ANISOTROPIC CONDUCTOR, METHOD FOR MANUFACTURING ANISOTROPIC CONDUCTOR, AND ANISOTROPIC CONDUCTOR ARRANGEMENT SHEET
    5.
    发明公开
    ANISOTROPIC CONDUCTOR, METHOD FOR MANUFACTURING ANISOTROPIC CONDUCTOR, AND ANISOTROPIC CONDUCTOR ARRANGEMENT SHEET 有权
    各向异性HEAD,METHOD FOR各向异性导电体与安排各向异性梯子制作及电影

    公开(公告)号:EP2461426A1

    公开(公告)日:2012-06-06

    申请号:EP10813641.7

    申请日:2010-08-25

    发明人: NAKAONE Yutaka

    摘要: To provide a technique by which a material exhibiting high adhesiveness to objects to be fixed can be selected regardless of a material used for an insulating base in an anisotropic conductor having an adhesive section. An intermediate sheet 14 which can be attached to the base 12 is provided between the base 12 and adhesive section 15. Since the intermediate sheet 14 is provided in this manner, adhesive materials that exhibit high adhesive force to objects to be fixed can be used for the adhesive section 15 without the consideration for adhesive force to the base 12. Furthermore, adhesive force which cannot be exhibited between the adhesive section 15 and the base 12 in the case of direct contact of the adhesive section 15 with the base 12 can be exhibited.

    摘要翻译: 以提供由这表现出高粘合性对象被固定的材料,可以不考虑用于在上上具有粘合部各向异性导电体在绝缘性基体的材料中选择的技术。 15.可连接到在基座12和粘合部之间12由于中间片14以这种方式设置在基座的中间片14,粘合材料也显示出高的粘合力,以对象为固定可用于 而不考虑粘合部15粘合力于基座12进一步,粘合力不能粘合剂部15和与基部的粘接部分15的直接接触的情况下,基座12之间发挥12可以表现出 ,

    Key input device
    10.
    发明公开
    Key input device 审中-公开
    输入键盘

    公开(公告)号:EP1361503A3

    公开(公告)日:2010-12-29

    申请号:EP03009649.9

    申请日:2003-04-30

    IPC分类号: G06F3/023 G06K11/18

    摘要: A key input device in which an input key(12,30,42,50) is oscillated with respect to an opposing surface (22, 59) facing a bottom portion(14a,32a,46a,51a) thereof and in which depression of the opposing surface(22,59) with the input key(12,30,42,50) at a normal operating point(16a∼16d) situated above a contact portion (22a∼22d, 59a∼59d, 60a∼60d) of a board (22, 58) causes the input key(12,30,42,50) to tilt in a normal oscillating direction(21a∼21d) to effect input at the contact portion(22a∼22d,59a∼59d,60a∼60d). Either the bottom portion(14a,32a,46a,51a) of the input key(12,30,42,50) or the opposing surface(22,59) is equipped with guide protrusions(20a∼20d,25a∼25d,34a∼34d,47a∼47d,54a∼54d, 63a∼63d) arranged symmetrically with respect to an imaginary line(21a∼21d) extending along the normal oscillating direction(21a∼21d) of the input key(12,30,42,50). Depression of the opposing surface(22,59) with the input key(12,30,42,50) at an erroneous operating point deviated from the normal operating point(16a∼16d) results in the guide protrusions(20a∼20d,25a∼25d,34a∼34d,47a∼47d,54a∼54d,63a∼63d) guiding the input key(12,30,42,50) to tilt in the normal oscillating direction(21a∼21d) while abutting either the bottom portion(14a,32a,46a,51a) of the input key(12,30,42,50) or the opposing surface(22,59).