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    • 13. 发明授权
    • Method of reproducibly making fiber optic coupler
    • 可重复制造光纤耦合器的方法
    • US4902324A
    • 1990-02-20
    • US223423
    • 1988-07-25
    • William J. MillerCarlton M. Truesdale
    • William J. MillerCarlton M. Truesdale
    • C03B37/15G02B6/28
    • G02B6/2835C03B37/15
    • A fiber optic coupler is formed by providing a glass tube having a longitudinal aperture extending therethrough. Glass optical fibers, each having a core, cladding and coatng are disposed within the longitudinal aperture, the fibers extending beyond each end thereof. The coating is removed from that portion of the fibers in the midregion of the tube but remains on that portion of the fibers extending into the ends of the apertures. The aperture is formed by a plurality of flattened walls, the dimensions and orientations of which are such that the cross-section of the aperture in the central region of the tube is symmetrical with respect to a plane passing through the longitudinal axis of the tube. At any cross-section of the aperture that is adjacent the coated regions of the fibers, each fiber coating contacts two walls of the aperture. The fibers are held taut to effect a tension therein, and the midregion of the tube is heated, collapsed about the fibers, and drawn to reduce the diameter thereof over a predetermined length.
    • 通过提供具有延伸穿过其中的纵向孔的玻璃管形成光纤耦合器。 每个具有芯,包层和涂层的玻璃光纤设置在纵向孔内,纤维延伸超过其每端。 从管的中间区域的纤维的该部分去除涂层,但是保留在延伸到孔的端部的纤维的那部分上。 孔由多个扁平的壁形成,其尺寸和取向使得管的中心区域中的孔的横截面相对于穿过管的纵向轴线的平面对称。 在与纤维的涂覆区域相邻的孔的任何横截面处,每个纤维涂层接触孔的两个壁。 纤维被拉紧以在其中产生张力,并且管的中间区域被加热,围绕纤维折叠,并被拉伸以将其直径减小预定长度。
    • 19. 发明授权
    • Method of making fiber optic coupler
    • 制造光纤耦合器的方法
    • US5009692A
    • 1991-04-23
    • US477494
    • 1990-02-09
    • William J. MillerCarlton M. Truesdale
    • William J. MillerCarlton M. Truesdale
    • C03B37/15G02B6/28
    • G02B6/2835C03B37/15
    • A fiber optic coupler is formed by providing a glass tube having a longitudinal aperture. Glass optical fibers, each having a core, cladding and coating are disposed within the longitudinal aperture, the fibers extending beyond each end of the tube. The coating is removed from that portion of the fibers in the midregion of the tube but remains on that portion of the fibers extending into the ends of the apertures. The aperture is formed by a plurality of flattened walls, the dimensions and orientations of which are such that the cross-section of the aperture in the central region of the tube is symmetrical with respect to a plane passing through the longitudinal axis of the tube. At any cross-section of the aperture that is adjacent the coated regions of the fibers, each fiber coating contacts two walls of the aperture. The fibers are held taut to effect a tension, and the midregion of the tube is heated, collapsed about the fibers, and drawn to reduce the diameter thereof over a predetermined length. At least one of the ends of the tube is then heated and treated with glue so that the glue is drawn into the aperture as the end of the tube cools.
    • 通过提供具有纵向孔径的玻璃管来形成光纤耦合器。 每个具有芯,包层和涂层的玻璃光纤设置在纵向孔内,纤维延伸超过管的每一端。 从管的中间区域的纤维的该部分去除涂层,但是保留在延伸到孔的端部的纤维的那部分上。 孔由多个扁平的壁形成,其尺寸和取向使得管的中心区域中的孔的横截面相对于穿过管的纵向轴线的平面对称。 在与纤维的涂覆区域相邻的孔的任何横截面处,每个纤维涂层接触孔的两个壁。 纤维被拉紧以产生张力,并且管的中间区域被加热,围绕纤维折叠,并被拉伸以将其直径减小预定长度。 然后将管的至少一个端部加热并用胶进行处理,使得当管的端部冷却时,胶被拉入孔中。