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    • 1. 发明授权
    • Optical pickup device and method for manufacturing the same
    • 光拾取装置及其制造方法
    • US08565060B2
    • 2013-10-22
    • US13613154
    • 2012-09-13
    • Rika NomuraHidenao SaitoYoshiro Konishi
    • Rika NomuraHidenao SaitoYoshiro Konishi
    • G11B7/00
    • G11B7/082G11B7/1374G11B7/22
    • The invention provides an optical pickup device that ensures complete curing of adhesive when a tilt adjusting holder is glued to an objective lens holder. The optical pickup device comprises: a light source; an objective lens for focusing light emitted from the light source onto an optical storage medium; a tilt adjusting holder to which to secure the objective lens; and an objective lens holder to which to glue the tilt adjusting holder. The objective lens holder includes: adhesive joint sections for securing the tilt adjusting holder to the objective lens holder using an adhesive; a seat section on which the tilt adjusting holder abuts; and adhesive anti-overflow pockets, located between the adhesive joint sections and the seat section, for receiving the adhesive when the adhesive flows from the adhesive joint sections.
    • 本发明提供了一种光学拾取装置,当倾斜调节支架粘合到物镜支架上时,确保了粘合剂的完全固化。 光拾取装置包括:光源; 用于将从光源发射的光聚焦到光学存储介质上的物镜; 倾斜调节保持器,用于固定物镜; 以及用于粘合倾斜调节支架的物镜支架。 物镜支架包括:用于使用粘合剂将倾斜调节支架固定到物镜支架上的粘合接合部分; 倾斜调节支架邻接的座部; 以及位于粘合接合部和座部之间的粘合剂防溢出袋,用于当粘合剂从粘合剂接合部流动时接收粘合剂。
    • 2. 发明申请
    • Optical Pickup Device and Method for Manufacturing the Same
    • 光学拾取装置及其制造方法
    • US20130163400A1
    • 2013-06-27
    • US13613154
    • 2012-09-13
    • Rika NomuraHidenao SaitoYoshiro Konishi
    • Rika NomuraHidenao SaitoYoshiro Konishi
    • G11B7/1374G11B7/22
    • G11B7/082G11B7/1374G11B7/22
    • The invention provides an optical pickup device that ensures complete curing of adhesive when a tilt adjusting holder is glued to an objective lens holder. The optical pickup device comprises: a light source; an objective lens for focusing light emitted from the light source onto an optical storage medium; a tilt adjusting holder to which to secure the objective lens; and an objective lens holder to which to glue the tilt adjusting holder. The objective lens holder includes: adhesive joint sections for securing the tilt adjusting holder to the objective lens holder using an adhesive; a seat section on which the tilt adjusting holder abuts; and adhesive anti-overflow pockets, located between the adhesive joint sections and the seat section, for receiving the adhesive when the adhesive flows from the adhesive joint sections.
    • 本发明提供了一种光学拾取装置,当倾斜调节支架粘合到物镜支架上时,确保了粘合剂的完全固化。 光拾取装置包括:光源; 用于将从光源发射的光聚焦到光学存储介质上的物镜; 倾斜调节保持器,用于固定物镜; 以及用于粘合倾斜调节支架的物镜支架。 物镜支架包括:用于使用粘合剂将倾斜调节支架固定到物镜支架上的粘合接合部分; 倾斜调节支架邻接的座部; 以及位于粘合接合部和座部之间的粘合剂防溢出袋,用于当粘合剂从粘合剂接合部流动时接收粘合剂。
    • 7. 发明申请
    • OPTICAL PICKUP DEVICE
    • 光学拾取器件
    • US20080087802A1
    • 2008-04-17
    • US11843681
    • 2007-08-23
    • YOSHIO OZEKIHiroaki FuruichiRika NomuraKazuyuki FukudaTaketoshi Moriyama
    • YOSHIO OZEKIHiroaki FuruichiRika NomuraKazuyuki FukudaTaketoshi Moriyama
    • G02B27/00
    • G02B7/025G11B7/135G11B7/22
    • In an optical pickup device, a side surface parallel in the optical axis direction of an optical component is respectively fixed with an adhesive at wall surfaces (internal walls) provided opposing with each other of an accommodation case. In a part of the wall surfaces of the accommodation case, a recessed channel to be filled with the adhesive is formed. The recessed channel is provided with a stepped portion along the optical axis of the optical component at the wall surfaces of the accommodation case. A gap between the relevant side surfaces and the side surface of the optical component is formed to be reduced symmetrically toward both end portions from the center in the optical axis direction of the optical component. Accordingly, bonding strength is never lowered and position of the optical pickup device is stably maintained in an optical system.
    • 在光学拾取装置中,在光学部件的光轴方向上平行的侧面分别由粘合剂固定在彼此相对设置的容纳壳体的壁面(内壁)上。 在容纳壳体的壁面的一部分中,形成要填充有粘合剂的凹陷通道。 凹陷通道在容纳壳体的壁表面处沿着光学部件的光轴设置有台阶部分。 光学部件的相关侧面和侧面之间的间隙形成为从光学部件的光轴方向的中心向两端部对称地减小。 因此,粘合强度不会降低,并且光学拾取装置的位置在光学系统中稳定地保持。
    • 9. 发明授权
    • Connection structure of flexible printed circuits and optical pickup device
    • 柔性印刷电路和光学拾取装置的连接结构
    • US08675458B2
    • 2014-03-18
    • US12898757
    • 2010-10-06
    • Rika NomuraHiroaki FuruichiEiji TsubonoShoji Matsumoto
    • Rika NomuraHiroaki FuruichiEiji TsubonoShoji Matsumoto
    • G11B7/00H05K1/00
    • G11B7/22H05K3/363H05K2203/167
    • In connecting flexible printed circuits, a structure with improved connection strength of the connection portion is provided. In this structure in which a first flexible printed circuit and a second flexible printed circuit are connected to each other, a through-hole is provided on the second flexible printed circuit, and a resin member passes through the through-hole and is adhered to the wires of a connection surface of the first flexible printed circuit and the side of the second flexible printed circuit opposite to the connection surface, whereby impact is absorbed by the elasticity of the resin; as for the first flexible printed circuit, adhesion is performed on a metal in a wiring layer with high adhesion strength, while as for the second flexible printed circuit, adhesion is performed on the back side upon which no peeling stress is exerted, improving joining strength to prevent peeling.
    • 在连接柔性印刷电路时,提供了具有连接部分的连接强度提高的结构。 在第一柔性印刷电路和第二柔性印刷电路彼此连接的结构中,在第二柔性印刷电路上设置通孔,树脂部件穿过通孔并粘附到 第一柔性印刷电路的连接表面与第二柔性印刷电路的与连接表面相对的一侧的电线,由此冲击被树脂的弹性吸收; 对于第一柔性印刷电路,对具有高粘附强度的布线层中的金属进行粘合,而对于第二柔性印刷电路,在不产生剥离应力的背面进行粘合,提高接合强度 防止剥离。