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    • 3. 发明授权
    • Method and apparatus for storing and managing data
    • 用于存储和管理数据的方法和装置
    • US07277880B1
    • 2007-10-02
    • US09782988
    • 2001-02-13
    • Hitoshi SekineJunichi Ota
    • Hitoshi SekineJunichi Ota
    • G06F17/30H04N1/40G06F12/00
    • G06F17/30011Y10S707/99933
    • A method and apparatus is provided for automatically storing and managing digital data. Digital data is periodically received from a variety of sources. Example digital data include, without limitation, facsimile data, scanned document data, copier data, printer data and email data. The received digital data is automatically stored on a WORM storage device. The data stored on the WORM storage device may be automatically indexed and search queries processed against the index to locate digital data stored on the WORM storage device. Other embodiments include the use of meta data and an automatic watchdog process may be employed to periodically process search queries against the data stored on the WORM storage device.
    • 提供了一种用于自动存储和管理数字数据的方法和装置。 从各种来源定期接收数字数据。 示例数字数据包括但不限于传真数据,扫描的文档数据,复印机数据,打印机数据和电子邮件数据。 接收的数字数据自动存储在WORM存储设备上。 存储在WORM存储设备上的数据可以被自动索引,并且针对索引处理搜索查询以定位存储在WORM存储设备上的数字数据。 其他实施例包括使用元数据,并且可以采用自动看门狗过程来周期性地对存储在WORM存储设备上的数据进行搜索查询。
    • 4. 发明授权
    • System for capturing images from a peripheral unit and transferring the captured images to an image management server
    • US06785013B1
    • 2004-08-31
    • US09311738
    • 1999-05-14
    • Junichi OtaJi-Hwan Gary Liu
    • Junichi OtaJi-Hwan Gary Liu
    • G06F312
    • H04N1/00912H04N1/00204H04N1/32358H04N1/32561H04N2201/0081H04N2201/0087H04N2201/3288
    • An image data storing system, and more particularly a video capture controller to capture raw video image data from a peripheral unit and to provide compressed video image data to a document image management server. The video capture controller includes a control processor, a first memory, and a second memory. The first memory stores raw video image data from the peripheral unit under control of the control processor. The raw video image data stored in the first memory is then converted into compressed video image data, and is then stored in the second memory, again under control of the control processor. Then, the compressed video image data from the second memory is transferred to the image management server. Moreover, the control processor stops any executing operation of converting the raw video image data stored in the first memory into compressed video image data and stops any executing of the transfer of the compressed video image data from the second memory to the image management server while the first memory is storing the raw video image data. A third memory may further be provided between the peripheral unit and the first memory. This third memory can be a page memory which performs a direct memory access of the raw video image data output from the peripheral unit into the page memory. The raw video image data may be initially output to the page memory when the page memory is set to a maximum page size. Then, the page size setting of the third memory can be changed based on subsequently received page size data. These operations ensure that the raw video image data can be quickly stored in a first memory, which may prevent having to reduce a speed of generating the raw video image data in the peripheral unit. Further, if the raw video image data is output prior to outputting accompanying commands indicating a page size of the raw video image data, no raw video image data will be lost.