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    • 9. 发明申请
    • METHOD AND APPARATUS FOR IMPROVED FIBER OPTIC LIGHT MANAGEMENT
    • 改进光纤光控管理方法与装置
    • WO1997034175A1
    • 1997-09-18
    • PCT/US1997004365
    • 1997-03-13
    • VISIONEX, INC.
    • VISIONEX, INC.WACH, Michael, LeonardMARPLE, Eric, Todd
    • G02B06/24
    • G02B6/29368G01N21/474G01N21/65G01N21/7703G01N2021/656G02B6/02052G02B6/04G02B6/241
    • Improved techniques for manipulation and management of fiber optic light. An improved fiber optic probe assembly for low light spectrographic analysis improves response to subtle light-matter interactions of high analytical importance and reduces sensitivity to otherwise dominant effects. This is accomplished by adjusting the illumination and collection fields of view in order to optimize the probe's sensitivity. Light manipulation is applied internal to the fiber so that the probe's delivery pattern and field of view do not require external manipulation and are not adversely affected by investigated media. This allows the light delivery pattern or field of view or both to be aggressively steered off-axis to achieve significant increased performance levels. Aggressive beam steering is accomplished by employing internally reflective surfaces in the fiber. A reflective metal coating or low refractive index coatings or encapsulants can be used to ensure total internal reflection. The fibers also incorporate filters, cross-talk inhibitors and other features that provide a high performance probe in a robust package. Design variations provide side viewing, viewing through a common aperture, viewing along a common axis, and other features.
    • 改进的光纤操纵和管理技术。 用于低光谱分析的改进的光纤探针组件改善了对高分析重要性的微妙的光物质相互作用的响应,并降低了对其他主导效应的敏感性。 这是通过调整照明和收集视野来实现的,以优化探头的灵敏度。 在光纤内部应用光线操纵,使得探头的输送模式和视场不需要外部操作,并且不受被调查介质的不利影响。 这允许光输送模式或视野或两者被积极地转向离轴以实现显着提高的性能水平。 通过在光纤中采用内部反射表面来实现积极的光束转向。 可以使用反射金属涂层或低折射率涂层或密封剂来确保全内反射。 纤维还结合了过滤器,串扰抑制剂以及其它特征,可在坚固的包装中提供高性能探针。 设计变化提供侧面观看,通过公共孔径观察,沿着公共轴线观看以及其他特征。
    • 10. 发明申请
    • OPTICAL FIBER CONNECTOR
    • 光纤连接器
    • WO1997008575A1
    • 1997-03-06
    • PCT/JP1996002357
    • 1996-08-23
    • FUJIKURA LTD.TAMAKI, YasuhiroTANAKA, ToshiyukiNISHIMURA, AkitoYOSHIDA, YuichiYOKOSUKA, Hiroshi
    • FUJIKURA LTD.
    • G02B06/24
    • G02B6/3806G02B6/3837
    • An optical fiber connector (1) includes a base (2) and a cover (3) that together constitute an element (1A) of a two-split structure which forms a substantial rod when unified, a spring (4) incorporating this base and cover and exerting a pressing force to them to bring them into pressure contact with each other, and an aligning mechanism (8) for aligning optical fibers and holding them in a butt connection, disposed on at least either of the opposed surfaces (5) of the base and the cover or between them. In a mode where the element is fitted into a cylindrical spring (4) having a C-shaped cross section, the optical fibers are inserted from both ends of the element into the aligning mechanism and are butt-connected. When a wedge is fitted into a wedge insertion groove (25) formed between the base and the cover, the element is opened; when the wedge is removed, the element closed. Therefore, clamping and clamp-releasing of the optical fibers are effected by merely operating the wedge, and the connection can be easily changed. When an aligning groove (8) having a depth deep enough to provide a clearance between the base and cover when the optical fibers are clamped is made as the aligning mechanism, the aligning accuracy of the optical fibers is improved. By using a cover of a split structure comprising a center cover (17) corresponding to the aligning groove and end covers (18) corresponding to the other portions, excellent effects such as improvement of the aligning accuracy and stability of the clamping and the increase of the pull-out resistance of the optical fibers clamped are achieved.
    • 一种光纤连接器(1)包括基部(2)和盖(3),它们一起构成一体的两分割结构的元件(1A),其形成实质的杆;弹簧(4),其包括该基座和 覆盖并向其施加压力使它们彼此压力接触;以及对准机构(8),用于对准光纤并将其保持在对接连接中,设置在至少任一相对表面(5)上 基座和盖子或它们之间。 在将元件装配到具有C形横截面的圆柱形弹簧(4)的模式中,将光纤从元件的两端插入到对准机构中并对接。 当楔形件装配到形成在基座和盖子之间的楔形插入槽(25)中时,元件被打开; 当楔子被移除时,元件关闭。 因此,通过仅操作楔子来实现光纤的夹紧和夹紧释放,并且可以容易地改变连接。 当将光纤夹持时具有足够深度以提供基座和盖之间的间隙的对准槽(8)作为对准机构时,光纤的对准精度提高。 通过使用分割结构的盖,其包括对应于对准槽的中心盖(17)和对应于其它部分的端盖(18),优良的效果如提高对准精度和夹紧稳定性以及增加 实现了夹持的光纤的拉出电阻。