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    • 2. 发明授权
    • Image processing apparatus, image processing method and scheduling apparatus
    • 图像处理装置,图像处理方法和调度装置
    • US08648934B2
    • 2014-02-11
    • US13152983
    • 2011-06-03
    • Ryohei TakahashiNobuhiko Ando
    • Ryohei TakahashiNobuhiko Ando
    • H04N5/76H04N3/14H04N5/335
    • H04N5/23229
    • An image processing apparatus for performing image processing to image data, including: an image computing unit which performs to the image data the image processing including a matrix process performing a computation by using a pixel value of a plurality of pixels represented in a first direction and a second direction intersecting the first direction; a scheduling unit which calculates a number of wait pixels between first image frame and second image frame in the image data based on a size of the plurality of pixels and a presence or absence of an edge process of performing the matrix process using a copied pixel value; and an image data input control unit which outputs the image data of the first image frame to the image computing unit, delays an output of the image data of the second image frame by the number of wait pixels, and outputs the image data of the second image frame to the image computing unit.
    • 一种用于对图像数据进行图像处理的图像处理装置,包括:图像计算单元,对图像数据执行图像处理,该图像处理包括通过使用在第一方向上表示的多个像素的像素值执行计算的矩阵处理,以及 与第一方向相交的第二方向; 调度单元,其基于多个像素的大小来计算图像数据中的第一图像帧和第二图像帧之间的等待像素的数量,以及是否存在使用复制的像素值执行矩阵处理的边缘处理 ; 以及图像数据输入控制单元,其将第一图像帧的图像数据输出到图像计算单元,将第二图像帧的图像数据的输出延迟了等待像素的数量,并输出第二图像帧的图像数据 图像帧到图像计算单元。
    • 3. 发明申请
    • IMAGE PROCESSING APPARATUS, IMAGE PROCESSING METHOD AND SCHEDULING APPARATUS
    • 图像处理装置,图像处理方法和调度装置
    • US20120200741A1
    • 2012-08-09
    • US13152983
    • 2011-06-03
    • Ryohei TAKAHASHINobuhiko ANDO
    • Ryohei TAKAHASHINobuhiko ANDO
    • G06K9/62H04N5/76
    • H04N5/23229
    • An image processing apparatus for performing image processing to image data, including: an image computing unit which performs to the image data the image processing including a matrix process performing a computation by using a pixel value of a plurality of pixels represented in a first direction and a second direction intersecting the first direction; a scheduling unit which calculates a number of wait pixels between first image frame and second image frame in the image data based on a size of the plurality of pixels and a presence or absence of an edge process of performing the matrix process using a copied pixel value; and an image data input control unit which outputs the image data of the first image frame to the image computing unit, delays an output of the image data of the second image frame by the number of wait pixels, and outputs the image data of the second image frame to the image computing unit.
    • 一种用于对图像数据进行图像处理的图像处理装置,包括:图像计算单元,对图像数据执行图像处理,该图像处理包括通过使用在第一方向上表示的多个像素的像素值执行计算的矩阵处理,以及 与第一方向相交的第二方向; 调度单元,其基于多个像素的大小来计算图像数据中的第一图像帧和第二图像帧之间的等待像素的数量,以及是否存在使用复制的像素值执行矩阵处理的边缘处理 ; 以及图像数据输入控制单元,其将第一图像帧的图像数据输出到图像计算单元,将第二图像帧的图像数据的输出延迟了等待像素的数量,并输出第二图像帧的图像数据 图像帧到图像计算单元。
    • 4. 发明申请
    • OPTICAL PICKUP AND OPTICAL DISC DEVICE
    • 光学拾取和光盘设备
    • US20100214902A1
    • 2010-08-26
    • US12703294
    • 2010-02-10
    • Fumiaki NakanoNobuhiko AndoNoriaki NishiTakashi NakaoHiroaki NakagawaYutaka Tentaku
    • Fumiaki NakanoNobuhiko AndoNoriaki NishiTakashi NakaoHiroaki NakagawaYutaka Tentaku
    • G11B7/135
    • G11B7/1353G11B7/0903G11B7/131G11B2007/0013
    • An optical pickup includes: a light source outputting a light beam; an objective lens collecting the light beam on a target recording layer as a target of plural recording layers provided in an optical disc; a lens moving unit moving the objective lens in a tracking direction nearly orthogonal to track grooves helically or coaxially formed in the target recording layer; a collective lens collecting a reflected light beam formed when the light beam is reflected by the optical disc; a diffraction optical element diffracting part of the reflected first-order light beam in predetermined directions as first, second, third and fourth beams; and a photodetector receiving the first and second beams using first and second light receiving areas, and generating light reception signals, and receiving the third and fourth beams using third and fourth light receiving areas, and generates light reception signals.
