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    • 21. 发明申请
    • BATTERY ASSEMBLY MANUFACTURING METHOD
    • 电池组件制造方法
    • US20100190049A1
    • 2010-07-29
    • US12670154
    • 2008-07-17
    • Satomi KawaseTomohiro Matsuura
    • Satomi KawaseTomohiro Matsuura
    • H01M6/42H01M4/82
    • H01M10/0481H01M2/1077H01M2/1083H01M10/0404H01M10/0431H01M10/4285Y10T29/49108
    • A method for manufacturing a battery assembly provided by the present invention includes a step of measuring a stacking direction length of a stacked body including a predetermined number of unit cells (12) constituting a battery assembly (10) and arranged in the stacking direction; and a step of bundling a body (20) to be bundled that includes the stacked body. Here, the body to be bundled is provided with length adjusting means (40) for converging a spread in stacking direction length. The bundling step is implemented by setting the length adjusting means according to the stacking direction length of the stacked body, so that a length of the battery assembly in the stacking direction is a stipulated length (LT) and a bundling pressure of the body to be bundled is a stipulated pressure.
    • 本发明提供的电池组件的制造方法包括:测定堆叠体的堆叠方向长度的步骤,该叠层体包括构成电池组件(10)的预定数量的单元电池(12)并沿堆叠方向布置; 以及捆扎包括所述层叠体的要捆扎的主体(20)的步骤。 这里,要捆扎的主体设置有用于会聚在堆叠方向长度上的扩展的长度调节装置(40)。 捆扎步骤通过根据层叠体的堆叠方向长度设定长度调节装置来实现,使得电池组件在层叠方向上的长度为规定长度(LT)和身体的捆扎压力 捆绑是一个规定的压力。
    • 22. 发明申请
    • Nickel-Metal Hydride Storage Battery
    • 镍金属氢化物蓄电池
    • US20080096096A1
    • 2008-04-24
    • US11629981
    • 2005-06-29
    • Katsunori KomoriTomohiro MatsuuraShinji HamadaToyohiko EtoYoshiyuki Nakamura
    • Katsunori KomoriTomohiro MatsuuraShinji HamadaToyohiko EtoYoshiyuki Nakamura
    • H01M2/12H01M2/02
    • H01M12/065H01M2/12
    • A nickel-metal hydride storage battery is provided capable of suppressing changes in discharge reserve and charge reserve of a negative electrode to prevent lowering of battery characteristics for a long term. A nickel-metal hydride storage battery 100 of the present invention comprises a battery main part (an electrode plate group 150, an electrolyte, and others), a case 102 housing this battery main part, and a safety valve device 101. The safety valve device 101 includes a valve member 110 of a closed-end substantially cylindrical shape. This nickel-metal hydride storage battery 100 is arranged such that a hydrogen leak rate V1 (μl/h/Ah) of the battery having been charged and discharged and then charged to 60% SOC satisfies a relationship: 2≦V1≦4, the hydrogen leak rate being per unit of battery capacity under an atmosphere at a battery temperature of 45° C., and a reduced pressure of 10 kPa.
    • 提供了能够抑制负极的放电储备和电荷储备的变化的镍氢蓄电池,以防止长期的电池特性的降低。 本发明的镍氢蓄电池100包括电池主体部(电极板组150,电解液等),容纳该电池主体的壳体102和安全阀装置101。 安全阀装置101包括封闭端大致圆筒形状的阀构件110。 该镍氢蓄电池100被配置为使得已经充放电然后充电至60%SOC的电池的氢泄漏率V1(mul / h / Ah)满足关系:2 <= V1 <= 4 在电池温度为45℃的气氛下,氢气泄漏率为单位电池容量,减压为10kPa。
    • 24. 发明授权
    • Method for manufacturing battery
    • 电池制造方法
    • US09287588B2
    • 2016-03-15
    • US13384407
    • 2010-01-13
    • Kazuyuki KusamaTomohiro MatsuuraIchiro Murata
    • Kazuyuki KusamaTomohiro MatsuuraIchiro Murata
    • H01M10/0587H01M2/26H01M2/30
    • H01M10/0587H01M2/266H01M2/30Y10T29/49108
    • A current collector electrically connected to a first electrode plate or a second electrode plate includes a tubular current collection section. An external terminal electrically connected to the current collector includes a tubular terminal section into which the current collection section is inserted. The current collection section has, before being inserted into the terminal section, a greater outer diameter than the inner diameter of the terminal section. In the insertion process, the diameter of the current collection section is reduced or the diameter of the terminal section is expanded so that the outer diameter of the current collection section is equal to or smaller than the inner diameter of the terminal section, and then the current collection section is inserted into the terminal section. After that, the outer peripheral surface of the current collection section and the inner peripheral surface of the terminal section are made to be in close contact with each other by the restoring force of the current collection section having the reduced diameter or of the terminal section having the expanded diameter, and as a result, the current collection section is fixed to the terminal section.
