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    • 2. 发明授权
    • Arrangement for aligning the light beam paths of a group of laser diodes on a common spot, especially for providing pumping light for a solid state laser
    • 用于将一组激光二极管的光束路径对准在公共点上的布置,特别是用于为固态激光器提供泵浦光
    • US06501781B1
    • 2002-12-31
    • US09372303
    • 1999-08-11
    • Dieter MaurerLars Bartelt-BergerHeiner HauerAlbrecht KukeEberhard Moess
    • Dieter MaurerLars Bartelt-BergerHeiner HauerAlbrecht KukeEberhard Moess
    • H01S3091
    • H01S5/02252H01S5/02284H01S5/02288H01S5/02292H01S5/4012
    • The arrangement focuses a combined laser beam (33) composed of individual laser beams produced by laser diodes (2) on a common spot. Prismatic reflecting bodies (7,8) are arranged in depressions (11,12) provided in a common substrate (1) between parallel rows (R1,R2; R3,R4) of the laser diodes (2). Each reflecting body (7,8) has oppositely inclined reflecting surfaces arranged on opposite sides thereof for deflection of the individual laser beams from the two adjacent rows of laser diodes. Two cylindrical lenses (9) are arranged on opposite sides of each reflecting body (7,8) between the laser diodes and the reflective surfaces to convert elliptical remote fields of the laser beams into circularly symmetric remote fields. Laterally movable focusing lenses (14) for each individual laser beam are arranged on the reflecting bodies (7,8) between the common spot and the reflecting surfaces for individual adjustment of the laser beams, whereby the combined laser beam (33) is focussed on the common spot.
    • 该布置将由激光二极管(2)产生的单个激光束组成的组合激光束(33)聚焦在公共点上。 棱镜反射体(7,8)布置在设置在激光二极管(2)的平行列(R1,R2; R3,R4)之间的共同衬底(1)中的凹陷(11,12)中。 每个反射体(7,8)具有相对倾斜的反射表面,其布置在其相对侧上,用于偏转来自两个相邻行的激光二极管的各个激光束。 两个柱面透镜(9)被布置在激光二极管和反射表面之间的每个反射体(7,8)的相对侧上,以将激光束的椭圆形远场转换成圆对称的远场。 用于每个单独的激光束的用于每个单独的激光束的侧向可移动的聚焦透镜(14)被布置在公共光斑和反射表面之间的反射体(7,8)上,用于单独调节激光束,由此将组合的激光束(33)聚焦在 共同点。
    • 5. 发明授权
    • Laser module including grooved silicon substrate, isolator and optical
fiber
    • 激光模块包括开槽硅衬底,隔离器和光纤
    • US5566264A
    • 1996-10-15
    • US519663
    • 1995-08-25
    • Albrecht KukeEberhard Moess
    • Albrecht KukeEberhard Moess
    • G02B6/36G02B6/42H01S5/022G02B6/30H01S3/08
    • G02B6/423G02B6/4208H01S5/02296H01S5/005H01S5/0064H01S5/02252
    • The laser module couples its semiconductor laser to an optical device, e.g. an optical fiber, particularly a monomode fiber. The laser module includes a micromechanically structured silicon substrate (31) provided with an elongated groove (30) having a longitudinal axis by an anisotropic etching technique; a semiconductor laser (110) mounted on the silicon substrate (31) to emit light parallel to the longitudinal axis of the elongated groove; an optical coupling device including an isolator (10) positioned on the silicon substrate (31) so that light from the semiconductor laser (110) passes therethrough and a sealed housing (50) inside of which the silicon subtrate (31), the semiconductor laser (110) and the isolator are contained. At least a portion of the optical components mounted in the elongated groove and not rotationally symmetrical with respect to forward light transmission properties are each provided with at least one flat edge surface (210,210') bearing on an anisotropically etched wall of the elongated groove (30).
    • 激光模块将其半导体激光器耦合到光学器件,例如, 光纤,特别是单模光纤。 激光器模块包括具有通过各向异性蚀刻技术具有纵向轴线的细长槽(30)的微机械结构的硅衬底(31) 半导体激光器(110),其安装在所述硅基板(31)上以发射与所述细长槽的纵向轴线平行的光; 一种光耦合装置,包括位于硅衬底(31)上的隔离器(10),使得来自半导体激光器(110)的光通过其中,并且密封壳体(50)内部具有硅残渣(31),半导体激光器 (110)和隔离器。 安装在细长槽中而不是相对于向前光透射特性旋转对称的光学部件的至少一部分分别设置有至少一个平坦边缘表面(210,210'),该平坦边缘表面(210,210')承载在细长槽(30)的各向异性蚀刻壁 )。
    • 10. 发明授权
    • Bonding method using fast hardening UV adhesive and slower hardening adhesive
    • 使用快速固化的UV粘合剂和较慢硬化粘合剂的粘合方法
    • US06238508B1
    • 2001-05-29
    • US09420857
    • 1999-10-19
    • Heiner HauerAlbrecht KukeMatthias Mauritz
    • Heiner HauerAlbrecht KukeMatthias Mauritz
    • B32B3128
    • C09J5/06C08L63/00C09J2463/00H05K3/305Y10T29/4913
    • In the method of bonding two parts (1,2) together a positioning device (3) accurately positions the two parts (1,2) relative to each other and a comparatively slower hardening adhesive layer (4) is applied between the two parts (1,2) to bond the two parts (1,2) together. After the adhesive layer (4) is applied and the parts positioned, a faster hardening UV adhesive (5) is applied on adjacent edge regions of the two parts (1,2) over an edge of the slower hardening adhesive layer (4), so that the faster hardening UV adhesive (5) is accessible for UV irradiation. Subsequently the faster hardening UV adhesive (5) is hardened with the UV radiation and the positioning device (3) is removed from the parts (1,2) which are held fixed in a provisional manner. Then the slower hardening adhesive layer (4) is hardened preferably in an oven that can be used for a large number of similar pairs of parts.
    • 在将两部分(1,2)结合在一起的方法中,定位装置(3)相对于彼此精确地定位两个部分(1,2),并且在两个部分之间施加相对较慢的硬化粘合剂层(4) 1,2)将两部分(1,2)结合在一起。 在施加粘合剂层(4)并且部件定位之后,在较硬硬化粘合剂层(4)的边缘上的两个部分(1,2)的相邻边缘区域上施加较快硬化的UV粘合剂(5) 以便更快地固化UV粘合​​剂(5)可用于紫外线照射。 随后,UV固化剂(5)用UV辐射硬化,并且定位装置(3)从暂时保持固定的部件(1,2)上移除。 然后,较慢固化的粘合剂层(4)优选在可用于大量相似成对部件的烘箱中硬化。