Monolithic Two-Dimensional Optical Fiber Array

    公开(公告)号:US20180074266A1

    公开(公告)日:2018-03-15

    申请号:US15813432

    申请日:2017-11-15

    Abstract: A two-dimensional (2D) optical fiber array component takes the form of a (relatively inexpensive) fiber guide block that is mated with a precision output element. The guide block and output element are both formed to include a 2D array of through-holes that exhibit a predetermined pitch. The holes formed in the guide block are relatively larger than those in precision output element. A loading tool is used to hold a 1×N array of fibers in a fixed position that exhibits the desired pitch. The loaded tool (holding the pre-aligned 1×N array of fibers) is then inserted through the aligned combination of the guide block and output element, and the fiber array is bonded to the guide block. The tool is then removed, re-loaded, and the process continued until all of the 1×N fiber arrays are in place. By virtue of using a precision tool to load the fibers, the guide block does not have to be formed to exhibit precise through-hole dimensions, allowing for a relatively inexpensive guide block to be used.

    Monolithic two-dimensional optical fiber array

    公开(公告)号:US09846280B2

    公开(公告)日:2017-12-19

    申请号:US15011370

    申请日:2016-01-29

    Abstract: A two-dimensional (2D) optical fiber array component takes the form of a (relatively inexpensive) fiber guide block that is mated with a precision output element. The guide block and output element are both formed to include a 2D array of through-holes that exhibit a predetermined pitch. The holes formed in the guide block are relatively larger than those in precision output element. A loading tool is used to hold a 1×N array of fibers in a fixed position that exhibits the desired pitch. The loaded tool (holding the pre-aligned 1×N array of fibers) is then inserted through the aligned combination of the guide block and output element, and the fiber array is bonded to the guide block. The tool is then removed, re-loaded, and the process continued until all of the 1×N fiber arrays are in place. By virtue of using a precision tool to load the fibers, the guide block does not have to be formed to exhibit precise through-hole dimensions, allowing for a relatively inexpensive guide block to be used.

    AXIAL ALIGNMENT OF A LENSED FIBER IN A SILICA V-GROOVE
    6.
    发明申请
    AXIAL ALIGNMENT OF A LENSED FIBER IN A SILICA V-GROOVE 审中-公开
    二氧化硅V型玻璃中的透镜纤维的轴向对准

    公开(公告)号:US20160341919A1

    公开(公告)日:2016-11-24

    申请号:US15136229

    申请日:2016-04-22

    Abstract: A v-groove assembly is used to edge couple a lensed fiber (e.g., an optical fiber made of silica) with a waveguide in a photonic chip. The v-groove assembly is made from fused silica. Fused silica is used to so that an adhesive (e.g., epoxy resin) used in bonding the lensed fiber to the v-groove assembly and/or bonding the v-groove assembly to the photonic chip can be cured, at least partially, by light.

    Abstract translation: V沟槽组件用于将透镜光纤(例如,由二氧化硅制成的光纤)与光子芯片中的波导连接。 V型槽组件由熔融二氧化硅制成。 使用熔融二氧化硅使得用于将透镜纤维粘合到V形槽组件和/或将V形槽组件粘合到光子芯片上的粘合剂(例如,环氧树脂)可以至少部分地被光固化 。

    OPTICAL SYSTEM WITH INTEGRATED PHOTODETECTOR USING A SELF-ALIGNED DOUBLE U-GROOVE STRUCTURE
    10.
    发明申请
    OPTICAL SYSTEM WITH INTEGRATED PHOTODETECTOR USING A SELF-ALIGNED DOUBLE U-GROOVE STRUCTURE 有权
    使用自对准双U型结构的集成光电转换器的光学系统

    公开(公告)号:US20130330034A1

    公开(公告)日:2013-12-12

    申请号:US13494803

    申请日:2012-06-12

    Abstract: An optical system includes a silicon substrate, a 45-degree or 54.7-degree reflector formed in the silicon substrate, deeply etched double U-shape trenches formed in the silicon substrate, a thin film disposed on the reflector surface with total or partial optical refection, a top and bottom surface contacted p-i-n structure formed in the silicon substrate for optical power monitoring, a plurality of rectangular or wedge shaped spacers formed on top surface of the silicon substrate, and a surface emitting light source flip-chip bonded on the silicon substrate via the spacers.

    Abstract translation: 光学系统包括硅衬底,形成在硅衬底中的45度或54.7度反射器,形成在硅衬底中的深刻蚀刻的双U形沟槽,设置在反射器表面上的薄膜,具有全部或部分光学反射 ,形成在用于光功率监测的硅衬底中的顶部和底部表面接触的针结构,形成在硅衬底的顶表面上的多个矩形或楔形间隔件和接合在硅衬底上的表面发射光源倒装芯片 通过间隔件。

Patent Agency Ranking