    • 光拾取器包括:输出光束的光源; 将目标记录层上的光束收集成设置在光盘中的多个记录层的目标物的物镜; 透镜移动单元,沿跟踪方向移动所述物镜,所述跟踪方向与所述目标记录层中螺旋或同轴地形成的轨道槽几乎正交; 收集当光束被光盘反射时形成的反射光束的集体透镜; 衍射光学元件将预定方向的反射一次光束的一部分衍射为第一,第二,第三和第四光束; 以及光电检测器,其使用第一和第二光接收区域接收第一和第二光束,并且产生光接收信号,并且使用第三和第四光接收区域接收第三和第四光束,并且产生光接收信号。
    • 5. 发明申请
    • Recording apparatus, recording method, program, and recording medium
    • 记录装置,记录方法,程序和记录介质
    • US20100046337A1
    • 2010-02-25
    • US11919625
    • 2006-04-27
    • Yusaku MorishigeNobuhiko Ando
    • Yusaku MorishigeNobuhiko Ando
    • G11B20/00
    • G11B20/1217G11B7/0045G11B7/00736G11B2007/0013G11B2020/1278G11B2020/1288G11B2220/237
    • The present invention relates to a recording apparatus, a recording method, a program, and a recording medium whereby data is reproduced from a two-layer optical disk that has yet to be formatted completely. A control section 51 divides a recording area of a layer L0 of the optical disk 33 into a plurality of recording regions and a recording area of a layer L1 of the same disk 33 into a plurality of recording regions at substantially the same physical positions as the recording regions of the layer L0. A control section 51 records the region where user-designated data was last written. The control section 51 controls a signal processing section 56 to write dummy data to the recording area of the layer L0 or L1 different from the layer that includes the region to which the user-designated data was last written. The signal processing section 56 is then controlled to write dummy data to the recording area of the layer containing the region where the user-designated data was last written, thus formatting the optical disk 33. This invention can be applied advantageously to the recording apparatus for recording data to optical disks.
    • 记录装置,记录方法,程序和记录介质技术领域本发明涉及从尚未完全格式化的双层光盘再现数据的记录装置,记录方法,程序和记录介质。 控制部分51将光盘33的层L0的记录区域划分成多个记录区域和同一盘33的层L1的记录区域到与所述多个记录区域大致相同的物理位置 记录层L0的区域。 控制部51记录上次写入用户指定数据的区域。 控制部分51控制信号处理部分56将虚拟数据写入与包括最后写入用户指定数据的区域的层不同的层L0或L1的记录区域。 然后控制信号处理部分56将伪数据写入包含最后写入用户指定数据的区域的记录区域,从而格式化光盘33.本发明可有利地应用于记录装置 将数据记录到光盘。
    • 7. 发明授权
    • Optical element and optical pick-up
    • 光学元件和光学拾取器
    • US06744720B2
    • 2004-06-01
    • US09760636
    • 2001-01-16
    • Nobuhiko Ando
    • Nobuhiko Ando
    • G11B700
    • G11B7/1356G11B7/1398
    • An optical pick-up able to reduce a change of an optical axis of a light beam emitted to a photodetector when the optical element is tilted. An optical element in the optical pick-up is struck with an incident light beam from a first surface of a first prism, reflects the light beam refracted at the first surface at the second surface 161b, refracts the reflected light beam at the joined surfaces of the first prism and the second prism, and further refracts the refracted light beam at the first surface of the second prism to form an emitted light beam. The direction of the incident light beam and the direction of the emitted light beam perpendicularly intersect in the same plane. The optical element is struck with the light beam from the direction of the light beam emitted from the first surface of the second prism, reflects the light beam refracted at the first surface at the film, refracts the reflected light beam at a third surface, and emits it in a direction opposite to the direction of the incident light beam to the photodetector.
