build-up was found to improve the stability of the optical waveguides significantly. The results indicated of a wavelength dependence to the aging factor with a failure mechanism. The factors affecting the performance and reliability of polymer-based optical waveguides on PCBs were discussed.
机译:在本文中,研究了环境应力对聚合物光波导性能的影响。通过使用商业聚合物将光学多模波导嵌入印刷电路板上。比较了三种光学PCB构造,其板结构和光学堆积材料各不相同。引导系统经受了四个不同的测试:湿热-高湿度,等温退火,热冲击和环境流动的多气体测试。等温退火最大程度地降低了折射率。与具有光学内层的O-PCB相比,具有光学表面堆积层的光学PCB结构在温度冲击下更易损坏。发现在光学结构下面的缓冲层可以显着提高光波导的稳定性。结果表明,波长与衰老因子的关系取决于失效机理。讨论了影响PCB上基于聚合物的光波导的性能和可靠性的因素。

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