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    • 1. 发明授权
    • Developer remaining amount detecting method, developing device, process cartridge and electrophotographic image forming apparatus
    • 显影剂余量检测方法,显影装置,处理盒和电子照相成像装置
    • US06505007B2
    • 2003-01-07
    • US09796457
    • 2001-03-02
    • Koji MiuraJun MiyamotoTatsuya Suzuki
    • Koji MiuraJun MiyamotoTatsuya Suzuki
    • G03G1508
    • G03G15/0856G03G15/0862G03G15/0891G03G2215/0894
    • A method of detecting a developer remaining amount for successively detecting the remaining amount of a developer used for developing an electrostatic latent image formed on an electrophotographic photosensitive member, the method including successively detecting the remaining amount of developer based on a period of time for which a light is blocked by a developer carried by a developer carrying member, wherein the developer is carried by the developer carrying member to a position in which the developer blocks the light that has entered a developer containing portion from a first light transmission opening of said a developer containing portion for containing the developer when the light transmitted from the first light transmission opening to an inside of the developer containing portion is transmitted from a second light transmission opening of the developer containing portion to an outside of the developer containing portion.
    • 一种检测显影剂剩余量的方法,用于连续地检测用于显影形成在电子照相感光构件上的静电潜像的显影剂的剩余量,该方法包括:基于一个时间段连续地检测显影剂的剩余量, 光被显影剂承载构件携带的显影剂阻挡,其中显影剂被显影剂承载构件承载到显影剂阻挡从所述显影剂的第一透光开口进入显影剂容纳部分的光的位置 当从第一透光开口传播到显影剂容纳部分的内部的光从显影剂容纳部分的第二透光开口传递到显影剂容纳部分的外部时,用于容纳显影剂的容纳部分。
    • 3. 发明授权
    • Image forming apparatus having developer container with light transmitting window used for remaining developer amount detection
    • 具有用于剩余显影剂量检测的具有透光窗的显影剂容器的图像形成装置
    • US06859629B2
    • 2005-02-22
    • US10281966
    • 2002-10-29
    • Koji MiuraJun MiyamotoKojiro YasuiTakeshi Arimitsu
    • Koji MiuraJun MiyamotoKojiro YasuiTakeshi Arimitsu
    • G03G15/08
    • G03G15/0875G03G15/0855G03G15/0862G03G15/0865G03G2215/0894
    • A developer container for accommodating a developer used for developing an electrostatic latent image formed on an electrophotographic photosensitive member by a developing member for developing the electrostatic latent image includes, a first light-transmitting window for guiding detection light emitted from a light emitting member provided in a main body of an image forming apparatus into the developer container, a second light-transmitting window for guiding the detection light entering from the first light-transmitting window and passing through the developer container to a photosensing member provided in the main body of the image forming apparatus, in order to detect the remaining amount of the developer accommodated within the developer container when the developer container is mounted in the main body of the image forming apparatus, and a rotatable feeding member including a stirring blade for feeding the developer within the developer container toward the developing member when rotating, and for removing particles of the developer adhering to the first light-transmitting window and the second light-transmitting window by contacting the first light-transmitting window and second light-transmitting window. At least one of the respective inner surfaces of the light-transmitting window and the second light-transmitting window facing the inside of the developer container has an inner inclined portion having a circular convex portion, convex along a longitudinal direction of the rotating feeding member.
    • 用于容纳用于显影静电潜像的静电潜像显影剂的显影剂容器,用于显影静电潜像的显影部件包括:第一透光窗,用于引导从发光元件发射的检测光, 图像形成装置的主体进入显影剂容器,第二透光窗口,用于引导从第一透光窗入射的检测光,并通过显影剂容器到设置在图像的主体中的感光元件 成型设备,以便当显影剂容器安装在图像形成设备的主体中时,检测容纳在显影剂容器内的显影剂的剩余量;以及可旋转进给构件,其包括用于将显影剂供给到显影剂中的搅拌叶片 容器朝向显影构件 n旋转,并且通过接触第一透光窗和第二透光窗用于去除附着到第一透光窗和第二透光窗的显影剂的颗粒。 透光窗和相对于显影剂容器内侧的第二透光窗的各个内表面中的至少一个具有具有圆形凸部的内倾斜部,沿着旋转供给部件的纵向方向凸出。
    • 6. 发明授权
    • Illumination unit, projection display unit, and direct-view display unit
    • 照明单元,投影显示单元和直视显示单元
    • US09212802B2
    • 2015-12-15
    • US14005490
    • 2012-03-15
    • Koji Miura
    • Koji Miura
    • G03B21/00F21V5/00G03B21/20G02B27/09G02B27/10H04N9/31
    • F21V5/007F21V5/008F21Y2115/30G02B27/09G02B27/10G02B27/102G03B21/2033G03B21/208H04N9/3105H04N9/3152H04N9/3161
    • An illumination system including one or more light sources each including a solid-state light-emitting device; and an optical member configured to allow light incident from the solid-state light-emitting device to pass therethrough and exit therefrom, and at least one of the chips in the one or more light sources is configured of a laser diode. The optical member includes an integrator including a first fly-eye lens on which light from the solid-state light-emitting device is incident and a second fly-eye lens on which light from the first fly-eye lens is incident, and uniformizing a luminance distribution of light in a predetermined illumination region illuminated with light incident from the solid-state light-emitting device. A major-axis direction of a luminance distribution shape of light incident on an incident plane of the first fly-eye lens is different from arrangement directions of the cells in the first fly-eye lens.
