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    • 71. 发明申请
    • THREE-DIMENSIONAL IMAGE DISPLAY SYSTEM
    • 三维图像显示系统
    • US20080186308A1
    • 2008-08-07
    • US12025960
    • 2008-02-05
    • Yoshio SuzukiQingyu LuKyohei IwamotoXueming Yu
    • Yoshio SuzukiQingyu LuKyohei IwamotoXueming Yu
    • G06T15/00
    • H04N13/398H04N13/32
    • Disclosed herein is a three-dimensional image display system, including: a multi-parallax image reproduction apparatus configured to reproduce two-dimensional images, which include a plurality of parallax images within one frame, at a first frame rate; and a three-dimensional display apparatus configured to carry out multi-parallax stereoscopic moving picture display at a second frame rate based on a plurality of parallax images reproduced by the multi-parallax image reproduction apparatus where one frame of stereoscopic moving pictures is formed from a multi-parallax image formed from a predetermined number of parallax images; the multi-parallax image reproduction apparatus reproducing an image wherein control information is included in any of the parallax images for every one frame or every plurality of frames, the three-dimensional image display apparatus carrying out control in accordance with the control information included in the parallax images to carry out the multi-parallax stereoscopic moving picture display.
    • 本文公开了一种三维图像显示系统,包括:多视差图像再现装置,被配置为以第一帧速率再现包括一帧内的多个视差图像的二维图像; 以及三维显示装置,被配置为基于由多视差图像再现装置再现的多个视差图像以第二帧速率执行多视差立体运动图像显示,其中一帧立体运动图像由 由预定数量的视差图像形成的多视差图像; 所述多视差图像再现装置再现其中控制信息被包含在每一帧或每一帧的任何视差图像中的图像,所述三维图像显示装置根据包含在所述视差图像中的控制信息进行控制 视差图像进行多视差立体动画显示。
    • 72. 发明申请
    • DISK DRIVE AND DRIVE UNIT DRIVING MECHANISM
    • 磁盘驱动和驱动单元驱动机制
    • US20080077947A1
    • 2008-03-27
    • US11947696
    • 2007-11-29
    • Kouji SekiKeiji TokitaKazuya TanakaYoshio Suzuki
    • Kouji SekiKeiji TokitaKazuya TanakaYoshio Suzuki
    • G11B17/04
    • G11B17/0404G11B17/26
    • The present invention provides a simple disk drive and drive unit driving mechanism with compact size in which each part is able to operate smoothly. The disk drive and drive unit driving mechanism comprise a disk holder 10 that has a plurality of holder plates 11 that individually hold disks D, a drive unit 62 that plays back disks D, disk selectors 41A and 41B that form a space above and below a desired disk D by raising and lowering the holder plates 11, and a drive base 60 that moves the drive unit 62 into a space that is formed by raising and lowering the holder plates 11. The disk selectors 41A and 41B are provided with flat cams 41Aa to 41Ac and 41Ba to 41Bc in which the protrusion 14a provided on the holder plate 11 is inserted so as to be capable of performing a sliding movement, such that the tips of the cams are wedge-shaped. The holder plates 11 above and below the desired disk D rise and fall in accordance with the sliding movement of the disk selectors 41A and 41B.
