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    • 92. 发明申请
    • X-RAY IMAGE DIAGNOSTIC APPARATUS AND CONTROL METHOD OF X-RAY IMAGE DIAGNOSTIC APPARATUS
    • X射线图像诊断装置的X射线图像诊断装置及控制方法
    • US20110170668A1
    • 2011-07-14
    • US12980989
    • 2010-12-29
    • Masahiro OZAWAHajime YoshidaNobuo Kobayashi
    • Masahiro OZAWAHajime YoshidaNobuo Kobayashi
    • A61B6/00
    • A61B6/4441A61B6/102A61B6/4405A61B6/4464A61B6/461A61B6/547
    • An X-ray image diagnostic apparatus has an X-ray irradiating unit, a receiving unit, a supporting unit, a registering unit, a calculating unit and a presenting unit. The X-ray irradiating unit irradiates an X-ray. The receiving unit receives the X-ray. The supporting unit supports the X-ray irradiating unit and the receiving unit to be opposed to each other, and the supporting unit is movable in a room. The registering unit registers in advance a target position after movement of the supporting unit. The calculating unit calculates a track of the supporting unit from a present position to the registered target position. The presenting unit presents the track until the supporting unit moves to reach the register target position. For example, the registering unit registers a target position coordinate and a target vertical axis rotation angle of the supporting unit as the target position.
    • X射线图像诊断装置具有X射线照射单元,接收单元,支撑单元,配准单元,计算单元和呈现单元。 X射线照射单元照射X射线。 接收单元接收X射线。 支撑单元支撑X射线照射单元和接收单元彼此相对,并且支撑单元可在房间中移动。 注册单元预先在支撑单元移动之后注册目标位置。 计算单元从当前位置到登记的目标位置计算支撑单元的轨迹。 呈现单元呈现轨道,直到支撑单元移动到达目标位置。 例如,登记单位将目标位置坐标和支撑单元的目标纵轴旋转角度登记为目标位置。
    • 95. 发明申请
    • INFORMATION PROCESSING SYSTEM AND METHOD OF ALLOCATING I/O TO PATHS IN SAME
    • 信息处理系统和将I / O分配给同一个PATHS的方法
    • US20100115154A1
    • 2010-05-06
    • US12342314
    • 2008-12-23
    • Shigenori TomonagaHiroshi YokouchiNobuo Kobayashi
    • Shigenori TomonagaHiroshi YokouchiNobuo Kobayashi
    • G06F3/00
    • G06F13/4022
    • Provided is an information processing system that communicates with a storage apparatus through a plurality of paths Pi (i=1 to n, where n is a total number of the paths), and that issues an I/O to the storage apparatus through one of the paths Pi. The information processing system sets weights Wi for the respective paths Pi; obtains an I/O issue interval di of each of the paths Pi by dividing a sum total ΣWi of the weights W by the weight Wi set for the path Pi; obtains I/O issue timings ti(m)of each of the paths Pi by using the following equation: ti(m)=di/C+m·di (m=0, 1, 2, . . . ) (where C is a constant); and issues the I/Os to the paths Pi in an order corresponding to the an order of the I/O issue timings ti(m) chronologically arranged.
