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    • 55. 发明授权
    • Bipolar secondary battery
    • 双极二次电池
    • US09450266B2
    • 2016-09-20
    • US13698173
    • 2011-05-17
    • Kenji HosakaShiho InoueMasaaki SuzukiKazuki Miyatake
    • Kenji HosakaShiho InoueMasaaki SuzukiKazuki Miyatake
    • H01M10/04H01M2/02H01M2/26H01M10/0585H01M2/34
    • H01M10/0418H01M2/0207H01M2/266H01M2/34H01M2/345H01M10/0585
    • A battery main body housed in a case comprises one laminated body composed of a plurality of bipolar electrodes laminated with an electrolyte layer therebetween or comprises a plurality of laminated bodies connected in series. A positive electrode current collecting plate and a negative electrode current collecting plate each having one surface joined to the inner peripheral surface of the case and the other surface joined to one end of the battery main body respectively extend to the outside of the case. By providing a cutoff mechanism for cutting off an electrical connection between the positive electrode current collecting plate and the negative electrode current collecting plate via the battery main body according to an expansion deformation of the case, a current path in a bipolar secondary battery is interrupted when the short-circuit current occurs, thereby protecting the bipolar secondary battery from a short-circuit current.
    • 容纳在壳体中的电池主体包括由层叠有电解质层的多个双极电极组成的一个层叠体,或者包括串联连接的多个层叠体。 每个具有接合到壳体的内周面的一个表面和与电池主体的一端接合的另一个表面的正极集电板和负极集电板分别延伸到壳体的外部。 通过根据壳体的膨胀变形提供切断机构,通过电池主体切断正极集电板和负极集电板之间的电连接,双极二次电池的电流通路被中断, 发生短路电流,从而保护双极二次电池不受短路电流的影响。
    • 56. 发明授权
    • Three-dimensional image capture device
    • 三维图像捕获装置
    • US09036004B2
    • 2015-05-19
    • US13255393
    • 2010-12-22
    • Masao HiramotoMasayuki MisakiTeruyuki TakizawaMasaaki Suzuki
    • Masao HiramotoMasayuki MisakiTeruyuki TakizawaMasaaki Suzuki
    • G06K9/00G02F1/1335H04N5/335H04N13/02G03B35/08G03B35/10
    • H04N13/211G03B35/08G03B35/10G06K9/00H04N13/214
    • A 3D image capture device includes: a light transmitting member 2 with polarizing areas and a non-polarizing area; a solid-state image sensor 1 for receiving the light transmitted through the member 2; an imaging section 3 for producing an image on the imaging area 1a of the sensor 1; and an image generating section. The member 2 has n polarizing areas P(1), P(2), . . . and P(n) (where n is an integer and n≧2), each of which transmits only a light ray polarized in a particular direction, and a non-polarizing area P(n+1) that transmits any light ray irrespective of its polarization direction. Those n polarizing areas have mutually different transmission axis directions. The sensor 1 includes a pixel array, divided into pixel blocks each consisting of (n+1) pixels, and a filter array including n polarization filters arranged so as to face n out of the (n+1) pixels and having different transmission axis directions. The image generating section generates images based on the light rays that have entered the n polarizing areas and the non-polarizing area using pixel signals supplied from those pixels.
    • 3D图像捕获装置包括:具有偏振区域和非偏振区域的透光构件2; 用于接收透过构件2的光的固态图像传感器1; 用于在传感器1的成像区域1a上产生图像的成像部分3; 和图像生成部。 构件2具有n个偏振面积P(1),P(2)。 。 。 和P(n)(其中n是整数,n≥2),每个仅透射沿特定方向偏振的光线,以及透射任何光线的非偏振区域P(n + 1),而不管 其极化方向。 那些n个偏振区域具有相互不同的透射轴方向。 传感器1包括被分成由(n + 1)个像素构成的像素块的像素阵列和包括n个偏振滤波器的滤波器阵列,该滤波器阵列被布置成面对n(n + 1)个像素中的n并具有不同的透射轴 方向。 图像生成部使用从这些像素提供的像素信号,基于已经进入n个偏振光区域的非光斑区域和非偏振光区域,生成图像。
    • 57. 发明授权
    • Image pickup device and solid-state image pickup element
    • 图像拾取装置和固态图像拾取元件
    • US08537256B2
    • 2013-09-17
    • US13142021
    • 2010-10-04
    • Masao HiramotoMasayuki MisakiTeruyuki TakizawaMasaaki Suzuki
    • Masao HiramotoMasayuki MisakiTeruyuki TakizawaMasaaki Suzuki
    • H04N9/083
    • G03B11/00H04N5/2254H04N5/349
    • The solid-state image sensor of this invention includes an array of pixels and light-transmitting portions 30a, 30b, 30c, 30d. The array is divided into unit pixel blocks, each of which is made up of N pixels (where N is an integer that is equal to or greater than two). The light-transmitting portions are arranged so that each light-transmitting portion faces an associated one of the pixels. Each of the light-transmitting portions is divided into M striped areas (where M is an integer that is equal to or greater than two). The respective areas have had their optical transmittances set independently of each other. The arrangement pattern of the optical transmittances of the light-transmitting portions 30a, 30b, 30c, 30d vary from one block to another. The image capture device of the invention further includes a shifting section for shifting the image in a first direction on an imaging area, and reads pixel signals before and after the image is shifted, thereby generating an image, of which the resolution is higher than what is defined by the pixel pitch.
    • 本发明的固态图像传感器包括像素阵列和透光部分30a,30b,30c,30d。 该阵列被划分为单位像素块,每个像素块由N个像素(其中N是等于或大于2的整数)组成。 透光部分被布置成使得每个光透射部分面向相关联的像素之一。 每个发光部分被分成M个条纹区域(其中M是等于或大于2的整数)。 各个区域的光传输距离彼此独立。 透光部分30a,30b,30c,30d的光学透射率的布置图案从一个块到另一个不同。 本发明的图像捕获装置还包括一个移位部分,用于在成像区域上沿第一方向移动图像,并且在图像移位之前和之后读取像素信号,从而生成分辨率高于图像的图像 由像素间距定义。