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    • 14. 发明申请
    • SENSOR AND SENSOR SYSTEM
    • 传感器和传感器系统
    • US20170065177A1
    • 2017-03-09
    • US15254429
    • 2016-09-01
    • Kabushiki Kaisha Toshiba
    • Keiji SUGITomio ONOToshiya YONEHARA
    • A61B5/00H01L27/28A61B5/02
    • A61B5/0059A61B5/02007A61B5/02125A61B5/02416A61B5/489A61B2562/0238A61B2562/046H01L27/288
    • According to one embodiment, a sensor includes a plurality of light-emitting elements, and a light receiving element. The light-emitting elements are arranged along a first direction and a second direction, the second direction intersecting the first direction. At least a portion of light emitted from each of the light-emitting elements is incident on the light receiving element. The light-emitting elements do not overlap the light receiving element in a third direction, the third direction being perpendicular to the first direction and the second direction. The light-emitting elements include a first light-emitting element and a second light-emitting element. A position of the second light-emitting element in a plane is between a position of the first light-emitting element in the plane and a position of the light receiving element in the plane. The plane includes the first direction and the second direction.
    • 根据一个实施例,传感器包括多个发光元件和光接收元件。 发光元件沿着第一方向和第二方向排列,第二方向与第一方向相交。 从每个发光元件发射的光的至少一部分入射在光接收元件上。 发光元件在第三方向上不与光接收元件重叠,第三方向垂直于第一方向和第二方向。 发光元件包括第一发光元件和第二发光元件。 第二发光元件在平面中的位置在第一发光元件在平面中的位置和光接收元件在平面中的位置之间。 平面包括第一方向和第二方向。
    • 17. 发明申请
    • OPTOELECTRONIC COMPONENT AND METHOD FOR PRODUCING AN OPTOELECTRONIC COMPONENT
    • 光电元件和生产光电元件的方法
    • US20160148987A1
    • 2016-05-26
    • US14892646
    • 2014-05-21
    • OSRAM OLED GMBH
    • Michael PoppArndt Jaeger
    • H01L27/32H01L51/56H01L51/52
    • H01L27/3269G01J1/0448H01L27/288H01L27/322H01L51/5246H01L51/5262H01L51/5271H01L51/56H01L2227/323H01L2251/5361
    • Various embodiments may relate to an optoelectronic component, including an optoelectronic structure, which is designed to provide a first electromagnetic radiation, and a measuring structure, which is designed to measure electromagnetic radiation, wherein the measuring structure has an optically active structure and at least one electro-optical structure. The optically active structure is optically coupled to the optoelectronic structure. The optically active structure is designed to absorb an electromagnetic radiation in such a way that the optically active structure produces a measured signal from the absorbed electromagnetic radiation. The absorbed electromagnetic radiation at least partially includes the first electromagnetic radiation and/or at least one second electromagnetic radiation of an external radiation source. The electro-optical structure is designed in such a way that the electro-optical structure has an adjustable transmittance, such that the fraction of the second electromagnetic radiation incident on the optically active structure can be adjusted.
    • 各种实施例可以涉及光电子部件,包括设计成提供第一电磁辐射的光电子结构和被设计为测量电磁辐射的测量结构,其中测量结构具有光学活性结构和至少一个 电光结构。 光学活性结构光耦合到光电子结构。 光学活性结构被设计成以这样的方式吸收电磁辐射,使得光学活性结构从吸收的电磁辐射产生测量信号。 所吸收的电磁辐射至少部分地包括外部辐射源的第一电磁辐射和/或至少一个第二电磁辐射。 电光结构被设计成使得电光结构具有可调节的透射率,使得可以调节入射在光学活性结构上的第二电磁辐射的分数。
    • 19. 发明授权
    • Infrared OLED display device and the manufacturing method thereof
    • 红外OLED显示装置及其制造方法
    • US09093382B2
    • 2015-07-28
    • US13979880
    • 2013-06-24
    • Shenzhen China Star Optoelectronics Technology Co., Ltd.
    • Yawei LiuYuan-Chun Wu
    • H01L27/28H01L31/053H01L31/02H01L27/32H01L31/0392H01L51/52H01L51/56H01L51/42
    • H01L27/288H01L27/3225H01L27/3227H01L31/02008H01L31/0392H01L31/03921H01L31/053H01L51/4253H01L51/5256H01L51/56H01L2227/323Y02E10/50
    • The present invention provides an infrared OLED display device and the manufacturing method thereof. Wherein, the infrared OLED display device comprises multiple infrared OLED units, which are used to display infrared image; a solar cell, which is used to absorb sunlight and then convert it to electrical energy; a transformer, which is used to transform the voltage of the electrical energy generated from the solar cell to the voltage of power for the infrared OLED units; and a rechargeable battery, which is used to store the electrical energy after the transformer converts the voltage and to provide the power for the infrared OLED units; wherein, the solar cell is connected with the transformer, the transformer is connected with the rechargeable battery, and the rechargeable battery is connected with the multiple infrared OLED units. The solar cell and the infrared OLED unit are integrated into one device, so that the infrared OLED display device not only display infrared image, but also charge itself using the solar cell, which saves energy.
    • 本发明提供一种红外OLED显示装置及其制造方法。 其中,红外OLED显示装置包括用于显示红外图像的多个红外OLED单元; 太阳能电池,用于吸收阳光,然后将其转换成电能; 变压器,其用于将从太阳能电池产生的电能的电压转换为用于红外OLED单元的电力的电压; 以及用于在变压器转换电压并且为红外OLED单元提供电力之后存储电能的可再充电电池; 其中,所述太阳能电池与所述变压器连接,所述变压器与所述可充电电池连接,并且所述可再充电电池与所述多个红外OLED单元连接。 太阳能电池和红外OLED单元集成在一个器件中,使得红外OLED显示器件不仅显示红外图像,而且还使用太阳能电池进行充电,从而节省能量。