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    • 51. 发明授权
    • Metal hydride electrode, nickel electrode and nickel-hydrogen battery
    • 金属氢化物电极,镍电极和镍氢电池
    • US5506070A
    • 1996-04-09
    • US370987
    • 1995-01-10
    • Hiroyuki MoriKeiichi HasegawaMasaharu WatadaMasahiko Oshitani
    • Hiroyuki MoriKeiichi HasegawaMasaharu WatadaMasahiko Oshitani
    • H01M4/24H01M4/32H01M4/38H01M4/52H01M10/34H01M10/24
    • H01M4/242H01M10/345H01M4/32H01M4/383H01M4/52Y10S420/90
    • A metal hydride electrode, in which a metallic cobalt powder is mixed, within a mixing range of 3 to 20 weight percents, with a hydrogen absorbing alloy powder formed by substituting a part of Ni of alloy expressed by a rational formula of MmNi.sub.5 with Al and at least one kind of Fe, Cu, Co, Mn, and the mixed powder is loaded in a porous alkaline-proof metal body. An nickel electrode, in which a cobalt monoxide powder is mixed with an active material powder within a mixing range of 5 to 15 weight percents, the active material powder comprising zinc existing within a range of 2 to 8 weight percents, under a solid solution state in a crystal of nickel hydroxide powder assuming a spherical shape including an inner pore volume of 0.14 ml/g or less, and the mixed powder is loaded in a porous alkaline-proof metal body. A nickel-hydrogen battery, in-which the foregoing metal hydride electrode and the foregoing nickel electrode are wound with a separator put between them, aqueous solution of potassium hydroxide is filled therein and sealed, and they are maintained under standing condition for 5 hours or more.
    • 将金属钴粉末混合在3〜20重量%的混合范围内的金属氢化物电极与通过用Al合成式由MmNi5表示的合金的一部分Ni取代而形成的吸氢合金粉末,以及 将至少一种Fe,Cu,Co,Mn和混合粉末装载到多孔耐碱金属体中。 一种镍电极,其中一氧化钴粉末与活性物质粉末在5至15重量%的混合范围内混合,所述活性物质粉末包含存在于2至8重量%范围内的固体溶液状态 在含有内孔容积为0.14ml / g以下的球状的氢氧化镍粉末的结晶中,将该混合粉末装入多孔耐碱金属体。 将镍氢电池,其中将上述金属氢化物电极和上述镍电极缠绕在它们之间的隔板中,将氢氧化钾水溶液填充并密封,并将它们保持在静置条件下5小时,或 更多。
    • 57. 发明授权
    • Run-flat tire
    • 润滑轮胎
    • US08794283B2
    • 2014-08-05
    • US13500205
    • 2010-10-05
    • Hiroyuki Mori
    • Hiroyuki Mori
    • B60C17/00B60C13/00B60C9/08B60C9/00
    • B60C9/0042B60C9/005B60C9/08B60C9/09B60C13/00B60C15/0018B60C15/0036B60C17/0009B60C17/0036B60C2009/0035B60C2009/0071B60C2009/0416Y10T152/10864Y10T152/10873
    • A run-flat tire is provided with a reinforcing cord layer adjoining the radial carcass at least from the belt end to the maximum width portion of the tire side portion; the cord constituting the reinforcing cord layer is nylon 66 cord, cellulose fiber cord, PET cord, PEN cord or aramid/nylon 66 hybrid cord, and has a cord angle of less than 10° with respect to the tire radius direction; and the elastic modulus of the cord pulled out from the tire at a temperature of 25° C. under the conditions of a load of 3 N is not higher than 40 cN/dtex, and the thermal shrinkage stress σ (cN/dtex) at a temperature of 177° C. and the elastic modulus E (cN/dtex) at a temperature of 177° C. under the conditions of a load of 10 N satisfy the following conditions: σ+0.025E≧0.36, 40≧E≧8, and σ≧0.05.
