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    • 5. 发明授权
    • Solar ray-collecting device
    • 太阳射线收集装置
    • US4902089A
    • 1990-02-20
    • US255913
    • 1988-10-11
    • Kei Mori
    • Kei Mori
    • G05B19/18F24S23/00F24S23/30G02B3/08G02B6/04G02B6/26G05B19/4093G02B5/172
    • G02B6/262F24J2/067F24J2/085G02B3/08Y02E10/43
    • A solar ray-collecting device comprising a Fresnel lens, an optical coupling made of a tip-cut conical light guide and an optic cable is described. The solar rays focused by the lens are received at the large end of the optical coupling and discharged from the small end of the optical coupling and further guided into the optic cable. The Fresnel lens has a numerical aperture smaller than that of the optic cable. The optical coupling has the light-emitting end with the numerical aperture equal to that of the optic cable so as to eliminate the reflection loss. The light-emitting end of the optical coupling being adhesively joined to the light-receiving end of the optic cable by the use of an optical paste.
    • 描述了包括菲涅耳透镜,由尖端切割锥形光导和光缆制成的光耦合器的太阳射线收集装置。 由透镜聚焦的太阳光线被接收在光耦合器的大端,并从光耦合器的小端部排出并进一步被引导到光缆中。 菲涅尔透镜的数值孔径小于光缆的数值孔径。 光耦合器具有数值孔径等于光缆的发光端,以消除反射损耗。 光耦合器的发光端通过使用光学膏粘接到光缆的光接收端。
    • 7. 发明授权
    • Lens-holding apparatus
    • 镜头保持装置
    • US4846554A
    • 1989-07-11
    • US220633
    • 1988-07-18
    • Kei MoriIsao Kosugi
    • Kei MoriIsao Kosugi
    • G02B7/182F21S11/00F21V8/00F21V17/10F24J2/06F24J2/08F24J2/54G02B6/32G02B7/02
    • F24J2/542F21S11/00F21V17/101F24J2/067F24J2/085G02B6/0006G02B6/32G02B7/02F24J2002/5458Y02E10/43Y02E10/47
    • A lens-holding apparatus used for holding a hexagonal lens and for fixing the light receiving end of an optical conductor at the focal point of the lens includes a frame body having a hexagonal portion on at least a part thereof, a hexagonal lens tightly inserted into the hexagonal portion, and an optical conductor cable fixing mechanism for fixing the light-receiving end of the optical conductor at the focal point of the lens on another portion of the frame body. The hexagonal portion comprises six side surfaces, every other one of which has two slits formed symmetrically in relation to the center line of each side surface in the longitudinal direction for mounting the lens thereon and a tongue piece formed between both slits. The lens is tightly inserted into the hexagonal portion and held therein by means of a tongue piece for pressing the lens.
    • 用于保持六边形透镜并将光导体的光接收端固定在透镜焦点的透镜保持装置包括:在其至少一部分上具有六边形部分的框架体,紧密插入 六边形部分和用于将光导体的光接收端固定在镜片焦点的框架体的另一部分上的光导体电缆固定机构。 六边形部分包括六个侧表面,每个另外一个具有相对于纵向方向上的每个侧表面的中心线对称地形成的两个狭缝,用于将透镜安装在其上,以及形成在两个狭缝之间的舌片。 透镜被紧密地插入到六边形部分中并通过用于按压透镜的舌片保持在其中。
    • 8. 发明授权
    • Solar ray energy radiation device for use in medical treatment
    • 用于医疗的太阳射线能量辐射装置
    • US4844579A
    • 1989-07-04
    • US239051
    • 1988-08-31
    • Kei Mori
    • Kei Mori
    • A61H39/00A61N5/06
    • A61N5/06Y10S385/90
    • A solar ray energy radiation device for use in medical treatment, comprises a transparent or semi-transparent cylindrical member, a cover member for closing off one end surface of the cylindrical member, a covering cap member put on another end of the cylindrical member so as to be removed from and attached to the same, and an optical conductor cable having a light ray emitting end mounted on the cover member. Solar ray energy transmitted through the optical conductor cable is radiated from the light ray emitting end thereof into the cylindrical member and further radiated onto a medical treatment area by bringing the covering cap member into contact with the medical treatment area.
    • 一种用于医疗处理的太阳射线能量辐射装置,包括透明或半透明的圆柱形构件,用于封闭圆柱形构件的一个端面的盖构件,放置在圆柱形构件的另一端上的覆盖帽构件,以便 以及具有安装在盖构件上的光线发射端的光导体电缆。 通过光导体电缆传输的太阳能能量从其光线发射端辐射到圆柱形部件中,并通过使覆盖帽部件与医疗处理区域接触而进一步辐射到医疗处理区域。
    • 9. 发明授权
    • Optical radiator
    • 光散热器
    • US4822123A
    • 1989-04-18
    • US661872
    • 1984-10-17
    • Kei Mori
    • Kei Mori
    • F21S11/00F21V8/00G02B6/00G02B6/04G02B5/14
    • G02B6/001F21S11/00G02B6/0001Y10S359/90
    • An optical radiator for diffusingly radiating sunlight emitted from an optical-conductor cable for the purpose of illumination. In order to illuminate a sufficiently wide region surrounding the optical-conductor cable, a cladding layer of the optical-conductor cable located in the region to be illuminated is excised, and the outer surface of the thus exposed core of the optical-conductor cable is topically covered by a fine grain adhesive with a refractive index equal to or greater than that of said core. The resulting adhesive elements are relatively densely distributed toward a downstream direction and thinly distributed upstream, or the adhering area of the elements is selected to be smaller upstream and larger downstream.
    • 一种用于散射辐射由光导体电缆发出的太阳辐射用于照明的光辐射器。 为了照亮光导体电缆周围的足够宽的区域,切除位于被照射区域内的光导体电缆的包覆层,并且将由此露出的光导体电缆芯的外表面 由具有等于或大于所述芯的折射率的细粒粘合剂局部覆盖。 所得到的粘合剂元件朝向下游方向相对密集地分布并且薄层地分布在上游,或者元件的粘附面积被选择为更小的上游和更大的下游。