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    • 71. 发明申请
    • IMAGE FORMING APPARATUS
    • 图像形成装置
    • US20100196036A1
    • 2010-08-05
    • US12695337
    • 2010-01-28
    • Takao Nakajima
    • Takao Nakajima
    • G03G15/20
    • G03G15/657G03G15/2028G03G2215/00413G03G2215/00945
    • An image forming apparatus includes a transfer unit configured to transfer a toner image to a sheet, a fixing unit configured to fix the toner image transferred to the sheet on the sheet, a conveyance unit disposed between the transfer unit and the fixing unit to convey the sheet, a moving unit configured to move the conveyance unit, and a control unit configured to controls the moving unit to move the conveyance unit so that a speed of a leading edge of the sheet conveyed from the transfer unit to the fixing unit is reduced, when the leading edge of the sheet reaches the fixing unit.
    • 图像形成装置包括被配置为将调色剂图像转印到片材的转印单元,被配置为将转印到片材上的调色剂图像固定在片材上的定影单元,设置在转印单元和定影单元之间的输送单元, 移动单元,其构造成移动所述输送单元;以及控制单元,其被配置为控制所述移动单元移动所述输送单元,使得从所述转印单元传送到所述定影单元的所述纸张的前端的速度减小, 当纸张的前缘到达定影单元时。
    • 72. 发明申请
    • METHOD AND COMPUTER PROGRAM FOR REDUCING POWER CONSUMPTION OF A COMPUTING SYSTEM
    • 用于降低计算机系统功耗的方法和计算机程序
    • US20080065919A1
    • 2008-03-13
    • US11866896
    • 2007-10-03
    • Keisuke HatasakiTakao NakajimaYoshifumi Takamoto
    • Keisuke HatasakiTakao NakajimaYoshifumi Takamoto
    • G06F1/32G06F9/46
    • G06F1/3203G06F1/329G06F9/5088G06F9/5094Y02D10/22Y02D10/24Y02D10/32
    • In a computing system where multiple servers are connected through a network and one or more jobs are run, a power reduction facility of a supervisory server relocates jobs according to predetermined conditions, thereby reducing the amount of power consumed by the computing system. For relocating the jobs, the power reduction facility obtains server-related information such as the power properties of the servers constituting the computing system and job-related information such as performance requirements for the jobs which are run in the computing system, and searches for one or more jobs to be relocated and destination servers, based on these server-related information and job-related information, to the extent that the performance requirements for each job are fulfilled. Based on the search results, the jobs are relocated to the destination servers, and servers on which no job is running, in consequence of the relocation, are powered off.
    • 在通过网络连接多个服务器并运行一个或多个作业的计算系统中,监督服务器的功率降低设施根据预定条件重新定位作业,从而减少计算系统消耗的功率量。 为了重新定位作业,功率消耗设备获得服务器相关信息,例如构成计算系统的服务器的功率特性和与计算系统中运行的作业的性能要求相关的作业相关信息,并搜索一个 或更多的要迁移的作业和目标服务器,基于这些与服务器相关的信息和作业相关信息,以满足每个作业的性能要求。 根据搜索结果,将作业重新定位到目标服务器,由于重新定位而无作业正在运行的服务器已关闭。
    • 77. 发明授权
    • Semiconductor memory device
    • US06388938B2
    • 2002-05-14
    • US09812362
    • 2001-03-20
    • Takao NakajimaMakoto Segawa
    • Takao NakajimaMakoto Segawa
    • G11C800
    • G11C7/1057G11C7/1006G11C7/1051
    • There is provided a semiconductor memory device capable of preventing the deterioration of access characteristics between output signal lines. The semiconductor memory device comprises: first and second cell arrays, each of which has the same number of memory cells; first through (2n−1)-th (n≧1) output selection control circuits; first through (2n−1)-th output transistor circuits which are provided so as to correspond to the first through (2n−1)-th output selection control circuits, and each of which receives the output of a corresponding one of the output transistor circuits; and first through (4n−2)-th output signal lines, each of the first and second cell arrays being divided into k (k≧2) first through k-th section parts, each of which has 2n−1 first through (2n−1)-th output parts and at least one auxiliary input/output part, the i-th (i=1, . . . , n−1) output selection control part receiving the output of the (2i−1)-th input/output part of each of the first through k-th section parts of the first cell array via the (2i−1)-th output signal line and receiving the output of the 2i-th input/output part of each of the first through k-th section parts of the first cell array via the 2i-th output signal line, the n-th output selection control part receiving the output of the (2n−1)-th input/output part of each of the first through k-th section parts of the first cell array via the (2n−1)-th output signal line and receiving the output of the auxiliary input/output part of each of the section parts of the first cell array via the 2n-th output signal line, and the (n+i)-th (i=1, . . . , n−1) output control circuit receiving the output of the (2i−1)-th input/output part of each of the first through k-th section parts of the second cell array via the (2n+2i−1)-th output signal line and receiving the output of the 2i-th input/output part of each of the first through k-th section parts of the second cell array via the (2n+2i)-th output signal line.
    • 79. 发明授权
    • Immobilized enzyme column
    • 固定酶柱
    • US4331767A
    • 1982-05-25
    • US198109
    • 1980-04-24
    • Takao NakajimaMasafumi TeradaTohru Mori
    • Takao NakajimaMasafumi TeradaTohru Mori
    • G01N33/50C12M1/40C12Q1/00G01N35/08
    • G01N35/08C12M21/18C12M23/34C12M29/04C12M29/06C12Q1/00
    • An immobilized enzyme column useful for automatic chemical analyzers for analyzing substances contained in the blood serum, urine or the like with use of an enzyme for clinical tests includes at least one column main body (19, 34 or 44, 51 and 52). The column has a channel (31) extending from a sample inlet (24) to a sample outlet (27). An air bubble inlet (28) is disposed close to the sample outlet to communicate with the channel (31), and an air bubble outlet (25) is disposed close to the sample inlet to communicate with the channel. An immobilized enzyme accommodating portion (20 or 35) is provided in the channel between the bubble inlet (28) and the bubble outlet (25) and partitioned by a filter (29) at each end thereof.
    • PCT No.PCT / JP79 / 00234 Sec。 371日期:1980年4月22日 102(e)日期1980年4月22日PCT提交1979年9月4日PCT公布。 出版物WO80 / 00574 1980年4月3日。用于自动化学分析仪的固定化酶柱用于分析使用用于临床试验的酶的血清,尿等中所含的物质,包括至少一个柱主体(19,34或44 ,51和52)。 该柱具有从样品入口(24)延伸到样品出口(27)的通道(31)。 气泡入口(28)靠近样品出口设置,与通道(31)连通,并且气泡出口(25)靠近样品入口设置以与通道连通。 固定化酶容纳部分(20或35)设置在气泡入口(28)和气泡出口(25)之间的通道中,并在其两端由过滤器(29)分隔。