Light-emitting element and display device using same
    1.
    发明授权
    Light-emitting element and display device using same 有权
    发光元件和使用其的显示装置

    公开(公告)号:US09006758B2

    公开(公告)日:2015-04-14

    申请号:US13884640

    申请日:2012-06-01

    Inventor: Kazuhiro Yoneda

    Abstract: A light-emitting element includes a reflective electrode, a light-transmitting electrode disposed opposite the reflective electrode, a light-emitting layer emitting blue light disposed between the reflective electrode and the light-transmitting electrode, and a functional layer disposed between the reflective electrode and the light-emitting layer. The optical thickness of the functional layer is no less than 428.9 nm and no more than 449.3 nm.

    Abstract translation: 发光元件包括反射电极,与反射电极相对设置的透光电极,发射设置在反射电极和透光电极之间的蓝色光的发光层,以及设置在反射电极之间的功能层 和发光层。 功能层的光学厚度不小于428.9nm,不大于449.3nm。

    Organic EL panel, display device using same, and method for producing organic EL panel
    2.
    发明授权
    Organic EL panel, display device using same, and method for producing organic EL panel 有权
    有机EL面板,使用其的显示装置及有机EL面板的制造方法

    公开(公告)号:US08847217B2

    公开(公告)日:2014-09-30

    申请号:US13819066

    申请日:2010-11-24

    Abstract: To increase light-extraction efficiency and simplify manufacturing process. An organic EL panel includes: first electrode reflecting incident light; second electrode transmitting incident light therethrough; organic light-emitting layer emitting light of corresponding color among R, G, and B colors; first functional layer including charge injection/transport layer and at least one other layer, and disposed between the first electrode and the light-emitting layer; and second functional layer disposed between the second electrode and the light-emitting layer. The charge injection/transport layers of R, G, and B colors differ in film thickness, the at least one other layers of R, G, and B colors are equal in film thickness to one another, the second functional layers of R, G, and B colors are equal in film thickness to one another, and the light-emitting layers of R and G colors are equal in film thickness, and differ in film thickness from the light-emitting layer of B color.

    Abstract translation: 提高光提取效率并简化制造过程。 有机EL面板包括:反射入射光的第一电极; 第二电极透射入射光; 在R,G和B颜色中发射相应颜色的光的有机发光层; 第一功能层,包括电荷注入/传输层和至少一个其它层,并且设置在第一电极和发光层之间; 以及设置在第二电极和发光层之间的第二功能层。 R,G和B颜色的电荷注入/传输层的膜厚度不同,R,G和B颜色的至少一个其他层的膜厚彼此相等,R,G的第二功能层 B颜色彼此相等,R和G颜色的发光层的膜厚度相等,膜厚与B色发光层的膜厚不同。

    ORGANIC EL PANEL, DISPLAY DEVICE USING SAME, AND METHOD FOR PRODUCING ORGANIC EL PANEL
    3.
    发明申请
    ORGANIC EL PANEL, DISPLAY DEVICE USING SAME, AND METHOD FOR PRODUCING ORGANIC EL PANEL 有权
    有机EL面板,使用其的显示装置和用于生产有机EL面板的方法

    公开(公告)号:US20130146861A1

    公开(公告)日:2013-06-13

    申请号:US13818797

    申请日:2010-11-24

    Abstract: An organic EL panel includes first electrode, second electrode; organic light-emitting layer of each of RGB colors, and functional layer disposed between the first electrode and the light-emitting layer. The functional layers of RGB colors have the same film thickness. Film thickness of each of the functional layers of RG colors corresponds to a first local maximum of light-extraction efficiency of light before passing through a color filter, and film thickness of the functional layer of B color corresponds to a value of light-extraction efficiency smaller than a first local maximum of light-extraction efficiency of light before passing through a color filter. The light-emitting layers of RGB colors differ in film thickness, such that the functional layers of RGB colors have the film thickness. Accordingly, the light of each of RGB colors emitted externally after passing through the color filter exhibits a local maximum of light-extraction efficiency.

