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    • 1. 发明专利
    • Block puzzle
    • 块拼图
    • JP2006230968A
    • 2006-09-07
    • JP2005078063
    • 2005-02-19
    • Hideyuki Yamada秀幸 山田
    • YAMADA HIDEYUKI
    • A63H33/04
    • PROBLEM TO BE SOLVED: To provide a puzzle which needs high-level thinking ability by combination of blocks constituted by combination of cubes. SOLUTION: It is possible to generate a rectangular parallelepiped without gaps on its side faces by the combination of one kind of blocks of the same shape consisting of the combination of the cubes. Thus, the puzzle is useful for intellectual training for improving thinking ability and makes it possible to enjoy it as a puzzle. COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供通过组合由立方体组合的块组合而需要高级思维能力的谜题。 解决方案:通过由立方体的组合组成的一种相同形状的块的组合,可以在其侧面上产生无间隙的长方体。 因此,这个难题对于提高思维能力的智力培训是有用的,并且可以将其作为一个难题而享受。 版权所有(C)2006,JPO&NCIPI
    • 5. 发明授权
    • Transparent electrically conductive film and process for producing the same
    • 透明导电膜及其制造方法
    • US07883837B2
    • 2011-02-08
    • US11918700
    • 2006-04-18
    • Kohei YamadaHidekazu ShiomiHideyuki Yamada
    • Kohei YamadaHidekazu ShiomiHideyuki Yamada
    • G03F1/00H01L21/00
    • H05K9/0096B32B27/00H05K3/185H05K2203/0565H05K2203/1415
    • This invention provides a transparent electrically conductive film, which, while maintaining the light transparency of a transparent film, has excellent electrical conductivity, can be utilized for electromagnetic wave shielding, and does not cause inclusion of air bubbles in the lamination onto other base material, and a process for producing the same. The production process comprises the steps of forming a large number of concaves and convexes having an average height of not more than 0.1 μm on both sides or one side of a transparent film, forming a resist layer having a pattern shape opposite to the electrically conductive part in the electrically conductive film on the transparent film on its concave-convex side, applying a catalyst for plating onto the resist layer-formed face, separating the resist layer, forming a metal layer by plating, and blackening the metal layer, the metal layer satisfying 1≦W/T≦500 wherein W represents the width of the metal layer and T represents the height of the metal layer.
    • 本发明提供了一种透明导电膜,其在保持透明膜的透光性的同时具有优异的导电性,可用于电磁波屏蔽,并且不会在叠层到其它基材上引起气泡, 及其制造方法。 制造方法包括在透明膜的两面或一侧形成平均高度不大于0.1μm的大量凹凸的步骤,形成具有与导电部分相对的图案形状的抗蚀剂层 在透明膜的凹凸侧的导电膜中,在抗蚀剂层形成面上涂布电镀用催化剂,分离抗蚀剂层,通过电镀形成金属层,使金属层变黑,金属层 满足1≦̸ W / T≦̸ 500其中W表示金属层的宽度,T表示金属层的高度。
    • 8. 发明申请
    • Transparent electrically conductive film and process for producing the same
    • 透明导电膜及其制造方法
    • US20090042150A1
    • 2009-02-12
    • US11918700
    • 2006-04-18
    • Kohei YamadaHidekazu ShiomiHideyuki Yamada
    • Kohei YamadaHidekazu ShiomiHideyuki Yamada
    • G03C1/74G03C1/00
    • H05K9/0096B32B27/00H05K3/185H05K2203/0565H05K2203/1415
    • This invention provides a transparent electrically conductive film, which, while maintaining the light transparency of a transparent film, has excellent electrical conductivity, can be utilized for electromagnetic wave shielding, and does not cause inclusion of air bubbles in the lamination onto other base material, and a process for producing the same. The production process comprises the steps of forming a large number of concaves and convexes having an average height of not more than 0.1 μm on both sides or one side of a transparent film, forming a resist layer having a pattern shape opposite to the electrically conductive part in the electrically conductive film on the transparent film on its concave-convex side, applying a catalyst for plating onto the resist layer-formed face, separating the resist layer, forming a metal layer by plating, and blackening the metal layer, the metal layer satisfying 1≦W/T≦500 wherein W represents the width of the metal layer and T represents the height of the metal layer.
    • 本发明提供了一种透明导电膜,其在保持透明膜的透光性的同时具有优异的导电性,可用于电磁波屏蔽,并且不会在叠层到其它基材上引起气泡, 及其制造方法。 制造方法包括以下步骤:在透明膜的两侧或一侧形成平均高度不大于0.1μm的大量凹凸,形成具有与导电部分相对的图案形状的抗蚀剂层 在透明膜的凹凸侧的导电膜中,在抗蚀剂层形成面上涂布电镀用催化剂,分离抗蚀剂层,通过电镀形成金属层,使金属层变黑,金属层 满足1 <= W / T <= 500其中W表示金属层的宽度,T表示金属层的高度。
    • 9. 发明申请
    • SEMICONDUCTOR LASER MODULE
    • 半导体激光模块
    • US20080166085A1
    • 2008-07-10
    • US11967287
    • 2007-12-31
    • Akihiro ItoYusuke KuriharaJunichi ShimizuHideyuki Yamada
    • Akihiro ItoYusuke KuriharaJunichi ShimizuHideyuki Yamada
    • G02B6/26
    • G02B6/421G02B6/32G02B6/4207
    • A receptacle type semiconductor laser module (TOSA) includes a semiconductor laser, a lens, and a fiber stub. The fiber stub has a slantwise cut surface to which a emission light emitted from the semiconductor laser and passing through the lens is incident. The cut surface is arranged in a position deviated from the focus of the lens in the direction of the optical axis of the fiber stub. The semiconductor laser module further includes a fixed optical attenuator arranged on a path of an emission light of the semiconductor laser and having an incident surface being oblique to an optical axis of the semiconductor laser. By such a configuration, a coupling fluctuation caused by an eccentricity of the optical fiber cord connected to the fiber stub and a near-end reflection can be suppressed.
    • 插座型半导体激光器模块(TOSA)包括半导体激光器,透镜和光纤短截线。 纤维短截线具有从半导体激光器发射并通过透镜的发射光入射到其上的倾斜切割表面。 切割面配置在从光纤焦点的光轴方向偏离透镜的焦点的位置。 半导体激光器模块还包括固定光衰减器,其布置在半导体激光器的发射光的路径上并具有与半导体激光器的光轴倾斜的入射表面。 通过这样的结构,可以抑制由连接到光纤短截线的光纤线的偏心引起的耦合波动和近端反射。