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    • 11. 发明申请
    • OPENING-AND-CLOSING MECHANISM AND LATCHING MECHANISM
    • 开放关闭机制和锁定机制
    • US20100293749A1
    • 2010-11-25
    • US11997483
    • 2006-08-03
    • Naoki OhashiTetsuya Abe
    • Naoki OhashiTetsuya Abe
    • E05D11/10E05D11/00E05C19/00
    • E05D11/105E05D11/1064E05D11/1078E05F5/00E05Y2201/21E05Y2201/26E05Y2201/266E05Y2900/606Y10T16/537Y10T16/54Y10T16/54028Y10T292/03
    • Provided is an opening-and-closing mechanism that can be latched at a predetermined opening angle, wherein the latching can be disengaged with a small force in the opening direction whereas the latching is gradually disengaged in the closing direction. An opening-and-closing mechanism 1 includes a first supporting member 9 and a second supporting member 7 disposed relatively rotatable around a rotary axis; a plurality of protruding portions 15 provided on the first supporting member 9; and a plurality of depressed portions 23A, 23B, 23C, 23D, 23E, and 23F provided on the second supporting member 7 and engaged with the plurality of protruding portions 15, wherein, when the first supporting member 9 and the second supporting member 7 are in a plurality of predetermined relative alignments, some of the plurality of protruding portions 15 and some of the plurality of depressed portions 23A, 23B, 23C, 23D, 23E, and 23F are engaged, and wherein forces required for disengaging the protruding portions 15 and the depressed portions 23A, 23B, 23C, 23D, 23E, and 23F by rotating at least one of the first supporting member 9 and second supporting member 7 differ in a first rotation direction and a second rotation direction.
    • 提供一种开闭机构,其可以以预定的开启角度被锁定,其中可以以小的打开方向的力分离闩锁,而闩锁在闭合方向上逐渐脱离。 开闭机构1包括第一支撑构件9和第二支撑构件7,第二支撑构件7围绕旋转轴线相对旋转设置; 设置在第一支撑构件9上的多个突出部15; 以及设置在第二支撑构件7上并与多个突出部15接合的多个凹部23A,23B,23C,23D,23E,23F,其中,当第一支撑构件9和第二支撑构件7为 在多个预定的相对对准中,多个突出部分15中的一些和多个凹陷部分23A,23B,23C,23D,23E和23F中的一些接合,并且其中使突出部分15和 通过旋转第一支撑构件9和第二支撑构件7中的至少一个的凹部23A,23B,23C,23D,23E和23F在第一旋转方向和第二旋转方向上不同。
    • 12. 发明授权
    • Storage apparatus
    • 储存装置
    • US07594051B2
    • 2009-09-22
    • US11121012
    • 2005-05-04
    • Tetsuya Abe
    • Tetsuya Abe
    • G06F13/12G06F13/38G06F12/00G06F7/02G11C29/00
    • G06F11/1612G06F11/2058
    • The storage apparatus is provided with a host interface adapter unit, a storage interface adapter unit, a cache memory unit storing data temporarily, a switch unit connecting the host interface adapter unit, the storage interface adapter unit, and the cache memory unit, a compressed data circuit unit producing compressed data based upon writing data into the physical storing device, and a compressed data saving unit saving compressed data produced in the compressed data circuit unit, where the compressed data circuit unit compressed reading data at a reading time of the data from the physical storing device, and compares the compressed data with compressed data corresponding to reading data saved in the compressed data saving unit with each other, and detects data rigging.
    • 存储装置设置有主机接口适配器单元,存储接口适配器单元,临时存储数据的高速缓存存储单元,连接主机接口适配器单元,存储接口适配器单元和高速缓冲存储器单元的开关单元,压缩 数据电路单元,其基于将数据写入物理存储装置而产生压缩数据;以及压缩数据保存单元,其保存压缩数据电路单元中生成的压缩数据,其中压缩数据电路单元在读取数据的数据时将数据压缩 物理存储装置,并且将压缩数据与对应于保存在压缩数据保存单元中的读取数据的压缩数据进行比较,并且检测数据索引。
    • 14. 发明申请
    • White balance adjusting device, imaging apparatus, and recording medium storing white balance adjusting program
    • 白平衡调节装置,成像装置和存储白平衡调节程序的记录介质
    • US20080266417A1
    • 2008-10-30
    • US12076181
    • 2008-03-14
    • Tetsuya Abe
    • Tetsuya Abe
    • H04N9/73
    • H04N9/735H04N1/6077
    • A white balance adjusting device includes a dividing unit which divides an image to be processed into plural small areas, a calculating unit which calculates evaluation values of each small area based on color information of the image, a judging unit which judges whether to use the evaluation values of a small area of attention for white balance calculation based on a relationship between the evaluation values of the small area of attention and the evaluation values of small areas adjacent to the small area of attention among the evaluation values of the plural small areas, and a calculating unit which performs white balance calculation based on a judgment result of the judging unit. Therefore, color failure is suppressed and white balance adjustment can be performed properly.
