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Hard plastic cladding fiber (HPCF) based optical components for high speed short reach optical communications

机译:基于硬的塑料包层(HPCF)的光学元件,用于高速短达光学通信

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We developed the primary components applicable to HPCF links for short reach (SR) and very short reach (VSR) data communication systems. We fabricated 4x4 HPCF fused taper splitter, HPCF pigtailed VCSEL and PIN photodiode for high speed short reach communications and characterized back to back transmission performance of the link composed of these components by measuring eye diagrams and jitters. Adapting the fusion-tapering technique for glass optical fiber, we successfully fabricated a 4x4 HPCF fused taper coupler. The HPCF with a core diameter of 200μm and an outer diameter of 230μm had step refractive index of 1.45 and 1.40 for the core and the clad. The optimized fusion length and tapering waist which make minimum insertion loss of about 7dB and uniform output power splitting ratio with less than 0.5dB are 13mm and 150μm, respectively. As a light source for VSR networks, we chose a vertical cavity surface emitting laser (VCSEL) and developed a package with a HPCF pigtail. After positioning VCSEL and HPCF that made a minimum coupling loss, we glued the HPCF inside ceramic ferrule housing. In HPCF-PIN PD packaging, we added a micro polymer lens tip onto the HPCF ends to match the mode field area to the sensitive area of GaAs or InGaAs PIN PD. Coupling between a PIN PD chip and the lensed HPCF was optimized with the radius of curvature of 156μm with a low coupling loss of 0.3dB, which is compatible to conventional MMF-PD packaging. For 1.25 Gbps data rate, the eyes adequate to eye mask in gigabit Ethernet were wide open after all HPCF transmission link and no significant power penalty was observed.
机译:我们开发了适用于短程(SR)的HPCF链路的主要组件,以及非常短的范围(VSR)数据通信系统。我们制造了4x4 HPCF熔断圆锥分路器,HPCF尾页VCSEL和PIN光电二极管,用于高速短路通信,并通过测量眼图和抖动,返回由这些组件组成的链路的送视性能。采用玻璃光纤的融合技术,我们成功地制造了4×4 HPCF熔融锥形耦合器。芯直径为200μm的HPCF和230μm的外径具有1.45和1.40的步进折射率,用于核心和包层。优化的熔化长度和锥形腰部,使最小插入损耗约为7dB和均匀的输出功率分裂比,分别为13mm和150μm。作为VSR网络的光源,我们选择了垂直腔表面发射激光器(VCSEL)并开发出具有HPCF辫子的包装。定位VCSEL和HPCF的最低耦合损耗后,我们将HPCF粘合在陶瓷套圈外壳内。在HPCF引脚PD封装中,我们将微聚合物透镜尖端添加到HPCF末端,以将模式场区域与GaAs或IngaAs引脚PD的敏感区域匹配。销PD芯片和透镜HPCF之间的耦合与156μm的曲率半径优化,具有0.3dB的低耦合损耗,其与传统的MMF-PD包装相容。对于1.25 Gbps数据速率,在所有HPCF传输链路和未观察到显着的功率损失后,眼睛在千兆以太网中足以对眼罩充足的眼睛。

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