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    • 94. 发明授权
    • Task execution device and method
    • 任务执行装置和方法
    • US08370846B2
    • 2013-02-05
    • US11464864
    • 2006-08-16
    • Kunihiko Hayashi
    • Kunihiko Hayashi
    • G06F9/46
    • G06F9/4887
    • A task execution method for executing a plurality of tasks while switching the tasks from one to another by time-sharing, wherein an allocated time is allocated for each of the plurality of tasks, and the plurality of tasks includes a plurality of first-type tasks and a single second-type task, and the task execution method includes a task selection step which selects a task from among the plurality of tasks according to a predetermined sequence, a correction step which corrects an allocated time for the second-type task so that execution of the plurality of tasks completes within the cycle time, when the task selected is a second-type task, which is the total allocated time for the plurality of tasks, and a task execution control step which causes the selected task to be executed so that the execution of the selected task completes within the allocated time or the corrected allocated time.
    • 一种任务执行方法,用于在通过分时切换任务的同时执行多个任务,其中为所述多个任务中的每个任务分配分配的时间,并且所述多个任务包括多个第一类型任务 以及单个第二类型任务,并且所述任务执行方法包括:任务选择步骤,其根据预定顺序从所述多个任务中选择任务;校正步骤,其对所述第二类型任务的分配时间进行校正,使得 多个任务的执行在循环时间内完成,当所选择的任务是作为多个任务的总分配时间的第二类任务时,以及任务执行控制步骤使所选择的任务被执行 所选择的任务的执行在所分配的时间或修正的分配时间内完成。
    • 95. 发明申请
    • Non-Aqueous Electrolyte Battery
    • 非水电解质电池
    • US20120121967A1
    • 2012-05-17
    • US13290709
    • 2011-11-07
    • Tomoyuki NakamuraHiroshi TakabayashiKunihiko HayashiYosuke KonishiTetsuya Makino
    • Tomoyuki NakamuraHiroshi TakabayashiKunihiko HayashiYosuke KonishiTetsuya Makino
    • H01M2/02
    • H01M10/05H01M2/026H01M2/0287H01M2220/30
    • A non-aqueous electrolyte battery includes a battery device in which a positive electrode is faced to negative electrode through a separator; a non-aqueous electrolyte; a laminate film which is formed by laminating a metal layer, an outside resin layer formed in outer face of the metal layer, and an inside resin layer formed in the metal layer, and in which the battery device and the non-aqueous electrolyte is packaged by heat welding and housed; a positive electrode lead which is electrically connected to the positive electrode, and drawn from portion heat-welded of the laminate film to an exterior thereof; a negative electrode lead which is electrically connected to the negative electrode, and drawn from portion heat-welded of the laminate film to an exterior thereof; and a porous polymer layer containing, as a component, vinylidene fluoride formed between the laminate film and the battery device.
    • 非水电解质电池包括其中正电极通过隔板面对负电极的电池装置; 非水电解质; 通过层叠金属层,形成在金属层的外表面的外侧树脂层和形成在金属层中的内部树脂层而形成的层压膜,其中,电池装置和非水电解质被包装 通过热焊接和容纳; 正极引线,其与正极电连接,并从层压膜的热熔接部分向外部拉出; 负极引线,其与负极电连接,并从层压膜的热熔接部分向外部拉出; 以及多孔聚合物层,其含有在层合膜和电池装置之间形成的偏氟乙烯作为组分。
    • 99. 发明授权
    • Engine cooling medium circulation device
    • 发动机冷却介质循环装置
    • US07921829B2
    • 2011-04-12
    • US12063840
    • 2006-11-09
    • Kunihiko Hayashi
    • Kunihiko Hayashi
    • F02M25/07F02B47/08
    • F01P7/165F01P3/02F01P7/16F02M26/04F02M26/28
    • A cooling water circulation system (100) is configured so that cooling water is delivered from a water pump (113) toward a cylinder head (111) via a pump delivery pipe (114). Further, the system (100) is configured so that an engine block cooling switching section (170) changes the supply of the cooling water from the cylinder head (111) to a cylinder block (112) in accordance with a cooling water temperature. An EGR cooler branch pipe (151), which branches off from the pump delivery pipe (114), is connected to an EGR cooler (150). The EGR cooler branch pipe (151) is provided with an EGR cooler cooling switching valve (153) that opens or closes in accordance with an operating state.
    • 冷却水循环系统(100)构造成使得冷却水经由泵输送管(114)从水泵(113)向气缸盖(111)输送。 此外,系统(100)被构造成使得发动机缸体冷却切换部(170)根据冷却水温度将冷却水从气缸盖(111)的供给改变为气缸体(112)。 从泵输送管114分支的EGR冷却器分支管151连接到EGR冷却器150。 EGR冷却器分支管151具有根据运转状态开闭的EGR冷却器冷却切换阀153。