    • 白平衡调整装置包括:分割单元,其将要处理的图像分割成多个小区域;计算单元,其基于图像的颜色信息计算每个小区域的评估值;判断单元,判断是否使用评估 基于小区域的评价值与小区域的评价值之间的小区域的小区域的评价值之间的关系,基于多个小区域的评价值之间的关系的白平衡计算的小的注意区域的值,以及 计算单元,其基于判断单元的判断结果执行白平衡计算。 因此,能够抑制色差,能够适当地进行白平衡调整。
    • 15. 发明授权
    • Storage system with disk array controllers that independently manage data transfer
    • 具有独立管理数据传输的磁盘阵列控制器的存储系统
    • US07418549B2
    • 2008-08-26
    • US10769303
    • 2004-01-30
    • Tetsuya Abe
    • Tetsuya Abe
    • G06F12/00
    • G06F12/0868G06F3/0605G06F3/0646G06F3/0653G06F3/067G06F2212/284
    • A disk storage system is disclosed, in which disk storage units themselves can autonomously transmit data to complement storage of data between the disk storage units without provision of an exclusive device for managing those disk storage units. The disk storage system includes a disk array system. The disk storage units are connected to one or more host computers and to at least two other disk storage units, the disk storage units comprising a data transmission means for executing the processing of transmission of data between them and the other disk storage units, and a connecting adapter retaining management information of data having been subjected to transmission processing by the data transmission means.
    • 公开了一种磁盘存储系统,其中磁盘存储单元本身可以自主地传输数据以补充磁盘存储单元之间的数据存储,而不需要用于管理这些磁盘存储单元的专用设备。 磁盘存储系统包括磁盘阵列系统。 磁盘存储单元连接到一个或多个主计算机和至少两个其他磁盘存储单元,磁盘存储单元包括数据传输装置,用于执行在它们与其它磁盘存储单元之间传输数据的处理,以及 连接适配器保持由数据发送装置进行了发送处理的数据的管理信息。
    • 16. 发明申请
    • Storage system and control method thereof
    • 存储系统及其控制方法
    • US20070220307A1
    • 2007-09-20
    • US11412961
    • 2006-04-28
    • Kenji IshiiAkira MurotaniTetsuya Abe
    • Kenji IshiiAkira MurotaniTetsuya Abe
    • G06F11/00
    • G06F11/008G06F11/1076G06F2211/1088
    • Provided is a storage system, including: one or more disk drives storing data; a disk controller for controlling data access to the disk drive; a power supply controller for autonomously turning off a power source of the disk drive according to the data access status to the disk drive, and autonomously turning on the power source of the disk drive, which was turned off, after the lapse of a prescribed period from the time the power source was turned off irrespective of the data access status to the disk drive; and a media inspection unit for inspecting a failure in the disk drive in which the power source thereof was autonomously turned on irrespective of the data access status to the disk drive.
    • 提供了一种存储系统,包括:存储数据的一个或多个磁盘驱动器; 磁盘控制器,用于控制对磁盘驱动器的数据访问; 电源控制器,用于根据磁盘驱动器的数据访问状态自主地关闭磁盘驱动器的电源,并且在经过规定的时间段之后自动打开被关闭的磁盘驱动器的电源 从电源关闭的时间开始,不管磁盘驱动器的数据访问状态如何; 以及媒体检查单元,用于检查磁盘驱动器的故障,其中其电源被自动地接通,而与盘驱动器的数据访问状态无关。
    • 20. 发明授权
    • Arbitrary-shape image-processing device and arbitrary-shape image-reproducing device
    • 任意形状的图像处理装置和任意形状的图像再现装置
    • US06959113B2
    • 2005-10-25
    • US09949760
    • 2001-09-12
    • Nobuaki AbeTetsuya Abe
    • Nobuaki AbeTetsuya Abe
    • G06T1/00G06T5/00G06K9/46G06K9/48
    • G06T1/0007G06T2207/20104
    • An arbitrary-shape image-processing device comprises a CCD by which a two-dimensional image is obtained. The image may be rectangular, and a contour of an image area contained in the image may be a circle. Pixel values contained in the image area are converted to a one-dimensional data array, and are recorded in a recording medium. Further, the numbers of pixels of the vertical and the lateral lengths of the two-dimensional image, the coordinates of the center of the circle of the image area, and the radius of the circle are recorded in the recording medium as shape information. Thus, all of the image data of the two-dimensional image is not recorded in the recording medium, but only the image data contained in the image area and the shape information are recorded.
    • 任意形状的图像处理装置包括通过其获得二维图像的CCD。 图像可以是矩形的,并且包含在图像中的图像区域的轮廓可以是圆形。 包含在图像区域中的像素值被转换为一维数据阵列,并被记录在记录介质中。 此外,将二维图像的垂直像素和横向长度的数量,图像区域的圆心的坐标和圆的半径记录在记录介质中作为形状信息。 因此,二维图像的所有图像数据都不被记录在记录介质中,而仅记录包含在图像区域中的图像数据和形状信息。