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    • 51. 发明申请
    • Organic el display
    • 有机EL显示
    • US20060202613A1
    • 2006-09-14
    • US10520006
    • 2003-06-13
    • Koji KawaguchiKehya Sakurai
    • Koji KawaguchiKehya Sakurai
    • H05B33/00
    • H01L27/322H01L27/3244H01L51/5246H01L51/525H01L51/5271H01L2251/5315
    • An organic EL display is constituted by providing a stress-relieving layer made of a material having a higher elastisity and a lower refractive index than an adhesive layer at edges of color-converting filters that are constituted from color filter layers alone, or color filter layers and color-converting layers, and are formed on a transparent supporting substrate. As a result, stress arising when bonding the color-converting filters and the organic light-emitting device together, or when there are changes in the environment in which the display is placed is absorbed by the stress-relieving layer, and hence the light-emitting device is not damaged, and moreover reflection at walls of the stress-relieving layer is promoted, and hence there is a reduction in the component of the light emitted by the loight-emitting device that escapes sideways. An organic EL display having high reliability and high efficiency is thus provided.
    • 有机EL显示器通过提供由颜色转换滤光片的边缘仅由彩色滤光片层构成的具有比粘合剂层更高的弹性和较低折射率的材料制成的应力消除层,或滤色器层 和颜色转换层,并且形成在透明支撑基板上。 结果,将颜色转换滤光器和有机发光装置接合在一起时或者当放置显示器的环境发生变化时产生的应力被应力消除层吸收, 发光装置不被损坏,并且还促进了应力消除层的壁处的反射,并且因此由侧向逸出的发光装置发射的光的分量减小。 因此提供了具有高可靠性和高效率的有机EL显示器。
    • 54. 发明授权
    • Probe system
    • 探测系统
    • US06762616B2
    • 2004-07-13
    • US10317088
    • 2002-12-12
    • Koji KawaguchiHiroshi AmemiyaHiroshi KanekoTatsuo Kawashima
    • Koji KawaguchiHiroshi AmemiyaHiroshi KanekoTatsuo Kawashima
    • G01R3126
    • G01R31/2868G01R31/2831G01R31/2862G01R31/2887
    • A probe system according to the present invention includes a probe unit and a loader unit which are adjacent to each other. The probe unit has a case defining a prober chamber for receiving an object to be tested, and a contact probe for testing the object received into the prober chamber. The loader unit has a case defining a loader chamber partially communicated with the prober chamber, and a carrying mechanism for carrying the object between the prober chamber and the loader chamber. In the loader unit, a main shielding cover for covering the carrying mechanism in the loader chamber is provided. The probe system is provided with means for supplying dry air into the interior of the main shielding cover of the loader unit and the prober chamber.
    • 根据本发明的探针系统包括彼此相邻的探针单元和加载器单元。 探针单元具有限定用于接收待测试对象的探测室的壳体和用于测试接收到探测室中的物体的接触探针。 装载机单元具有限定与探测室部分连通的装载器室的壳体,以及用于在探测室和装载室之间承载物体的承载机构。 在装载单元中,设置有用于覆盖装载机室内的搬运机构的主屏蔽罩。 探针系统设置有用于将干燥空气供应到装载机单元和探测室的主屏蔽盖的内部的装置。
    • 55. 发明授权
    • Fluorescent conversion filter and organic light emitting element including the same
    • 荧光转换滤光片和包括其的有机发光元件
    • US06454966B1
    • 2002-09-24
    • US09633630
    • 2000-08-07
    • Ryoji KobayashiYotaro ShiraishiKoji Kawaguchi
    • Ryoji KobayashiYotaro ShiraishiKoji Kawaguchi
    • C09K1106
    • C09K11/06H01L27/322
    • A fluorescent conversion filter converts the light in the region between near-ultraviolet and blue to green light and emits the green light with a high color purity, and to provide an organic light emitting element including such a fluorescent conversion filter. The fluorescent conversion filter contains, in a matrix resin, a fluorescent converter material, selected from a fluorescent dye, a fluorescent pigment and a mixture of a fluorescent dye and a fluorescent pigment, that absorbs light in the wavelength region between near-ultraviolet and blue and emits green light, and a light absorbing dye. The fluorescent converter material, that has an absorption band in the wavelength region between 450 and 500 nm, is contained in the fluorescent conversion filter at a mixing ratio, at that the light absorbance of the fluorescent conversion filter is one or more in the wavelength region between 450 and 500 nm. The light absorbing dye, that has an absorption band in the more than 550 nm wavelength region, is contained in the fluorescent conversion filter at a mixing ratio, at that the light absorbance of the fluorescent conversion filter is 0.1 or more in the wavelength region between 550 and 650 nm. By transmitting the light from an organic light emitter in the wavelength region between 450 and 520 mn through the fluorescent conversion filter according to the invention, green light with a high color purity is obtained. A fluorescent conversion film containing a fluorescent converter material and a light absorption film containing a light absorbing dye may be laminated to form a laminate fluorescent conversion filter.
