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    • 2. 发明申请
    • FUSION WELDING DEVICE AND ASSEMBLING APPARATUS
    • 熔焊设备和组装设备
    • US20080223526A1
    • 2008-09-18
    • US12046877
    • 2008-03-12
    • Shinichiro MaruyamaTatsuya Maruyama
    • Shinichiro MaruyamaTatsuya Maruyama
    • B29C65/12
    • B29C66/84121B29C65/203B29C65/2061B29C65/7802B29C65/7841B29C66/1162B29C66/324B29C66/5243B29C66/52431B29C66/81431B29C66/8223B29C66/841B29C66/84123B29C66/843B29L2031/005B29L2031/3475E06B3/9608
    • A fusion welding device include: a first holder, having a first face, and adapted to hold at least an outer peripheral face of an end portion of a first work in a state where the first work is movable in a longitudinal direction thereof; a second holder, having a second face opposed to the first face, and adapted to hold at least an outer peripheral face of an end portion of a second work in a state where the second work is movable in a longitudinal direction thereof; a heater, operable to heat the first and second works; a first and second movers, adapted to move the first and second holders in such directions that the first and second faces come close to or apart from each other; and a third mover, adapted to move the first and second holders in synchronization with each other in a direction along the first and second faces. The first and second holders are moved by the third mover in a state where the first and second faces are in contact with each other, whereby end faces of the end portions of the first and second works are pressed to each other in the longitudinal directions thereof in the first and second holders.
    • 熔焊装置包括:第一保持器,具有第一面,并且适于在第一工件沿其纵向移动的状态下保持第一工件的端部的至少外周面; 第二保持器,具有与第一面相对的第二面,并且适于在第二工件沿其纵向移动的状态下保持第二工件的端部的至少外周面; 加热器,可操作以加热第一和第二工件; 第一和第二移动器,适于沿着使得第一和第二面彼此接近或分离的方向移动第一和第二保持器; 以及第三移动器,其适于在沿着所述第一和第二面的方向上彼此同步地移动所述第一和第二保持器。 第一和第二保持器在第一和第二面彼此接触的状态下被第三移动体移动,由此第一和第二工件的端部的端面在其纵向方向上被彼此挤压 在第一和第二持有人。
    • 6. 发明授权
    • Storage control device and data processing system
    • 存储控制装置和数据处理系统
    • US08423741B2
    • 2013-04-16
    • US13191631
    • 2011-07-27
    • Masaya SuehiroTatsuya MaruyamaTsutomu YamadaHideaki Suzuki
    • Masaya SuehiroTatsuya MaruyamaTsutomu YamadaHideaki Suzuki
    • G06F12/00
    • G06F3/0613G06F3/0652G06F3/0674
    • A storage medium management part includes a stored data amount adjustment part that: stores a maximum data amount which the storage medium can store at the time of startup of a storage control device, and a stored data amount which is an initial stored amount, in a data amount storage part; upon receiving a write amount of a data in response to a write request, writes a new stored data amount calculated by adding the write amount to the already stored data amount, over the already stored data amount; calculates a free space by subtracting the stored data amount from the maximum data amount; determines a deletion amount of the data if the free space does not takes a value not less than a prescribed value; and writes a newly-calculated stored data amount calculated by subtracting the deletion amount from the stored data amount, over the stored data amount.
    • 存储介质管理部分包括存储数据量调整部分,其存储在存储控制装置启动时存储介质可以存储的最大数据量以及作为初始存储量的存储数据量,在 数据量存储部分; 在接收到写入请求后的数据写入量的情况下,通过将已经存储的数据量加上写入量而计算出的新的存储数据量超过已经存储的数据量; 通过从最大数据量减去所存储的数据量来计算可用空间; 如果可用空间不具有不小于规定值的值,则确定数据的删除量; 并且通过从所存储的数据量中减去所述删除量而计算的新计算的存储数据量超过所存储的数据量。
    • 9. 发明授权
    • Computer system
    • 电脑系统
    • US07716405B2
    • 2010-05-11
    • US11599383
    • 2006-11-15
    • Tsutomu YamadaHiromichi EndohNoritaka MatsumotoSatoru FunakiTatsuya MaruyamaAtsushi ItoFumiyuki TamuraNorihisa YanagiharaMakiko Naemura
    • Tsutomu YamadaHiromichi EndohNoritaka MatsumotoSatoru FunakiTatsuya MaruyamaAtsushi ItoFumiyuki TamuraNorihisa YanagiharaMakiko Naemura
    • G06F13/36
    • G06F13/37
    • A computer system, being a stack bus system in which a plurality of computer modules are stacked and connected to one another and being capable of automatically matching and allocating bus resources such as clocks and interrupts, is provided. In the computer system including one system module and n peripheral modules, each peripheral module includes an interrupt selector, a clock selector, an arbitration signal selector, a resource decision unit, and a position identification unit. The position identification unit cooperates with a position configuration unit present in the system module to identify a position of the module, which includes the position identification unit, in the computer system, and autonomously decides bus resources used by the module. By allowing the interrupt selector, the clock selector, and the arbitration signal selector to select and use the decided bus resources, each peripheral module can match and configure the bus resources in the computer system.
    • 一种作为堆叠总线系统的计算机系统,其中多个计算机模块彼此堆叠并彼此连接并且能够自动匹配和分配诸如时钟和中断的总线资源。 在包括一个系统模块和n个外围模块的计算机系统中,每个外围模块包括中断选择器,时钟选择器,仲裁信号选择器,资源判定单元和位置识别单元。 所述位置识别单元与存在于所述系统模块中的位置配置单元配合,以在所述计算机系统中识别包括所述位置识别单元的模块的位置,并且自主地决定所述模块使用的总线资源。 通过允许中断选择器,时钟选择器和仲裁信号选择器来选择和使用所决定的总线资源,每个外围模块可以匹配和配置计算机系统中的总线资源。