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    • 2. 发明授权
    • Alkaline battery without mercury and electronic apparatus powered thereby
    • 无汞的碱性电池和电子设备由此供电
    • US06586139B1
    • 2003-07-01
    • US08476235
    • 1995-06-07
    • Shunji WatanabeTsugio SakaiHideo Sakamoto
    • Shunji WatanabeTsugio SakaiHideo Sakamoto
    • H01M618
    • H01M6/045H01M4/06H01M4/42H01M4/62H01M4/628H01M4/66H01M6/06H01M10/26
    • An alkaline battery comprises a negative electrode having an active material comprised of mercuryless zinc powder containing a gelling agent. In one embodiment, the alkaline battery comprises a current collector having an outermost surface coated with a layer of zinc or a metal having a hydrogen overvoltage higher than that of zinc, and an electrolyte containing one or more compounds selected from the group consisting of an indium compound, lead oxide; a hydroxide of alkaline earth metal and a surfactant having polyethylene oxide. In another embodiment, the negative electrode active material contains one or more species of materials selected from the group consisting of an indium compound, lead oxide, a hydroxide of alkaline earth metal and a surfactant having polyethylene oxide, and a current collector having an outermost surface coated with a layer of zinc or a metal having a hydrogen overvoltage higher than that of zinc. An improved alkaline battery is achieved which does not pose environmental problems, and which corrosion of the zinc powder of the battery is suppressed, and in which a good discharge performance of the battery is maintained.
    • 碱性电池包括具有由含有胶凝剂的无汞锌粉末构成的活性物质的负极。 在一个实施方案中,碱性电池包括具有涂覆有锌层或具有高于锌的氢过电压的金属的最外表面的集电器,以及含有一种或多种选自铟的化合物的电解质 化合物,氧化铅; 碱土金属的氢氧化物和具有聚环氧乙烷的表面活性剂。 在另一个实施方案中,负极活性物质包含选自铟化合物,氧化铅,碱土金属氢氧化物和具有聚环氧乙烷的表面活性剂中的一种或多种材料,以及具有最外表面的集电体 涂覆有一层具有高于锌的氢过电压的锌或金属。 实现了不会产生环境问题的改进的碱性电池,并且抑制了电池的锌粉的腐蚀,并且保持了电池的良好的放电性能。
    • 5. 发明授权
    • Semiconductor device and method of measuring sheet resistance of lower layer conductive pattern thereof
    • 半导体装置及其下层导电图案的薄层电阻测定方法
    • US07626402B2
    • 2009-12-01
    • US11838252
    • 2007-08-14
    • Hideo Sakamoto
    • Hideo Sakamoto
    • G01R31/26
    • H01L22/14H01L28/20H01L2924/0002H01L2924/00
    • Contact holes (openings) (17) are created in the upper electrode (14) and the dielectric film (15) of a polysilicon-insulator-polysilicon (PIP) capacitive element to form a plurality of evaluation patterns wherein the lower electrode (13) and upper layer wiring lines (20) for measurement are electrically connected through contacts (16). At least four evaluation patterns are created by a combination of two or more values of a distance L with different values of a width W. Since it can be assumed that a difference in the resistance value between the respective evaluation patterns is only due to the effect of a change in a rectangular region (W*L) between the contact holes (openings) (17), it is possible to easily calculate the sheet resistance of the high-resistance portion from a change in the resistance value of each of the measurement patterns.
    • 在多晶硅 - 绝缘体 - 多晶硅(PIP)电容元件的上电极(14)和电介质膜(15)中形成接触孔(开口)(17),以形成多个评估图案,其中下电极(13) 并且用于测量的上层布线(20)通过触点(16)电连接。 通过具有不同宽度W值的距离L的两个或更多个值的组合来创建至少四个评估模式。由于可以假设各个评估模式之间的电阻值的差异仅仅是由于效果 在接触孔(开口)(17)之间的矩形区域(W * L)的变化,可以容易地从每个测量值的电阻值的变化计算高电阻部分的薄层电阻 模式。
    • 7. 发明授权
    • Semiconductor integrated circuit device, design method, design apparatus, and program
    • 半导体集成电路器件,设计方法,设计器件和程序
    • US08484595B2
    • 2013-07-09
    • US13032379
    • 2011-02-22
    • Hideo Sakamoto
    • Hideo Sakamoto
    • G06F17/50H01L23/50
    • G06F17/5063G06F2217/12H01L23/535H01L23/66H01L2223/6677H01L2924/0002Y02P90/265H01L2924/00
    • An antenna ratio calculation section extracts components from which two or more independent metal wires are coupled to one of diffusion layer regions based on layout data read from a layout data accumulation section, determines, for each of the components, the area of each of the two or more independent metal wires and electrodes coupled to the respective metal wires, determines an antenna ratio between the area of each of the metal wires and the area of the electrode coupled to the metal wire, and determines a moderation value for moderating a design standard associated with plasma charge damage related to one of the metal wires based on the ratio of the total area of all the metal wires coupled to the one of the diffusion layer regions to the area of the one of the metal wires.
    • 天线比率计算部根据从布局数据存储部读取的布局数据,提取两个以上的独立的金属线与扩散层区域中的一个耦合的部件,对于每个部件,为每个部件确定两个 或多个独立的金属线和电极,耦合到相应的金属线,确定每个金属线的面积与耦合到金属线的电极的面积之间的天线比,并且确定调节设计标准相关联的调节值 基于与所述一个扩散层区域耦合的所有金属线的总面积与所述金属线之一的面积的比率,与所述金属线之一相关的等离子体电荷损伤。
    • 10. 发明授权
    • Production planning method, a storage medium and a production planning apparatus
    • 生产计划方法,存储介质和生产计划装置
    • US06311094B1
    • 2001-10-30
    • US09139269
    • 1998-08-25
    • Ken IriuchijimaHideo SakamotoMutsumi Fujihara
    • Ken IriuchijimaHideo SakamotoMutsumi Fujihara
    • G06F1900
    • G06Q10/06G06Q10/087
    • A production plan is made for a production line for producing finished products from a raw material. Based on the stock number of works in respective process steps at a planning time, the number of works processed at the respective process steps up to the planning time is calculated as the current cumulated processed works of the respective process steps. The target of the stock number of works in the respective process steps at a planned time following a passage of a plan period is calculated based on a target production representing the number of finished products outputted up to the planned time and an average cycle time of production from the raw material to finished products. The target cumulated processed works of the respective process steps at the planned time is calculated based on the target of the stock number of works in the respective process steps. The number of works necessary to be processed in the respective process steps during a period from a planning time to a planned time is calculated, as a process step load of the respective process steps, based on the current cumulated processed works of the respective process steps at the planning time and the target of the total number of the respective process steps at the planned time.
    • 制作原料生产成品生产线的生产计划。 根据在规划时间的各个处理步骤中的作品的库存数量,计算在各个处理步骤处理的作品数量,直到规划时间为各个处理步骤的当前累加的处理作品。 根据计划期间通过后的计划时间内的各个处理步骤中的作品的库存数量的目标,基于表示到计划时间输出的成品数量的目标生产和平均生产周期时间来计算 从原料到成品。 基于在各个处理步骤中的作品库存数量的目标来计算在计划时间的各个处理步骤的目标累积处理作品。 基于相应处理步骤的当前累积处理的作品,计算在从计划时间到计划时间的时间段期间在各个处理步骤中处理的作品的数量作为各个处理步骤的处理步骤负载 在规划时间和在计划时间内各个处理步骤总数的目标。