    • 荧光转换滤光器将近紫外和蓝光之间的光转换成绿光,并以高纯度发出绿光,并提供包括这种荧光转换滤光片的有机发光元件。 荧光转换滤光器在基质树脂中含有荧光染料,荧光颜料和荧光染料和荧光颜料的混合物的荧光转换材料,其吸收近紫外和蓝色之间的波长区域中的光 并发出绿光,以及光吸收染料。 在荧光转换滤光器中,在荧光转换滤光器中以荧光转换滤光片的吸光度在波长区域中为1个以上的荧光转换材料,在波长范围为450〜500nm之间具有吸收带 在450和500nm之间。 在荧光转换滤光器中,以超过550nm的波长区域具有吸收带的吸光染料以混合比包含在荧光转换滤光片中,荧光转换滤光片的吸光度在 550和650nm。 通过根据本发明的通过荧光转换滤光器从450和520nm之间的波长区域的有机光发射器透射光,获得了高色纯度的绿光。 含有荧光转换材料的荧光转换膜和含有吸光染料的光吸收膜可以层压形成层压荧光转换滤光片。
    • 56. 发明授权
    • Ultrasound therapeutic system
    • 超声治疗系统
    • US5435311A
    • 1995-07-25
    • US243321
    • 1994-05-16
    • Shinichiro UmemuraKenichi KawabataKoji KawaguchiHiroshi Ikeda
    • Shinichiro UmemuraKenichi KawabataKoji KawaguchiHiroshi Ikeda
    • A61B8/08A61B17/22
    • A61B8/0833A61B17/2256
    • In an ultrasound therapeutic system provided with an ultrasound transmitter having a focusing mechanism and a plurality of groups of ultrasound transmitters/receivers, each of which has a controllable directivity, each of the transmitters/receivers is constructed so as to be able to receive both echo of pulse-shaped ultrasound transmitted by itself and even order harmonic signals of the ultrasound transmitted by the transmitter, and a plurality of two-dimensional pulse echographical images constructed by ultrasound signals obtained by transmitting/receiving beams, while controlling the directivity of the beam emitted by each of the plurality of groups of ultrasound transmitters/receivers and a plurality of images indicating orientation and intensity, in which an even order harmonic wave signal due to the ultrasound transmitted by the transmitter is received by each of the plurality of groups of ultrasound transmitters/receivers, are displayed, superimposed on each other.
    • 在具有超声波发射器的超声波治疗系统中,每个发射器/接收器具有聚焦机构和多组超声波发射器/接收器,每个发射器/接收器具有可控的方向性,每个发射器/接收器被构造成能够接收两个回波 其自身发射的脉冲型超声波和由发射器发射的超声波的均匀次谐波信号,以及由通过发射/接收光束获得的超声信号构成的多个二维脉冲回波图像,同时控制发射的光束的方向性 通过多组超声波发射器/接收器中的每一个以及指示取向和强度的多个图像,其中由发射器发送的超声波引起的偶次谐波信号被多个超声发射器组中的每一个接收 /接收器,被显示,彼此叠加。
    • 57. 发明授权
    • Position detecting device and lens tube
    • 位置检测装置和透镜管
    • US07580624B2
    • 2009-08-25
    • US11473244
    • 2006-06-23
    • Koji Kawaguchi
    • Koji Kawaguchi
    • G03B17/00
    • G02B7/102
    • A lens tube includes a lens guiding frame, a main unit, and a position detecting device. The lens guiding frame holds a zoom lens. The main unit holds the lens guiding frame to be movable in a direction of an optical axis with the zoom lens. The position detecting device detects a position of the zoom lens held in the main unit. The position detecting device includes an optical sensor and a detection target member. The detection target member includes a sensor cut unit and a sensor cover unit. The sensor cut unit is detected by the optical sensor. The sensor cover unit covers the optical sensor and the sensor cut unit during the detection.
    • 透镜管包括透镜引导框架,主单元和位置检测装置。 透镜引导框架保持变焦透镜。 主单元保持透镜引导框架能够在具有变焦透镜的光轴的方向上移动。 位置检测装置检测保持在主体中的变焦镜头的位置。 位置检测装置包括光学传感器和检测对象部件。 检测对象构件包括传感器切割单元和传感器盖单元。 传感器切割单元由光学传感器检测。 传感器盖单元在检测期间覆盖光学传感器和传感器切割单元。
    • 58. 发明申请
    • METHOD FOR MANUFACTURING PATTERNED VAPOR-DEPOSITED FILM
    • 用于制造图案蒸发沉积膜的方法
    • US20080226814A1
    • 2008-09-18
    • US12015705
    • 2008-01-17
    • Yukinori KawamuraRyohei MakinoKoji Kawaguchi
    • Yukinori KawamuraRyohei MakinoKoji Kawaguchi
    • B05D5/12
    • B05D5/12C23C14/04C23C14/12C23C14/243H01L27/322H01L27/3241H01L51/0013
    • A method for manufacturing a vapor-deposited film having a high-resolution pattern, without using a metal mask that makes it difficult to realize high resolution or an expensive laser scanning device. A patterned vapor-deposited film is manufactured by a method including: preparing a deposition panel containing a substrate, a plurality of heating elements, and a deposition material layer formed on the plurality of heating elements, the deposition material layer forming the outermost surface; disposing the deposition panel and a device substrate so that the deposition material layer faces the device substrate; and causing at least some of the plurality of heating elements to generate heat, selectively evaporating the deposition material layer that is positioned on the heating elements that have generated heat, and vapor depositing on a surface of the device substrate to form a vapor-deposited film.
