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    • 2. 发明专利
    • Treatment device for pain in lower back or chill due to aging
    • 用于疼痛的治疗装置在下降或由于老化引起的死亡
    • JP2008212610A
    • 2008-09-18
    • JP2007096827
    • 2007-03-06
    • Kaoru MakitaYoshio Makita義夫 蒔田薫 蒔田
    • MAKITA YOSHIOMAKITA KAORU
    • A61F7/08
    • PROBLEM TO BE SOLVED: To provide a treatment device for eliminating pain in the lower back which people tend to have when getting aged.
      SOLUTION: Pain in the lower back is mainly caused by a chill caught in sleep due to cold air penetrating from a gap between the quilt and the sleeping mat. A blanket in a rectangular form cut in size of about two-thirds of the waist measurement around the lower back is sewn with a lower part of an upper piece of nightwear to form a chill preventing member of highly heat insulating material attached to the nightwear around the lower back. The chill preventing member is formed light in such material or structure as to let moist through, but not heat. It may be used as attached to the nightwear in the form of a vest, for example.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供一种治疗装置,用于消除老年人倾向于患上下背部的疼痛。

      解决方案:下背部的疼痛主要是由于寒冷的空气从被子和睡垫之间的间隙穿透而引起的寒冷引起的。 围绕下背部的大约三分之二腰围测量的矩形切割的毯子被缝制在上部睡衣的下部,以形成附着在围巾周围的高度隔热材料的防寒部件 下背。 防寒构件以这样的材料或结构形成光,使其湿透,但不加热。 例如,它可以以背心的形式附着在睡衣上。 版权所有(C)2008,JPO&INPIT

    • 7. 发明授权
    • Hermetic container and a supporting member for the same
    • 密封容器和支撑构件相同
    • US5899350A
    • 1999-05-04
    • US12574
    • 1998-01-23
    • Shigeo ItohYoshio MakitaKenichi HondaTatsuo Yamaura
    • Shigeo ItohYoshio MakitaKenichi HondaTatsuo Yamaura
    • H01J29/87H01J1/52H01J3/18H01J5/03H01J7/18H01J29/02H01J29/06H01J29/62H01J29/82H01J29/94H01J31/12H01K1/36
    • H01J29/82H01J29/028H01J31/127H01J2329/8625
    • A hermetic container which can improve its stress resistance and its buckling strength and prevent deformation due to the atmospheric pressure. The space between the anode substrate and the cathode substrate in the hermetic container can be stably maintained. Anode conductors and fluorescent substance layers are formed on the inner surface of the anode substrate. Electron sources are formed on the inner surface of the cathode substrate so as to confront the corresponding display portions on the anode substrate. In order to complete a container, the anode substrate is spaced from the cathode substrate a predetermined distance apart and the fringe portions of the substrates are sealed. A supporting member is disposed in the container. The supporting member 15 consists of a plate in which plural through holes are formed at predetermined intervals and reinforcing supports which are respectively inserted into the through holes of the plate and of which the middle portions are bonded at the inlets of the through holes. Each reinforcing support has one end in contact with an inner surface of the anode substrate and the other end in contact with an inner surface of the cathode substrate. Each reinforcing support maintains the gap between the anode substrate and the cathode substrate at a fixed distance.
    • 一种密封容器,可以提高其耐应力和翘曲强度,并防止由于大气压引起的变形。 可以稳定地保持密封容器中的阳极基板和阴极基板之间的空间。 在阳极基板的内表面上形成阳极导体和荧光物质层。 电子源形成在阴极基板的内表面上,以便与阳极基板上的对应的显示部分相对。 为了完成容器,阳极基板与阴极基板隔开预定距离,并且基板的边缘部分被密封。 支撑构件设置在容器中。 支撑构件15包括一个板,其中以预定间隔形成多个通孔,并且加强支撑件分别插入到板的通孔中,并且中间部分在通孔的入口处接合。 每个加强支撑件的一端与阳极基板的内表面接触,另一端与阴极基板的内表面接触。 每个加强支撑件以固定的距离保持阳极基板和阴极基板之间的间隙。
    • 9. 发明授权
    • Mechanism and method for automatically transferring support pillars
    • 自动转移支柱的机理和方法
    • US06220913B1
    • 2001-04-24
    • US09247084
    • 1999-02-09
    • Yoshio MakitaNobuhiko TakashimaKatsunosuke OzawaTatsuo YamauraSatoshi YoshikataMasayuki Itakura
    • Yoshio MakitaNobuhiko TakashimaKatsunosuke OzawaTatsuo YamauraSatoshi YoshikataMasayuki Itakura
    • H01J900
    • H01J9/242H01J2329/8625
    • An automatic support pillar transfer mechanism is provided that enables an enlarged transfer range, reduced produce failure and mass-production. The touch sensors 17a to 7c are arranged on the moving section 12 to measure the plane orientation of the surface of the jig 7. The jig adjusting section 6 is driven based on the measurement results on the plane orientations of surfaces of the jig 7 to adjust the surface of the jig 7 in parallel. With plural support pillars 15 sucked and held at predetermined intervals by the jig 7 adjusted in parallel, the bonding agent coated substrate 14 attached on the moving section 12 is descended to coat the bonding agent 13 onto the one ends of the support pillars 15. The substrate 16 to which the support pillars 15 are transferred is attached to the moving section 12. Variations in plane orientation of surfaces of the substrate 16 are respectively measured by means of the touch sensors 5a to 5c. The jig adjusting section 6 is driven according to the variations in plane orientation of the surfaces of the substrate 16. With the surface of the jig 7 arranged in parallel to the surface of the substrate 16, the moving section 12 is descended to transfer the support pillars 15 onto the surface of the substrate 16.
    • 提供了一种自动支撑柱传送机构,其能够扩大传送范围,减少产品故障和批量生产。 触摸传感器17a〜7c配置在移动部12上,测定夹具7的表面的面取向。夹具调整部6基于夹具7的表面的面取向的测定结果进行驱动, 夹具7的表面平行。 通过平行调整的夹具7以预定的间隔吸附并保持多个支撑柱15,附着在移动部12上的粘合剂涂布基板14下降以将粘合剂13涂覆在支撑柱15的一端上。 支撑柱15被传送到的基板16被附接到移动部分12.基板16的表面的平面取向的变化分别通过触摸传感器5a至5c来测量。 根据基板16的表面的平面取向的变化来驱动夹具调整部6.随着夹具7的表面与基板16的表面平行地配置,移动部12下降以将支撑体 支柱15到基板16的表面上。