会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 4. 发明申请
    • LASER BEAM ENERGY STABILIZING APPARATUS, PULSE TEMPORAL WAVEFORM CONTROL APPARATUS, LASER BEAM ENERGY STABILIZING METHOD, AND PULSE TEMPORAL WAVEFORM CONTROL METHOD
    • 激光束能量稳定装置,脉冲时间波形控制装置,激光束能量稳定方法和脉冲时间波形控制方法
    • US20130170513A1
    • 2013-07-04
    • US13821716
    • 2011-09-02
    • Shigeki Matsuo
    • Shigeki Matsuo
    • H01S3/13
    • H01S3/1308G02F1/3511G02F2203/26H01S3/005H01S3/0092H01S3/1306
    • The present invention provides a laser beam control apparatus including: beam optical systems 33 and 34 for dividing a laser beam into a principal beam P and an auxiliary beam S and then for crossing the principal beam P and the auxiliary beam S; polarizing devices 36 and 37 for converting the laser beam before the division process into a linearly-polarized beam or converting the laser beams after the division process into linearly-polarized beams; a polarization direction change element 38 for changing the polarization direction of either one or both of the principal beam P and the auxiliary beam S; an optical gate element 35 provided at the intersection of the principal beam P and the auxiliary beam S and made of a material that exhibits the optical Kerr effect; and a polarization filter 39 for taking out from the principal beam P which has passed through the optical gate element 35 only a beam polarized in a predetermined direction.
    • 本发明提供一种激光束控制装置,包括:用于将激光束分成主光束P和辅助光束S然后用于与主光束P和辅助光束S交叉的光束光学系统33和34; 用于将分割处理之前的激光束转换为线偏振光束或将分割处理后的激光束转换为线偏振光束的偏振装置36和37; 用于改变主光束P和辅助光束S中的一个或两个的偏振方向的偏振方向改变元件38; 光栅元件35,设置在主光束P和辅助光束S的交点处,并由表现出光克尔效应的材料制成; 以及用于从已经通过光栅元件35的主光束P仅取出沿预定方向偏振的光束的偏振滤光器39。
    • 6. 发明授权
    • Electrodeless discharge lamp
    • 无电极放电灯
    • US07728500B2
    • 2010-06-01
    • US11571208
    • 2004-11-24
    • Hiroshi OgasawaraHidenori KakehashiRyusuke UraHiroshi MiyasakiKeisuke HaradaYoshinobu ShibataShigeki MatsuoKazuhiko Sakai
    • Hiroshi OgasawaraHidenori KakehashiRyusuke UraHiroshi MiyasakiKeisuke HaradaYoshinobu ShibataShigeki MatsuoKazuhiko Sakai
    • H01J1/62
    • H01J65/048H01J5/60
    • In an electrodeless discharge lamp suitable for use at a place with unfavorable environmental conditions or at a place where lamp replacement is difficult, the replacement of a lamp unit is facilitated and the lamp unit is prevented from falling off from a power coupler unit even if there is component deterioration caused by long-term use. A metallic elastic member is provided near a position on a metallic heat conduction member of the power coupler unit that is farthest from an electromagnetic field generating portion. In addition to an ordinary coupling structure between the power coupler unit and a coupling member, the elastic member is engaged with the coupling member of the lamp unit. When the lamp unit is mounted on or removed from the power coupler unit, a bulb of the lamp unit is turned relative to the power coupler unit about the axis and moved forward/backward in the direction of the axis. This causes the elastic member to be elastically deformed by the coupling member and engaged to or separated from a coupling portion provided at the coupling member.
