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    • 2. 发明授权
    • Timing generator, imaging device, and dot-clock output method
    • 定时发生器,成像设备和点时钟输出方式
    • US09148572B2
    • 2015-09-29
    • US13271543
    • 2011-10-12
    • Masahiro KitanoRyuichi ShioharaToshiyuki Yamamoto
    • Masahiro KitanoRyuichi ShioharaToshiyuki Yamamoto
    • H04N5/232H04N5/376H04N5/77H04N9/804
    • H04N5/23293H04N5/3765H04N5/772H04N9/8042
    • A timing generator includes a frame rate information receiver, a display control section, and a determination unit. The frame rate information acquisition section is configured to receive information indicating a frame rate of an image sensor. The display control section is configured to output dot clocks in a first cycle to a display which includes a counter being configured to count the number of the dot clocks for a synchronization period, where the dot clocks are a synchronization signal. The determination unit is configured to determine whether or not the number of the dot clocks in the synchronization period is expected to exceed a predetermined number, where length of the synchronization period is based on at least the frame rate of the image sensor. The display control section is configured to switch from the first cycle to a second cycle, if the number of dot clocks is expected to exceed the predetermined number.
    • 定时发生器包括帧速率信息接收器,显示控制部分和确定单元。 帧率信息获取部被配置为接收指示图像传感器的帧速率的信息。 显示控制部分被配置为将第一周期中的点时钟输出到显示器,该显示器包括被配置为对同步周期的点时钟数进行计数的计数器,其中点时钟是同步信号。 确定单元被配置为确定同步周期中的点时钟数是否期望超过预定数量,其中同步周期的长度至少基于图像传感器的帧速率。 如果点时钟的数量预计超过预定数量,则显示控制部分被配置为从第一周期切换到第二周期。
    • 4. 发明授权
    • Method and apparatus for controlling resource
    • 控制资源的方法和装置
    • US06477560B1
    • 2002-11-05
    • US09192218
    • 1998-11-16
    • Hideki MurayamaHiroshi YashiroTakehisa HayashiMasahiro Kitano
    • Hideki MurayamaHiroshi YashiroTakehisa HayashiMasahiro Kitano
    • G06F900
    • G06F9/5016
    • A control method of controlling a computer for controlling a resource connected to the computer and shared by a plurality of programs included in the computer includes the steps of storing a control information ID indicating a storage area in the main memory storing control information concerning access between a certain program and the resource in an OS space of a main memory, storing the control information ID in an adaptor connected to the main memory via a bus, and taking out the control information from the storage area included in the OS space, by using the control information ID stored in the adapter. In the case where the adapter runs short of a storage area, information that the adapter runs short of a storage area in the main memory is conveyed via the bus. By using the control information thus taken out, the resource is controlled.
    • 控制计算机的控制方法,用于控制连接到计算机并由包括在计算机中的多个程序共享的资源的计算机包括以下步骤:将指示存储区域的控制信息ID存储在主存储器中,该主存储器存储关于在 特定程序和主存储器的OS空间中的资源,经由总线将控制信息ID存储在连接到主存储器的适配器中,并且通过使用该存储区域中的包含在OS空间中的存储区域中取出控制信息 存储在适配器中的控制信息ID。 在适配器运行时间短于存储区域的情况下,适配器在主存储器中的存储区域的运行时间短的信息经由总线传送。 通过使用由此取出的控制信息,控制资源。
    • 5. 发明授权
    • Memory disk sharing method and its implementing apparatus
    • 内存磁盘共享方法及其实现装置
    • US6108694A
    • 2000-08-22
    • US193852
    • 1998-11-18
    • Hiroshi YashiroHideki MurayamaHirofumi FujitaTakehisa HayashiMasahiro Kitano
    • Hiroshi YashiroHideki MurayamaHirofumi FujitaTakehisa HayashiMasahiro Kitano
    • G06F3/06G06F21/00G06F13/38G06F15/17
    • G06F3/0613G06F21/80G06F3/0659G06F3/067
    • A memory disc sharing method in which a plurality of computers share a memory disc through a network, wherein a command in accordance with which the memory disc is accessed is received by a network interface apparatus, and when a requested computer to which a request of the command has been made is any of other computers, the command is transmitted to the any of other computers, and when the requested computer is a computer concerned, the command is stored in a memory disc command queue. The network interface apparatus retrieves the command from the memory disc command queue, and executes the processing of reading out/writing data from/to the memory disc in the computer concerned when a requesting computer from which a request of the command has been made is the computer concerned, and carries out the data transfer between the memory disc in the computer concerned and the requesting computer when the requesting computer is any of other computers.