    • 漏气轮胎至少从轮胎侧部的带端部到最大宽度部分设置有与径向胎体相邻的加强帘线层; 构成加强帘线层的帘线是尼龙66帘线,纤维素纤维帘线,PET帘线,PEN帘线或芳纶/尼龙66混纺帘线,并且相对于轮胎半径方向具有小于10度的帘线角度; 并且在负荷3N的条件下,在25℃的温度下从轮胎拉出的帘线的弹性模量不高于40cN / dtex,热收缩应力& (cN / dtex),在177℃的温度下,在负荷为10N的条件下的弹性模量E(cN / dtex)满足以下条件:&sgr; + 0.025E ≥0.36,40≥E≥8,&sgr≥0.05。
    • 59. 发明申请
    • TONNEAU COVER DEVICE
    • TONNEAU封面设备
    • US20140008933A1
    • 2014-01-09
    • US14003101
    • 2012-03-23
    • Takashi NagaoHiroyuki MoriToshihiko Nakano
    • Takashi NagaoHiroyuki MoriToshihiko Nakano
    • B60R5/04
    • B60R5/044B60R5/047
    • A tonneau cover device includes a tonneau cover coupled to a hatchback door. A movable guide arranged on the tonneau cover is guided by a fixed guide arranged in the vehicle to guide the tonneau cover. The movable guide is separated from the fixed guide when the hatchback door opens. A controller moves the tonneau cover to an extension position when the hatchback door closes and a storage position when the hatchback door opens. A detector detects whether movement of the tonneau cover is obstructed due to contact with an object. The controller temporarily interrupts movement of the tonneau cover when the detector detects that the movement of the tonneau cover to the storage position has been obstructed and restarts the movement of the tonneau cover to the storage position when determining that the movable guide has been separated from the fixed guide as the hatchback door opens.
    • 一种吨位盖装置包括联接到两厢门的吨罩。 布置在吨舱盖上的可移动导向件由布置在车辆中的固定导向器引导,以引导吨盖。 当两厢车门打开时,活动导轨与固定导轨分离。 当两厢车门关闭时,控制器将吨位盖移动到扩展位置,当两厢车门打开时,控制器将其移动到扩展位置。 检测器检测到由于与物体的接触而阻碍了吨位盖的移动。 当检测器检测到该吨位盖移动到存储位置时,该控制器暂时中断该吨位盖的运动,并且当确定该可移动导向件与 固定导轨作为两厢门打开。
    • 60. 发明申请
    • SOLID-STATE IMAGE SENSING DEVICE AND ELECTRONIC APPARATUS
    • 固态图像感测装置和电子装置
    • US20130049081A1
    • 2013-02-28
    • US13592538
    • 2012-08-23
    • Hitoshi MoriyaHiroaki IshiwataKazuyoshi YamashitaHiroyuki Mori
    • Hitoshi MoriyaHiroaki IshiwataKazuyoshi YamashitaHiroyuki Mori
    • H01L31/113
    • H01L27/1461H01L27/14616H01L27/1463H01L27/14645
    • Disclosed is a solid-state image sensing device including: a first photoelectric conversion element having a first semiconductor region of a first conductivity type formed inside a semiconductor substrate; a second photoelectric conversion element having a second semiconductor region of a first conductivity type formed at a deeper position of the semiconductor substrate than the first photoelectric conversion element; a gate electrode laminated on the semiconductor substrate and to which a predetermined voltage is applied at a charge transfer time; a floating diffusion region to which the charges accumulated in the first photoelectric conversion element and the second photoelectric conversion element are transferred at the charge transfer time; and a third semiconductor region of a first conductivity type arranged between the first semiconductor region and the second semiconductor region in a depth direction of the semiconductor.
    • 公开了一种固态摄像装置,包括:第一光电转换元件,其具有形成在半导体衬底内的第一导电类型的第一半导体区域; 第二光电转换元件,其具有形成在所述半导体衬底的比所述第一光电转换元件更深的位置处的第一导电类型的第二半导体区域; 层叠在所述半导体衬底上并且在电荷转移时间施加了预定电压的栅电极; 在第一光电转换元件和第二光电转换元件中累积的电荷在电荷转移时间被转移到的浮动扩散区域; 以及在半导体的深度方向上布置在第一半导体区域和第二半导体区域之间的第一导电类型的第三半导体区域。