    • 提供了一种信息处理系统,其通过多个路径Pi(i = 1至n,其中n是路径的总数)与存储装置进行通信,并且通过以下之一向存储装置发出I / O 路径Pi。 信息处理系统设定各个路径Pi的权重Wi; 通过将权重W的总和&Sgr; W i除以为路径Pi设置的权重Wi来获得每个路径Pi的I / O问题间隔di; 通过使用以下等式获得每个路径Pi的I / O问题定时ti(m):ti(m)= di / C + m·di(m = 0,1,2,...)(其中C 是一个常数); 并以对应于按时间顺序排列的I / O发布定时ti(m)的顺序的顺序将I / O发布到路径Pi。
    • 96. 发明申请
    • Fluid On-Off Valve Device
    • 液体开关阀装置
    • US20090267014A1
    • 2009-10-29
    • US11887727
    • 2006-04-13
    • Tsukuo IshitoyaNobuo KobayashiNobuyuki OgamiAkira Yamashita
    • Tsukuo IshitoyaNobuo KobayashiNobuyuki OgamiAkira Yamashita
    • F16K1/42
    • F16K25/005F16J15/104F16J15/48F16K1/44F16K15/025Y10T137/7868Y10T137/7869
    • A check valve (fluid on-off valve device) capable of attaining high sealability in either case where a differential pressure is high or low, comprises a valve body assembly (valve body) contacting and separating from a valve seat portion for communicating and blocking a fluid passage. The valve body assembly comprises a valve body, a low-pressure seal portion constituted out of soft material and a high-pressure seal portion constituted out of harder material than the low-pressure seal portion. In blocking a fluid passage, when a differential pressure between an upstream path and a downstream path in the fluid passage is relatively low, the low-pressure seal portion comes into close contact with a protrusion to block the fluid passage, while when the differential pressure is relatively high, the low-pressure seal portion is compressively deformed by the differential pressure and the high-pressure seal portion comes into close contact with the valve seat body, thus blocking the fluid passage.
    • 在差压高或低的情况下能够获得高密封性的止回阀(流体开关阀装置)包括阀体组件(阀体),与阀座部分接触和分离,用于连通和阻塞 流体通道 阀体组件包括阀体,由软质材料构成的低压密封部和由比低压密封部更硬的材料构成的高压密封部。 在堵塞流体通道时,当流体通道中的上游路径和下游路径之间的压差相对较低时,低压密封部分与突起紧密接触以阻塞流体通道,而当压差 相对较高,低压密封部被差压压缩变形,高压密封部与阀座体紧密接触,堵塞流体通路。
    • 99. 发明申请
    • Valve Assembly for Gas Container
    • 气体容器阀组件
    • US20080105310A1
    • 2008-05-08
    • US11884129
    • 2006-02-20
    • Noboyuki OgamiNobuo KobayashiAkira Yamashita
    • Noboyuki OgamiNobuo KobayashiAkira Yamashita
    • E03B7/07
    • F17C13/04F17C2201/0104F17C2205/0323F17C2205/0338F17C2205/0391Y10T137/8326Y10T137/86348Y10T137/86372Y10T137/87249
    • There is disclosed a valve assembly for a gas container capable of appropriately discharging a gas from the gas container, even if a valve of a discharge passage has a failure or the like. The valve assembly for the gas container disposed at the gas container has, as passages which allow the inside of the gas container to communicate with the outside, a filling passage which fills the gas container with the gas and a discharge passage which discharges the gas. Furthermore, the valve assembly has a filling-side valve disposed at the filling passage and configured to close this passage, a discharge-side valve disposed at the discharge passage and configured to close this passage, a communication path which connects a downstream side of the discharge-side valve to a downstream side of the filling-side valve, and a shut-off valve disposed at the communication path. When the discharge-side valve does not open due to the failure or the like, the shut-off valve is opened to allow the gas to flow through the filling passage, the communication path and the discharge passage in this order.
    • 公开了一种能够适当地从气体容器排出气体的气体容器的阀组件,即使排出通路的阀具有故障等。 用于设置在气体容器中的气体容器的阀组件具有允许气体容器内部与外部连通的通道,填充有气体的气体容器的填充通道和排出气体的排出通道。 此外,阀组件具有设置在填充通道处并且构造成关闭该通道的填充侧阀,排出侧阀设置在排出通道处,并被构造成关闭该通道,连通路径 排出侧阀到填充侧阀的下游侧,以及截止阀,设置在连通路径。 当排出侧阀由于故障等而不打开时,截止阀打开以允许气体依次流过填充通道,连通路径和排出通道。