    • 一种制造具有高分辨率图案的气相沉积膜的方法,不使用难以实现高分辨率的金属掩模或昂贵的激光扫描装置。 通过以下方法制造图案化蒸镀膜,该方法包括:制备包含基板,多个加热元件的沉积板和形成在所述多个加热元件上的沉积材料层,所述沉积材料层形成最外表面; 设置沉积面板和器件衬底,使得沉积材料层面向器件衬底; 并且使所述多个加热元件中的至少一些产生热量,选择性地蒸发位于已经产生热量的所述加热元件上的沉积材料层,并且在所述器件基板的表面上蒸镀以形成气相沉积膜 。
    • 59. 发明申请
    • Position detecting device and lens tube
    • 位置检测装置和透镜管
    • US20070122136A1
    • 2007-05-31
    • US11473244
    • 2006-06-23
    • Koji Kawaguchi
    • Koji Kawaguchi
    • G03B17/00
    • G02B7/102
    • A lens tube includes a lens guiding frame, a main unit, and a position detecting device. The lens guiding frame holds a zoom lens. The main unit holds the lens guiding frame to be movable in a direction of an optical axis with the zoom lens. The position detecting device detects a position of the zoom lens held in the main unit. The position detecting device includes an optical sensor and a detection target member. The detection target member includes a sensor cut unit and a sensor cover unit. The sensor cut unit is detected by the optical sensor. The sensor cover unit covers the optical sensor and the sensor cut unit during the detection.
    • 透镜管包括透镜引导框架,主单元和位置检测装置。 透镜引导框架保持变焦透镜。 主单元保持透镜引导框架能够在具有变焦透镜的光轴的方向上移动。 位置检测装置检测保持在主体中的变焦镜头的位置。 位置检测装置包括光学传感器和检测对象部件。 检测对象构件包括传感器切割单元和传感器盖单元。 传感器切割单元由光学传感器检测。 传感器盖单元在检测期间覆盖光学传感器和传感器切割单元。
    • 60. 发明申请
    • Diaphragm device, lens assembly including same and surveillance camera
    • 隔膜装置,镜头组件及监视摄像头
    • US20060245752A1
    • 2006-11-02
    • US11115337
    • 2005-04-27
    • Koji Kawaguchi
    • Koji Kawaguchi
    • G03B9/08
    • G03B9/14
    • A lens assembly with a compact diaphragm device incorporated therein, the diaphragm device having an operating member which does not extend beyond the contour of a lens barrel, and a surveillance camera having such a lens assembly are disclosed. The surveillance camera 100 comprises an image pickup lens 104 and a camera main unit 102. The image pickup lens 104 includes a diaphragm device 126. The diaphragm device 126 comprises an upper diaphragm blade 210 having an aperture opening, a lower diaphragm blade having an aperture opening, a support frame 230 for supporting the upper and lower diaphragm blades for rectilinear movement thereof, and a diaphragm blade interlocking plate 240 supported for rotation relative to the support frame 230 and adapted to allow the upper diaphragm blade 210 to move rectilinearly in a first direction while permitting the lower diaphragm blade 220 to move rectilinearly in a second direction different from the first direction. The diaphragm blade interlocking member 240 has a center of rotation located within an aperture area defined by the upper and lower diaphragm blade openings at full aperture.
    • 公开了一种具有并入其中的紧凑型隔膜装置的透镜组件,所述隔膜装置具有不延伸超过镜筒的轮廓的操作构件,以及具有这种透镜组件的监视摄像机。 监视摄像机100包括摄像镜头104和照相机主机102。 图像拾取透镜104包括隔膜装置126。 隔膜装置126包括具有开口开口的上隔膜叶片210,具有孔口的下隔膜叶片,用于支撑上下隔膜叶片以用于其直线运动的支撑框架230和支撑用于 相对于支撑框架230的旋转,并且适于允许上光阑叶片210沿第一方向直线移动,同时允许下光阑叶片220沿与第一方向不同的第二方向直线移动。 光阑叶片互锁构件240具有位于由全孔径处的上和下光阑叶片开口限定的开口区域内的旋转中心。