    • 光学拾取器,当光学元件倾斜时能够减少发射到光电检测器的光束的光轴的变化。 光拾取器中的光学元件被来自第一棱镜的第一表面的入射光束撞击,反射在第二表面161b处的第一表面处折射的光束,在第二表面161b的接合表面处折射反射光束 第一棱镜和第二棱镜,并且进一步折射在第二棱镜的第一表面处的折射光束以形成发射光束。 入射光束的方向和发射光束的方向在同一平面内垂直相交。 光学元件被从第二棱镜的第一表面发射的光束的方向上的光束撞击,反射在膜的第一表面折射的光束,折射反射光束在第三表面,并且 以与入射光束的方向相反的方向将其发射到光电检测器。
    • 9. 发明授权
    • Optical head including multiple photo detectors for reading signals and
error signals for servoing from both a read-only recording medium and a
magneto-optical recording medium
    • 光头包括用于从只读记录介质和磁光记录介质两者读取信号和用于伺服的误差信号的多个光电检测器
    • US5479387A
    • 1995-12-26
    • US355429
    • 1994-12-13
    • Nobuhiko AndoRyo AndoKazuhiko Fujiie
    • Nobuhiko AndoRyo AndoKazuhiko Fujiie
    • G11B7/00G11B7/004G11B7/005G11B7/09G11B7/095G11B7/13G11B11/10G11B11/105G11B13/04G11B19/00G11B19/12
    • G11B7/131G11B11/10597G11B13/04G11B19/00G11B19/12G11B7/005G11B7/0903G11B7/0909G11B7/0941G11B7/0943
    • An optical recording/reproducing head device which includes a diffraction grating for splitting a light beam radiated from a light source into at least three light beams, an objective lens for converging the three light beams on a signal recording surface of a disc-shaped optical recording medium, driving means for driving the objective lens along a direction parallel to its optical axis and within a plane perpendicular to the optical axis, a beam splitter for splitting the light beam incident via the objective lens, a first photodetector having a light-receiving surface divided by two boundary lines into four sections, second and third photodetectors arrayed in a direction parallel to one of the boundary lines on both sides of the first photodetector and fourth and fifth photodetectors arrayed in a direction perpendicular to the one of the boundary lines on both sides of the first photodetector, a splitting optical element arranged between the photodetectors and the beam splitter for splitting each of the three light beams from the diffraction grating into three more light beams, and a focusing error detection optical element arranged between the photodetectors and the beam splitter, the focusing detection optical element causing changes in the shape of a spot on the light receiving surface of the first photodetector in accordance with displacement of the disc-shaped optical recording medium in a direction perpendicular to the in-plane direction of the disc-shaped optical recording medium.
    • 一种光记录/再现头装置,包括用于将从光源辐射的光束分成至少三个光束的衍射光栅,用于将三个光束会聚在盘形光学记录的信号记录表面上的物镜 介质驱动装置,用于沿平行于其光轴的方向并在垂直于光轴的平面内驱动物镜;分束器,用于分离通过物镜入射的光束;第一光电检测器,具有光接收表面 将两条边界线划分为四个部分,第二和第三光电探测器沿平行于第一光电检测器两侧边界线之一的方向排列,第四和第五光电检测器沿垂直于两条边界线之一的方向排列 第一光电检测器的侧面,布置在光电检测器和分束器之间的分束光学元件 将来自衍射光栅的三个光束中的每一个光束分成三个光束,以及布置在光电检测器和分束器之间的聚焦误差检测光学元件,聚焦检测光学元件引起光接收点上的光斑形状的变化 第一光电检测器的表面根据盘状光记录介质在垂直于盘形光记录介质的面内方向的方向上的位移。