首页> 外文会议>Active and Passive Optical Components for Communications VI >Precisely positioned light-induced self-written (LISW) polymeric optical waveguide for optical transceiver module fabrication
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Precisely positioned light-induced self-written (LISW) polymeric optical waveguide for optical transceiver module fabrication

机译:精确定位的光感应自写(LISW)聚合物光波导,用于光收发器模块的制造

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摘要

Plastic optical fibers (POFs) are beginning to replace electrical wiring in many automotive and home applications. In view of this, we have reported the inexpensive wavelength-division-multiplexing (WDM) device for POF system using the LISW waveguide. The LISW waveguides are an attractive and a low-cost process for realizing self alignment between a POF and a waveguide. In this study, we have investigated about the method for precisely aligned LISW polymeric optical waveguides by using an "optical solder" effect. The "optical solder" effect makes it possible to realize a waveguide connection between two faced optical fibers by radiating from both sides even if a significant gap and a small degree of misalignment exist. When we utilize POFs with core diameters of 700μm, waveguides are combinable on the condition that an offset is 700 μm or less and a gap is from 6mm to 13mm. By applying this effect, we fabricated precisely positioned LISW waveguides for optical devices. The fiber ends were set at certain mounting positions with respect to the LEDs and PDs. And we evaluated the positioning accuracy. The resulting positional accuracy at the extremities of the optical waveguides is less than one-tenth of the optical fiber core diameter. This value is sufficiently accurate to realize passive alignment. And this result creates new possibilities for boosting the yield of optical modules in mass-production.
机译:在许多汽车和家庭应用中,塑料光纤(POF)开始取代电线。鉴于此,我们已经报道了使用LISW波导的POF系统的廉价波分复用(WDM)设备。 LISW波导是实现POF与波导之间自对准的一种有吸引力且低成本的过程。在这项研究中,我们研究了通过使用“光学焊料”效应精确对准LISW聚合物光波导的方法。即使存在较大的间隙和较小的未对准程度,“光学焊料”效应也可以通过从两侧辐射来实现两面光纤之间的波导连接。当我们使用芯直径为700μm的POF时,可以在偏移量为700μm或更小且间隙为6mm至13mm的条件下组合波导。通过应用这种效果,我们制造了用于光学设备的精确定位的LISW波导。光纤端相对于LED和PD设置在某些安装位置。并且我们评估了定位精度。在光波导的末端产生的位置精度小于光纤芯直径的十分之一。该值足够精确以实现被动对准。这一结果为在批量生产中提高光学模块的产量创造了新的可能性。

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