    • 本发明提供了一种具有紧凑尺寸的简单的盘驱动器和驱动单元驱动机构,其中每个部件能够平稳地操作。 磁盘驱动器和驱动单元驱动机构包括盘保持器10,该盘保持器10具有多个单独保持盘D的保持板11,回放盘D的驱动单元62,形成上述空间的盘选择器41A和41B 通过升高和降低保持板11而将驱动单元62移动到通过升高和降低保持板11而形成的空间中的驱动基座60在期望的盘D之下。 盘选择器41A和41B设置有平坦凸轮41Aa至41Ac和41Ba至41Bc,其中设置在保持板11上的突出部14a插入以能够执行滑动运动, 凸轮的尖端是楔形的。 根据盘选择器41A和41B的滑动运动,期望的盘D上方和下方的保持板11上升和下降。
    • 74. 发明申请
    • Disk holder, disk alignment mechanism and disk drive
    • 磁盘架,磁盘对齐机构和磁盘驱动器
    • US20070086285A1
    • 2007-04-19
    • US10551684
    • 2004-03-31
    • Keiji TokitaKouji SekiKazuya TanakaYoshio SuzukiShouichiro Kokubo
    • Keiji TokitaKouji SekiKazuya TanakaYoshio SuzukiShouichiro Kokubo
    • G11B21/08
    • G11B17/30G11B17/223
    • A disk holder, disk alignment mechanism and disk drive employing same that for permitting accurate alignment of a disk are provided. The disk drive comprises a disk holder 10 that comprises a plurality of holder plates 11 that individually hold disks D, a drive unit 62 that plays back disks D, disk selectors 41A and 41B that form a space above and below a desired disk D by raising and lowering the holder plates 11, and a drive base 60 that moves the drive unit 62 into the space that is formed as a result of raising and lowering the holder plates 11. Disk hold links 17 and 18 comprising catches 17a and 18a respectively that engage with and disengage from the center hole of disk D are provided on the holder plates 11 such that the disk hold links 17 and 18 are able to turn, and a disk hold arm 16 that allows the disk hold links 17 and 18 to turn is provided so as to be able to perform a sliding movement.
    • 提供了一种盘保持器,盘对准机构和使用该盘驱动器的盘驱动器,用于允许盘的精确对准。 磁盘驱动器包括盘保持器10,该盘保持器10包括单独保持盘D的多个保持器板11,回放盘D的驱动单元62,在期望盘D上方和下方形成空间的盘选择器41A和41B 通过升高和降低保持板11,以及将驱动单元62移动到由于升高和降低保持板11而形成的空间的驱动基座60。 包括分别与盘D的中心孔啮合并与盘D中心孔分离的卡盘17a和18a的盘保持连杆17和18设置在保持板11上,使得盘保持连杆17和18能转动,并且盘 提供允许盘保持连杆17和18转动的保持臂16,以便能够执行滑动。
    • 77. 发明申请
    • Disk device and drive unit-driving mechanism
    • 磁盘设备和驱动单元驱动机制
    • US20070011692A1
    • 2007-01-11
    • US10551274
    • 2004-03-31
    • Kouji SekiKeiji TokitaKazuya TanakaYoshio Suzuki
    • Kouji SekiKeiji TokitaKazuya TanakaYoshio Suzuki
    • G11B17/04
    • G11B17/0404G11B17/26
    • The present invention provides a simple disk drive and drive unit driving mechanism with compact size in which each part is able to operate smoothly. The disk drive and drive unit driving mechanism comprise a disk holder 10 that has a plurality of holder plates 11 that individually hold disks D, a drive unit 62 that plays back disks D, disk selectors 41A and 41B that form a space above and below a desired disk D by raising and lowering the holder plates 11, and a drive base 60 that moves the drive unit 62 into a space that is formed by raising and lowering the holder plates 11. The disk selectors 41A and 41B are provided with flat cams 41Aa to 41Ac and 41Ba to 41Bc in which the protrusion 14a provided on the holder plate 11 is inserted so as to be capable of performing a sliding movement, such that the tips of the cams are wedge-shaped. The holder plates 11 above and below the desired disk D rise and fall in accordance with the sliding movement of the disk selectors 41A and 41B.
