会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 94. 发明授权
    • High definition imaging method and imaging apparatus having electro-optical polarization element between two birefrigent elements forming alternately on sensor single and overlapping images
    • 高分辨率成像方法和成像装置,其具有在传感器单个和重叠图像之间交替形成的两个双重元件之间的电光偏振元件
    • US07440009B2
    • 2008-10-21
    • US11044523
    • 2005-01-27
    • Tsuguhiro KorenagaSeiji NishiwakiMichiyoshi Nagashima
    • Tsuguhiro KorenagaSeiji NishiwakiMichiyoshi Nagashima
    • H04N5/225
    • H04N5/2254H04N5/349
    • In a method for forming an image of a subject on a solid-state imaging device, a first time period for splitting a light beam from a subject into a plurality of light beams that have different polarization directions and then combining the plurality of light beams to form a single subject image on the solid-state imaging device and a second time period for splitting the light beam from the subject into the plurality of light beams that have different polarization directions and forming a plurality of subject images that overlap each other partially on the solid-state imaging device are switched time-wise. A first image information on the single subject image is obtained based on pieces of signal information in the first time period, and a second image information on one of the plurality of subject images is calculated by using and computing pieces of signal information in the second time period. Then, the high-resolution image of the subject is achieved by using the first image information and the second image information. In this way, it is possible to obtain an image with a high resolution and a reduced noise with substantially no loss of the light beam from the subject.
    • 在用于在固态成像装置上形成被摄体的图像的方法中,将用于将来自被摄体的光束分割为具有不同偏振方向的多个光束然后将多个光束组合的第一时间段 在固态成像装置上形成单个被摄体图像,以及第二时间段,用于将来自被摄体的光束分成具有不同偏振方向的多个光束,并且形成多个相互重叠的被摄体图像 固态成像装置按时间方式进行切换。 基于第一时间段中的信号信息获得关于单个被摄体图像的第一图像信息,并且通过在第二时间中使用和计算信号信息来计算关于多个被摄体图像之一的第二图像信息 期。 然后,通过使用第一图像信息和第二图像信息来实现被摄体的高分辨率图像。 以这种方式,可以获得具有高分辨率和降低的噪声的图像,而基本上没有来自被摄体的光束的损失。
    • 95. 发明申请
    • Optical Element
    • 光学元件
    • US20080007831A1
    • 2008-01-10
    • US11575595
    • 2005-09-27
    • Seiji NishiwakiTsuguhiro Korenaga
    • Seiji NishiwakiTsuguhiro Korenaga
    • G02B5/18G02B3/08
    • G02B5/1814G02B5/1871G02B5/1876G02B5/1895
    • An optical element according to the present invention is an optical element including: a first light transmitting layer having a first sawtooth blazed surface 10, the first light transmitting layer including a plurality of first light-transmitting slopes 12 defining a first blaze angle α; and a second light transmitting layer having a second sawtooth blazed surface 20 including a plurality of second light-transmitting slopes 22 defining a second blaze angle β, the second light transmitting layer being in contact with the first sawtooth blazed surface 10 of the first light transmitting layer. A tilting direction of the first light-transmitting slope 12 and a tilting direction of the second light-transmitting slope 22 are opposite.
    • 根据本发明的光学元件是一种光学元件,包括:具有第一锯齿形闪耀表面10的第一透光层,第一透光层包括限定第一火焰角α的多个第一透光斜面12; 以及具有第二锯齿形闪耀表面20的第二透光层,第二透光层包括限定第二火焰角β的多个第二透光斜面22,第二光透射层与第一光透射层的第一锯齿形闪耀表面10接触 层。 第一透光斜面12的倾斜方向和第二透光斜面22的倾斜方向相反。
    • 96. 发明授权
    • Imaging device with triangular photodetector array for use in imaging
    • 具有三角光电检测器阵列的成像装置用于成像
    • US07157690B2
    • 2007-01-02
    • US11092431
    • 2005-03-29
    • Seiji NishiwakiMichiyoshi Nagashima
    • Seiji NishiwakiMichiyoshi Nagashima
    • H01L27/00H04N9/00
    • H04N9/045H01L27/14623H01L27/14627H04N5/3415
    • An imaging device includes at least three color filters, including first to third color filters having respectively different filtering characteristics; at least three lens systems, including first to third lens systems respectively associated with the first to third color filters; and a photodetection section. The photodetection section includes a first photodetector for receiving light transmitted through the first color filter and the first lens system, a second photodetector for receiving light transmitted through the second color filter and the second lens system, and a third photodetector for receiving light transmitted through the third color filter and the third lens system. Each of the first to third photodetectors has a two-dimensional array of photodetection cells such that centers of the photodetection cells are positioned at apices of triangles sharing respective sides with one another, where none of three corner angles of each triangle is equal to 90°.