    Abstract translation: 有机EL面板包括第一电极,第二电极; RGB颜色各自的有机发光层和设置在第一电极和发光层之间的功能层。 RGB颜色的功能层具有相同的膜厚度。 RG颜色的每个功能层的膜厚度对应于在通过滤色器之前的光的提取效率的第一局部最大值,并且B颜色的功能层的膜厚度对应于光提取效率的值 小于通过滤色器之前光的第一局部最大光提取效率。 RGB颜色的发光层的膜厚度不同,使得RGB颜色的功能层具有膜厚度。 因此,在通过滤色器之后从外部发射的每种RGB颜色的光呈现出局部最大的光提取效率。

    Optical communication system
    6.
    发明授权
    Optical communication system 失效
    光通信系统

    公开(公告)号:US5493432A

    公开(公告)日:1996-02-20

    申请号:US281351

    申请日:1994-07-27

    Inventor: Kazuhiro Yoneda

    CPC classification number: H04B10/0777 H04B10/0779 H04B2210/074 H04B2210/077

    Abstract: An optical communication system includes first and second optical terminal apparatuses, first and second optical repeating installations, a working transmission line coupling the first and second optical terminal apparatuses via the first optical repeating installation, and a protection transmission line coupling the first and second optical terminal apparatuses via the second optical repeating installation. Each of the first and second optical terminal apparatuses and the first and second optical repeating installations include a mechanism for transmitting an overhead signal including an identifier to the working transmission line and the protection transmission line by multiplexing the overhead signal with main signals when operating as a transmitting apparatus or installation, where the identifier identifies an apparatus or installation to be supervised, a mechanism for transferring the overhead signal as it is when not identified by the identifier, a mechanism for returning a response signal to one of the working transmission line and the protection transmission line from which the overhead signal is received when identified by the identifier, and a mechanism for cutting the apparatus or installation from one of the working transmission line and the protection transmission line so as not to transfer the overhead signal thereto, and passing through the overhead signal in other apparatuses and/or installations.

    Abstract translation: 光通信系统包括第一和第二光终端设备,第一和第二光中继设备,经由第一光中继设备耦合第一和第二光终端设备的工作传输线,以及耦合第一和第二光终端的保护传输线 设备经由第二光学重复设备。 第一和第二光学终端装置以及第一和第二光学重复装置中的每一个包括一种机构,用于通过将开销信号与主信号进行多路复用而将包括标识符的开销信号发送到工作传输线路和保护传输线路,当作为 发送设备或设备,其中标识符识别待监督的设备或设备,用于当不由标识符识别时传送开销信号的机制,用于将响应信号返回到工作传输线中的一个和 保护传输线,其由标识符识别时接收到开销信号,以及用于从工作传输线路和保护传输线路之一切割设备或设备的机制,以便不向其传输开销信号,并通过 其他设备的开销信号 和/或安装。

    Solid-state image sensing device with electrode implanted into deep trench
    8.
    发明授权
    Solid-state image sensing device with electrode implanted into deep trench 有权
    固态摄像装置,电极植入深沟

    公开(公告)号:US09508871B2

    公开(公告)日:2016-11-29

    申请号:US14847567

    申请日:2015-09-08

    Abstract: A solid-state image sensing device is provided including a first semi-conducting layer of first conductivity, a second semi-conducting layer of first conductivity disposed on the first semi-conducting layer, a semiconductor region of second conductivity different from the first conductivity disposed in the second semi-conducting layer, a deep trench configured to isolate a plurality of neighboring pixels from each other, and an electrode implanted into the deep trench, where the semiconductor region of second conductivity, the second semi-conducting layer, and the first semi-conducting layer are disposed in that order from a proximal side to a distal side, the second semi-conducting layer is split by the deep trench into sections that correspond to the pixels, an impurity concentration of first conductivity of the first semi-conducting layer is higher than an impurity concentration of first conductivity of the second semi-conducting layer, and the deep trench contacts the first semi-conducting layer.