    • 一种包括一个或多个光源的照明系统,每个光源均包括固态发光器件; 以及光学部件,被配置为允许从固态发光器件入射的光通过并从其中退出,并且所述一个或多个光源中的至少一个所述芯片由激光二极管构成。 光学构件包括积分器,该积分器包括来自固态发光器件的入射的第一复眼透镜和来自第一复眼透镜的光入射的第二复眼透镜,并使均匀化 在从固体发光装置入射的光照射的预定照明区域中的光的亮度分布。 入射在第一复眼透镜的入射面上的光的亮度分布形状的长轴方向与第一复眼透镜中的单元的布置方向不同。
    • 8. 发明授权
    • Boiler
    • 锅炉
    • US08573162B2
    • 2013-11-05
    • US13121049
    • 2009-08-06
    • Tsutomu SasakiRyo MiyagawaTetsuji NamotoKoji Miura
    • Tsutomu SasakiRyo MiyagawaTetsuji NamotoKoji Miura
    • F22D5/26
    • F22B35/00F23N1/022F23N5/203
    • A combustion apparatus for boiler includes an air supply device that varies a supply amount of combustion air, a fuel supply device that varies a supply amount of fuel, and a control device that controls the air supply device and the fuel supply device, obtains the supply amounts in accordance with respective combustion stages, and realizes the multiple combustion stages. The the control device controls the air supply device and the fuel supply device so as to return to a predetermined combustion stage when a request for transition cancel is received during transition from the predetermined combustion stage to another combustion stage, and controls so as not to perform the transition to the other combustion stage until a predetermined time period has elapsed.
    • 锅炉用燃烧装置包括改变燃烧空气供给量的空气供给装置,改变燃料供给量的燃料供给装置以及控制供气装置和燃料供给装置的控制装置, 根据各自的燃烧阶段的量,实现多个燃烧阶段。 控制装置控制供气装置和燃料供给装置,以便在从预定燃烧阶段到另一燃烧阶段的转变期间接收到转移取消请求时返回到预定燃烧阶段,并且控制以便不执行 过渡到其他燃烧阶段,直到经过预定时间段。
    • 9. 发明申请
    • ILLUMINATION UNIT, PROJECTION DISPLAY UNIT, AND DIRECT VIEW DISPLAY UNIT
    • 照明单元,投影显示单元和直接显示单元
    • US20120249973A1
    • 2012-10-04
    • US13414817
    • 2012-03-08
    • Koji Miura
    • Koji Miura
    • G03B21/14F21V5/04
    • G02B27/1053G02B27/0905G02B27/0961G02B27/145G03B21/2013G03B21/2033G03B21/208H04N9/3161H04N9/3164
    • An illumination unit includes one or more light sources and an optical member. The optical member includes an integrator having a first fly-eye lens on which light from a solid-state light-emitting device is incident and a second fly-eye lens on which the light from the first fly-eye lens is incident. The integrator uniformalizes an illuminance distribution of light in a predetermined illumination region illuminated by the light incident from the solid-state light-emitting device. Each of the first fly-eye lens and the second fly-eye lens has a plurality of cells. The cells of the first fly-eye lens are arranged in a first direction and a second direction that intersect each other, and positions of the cells in the second direction are different from one another at least partially among a plurality of cell rows arranged along the first direction in the first fly-eye lens.
    • 照明单元包括一个或多个光源和光学构件。 光学构件包括积分器,该积分器具有第一复眼透镜,来自固态发光器件的光入射到第一复眼透镜,第二复眼透镜在其上入射来自第一复眼透镜的光。 积分器使从由固态发光装置入射的光照射的预定照明区域中的光的照度分布均匀化。 第一复眼透镜和第二复眼透镜中的每一个具有多个单元。 第一复眼透镜的单元被布置在彼此相交的第一方向和第二方向上,并且沿着沿着第二方向布置的多个单元行中的至少部分地,第二方向上的单元的位置彼此不同 第一个飞眼镜头的方向。