    • 在适用于不利环境条件的地方或难以更换灯泡的地方的无电极放电灯,便于更换灯具,并且防止灯具单元从功率耦合器单元脱落,即使在那里 是由长期使用引起的部件变质。 在与电磁场产生部分最远的功率耦合单元的金属导热构件上的位置附近设置金属弹性构件。 除了功率耦合单元和耦合构件之间的普通耦合结构之外,弹性构件与灯单元的联接构件接合。 当灯单元安装在功率耦合器单元上或从功率耦合器单元移除时,灯单元的灯泡相对于功率耦合器单元绕轴线转动并且沿着轴的方向前后移动。 这使得弹性构件通过联接构件弹性变形并且与设置在联接构件处的联接部分接合或分离。
    • 7. 发明申请
    • Endoscope and endoscope system
    • 内窥镜和内窥镜系统
    • US20090281384A1
    • 2009-11-12
    • US11821521
    • 2007-06-22
    • Masayo TsumaruShigeki Matsuo
    • Masayo TsumaruShigeki Matsuo
    • A61B1/01A61B1/005
    • A61B1/31A61B1/00156A61B1/0016A61B1/0051
    • In order to provide a rotating self-propelling endoscope and an endoscope system capable of easily achieving miniaturization of an operation portion by using a small-sized motor, and configured to obtain sufficient propulsive force with a smaller motor torque, the endoscope of the invention comprises a flexible elongate endoscope insertion portion insertable into a subject's body; and a flexible propulsive force generating portion rotatable on an outer circumferential side of the endoscope insertion portion and having a helically shaped portion on an outer circumferential surface of the flexible propulsive force generating portion, wherein the helically shaped portion has a lead angle that is set to be in a range from not less than 9 degrees to not more than 15 degrees.
    • 为了提供一种能够通过使用小型电动机容易地实现操作部的小型化的旋转式自行式内窥镜和内窥镜系统,并且被构造成以更小的电动机转矩获得足够的推进力,本发明的内窥镜包括 柔性细长内窥镜插入部,其可插入被检体的身体; 以及柔性推进力产生部,其能够在所述内窥镜插入部的外周侧旋转,并且在所述柔性推进力产生部的外周面上具有螺旋状的部分,其中,所述螺旋状部具有设定为 在不小于9度至不超过15度的范围内。
    • 10. 发明授权
    • Electrodeless discharge lamp and lighting apparatus using the same
    • 无电极放电灯及使用其的照明装置
    • US07719173B2
    • 2010-05-18
    • US11909336
    • 2006-03-23
    • Yoshinori TsuzukiKazuhiko SakaiShin UkegawaShigeki Matsuo
    • Yoshinori TsuzukiKazuhiko SakaiShin UkegawaShigeki Matsuo
    • H01J1/50H01J61/33
    • H01J65/048H01J65/042
    • An electrodeless discharge lamp has a bulb into which a discharge gas and a mercury, which is controlled at a temperature of a coldest spot are filled. A power coupler generates a high frequency electromagnetic field. A ferrule couples the bulb and the power coupler. The bulb is configured as a substantially spherical barrel formed of a transparent material and has an opening. A sealing member is welded to the opening of the barrel having a substantially cylindrical cavity. A protrusion, which becomes the coldest spot when the lamp is lit in a state that the ferrule is disposed upward, is formed at an apex of the bulb. A protruding portion is formed in a vicinity just above the ferrule of the bulb, that is, in a bulb neck portion, so that the bulb neck portion becomes the coldest spot when the lamp is lit in a state that the ferrule is disposed downward. Thereby, a constant optical output is obtained, regardless of a posture of installation of the electrodeless discharge lamp.
    • 无电极放电灯具有灯泡,其中填充控制在最冷点温度的放电气体和汞。 功率耦合器产生高频电磁场。 套圈耦合灯泡和功率耦合器。 灯泡被构造为由透明材料形成并具有开口的大致球形的桶。 将密封件焊接到具有基本上圆柱形腔体的筒体开口处。 在灯泡的顶点形成灯头在向上设置灯的状态下成为最冷点的突起。 突起部形成在灯泡的套圈正上方附近,即在灯头颈部,使灯管在向下配置的状态下成为最冷点。 由此,无论无电极放电灯的安装姿势如何,都能获得恒定的光输出。