    Abstract translation: 提供一种固态图像感测装置,包括:第一导电性的第一半导体层,设置在第一半导电层上的第一导电性的第二半导体层,与第一导电性不同的第二导电性半导体区域 在第二半导电层中,深沟槽被配置为将多个相邻像素彼此隔离,以及注入到深沟槽中的电极,其中第二导电层的半导体区域,第二半导体层和第一半导体层 半导体层从近侧到远侧按顺序设置,第二半导体层被深沟槽分成与像素对应的部分,第一半导电层的第一导电性的杂质浓度 层比第二半导体层的第一导电性的杂质浓度高,并且深沟槽接触第一半导体层 制作层。

    Organic EL panel, display device using same, and method for producing organic EL panel
    9.
    发明授权
    Organic EL panel, display device using same, and method for producing organic EL panel 有权
    有机EL面板,使用其的显示装置及有机EL面板的制造方法

    公开(公告)号:US08916862B2

    公开(公告)日:2014-12-23

    申请号:US13819059

    申请日:2010-11-24

    Abstract: To increase light-extraction efficiency and simplify manufacturing process. An organic EL panel includes: first electrode reflecting incident light; second electrode transmitting incident light therethrough; organic light-emitting layer emitting light of corresponding color among RGB colors; first functional layer including charge injection/transport layer and at least one other layer, and disposed between the first electrode and the light-emitting layer; and second functional layer disposed between the second electrode and the light-emitting layer. The first functional layers of the RGB colors are equal in film thickness, the organic light-emitting layers of the RGB colors are equal in optical distance from the first electrode, the second functional layers of the RGB colors are equal in film thickness, the organic light-emitting layers of the RGB colors are equal in optical distance from the second electrode, and the organic light-emitting layers of the RGB colors differ in film thickness.

    Abstract translation: 提高光提取效率并简化制造过程。 有机EL面板包括:反射入射光的第一电极; 第二电极透射入射光; 在RGB颜色中发射相应颜色的有机发光层; 第一功能层,包括电荷注入/传输层和至少一个其它层,并且设置在第一电极和发光层之间; 以及设置在第二电极和发光层之间的第二功能层。 RGB颜色的第一功能层的膜厚度相等,RGB颜色的有机发光层与第一电极的光学距离相等,RGB颜色的第二功能层的膜厚度相等,有机 RGB颜色的发光层在与第二电极的光学距离上相等,并且RGB颜色的有机发光层的膜厚度不同。

    PHOTOELECTRIC CONVERSION DEVICE
    10.
    发明申请
    PHOTOELECTRIC CONVERSION DEVICE 有权
    光电转换器件

    公开(公告)号:US20140367550A1

    公开(公告)日:2014-12-18

    申请号:US14305821

    申请日:2014-06-16

    Abstract: A photoelectric conversion device includes a first output line, a second output line; and a photoelectric conversion cell. The photoelectric conversion cell further includes, a photoelectric conversion element configured to generate an output current corresponding to an intensity of incident light, a first switch element configured to transmit the first output current to the first output line according to a first control signal, and a second switch element configured to transmit the second output current to second output line according to a second control signal. As a result, the photoelectric conversion device can be provided to generate rapidly the image data with wide dynamic range without the need for complex control outside of the photoelectric conversion device.

    Abstract translation: 光电转换装置包括第一输出线,第二输出线, 和光电转换单元。 光电转换单元还包括:光电转换元件,被配置为产生与入射光强度相对应的输出电流;第一开关元件,被配置为根据第一控制信号将第一输出电流传输到第一输出线;以及 第二开关元件,被配置为根据第二控制信号将第二输出电流传输到第二输出线。 结果,可以提供光电转换装置以快速生成具有宽动态范围的图像数据,而不需要光电转换装置外部的复杂控制。

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