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    • 12. 发明申请
    • METHOD OF IMPROVING EFFICIENCY OF REPLICATION MONITORING
    • 提高再生监测效率的方法
    • US20120016957A1
    • 2012-01-19
    • US13243551
    • 2011-09-23
    • Hironori EMARUYuichi YagawaHiroyuki Inoue
    • Hironori EMARUYuichi YagawaHiroyuki Inoue
    • G06F15/16
    • G06F3/0605G06F3/0653G06F3/067G06F11/2069G06F11/2087
    • Provided is a copy pair monitoring method which is for a storage system having at least one host computer, at least one storage subsystem, and a management computer, the storage subsystem including volumes storing data requested by the host computer to be written, the management computer being accessible to the host computer and the storage subsystem. The copy pair monitoring method is characterized by including the steps of: obtaining every piece of copy pair definition information that is stored in the host computer; removing duplicate copy pair definition information from the whole copy pair definition information obtained; and collecting the copy pair status based on the obtained copy pair definition information from which duplicate copy pair definition information has been removed.
    • 提供了一种用于具有至少一个主计算机,至少一个存储子系统和管理计算机的存储系统的副本对监视方法,所述存储子系统包括存储由主计算机要求写入的数据的卷,管理计算机 可由主机和存储子系统访问。 复制对监视方法的特征在于包括以下步骤:获得存储在主计算机中的每一个复制对定义信息; 从所获得的整个复制对定义信息中删除重复副本对定义信息; 以及基于所获得的复制对定义信息来收集复制对状态,从而复制副对定义信息已被从其去除。
    • 17. 发明授权
    • Image forming apparatus having a transporting unit, a detector and a voltage controller
    • 具有传送单元,检测器和电压控制器的图像形成装置
    • US07756429B2
    • 2010-07-13
    • US11860103
    • 2007-09-24
    • Hiroyuki Inoue
    • Hiroyuki Inoue
    • G03G15/00
    • G03G15/0266G03G15/0194G03G15/5058G03G2215/00059
    • An image forming apparatus includes at least one image forming section, which includes an image bearing body, a charging unit that charges an area on a surface of the image-bearing body, and a developing unit that supplies a developer material to the charged area to form a developer image on the image bearing body. The developer image is transferred from the image-bearing body onto a transporting unit. A detector detects a density of the developer image on the transporting unit. The controller performs a charging voltage correcting operation in which the controller provides a test charging voltage to the charging unit for forming the developer image, and then a normal charging voltage for normal printing is determined based on the density. The controller also performs a developer-supplying voltage correcting operation in which a developer-supplying voltage supplied to a developer supplying unit is determined based on the density.
    • 图像形成装置包括至少一个图像形成部分,其包括图像承载体,对图像承载体的表面上的区域充电的充电单元以及将显影剂材料供应到充电区域的显影单元 在图像承载体上形成显影剂图像。 显影剂图像从图像承载体转印到传送单元上。 检测器检测传送单元上的显影剂图像的密度。 控制器执行充电电压校正操作,其中控制器向充电单元提供测试充电电压以形成显影剂图像,然后基于密度确定正常打印的正常充电电压。 控制器还执行显影剂供应电压校正操作,其中基于密度确定供应给显影剂供应单元的显影剂供应电压。
    • 18. 发明申请
    • Radiator core support structure
    • 散热器核心支撑结构
    • US20100163324A1
    • 2010-07-01
    • US12308265
    • 2007-05-08
    • Noboru JyoutakiHiroyuki Inoue
    • Noboru JyoutakiHiroyuki Inoue
    • B60K11/04F28D1/00
    • B62D25/084B60K11/04
    • A radiator core support structure includes a radiator core support, a first heat exchanger and a second heat exchanger. The radiator core support has a lower radiator core support member. The first heat exchanger is arranged to face a front surface of the lower radiator core support member to cover a front surface thereof. The second heat exchanger is aligned with the first heat exchanger at a rear side thereof. The lower radiator core support member is formed with an airflow space that is formed inside of the lower radiator core support member to extend in a lateral direction of a vehicle. The airflow space is fluidically connected with an intake opening portion that is formed on the front surface of the lower radiator core support member at a position where the first heat exchanger faces the lower radiator core support member to cover, and also with an exhaust opening portion that is formed at on a partial portion of the lower radiator core support member.
    • 散热器芯支撑结构包括散热器芯支撑件,第一热交换器和第二热交换器。 散热器芯支撑件具有较低的散热器芯支撑构件。 第一热交换器被布置成面向下散热器芯支撑构件的前表面以覆盖其前表面。 第二热交换器在其后侧与第一热交换器对准。 下散热器芯支撑构件形成有气流空间,其形成在下散热器芯支撑构件的内部以在车辆的横向方向上延伸。 气流空间与在第一热交换器面向下散热器芯支撑构件覆盖的位置处形成在下散热器芯支撑构件的前表面上的进气开口部分流动连接,并且还具有排气开口部分 其形成在下散热器芯支撑构件的部分部分上。