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Integrated Connector for Silicon Photonic Co-package Optics with Strain Relief Accommodation Through Fiber Bending

机译:用于硅光子共包光学器件的集成连接器,通过纤维弯曲具有应变消除舒适度

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Automated fiber to V/U-groove assemblies offer a robust and cost-effective solution to interface single mode fibers to silicon photonic integrated circuits; however, the handling and assembly of long pigtails attached to photonic packages pose significant challenges. An integrated high-bandwidth optical connector with a latching mechanism secured to the module could eliminate these packaging challenges and provide an attractive alternative for photonic products. A multi-fiber interface integrating a standard single mode fiber mechanical transfer connector to a co-package photonics module is studied here. The geometric configuration exploits the fiber bending to accommodate the strain and control the stress at both anchor points throughout temperature excursions. We demonstrate the benefits of using fibers longer than 25mm for the selected configuration. A fiber exit angle of a few degrees can provide some advantages in controlling the fiber buckling direction and reducing the fiber pistoning. It may however, along with other factors, be detrimental to the internal stress at reflow temperatures.
机译:自动光纤到V / U形槽组件提供了一种坚固且经济高效的解决方案,可以将单模纤维接口到硅光子集成电路;然而,连接到光子封装的长猪尾的处理和组装构成了重大挑战。具有固定到模块的锁定机构的集成高带宽光学连接器可以消除这些封装挑战并为光子产品提供有吸引力的替代方案。在此研究将标准单模光纤机械传输连接器集成到共封装光子模块的多光纤接口。几何构造利用光纤弯曲以容纳应变并在整个温度偏移中控制两个锚点的应力。我们展示了使用长度为25mm的纤维的益处,用于所选配置。几度纤维出射角可以提供一些在控制纤维弯曲方向并减少光纤活塞的一些优点。然而,它可以与其他因素一起对回流温度的内应力有害。

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