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    • 7. 发明授权
    • Connecting device for connecting at least two optical waveguides, in particular optical waveguides of different refractive index
    • 用于连接至少两个光波导的连接装置,特别是具有不同折射率的光波导
    • US06744952B2
    • 2004-06-01
    • US10068302
    • 2002-02-08
    • Noboru KobayashiSteffen ReichelMatthias Brinkmann
    • Noboru KobayashiSteffen ReichelMatthias Brinkmann
    • G02B626
    • G02B6/262G02B6/241
    • In order to produce an improved coupling between waveguides of different refractive indexes, provision is made of a connecting device for connecting at least two optical waveguides (5, 6), in the case of which a first optical waveguide (5) is held relative to a second optical waveguide (6), an end face (7, 71, 72) of the first waveguide (5) running obliquely to the optical axis (11) of the first waveguide (5), and an end face (8, 81, 82) of the second waveguide (6) running obliquely to the optical axis of the second waveguide (6). In this case, the refractive index of at least one light-guiding region of the first optical waveguide (5) differs from the refractive index of a light-guiding region of the second optical waveguide (6), and the optical axes of the first and the second optical waveguides (5, 6) are arranged substantially parallel to one another.
    • 为了在不同折射率的波导之间产生改进的耦合,提供了用于连接至少两个光波导(5,6)的连接装置,在第一光波导(5)保持相对于 第二光波导(6),与第一波导(5)的光轴(11)倾斜地延伸的第一波导(5)的端面(7,71,72)和端面(8,81 ,82),所述第二波导(6)倾斜地延伸到所述第二波导(6)的光轴。 在这种情况下,第一光波导(5)的至少一个导光区域的折射率与第二光波导(6)的导光区域的折射率不同,第一光导体 并且第二光波导(5,6)基本上彼此平行地布置。
    • 9. 发明授权
    • Process for the production of an optical lens
    • 制造光学透镜的方法
    • US08025818B2
    • 2011-09-27
    • US12700022
    • 2010-02-04
    • Jochen AlkemperJoe HaydenJosé ZimmerFrank-Thomas LentesSteffen ReichelUlrich Peuchert
    • Jochen AlkemperJoe HaydenJosé ZimmerFrank-Thomas LentesSteffen ReichelUlrich Peuchert
    • B29D11/00
    • G02B3/00G02B5/1852G02B5/1857G02B5/1895G02B27/4211
    • The invention relates to an optical hybrid lens. According to the invention, the lens consists of a substrate (1) that consists of a ceramic having a predetermined shape and at least another material (2), which covers a surface of the substrate (1) at least in certain sections in order to form a lens surface.Use of an optical ceramic as a material enables an additional degree of freedom for adjusting the imaging properties of the hybrid lens. The optical ceramic may have a high refractive index and a low dispersion. The other material can be a material that can be deformed or recast at temperatures that are low in comparison to those of the optical ceramic. In particular the other material can be a low-TG glass or a polymer. The other material is directly applied onto the substrate without a further surface finishing being necessarily required.Other aspects of the invention relate to an optical lens group, an optical image acquisition device, and a process for manufacturing a hybrid lens.
    • 本发明涉及一种光学混合透镜。 根据本发明,透镜包括由具有预定形状的陶瓷和至少另一材料(2)组成的基底(1),其至少在某些部分覆盖基底(1)的表面,以至 形成透镜表面。 使用光学陶瓷作为材料能够提供用于调整混合透镜的成像特性的附加自由度。 光学陶瓷可以具有高折射率和低色散。 另一种材料可以是在与光学陶瓷的温度相比较低的温度下可以变形或重铸的材料。 特别地,其它材料可以是低TG玻璃或聚合物。 另一种材料直接施加到基材上,而不需要进一步的表面处理。 本发明的其他方面涉及一种光学透镜组,光学图像采集装置和用于制造混合透镜的工艺。