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    • 66. 发明授权
    • Attachment/detachment mechanism for compact antenna
    • 小型天线的安装/拆卸机构
    • US07468701B2
    • 2008-12-23
    • US11551779
    • 2006-10-23
    • Hiroshi FujikawaKeiichi Ogura
    • Hiroshi FujikawaKeiichi Ogura
    • H01Q1/24
    • H01Q1/50H01Q1/084H01Q1/40H01Q9/30
    • An attachment/detachment mechanism for an antenna is configured to avoid damage to the antenna when an excessively large force is applied to the antenna, regardless of the direction. A rotational L-shaped connector of an antenna section of the antenna is connected to an antenna housing disposed on a main electronic device unit. A fitting groove is formed on a male fitting cylinder on the rotational L-shaped connector side, and an O-ring is fitted to the groove. An engagement projection formed on an inner wall of a female fitting cylinder on the antenna housing frictionally engages with the O-ring. This configuration allows rotation and attachment/detachment of the antenna section relative to the antenna housing. A contact member is attached to the fitting cylinder to contact a contact spring 31 that presses the O-ring against the engagement projection.
    • 用于天线的附接/拆卸机构被配置为当对天线施加过大的力而避免对天线的损坏,而不管方向如何。 天线的天线部分的旋转L形连接器连接到设置在主电子设备单元上的天线壳体。 在旋转L形连接器侧的阳配合筒上形成有配合槽,并且在该槽上安装有O形环。 形成在天线壳体上的阴配合筒的内壁上的接合突起与O形环摩擦接合。 该配置允许天线部分相对于天线壳体的旋转和附接/拆卸。 接触构件附接到配件筒以接触将O形环压靠在接合突起上的接触弹簧31。
    • 69. 发明授权
    • Touch panel input device
    • 触摸屏输入设备
    • US07432915B2
    • 2008-10-07
    • US11090509
    • 2005-03-25
    • Osamu Yoshikawa
    • Osamu Yoshikawa
    • G06F3/041
    • G06F3/045G06F3/016G06F3/0416
    • The present invention provides a touch panel input device that reliably prevents degradation of a piezoelectric substrate. During inactive periods in which a touch panel input device is not used, the connection between a set of output terminals of an AC power supply circuit and a set of associated drive electrodes on the piezoelectric substrate is switched with a selector switch so that the drive electrodes are shorted. During inactive periods, no DC potential is applied to the set of drive electrodes even if a charged conductive body comes into contact with the drive electrodes or a drive power source pattern connected thereto. This makes it possible to prevent the degradation of the piezoelectric substrate.
    • 本发明提供可靠地防止压电基板劣化的触摸面板输入装置。 在不使用触摸面板输入装置的非活动期间,通过选择开关切换交流电源电路的一组输出端子与压电基板上的一组相关联的驱动电极之间的连接,使得驱动电极 被短路。 在非活动期间,即使带电导体与驱动电极接触,也不连接到驱动电源图案,也不向驱动电极组施加直流电位。 这使得可以防止压电基板的劣化。
    • 70. 发明申请
    • TOUCH PANEL
    • 触控面板
    • US20080131624A1
    • 2008-06-05
    • US11865939
    • 2007-10-02
    • Takehiro EgamiNaomi Nakayama
    • Takehiro EgamiNaomi Nakayama
    • C09K19/00
    • G06F3/045Y10T428/10
    • A touch panel for use in an ultra-high resolution display includes a transparent film substrate having one surface made of PET or the like and a transparent electrode film made of ITO film or the like that is formed on the transparent film substrate. A surface of the film substrate opposite the surface on which the transparent electrode is formed has a coating layer including a filler. The filler has an average particle size of 0.1 μm to 0.01 μm, and the coating layer is formed to have a surface having arithmetic particle roughness (Ra) of 0.1 μm to 0.01 μm, whereby the Ra of the surface of the coating layer is formed to 1/2000th to 1/4000th of the pixel pitch of a display to which the touch panel is attached.
    • 用于超高分辨率显示器的触摸面板包括具有由PET等制成的一个表面的透明膜基板和形成在透明膜基板上的由ITO膜等构成的透明电极膜。 与形成透明电极的表面相对的膜基板的表面具有包含填料的涂层。 该填料的平均粒径为0.1〜0.01μm,涂层形成为具有0.1μm〜0.01μm的算术粒子粗糙度(Ra)的表面,由此形成涂层表面的Ra 到触摸面板所附接的显示器的像素间距的1/2000 至1/4000