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    • 2. 发明申请
    • SEMICONDUCTOR LIGHT EMITTING DEVICE
    • 半导体发光器件
    • US20130075771A1
    • 2013-03-28
    • US13412044
    • 2012-03-05
    • Akira FUJIMOTOTsutomu NAKANISHIRyota KITAGAWAKenji NAKAMURAShinji NUNOTANITakanobu KAMAKURA
    • Akira FUJIMOTOTsutomu NAKANISHIRyota KITAGAWAKenji NAKAMURAShinji NUNOTANITakanobu KAMAKURA
    • H01L33/10
    • H01L33/30H01L33/10H01L33/38
    • According to one embodiment, a semiconductor light emitting device includes first and second electrode layers, a and second semiconductor layers, a light emitting layer and a first intermediate layer. The first electrode layer has a metal portion having through-holes. The second electrode layer is stacked with the first electrode layer along a stacked direction, and light-reflective. The first semiconductor layer is provided between the first and second electrode layers, and has a first conductivity type. The second semiconductor layer is provided between the first semiconductor layer and the second electrode layer, and has a second conductivity type. The light emitting layer is provided between the first and second semiconductor layers. The first intermediate layer is provided between the second semiconductor layer and the second electrode layer, transmissive to light emitted from the light emitting layer, and includes first contact portions and a first non-contact portion.
    • 根据一个实施例,半导体发光器件包括第一和第二电极层,第一和第二半导体层,发光层和第一中间层。 第一电极层具有具有通孔的金属部分。 第二电极层沿堆叠方向与第一电极层堆叠并且具有光反射性。 第一半导体层设置在第一和第二电极层之间,并且具有第一导电类型。 第二半导体层设置在第一半导体层和第二电极层之间,具有第二导电型。 发光层设置在第一和第二半导体层之间。 第一中间层设置在第二半导体层和第二电极层之间,对从发光层发射的光透射,并且包括第一接触部分和第一非接触部分。
    • 7. 发明申请
    • ULTRASOUND DIAGNOSTIC APPARATUS
    • 超声诊断装置
    • US20120197124A1
    • 2012-08-02
    • US13353006
    • 2012-01-18
    • Kenji NAKAMURA
    • Kenji NAKAMURA
    • A61B8/13
    • A61B8/56A61B8/42A61B8/4209A61B8/4472
    • An ultrasound diagnostic apparatus comprises: an ultrasound probe that has a transducer array transmitting an ultrasonic beam toward a subject and receiving an ultrasonic echo by the subject to output reception signals; a diagnostic apparatus body that is connected to the ultrasound probe by wireless communication and generates an ultrasound image on the basis of the reception signal output from the transducer array; at least one power receiving terminal that is arranged at the ultrasound probe and electrically connected to respective parts in the ultrasound probe; and a power supply unit that is capable of being attached to an operator's body and is detachably connected to the power receiving terminal so as to perform power supply to the respective parts in the ultrasound probe.
    • 超声波诊断装置包括:超声波探头,其具有将超声波束朝向被检体传递的换能器阵列,并且由被检体接收超声波回波以输出接收信号; 诊断装置主体,其通过无线通信连接到所述超声波探头,并且基于从所述换能器阵列输出的接收信号生成超声波图像; 至少一个电力接收终端,其布置在所述超声波探头处并电连接到所述超声波探头中的相应部分; 以及电源单元,其能够附接到操作者的身体并且可拆卸地连接到电力接收端子,以对超声波探头中的各个部分供电。
    • 8. 发明申请
    • SOLID-STATE IMAGING DEVICE AND ELECTRONIC CAMERA
    • 固态成像装置和电子摄像机
    • US20120033120A1
    • 2012-02-09
    • US13274482
    • 2011-10-17
    • Kenji NAKAMURAHiroshi UEDAKyoichi MIYAZAKI
    • Kenji NAKAMURAHiroshi UEDAKyoichi MIYAZAKI
    • H04N5/335
    • H04N5/3696H04N5/23212H04N9/045H04N9/07H04N2201/0084
    • An object of the present invention is to provide a highly-accurate AF without adding a mechanism of the camera or increasing the power consumption. A solid-state imaging device according to an aspect of the present invention includes: a plurality of photoelectric conversion units configured to convert incident light into electronic signals, the photoelectric conversion units being arranged in a two dimensional array, the photoelectric conversion units including a plurality of first photoelectric conversion units and a plurality of second photoelectric conversion units; a plurality of first microlenses each of which is disposed to cover a corresponding one of said first photoelectric conversion units; and a second microlens disposed to cover the second photoelectric conversion units, in which at least two of the second photoelectric conversion units are located at respective positions which are offset from an optical axis of the second microlens, in mutually different directions.
    • 本发明的目的是提供一种高精度的AF,而不增加相机的机构或增加功耗。 根据本发明的一个方面的固态成像装置包括:多个光电转换单元,被配置为将入射光转换成电子信号,所述光电转换单元被布置成二维阵列,所述光电转换单元包括多个 的第一光电转换单元和多个第二光电转换单元; 多个第一微透镜,每个第一微透镜被设置为覆盖相应的一个所述第一光电转换单元; 以及第二微透镜,被设置成覆盖第二光电转换单元,其中至少两个第二光电转换单元位于相对于第二微透镜的光轴偏移的相应位置处。
    • 9. 发明申请
    • IMAGING DEVICE, IMAGE STORING METHOD AND RECORDING MEDIUM
    • 成像装置,图像存储方法和记录介质
    • US20110267496A1
    • 2011-11-03
    • US13081057
    • 2011-04-06
    • Kenji NAKAMURAMunehiro Mori
    • Kenji NAKAMURAMunehiro Mori
    • H04N5/225
    • H04N1/2112H04N1/2158H04N1/32101H04N5/232H04N2101/00H04N2201/3253H04N2201/3277
    • An imaging device for capturing an image of a subject to acquire captured-image information, comprises: a positioning element arranged to measure a location at which the image is captured, to acquire capturing location information indicating a capturing location when the captured-image is acquired; a creation element arranged to create image information based on the capturing location information acquired by the positioning element and the captured-image information; a memory element arranged to store the image information created by the creation element; a decision element arranged to, when the image information stored in the memory element is output to the outside, decide whether or not the capturing location information included in the image information is to be kept secret; and a fabricator element arranged to fabricate the capturing location information included in the image information in accordance with a result of the decision by the decision element. Thus, it is possible to prevent leaking of information on the capturing location that is a kind of private information, minimizing reduction of convenience and versatility of the image information including the information on the capturing location.
    • 一种用于拍摄对象的图像以获取拍摄图像信息的成像装置,包括:定位元件,其被布置为测量拍摄图像的位置,以获取当捕获图像获取时指示拍摄位置的捕获位置信息 ; 创建元素,被配置为基于由所述定位元素获取的拍摄位置信息和所述拍摄图像信息来创建图像信息; 存储元件,其被设置为存储由所述创建元素创建的图像信息; 决定单元,被配置为当存储在所述存储元件中的图像信息被输出到外部时,判定所述图像信息中包含的拍摄位置信息是否被保密; 以及制造者元件,其被布置为根据决定元件的判定结果来制作包含在图像信息中的拍摄位置信息。 因此,可以防止作为一种私人信息的捕获位置的信息泄露,使包括关于拍摄位置的信息的图像信息的便利性和多功能性的减少最小化。