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    • 63. 发明授权
    • Assembled battery, power-supply system and production method of assembled battery
    • 组装电池,电源系统和组装电池的生产方法
    • US07985495B2
    • 2011-07-26
    • US11654682
    • 2007-01-18
    • Yukihiro OkadaMasatoshi Nagayama
    • Yukihiro OkadaMasatoshi Nagayama
    • H01M12/00H01M10/48H01M4/13
    • H01M10/441H01M4/131H01M4/133H01M10/0525H01M10/482Y02T10/7011Y10T29/49108
    • An assembled battery comprises mainly multiple non-aqueous secondary cells A and at least one electric device B for voltage detection containing a non-aqueous electrolyte connected to the multiple non-aqueous secondary cells A in series. When a difference in the non-aqueous secondary cell A between a voltage per cell (VA1) at a depth of discharge of 25% and a voltage per cell (VA2) at a depth of discharge of 75% is designated as ΔVA, and a difference in the electric device B between a voltage per cell (VB1) at a depth of discharge equivalent to the depth of discharge of 25% of the non-aqueous secondary cell A and a voltage per cell (VB2) at a depth of discharge equivalent to the depth of discharge of 75% of the non-aqueous secondary cell A is designated as ΔVB, the ΔVB of electric device B is greater than the ΔVA of non-aqueous secondary cell A.
    • 组合电池主要包括多个非水电解槽A和至少一个用于电压检测的电气装置B,其中包含串联连接到多个非水电解槽A的非水电解质。 当放电深度为25%的电池单元电压(VA1)与放电深度为75%的每单元电压(VA2)之间的非水电解槽A的差为&Dgr; VA时, 并且与非水性二次电池A的25%的放电深度等同于放电深度的电池单元电压(VB1)与电池单元的深度为VB2的电压 非等级二次电池A的排放深度相当于75%的放电深度被指定为&Dgr; VB,电气设备B的电压VB大于非水性二次电池A的电压。
    • 64. 发明申请
    • SECONDARY BATTERY
    • 二次电池
    • US20100316897A1
    • 2010-12-16
    • US12740582
    • 2008-09-25
    • Kiyomi KozukiHideaki fujitaYukihiro OkadaYasushi Hirakawa
    • Kiyomi KozukiHideaki fujitaYukihiro OkadaYasushi Hirakawa
    • H01M10/0587
    • H01M2/263H01M2/22H01M4/70H01M10/052Y02T10/7011
    • A secondary battery has a so-called tabless structure. An electrode group (4) includes an exposed end (1a) and a body portion (5). In the exposed end (1a), a current collector is exposed. In the body portion (5), an active material is provided on a surface of the current collector. A current collector plate (10) includes a principal surface (11) to which the electrode group (4) is connected, and projections (13) provided on the periphery of the principal surface (11). Moreover, in a direction in which a positive electrode plate (1), a porous insulating layer (3) and a negative electrode plate (2) are sequentially arranged, a width of the current collector plate (10) is equal to or smaller than a width of the body portion (5). Furthermore, the projections (13) sandwich the exposed end (1a) in a direction perpendicular to a longitudinal direction of the exposed end (1a).
    • 二次电池具有所谓的无标签结构。 电极组(4)包括露出端(1a)和主体部分(5)。 在暴露端(1a)中,露出集电器。 在主体部(5)中,在集电体的表面设置活性物质。 集电板(10)包括连接有电极组(4)的主表面(11)和设置在主表面(11)周边上的突起(13)。 此外,在正极板(1),多孔绝缘层(3)和负极板(2)依次排列的方向上,集电板(10)的宽度等于或小于 主体部分(5)的宽度。 此外,突起(13)在与暴露端部(1a)的纵向方向垂直的方向上夹着露出端部(1a)。
    • 66. 发明申请
    • SEALED SECONDARY BATTERY
    • 密封二次电池
    • US20100209749A1
    • 2010-08-19
    • US12439805
    • 2007-10-09
    • Yukihiro Okada
    • Yukihiro Okada
    • H01M6/10
    • H01M10/0587H01M2/022H01M2/0242H01M2/22H01M6/42H01M10/052
    • A battery casing 10 includes a plurality of cylindrical accommodation parts 12a to 12d accommodating a plurality of electrode assemblies 20, and connecting parts 13a to 13c connecting the accommodation parts 12a to 13d adjacent to each other. The inner circumferences of the accommodation parts 12a to 12d have substantially the same shape as the outer circumferences of the electrode assemblies. The connecting parts 13a to 13c are formed along the side surfaces of the accommodation parts 12a to 12d. Each electrode assembly 20 is formed by winding a positive electrode plate 21 and a negative electrode plate 22 with a separator 23 interposed therebetween to be in a cylindrical shape. The plurality of electrode assemblies 20 are accommodated in the accommodation parts 12a to 12d with substantially no gap left.
    • 电池壳体10包括容纳多个电极组件20的多个圆柱形容纳部分12a至12d以及连接彼此相邻的容纳部分12a至13d的连接部分13a至13c。 容纳部12a〜12d的内周与电极组件的外周形状基本相同。 连接部13a至13c沿着容纳部12a至12d的侧表面形成。 每个电极组件20通过将隔板23夹在其间的正极板21和负极板22缠绕而形成为圆柱形。 多个电极组件20容纳在基本上没有间隙的容纳部分12a至12d中。