    • 本发明提供了一种具有紧凑尺寸的简单的盘驱动器和驱动单元驱动机构,其中每个部件能够平稳地操作。 磁盘驱动器和驱动单元驱动机构包括盘保持器10,该盘保持器10具有多个单独保持盘D的保持板11,回放盘D的驱动单元62,形成上述空间的盘选择器41A和41B 通过升高和降低保持板11而将驱动单元62移动到通过升高和降低保持板11而形成的空间中的驱动基座60在期望的盘D之下。 盘选择器41A和41B设置有平坦凸轮41Aa至41Ac和41Ba至41Bc,其中设置在保持器板11上的突起14a插入以能够执行滑动运动, 凸轮的尖端是楔形的。 根据盘选择器41A和41B的滑动运动,期望的盘D上方和下方的保持板11上升和下降。
    • 78. 发明申请
    • Backup system, program and backup method
    • 备份系统,程序和备份方法
    • US20060224639A1
    • 2006-10-05
    • US11132175
    • 2005-05-19
    • Satoru WatanabeYoshio SuzukiShinji Fujiwara
    • Satoru WatanabeYoshio SuzukiShinji Fujiwara
    • G06F17/30
    • G06F11/2097Y10S707/99953
    • Provided is a backup method including a step (S1) of reading a log which is a data update difference, and identifying a data storage area (page) of backup data, a step (S2) of determining high/low reusability of the identified data storage area, a step (S3) of storing a log corresponding to a data storage area determined to be low in reusability in a log storage area preset on a memory, and a step (S4) of applying a log corresponding to a data storage area determined to be high in reusability to the identified data storage area in a cache area set on the memory, and updating the data storage area. Thus, by further reducing the number of I/O times in an external storage system of a standby system which backs up data by log transfer, it is possible to reduce introduction costs of a backup system and its normal-time operation's costs at normal times.
    • 提供了一种备份方法,包括:读取作为数据更新差异的日志的步骤(S1)和识别备份数据的数据存储区域(页面);确定备份数据的高/低可重用性的步骤(S 2) 识别数据存储区域的步骤(S 3),将对应于确定为可重用性较低的数据存储区域的日志存储在预先存储在存储器上的日志存储区域中的步骤(S 3)以及应用对应于 数据存储区域被确定为对存储器中设置的高速缓存区域中的所识别的数据存储区域的可再利用性高,并且更新数据存储区域。 因此,通过进一步减少通过日志传送备份数据的备用系统的外部存储系统中的I / O次数,可以降低备用系统的引入成本和正常时间操作的成本 。
    • 79. 发明授权
    • Failover method in a redundant computer system with storage devices
    • 具有存储设备的冗余计算机系统中的故障切换方法
    • US07117393B2
    • 2006-10-03
    • US10834979
    • 2004-04-30
    • Tsunehiko BabaShinji FujiwaraYoshio Suzuki
    • Tsunehiko BabaShinji FujiwaraYoshio Suzuki
    • G06F11/00
    • G06F11/2023G06F11/2038G06F11/2069G06F11/2084
    • A high availability database system, subject to a failure causing data corruption in the active server system, may recover valid data prior to the corruption, and use the protected and recovered data to effect a failover. At the time when a stand-by computer system detects occurrence of a failure, a pair split is done to the data area to protect the data area data of time T0, just before the occurrence of the failure, and another pair split is done to the log area at the time, where the log area is corrupted or a time T3, where the failover is to take effect without corrupting data, to protect the log area containing data at a given time between time T0 and time T3. By using the data and log areas thus protected, the stand-by computer system may take over valid data and log areas to perform a failover.
    • 高可用性数据库系统受到在活动服务器系统中导致数据损坏的故障的影响,可能会在损坏之前恢复有效数据,并使用受保护和恢复的数据实现故障切换。 当备用计算机系统检测到故障发生时,对数据区域进行对分割,以在发生故障之前保护时间T 0的数据区域数据,并且另一对分裂完成 到日志区域被破坏的日志区域或时间T 3,其中故障转移将在不破坏数据的情况下生效,以在时间T 0和时间T 3之间的给定时间保护包含数据的日志区域 。 通过使用受保护的数据和日志区域,备用计算机系统可以接管有效的数据和日志区域以执行故障转移。