    • 一种存储器盘共享方法,其中多个计算机通过网络共享存储盘,其中,由网络接口​​装置接收存储盘访问的命令,并且当请求的计算机 命令是任何其他计算机,命令被发送到任何其他计算机,并且当所请求的计算机是有关的计算机时,该命令被存储在存储器盘命令队列中。 网络接口装置从存储器盘命令队列检索命令,并且当已经从其发出了命令的请求的请求计算机时,执行从相关计算机中向存储盘读/写数据的处理 并且当请求计算机是任何其他计算机时,执行有关计算机中的存储盘和请求计算机之间的数据传输。
    • 6. 发明授权
    • Access control method for shared duplex direct access storage device and
computer system therefor
    • 共享双工直接存取存储设备和计算机系统的访问控制方法
    • US5202887A
    • 1993-04-13
    • US541749
    • 1990-06-21
    • Hitoshi UenoMasahiro KitanoKenji Masuda
    • Hitoshi UenoMasahiro KitanoKenji Masuda
    • G06F3/06G06F11/20G11C29/00
    • G06F11/2071G11C29/74
    • Disclosed is a DASD access control method including storing information for identifying one data group in which an irrecoverable failure has occurred in the plurality of data groups stored in each of the first and second DASDs constituting the duplex DASD pair. A judgment is determined based on the stored information as to whether one data group has an irrecoverable failure which has occurred when the one data group held in either one of the first and second DASDs constituting the duplex DASD pair is accessed by one of the plurality of processing units. Access is allowed to the one data group in the one DASD by the one processing unit when the judgment results in that the one data group has no irrecoverable failure which has occurred therein. Finally, the access is stopped to the one data group when the judgment results in that the one data group has an irrecoverable failure which has occurred therein.
    • 公开了一种DASD访问控制方法,包括存储用于识别存在于构成双工DASD对的第一和第二DASD的每一个中的多个数据组中发生不可恢复的故障的一个数据组的信息。 基于存储的信息确定一个数据组是否具有在保持在构成双面DASD对的第一和第二DASD中的一个数据组中的一个数据组被多个存储器中的一个访问时发生的不可恢复的故障 处理单位。 当判断结果是一个数据组中没有发生不可恢复的故障时,由一个处理单元允许在一个DASD中的一个数据组访问。 最后,当判断结果是一个数据组在其中发生了不可恢复的故障时,停止对一个数据组的访问。
    • 7. 发明申请
    • CRYO-ROTARY JOINT
    • US20120133126A1
    • 2012-05-31
    • US13376134
    • 2010-06-02
    • Mitsuru IzumiMotohiro MikiMasahiro Kitano
    • Mitsuru IzumiMotohiro MikiMasahiro Kitano
    • F16L27/08F16J15/43F16L19/08
    • F16L59/141F16C33/765F16C2361/00F16L27/08F16L59/185H02K55/04Y02E40/625
    • Problem to be SolvedTo provide a small, lightweight, cryo-rotary joint.SolutionA joint includes a housing 2, a refrigerant tube 3 connected to a refrigerant source and communicated with a target part in a rotating machine, a rotating member 4 loosely fitted inside with the refrigerant tube and fixed to a rotary part of the rotating machine, and a relatively rotating member 5 having a fixed-side member 5a and rotating-side member 5b, wherein the fixed-side member is connected to the refrigerant tube via a refrigerant tube extension section 3a, the rotating-side member is connected to the rotating member via a rotating member extension section 4a, a refrigerant zone is formed by spaces 7 and 8 defined by the refrigerant tube, rotating member, and refrigerant tube and rotating member extension sections, a sealing member 10 is installed between the fixed-side and rotating-side members, and a vacuum chamber and pressure chamber are defined within the housing.
    • 要解决的问题提供一个小型,轻便的低温旋转接头。 解决方案接头包括壳体2,连接到制冷剂源并与旋转机器中的目标部分连通的制冷剂管3,松动地配合在制冷剂管内并且固定到旋转机械的旋转部分的旋转构件4, 以及具有固定侧构件5a和旋转侧构件5b的相对旋转构件5,其中固定侧构件经由制冷剂管延伸部3a连接到制冷剂管,旋转侧构件连接到旋转侧构件 构件通过旋转构件延伸部分4a,制冷剂区域由制冷剂管,旋转构件和制冷剂管和旋转构件延伸部分限定的空间7和8形成,密封构件10安装在固定侧和旋转构件 并且在壳体内限定真空室和压力室。
    • 8. 发明授权
    • Superconductor magnetizing device and superconducting synchronization device
    • 超导磁化装置和超导同步装置
    • US07750524B2
    • 2010-07-06
    • US10541587
    • 2003-07-15
    • Hidehiko SugimotoMitsuru IzumiMasahiro Kitano
    • Hidehiko SugimotoMitsuru IzumiMasahiro Kitano
    • H02K55/02H01F6/00
    • H02K55/02H01F6/00Y10S505/876Y10S505/879
    • A magnetizing device for superconductor and a superconducting synchronous machine are provided capable of constituting more compact and simple equipment that uses a superconductor as a magnet. The magnetizing device for superconductor includes a superconductor (131); a coolant chamber (142) for cooling the superconductor (131) down to or below a critical temperature at which the transition to a superconducting state occurs; coils (111, 111′) for generating a magnetic field equal to or higher than a critical magnetic field in which the intrusion of a magnetic flux into the superconductor (131) starts, around the superconductor (131) cooled down to or below the critical temperature at which the transition to the superconducting state occurs; and position modification means capable of arranging the superconductor (131) on a disk (120) and modifying the relative positional relationship with the coils (111, 111′).
    • 提供了一种用于超导体和超导同步电机的磁化装置,其能够构成使用超导体作为磁体的更紧凑和简单的设备。 超导体的磁化装置包括超导体(131); 用于将超导体(131)冷却到低于或低于发生到超导状态的过渡的临界温度的冷却剂室(142); 用于产生等于或高于其中磁通量进入超导体(131)的入射的临界磁场的磁场(111,111')开始于冷却至或低于临界的超导体(131)周围 发生向超导状态的转变的温度; 以及能够将超导体(131)布置在盘(120)上并修改与线圈(111,111')的相对位置关系的位置修改装置。