    • 成像装置包括至少三个滤色器,包括分别具有不同滤光特性的第一至第三滤色器; 至少三个透镜系统,包括分别与第一至第三滤色器相关联的第一至第三透镜系统; 和光检测部。 光检测部分包括用于接收透过第一滤色器和第一透镜系统的光的第一光电检测器,用于接收透过第二滤色器和第二透镜系统的光的第二光电检测器,以及第三光电检测器, 第三滤色镜和第三透镜系统。 第一至第三光电探测器中的每一个具有二维阵列的光电检测单元,使得光电检测单元的中心位于三角形共享的三角形的顶点处,其中每个三角形的三个角角度均不等于90° 。
    • 99. 发明授权
    • Condensing lens array, and solar cell provided with same
    • 冷凝透镜阵列,以及配有相同的太阳能电池
    • US08993871B2
    • 2015-03-31
    • US14131745
    • 2012-05-22
    • Seiji Nishiwaki
    • Seiji Nishiwaki
    • H01L31/052F24J2/06F24J2/08G02B3/00G02B5/04G02B19/00H01L31/054
    • G02B3/0037F24S23/00F24S23/30G02B3/005G02B3/0056G02B5/045G02B19/0028G02B19/0042H01L31/0543H01L31/0547H02S20/32Y02E10/44Y02E10/52
    • A concentrating lens array according to the present disclosure includes a plurality of unit structures arranged at least one-dimensionally. Each unit structure includes: a first surface through which light enters inside of the structure; a second surface which reflects the light that has entered the structure through the first surface; a third surface which reflects the light that has been reflected from the second surface; and a fourth surface which lets the light that has been reflected from the third surface go out of the structure. In each unit structure, the second and third surfaces are located between an incident plane including the first surface and an emitting plane including the fourth surface. At least one of the second and third surfaces reflects the light after having converged the incoming light. When viewed from over the incident plane, the second surface of each unit structure is laid upon the third surface of an adjacent unit structure, and is located closer to the incident plane than the third surface of the adjacent unit structure is.
    • 根据本公开的集中透镜阵列包括至少一维排列的多个单元结构。 每个单元结构包括:第一表面,光通过该第一表面进入结构内部; 第二表面,其通过所述第一表面反射已经进入所述结构的光; 反射从第二表面反射的光的第三表面; 以及第四表面,其使已经从第三表面反射的光离开结构。 在每个单元结构中,第二和第三表面位于包括第一表面的入射平面和包括第四表面的发射平面之间。 第二和第三表面中的至少一个在聚光入射光之后反射光。 当从入射面观察时,每个单元结构的第二表面被放置在相邻单元结构的第三表面上,并且位于比相邻单元结构的第三表面更靠近入射平面的位置。
    • 100. 发明申请
    • IMAGING DEVICE
    • 成像装置
    • US20140124650A1
    • 2014-05-08
    • US14008750
    • 2012-12-18
    • Tatsuya NakamuraSeiji NishiwakiShinichi WakabayashiMasaaki Suzuki
    • Tatsuya NakamuraSeiji NishiwakiShinichi WakabayashiMasaaki Suzuki
    • H01L27/146
    • H01L27/14625H01L27/14629H01L27/14645H01L31/0232H01L31/02325H04N9/045H04N9/097
    • The imaging device disclosed herein includes: a plurality of photodetection sections 15a and 15b having a light-receiving face, the plurality of photodetection sections 15a and 15b being disposed in a two-dimensional array along a first direction and along a second direction different from the first direction, such that the light-receiving faces of the plurality of photodetection sections constitute an imaging plane; a transparent layer 11 having an incident face and an outgoing face and being disposed so that the outgoing face opposes the imaging plane; and a plurality of spectroscopic sections 12 having a greater refractive index than a refractive index of the transparent layer 11 and being disposed in a two-dimensional array in a plane of arrangement, the plane of arrangement being within the transparent layer and parallel to the imaging plane. Zeroth order diffracted light 13 and ±first order diffracted light 14, derived from light transmitted through each spectroscopic section and a portion of the transparent layer neighboring the spectroscopic section, respectively enter distinct photodetection sections among the plurality of photodetection sections. An interval between two adjacent spectroscopic sections along a predetermined direction is smaller at the periphery than at the center of the imaging plane.
    • 本文公开的成像装置包括:具有光接收面的多个光电检测部分15a和15b,多个光电检测部分15a和15b沿着第一方向设置成二维阵列,并且沿着与 第一方向,使得多个光电检测部分的光接收面构成成像平面; 具有入射面和出射面的透明层11,其设置成使得出射面与成像面相对; 以及多个分光部12具有比透明层11的折射率更大的折射率,并且在布置平面中以二维阵列设置,该布置平面在透明层内并平行于成像 飞机 衍射自透过每个分光部分的光和邻近分光部分的透明层的一部分的零级衍射光13和±一级衍射光14分别在多个光电检测部分中输入不同的光检测部分。 沿着预定方向的两个相邻光谱部分之间的间隔在周边比在成像平面的中心处更小。