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    • 4. 发明授权
    • Spray quantity control nozzle for aerosol container
    • 用于气溶胶容器的喷雾量控制喷嘴
    • US5918780A
    • 1999-07-06
    • US800539
    • 1997-02-18
    • Shin Tanaka
    • Shin Tanaka
    • B65D83/14B65D83/16B65D83/20
    • B65D83/44B65D83/20B65D83/205B65D83/206B65D83/22
    • A spray quantity control nozzle for use in an aerosol container wherein spray quantities of the contents of the aerosol container can be adjusted in two stages as increased or reduced corresponding to specific depression depths of a nozzle body, and a depressible depth H1 of the nozzle body for a smaller spray quantity and that H2 for a larger spray quantity can be surely set, the spray quantity control nozzle comprising a mounting part mounted on a mouth of the aerosol container and the nozzle body fit onto a projecting part of a valve stem of a flow control valve, the nozzle body being connected to the mounting part through a first molded hinge, a movable leaf being connected to the mounting part through a second molded hinge, so that a depressible depth of the nozzle body becomes smaller when the movable leaf is stood up into its working posture, and becomes larger with the movable leaf falling down in its withdrawal posture.
    • 一种用于气溶胶容器的喷雾量控制喷嘴,其中喷雾容器的内容物的喷雾量可以根据喷嘴体的特定凹陷深度增加或减少两个阶段进行调节,并且喷嘴体的可压下的深度H1 为了更小的喷雾量,并且可以可靠地设定用于较大喷雾量的H 2,喷雾量控制喷嘴包括安装在气溶胶容器的口部上的安装部分和装配在喷嘴体的阀杆的突出部分上的喷嘴体 流量控制阀,喷嘴体通过第一模制铰链连接到安装部分,可动叶片通过第二模制铰链连接到安装部件,使得当活动叶片为可动叶片时,喷嘴体的可压缩深度变小 站立起来的工作姿势,随着活动叶片退出姿势的下降而变大。
    • 7. 发明申请
    • VISUAL FIELD EXAMINATION SYSTEM
    • 视场检测系统
    • US20130148081A1
    • 2013-06-13
    • US13817884
    • 2010-08-24
    • Shin TanakaSatoshi Shimada
    • Shin TanakaSatoshi Shimada
    • A61B3/10
    • A61B3/102A61B3/024A61B3/12
    • A stimulus is presented at a predetermined position of a visual field coordinate system set on a visual field dome (118). When measuring the visual field of an eye under examination, quantitative information of a three-dimensional retinal layer structure is acquired that is obtained by means for detecting a range of disappearance of a peak in the reflectance distribution of the retina obtained by a retinal OCT scan. The position of the fovea of the fundus is identified from the three-dimensional retinal layer structure. From the positional relationship with the identified fovea, it is identified to which position in a two-dimensional fundus image the range of disappearance of the peak corresponds. The position corresponding to the range where the peak disappears is marked on the two-dimensional fundus image, and the marked region is detected. A visual field examination region including visual field examination points to be presented on the visual field dome is generated on the basis of the position of the marked region. The visual field examination points in the visual field examination region are presented to the subject using the visual field dome to perform a visual field examination for the eye under examination.
    • 在设置在视场圆顶(118)上的视场坐标系的预定位置处呈现刺激。 当测量检查眼睛的视野时,获取三维视网膜层结构的定量信息,其通过用于检测通过视网膜OCT扫描获得的视网膜的反射分布中的峰消失范围而获得 。 从三维视网膜层结构识别眼底中央凹的位置。 根据与所识别的中央凹的位置关系,识别二维眼底图像中哪个位置的峰值消失范围对应。 对应于峰值消失的范围的位置标记在二维眼底图像上,并且检测标记区域。 根据标记区域的位置产生包括视场圆顶上的视场检查点的视场检查区域。 使用视野圆顶将视野检查区域的视野检查点呈现给对象,对被检眼进行视野检查。
    • 9. 发明授权
    • External electrode fluorescent lamp and manufacturing method of the same
    • 外部电极荧光灯及其制造方法相同
    • US07956542B2
    • 2011-06-07
    • US12423191
    • 2009-04-14
    • Ryousuke MatsuzakiSeiichirou FujiokaShin Tanaka
    • Ryousuke MatsuzakiSeiichirou FujiokaShin Tanaka
    • H01J17/44
    • H01J65/046H01J9/142H01J61/0675
    • An external electrode fluorescent lamp includes a glass tube made of soft glass, and external electrodes affixed to outer surfaces of both ends of the glass tube. The fluorescent lamp further includes a joining material applied between at least the glass tube and the external electrodes for affixing the external electrodes, which are made up of a material having a thermal expansion coefficient that is larger than that of the glass tube. According to the manufacturing method of the fluorescent lamp, first, the external electrodes are attached to the outer surface of each end of the glass tube, the external electrodes are then immersed in fused solder, and finally, the glass tube is cooled to room temperature. In this manner, the external electrodes are affixed to the outer surface of the glass tube via soldering.
    • 外部电极荧光灯包括由软玻璃制成的玻璃管和固定在玻璃管两端的外表面的外部电极。 荧光灯还包括施加在至少玻璃管和外部电极之间用于固定外部电极的接合材料,外部电极由热膨胀系数大于玻璃管的热膨胀系数的材料构成。 根据荧光灯的制造方法,首先,将外部电极安装在玻璃管的各端的外表面,然后将外部电极浸入熔融焊料中,最后将玻璃管冷却至室温 。 以这种方式,外部电极通过焊接固定在玻璃管的外表面上。