    • 与第一电极板或第二电极板电连接的集电体包括管状集电部。 电连接到集电器的外部端子包括管状端子部分,其中插入电流收集部分。 电流收集部分在插入端子部分之前具有比端子部分的内径更大的外径。 在插入过程中,电流收集部分的直径减小或端子部分的直径膨胀,使得集电部分的外径等于或小于端子部分的内径,然后 当前采集部分插入终端部分。 之后,使集电部的外周面和端子部的内周面通过具有减小的直径的集电部的回复力或端子部的回转力彼此紧密接触而具有 膨胀直径,结果,电流收集部分固定到端子部分。
    • 25. 发明授权
    • Sealed battery and vehicle
    • 密封电池和车辆
    • US08900733B2
    • 2014-12-02
    • US13375820
    • 2010-06-02
    • Tomohiro MatsuuraKatsumi ItoAkira FujiiToshihiro Odagaki
    • Tomohiro MatsuuraKatsumi ItoAkira FujiiToshihiro Odagaki
    • H01M2/12
    • H01M2/1241Y02E60/12
    • A safety valve (40, 140, 240, 340) formed in a portion of a case of a sealed battery includes a fracture groove portion (50, 150, 250, 350) formed in a thin portion (42, 142, 242, 342). The thin portion (42, 142, 242, 342) is formed in a horizontally long shape or a vertically long shape that has a curved outer edge portion (45, 145, 245, 345) in which at least a portion of the outer edge portion (43) is curved. This thin portion (42, 142, 242, 342) has a center straight groove portion (60, 160, 260, 360) that extends in the longer direction of the thin portion in the center portion of the thin portion, and a pair of side groove portions (70, 170, 270, 370) that are formed in both side in the longer direction of the center straight groove portion (60, 160, 260, 360) and connected to longer direction end portions (60A, 60B, 160A, 160B, 260A, 260B) of the center straight groove portion. Here, a portion of the side groove portion (70, 170, 270, 370) is formed curved following the curved outer edge portion (45, 145, 245, 345).
    • 形成在密封电池的壳体的一部分中的安全阀(40,140,​​240,340)包括形成在薄部分(42,142,242,342)中的断裂槽部分(50,150,250,350) )。 薄壁部分(42,142,242,342)形成为具有弯曲外缘部分(45,145,245,345)的水平长形状或垂直长形状,其中至少一部分外缘 部分(43)是弯曲的。 该薄部分(42,142,242,342)具有中心直槽部分(60,160,260,360),该中心直槽部分在薄部分的中心部分的薄壁部分的较长方向上延伸,并且一对 形成在中心直槽部(60,160,260,360)的长度方向上的两侧并与长方向端部(60A,60B,160A)连接的侧槽部(70,170,270,370) ,160B,260A,260B)。 这里,侧槽部(70,170,270,370)的一部分在弯曲的外缘部(45,145,245,345)之后形成为弯曲的形状。
    • 26. 发明授权
    • Solid-state image sensing device and control method of solid-state image sensing device
    • 固态影像感测装置及固态摄像装置的控制方法
    • US08854521B2
    • 2014-10-07
    • US13603728
    • 2012-09-05
    • Tomonori YamashitaTomohiro Matsuura
    • Tomonori YamashitaTomohiro Matsuura
    • H04N3/14H04N5/376H04N5/374
    • H04N5/3741H04N5/376
    • According to one embodiment, a solid-state image sensing device includes a pixel including a photoelectric conversion element, a signal detection unit, transistors, and a control signal selection circuit to select a control signal applied to the control signal line. The control signal selection circuit sets a potential of the control signal line at a first potential level while the pixel signal is read from the pixel, the control signal selection circuit sets the potential of the control signal line at a second potential level when the pixel is set in an unselected state, and the control signal selection circuit sets the potential of the control signal line at a third potential level after the pixel is set in the unselected state.
    • 根据一个实施例,固态图像感测装置包括包括光电转换元件,信号检测单元,晶体管和控制信号选择电路的像素,以选择施加到控制信号线的控制信号。 控制信号选择电路在从像素读取像素信号的同时将控制信号线的电位设定在第一电位电平,控制信号选择电路将控制信号线的电位设定在第二电位电平时,像素为 设置为未选择状态,并且控制信号选择电路在将像素设置为未选择状态之后将控制信号线的电位设置为第三电位电平。
    • 27. 发明申请
    • BATTERY
    • 电池
    • US20120251854A1
    • 2012-10-04
    • US13376930
    • 2010-07-08
    • Kazuyuki KusamaTomohiro Matsuura
    • Kazuyuki KusamaTomohiro Matsuura
    • H01M10/02H01M2/30H01M2/04H01M10/52H01M4/70
    • H01M10/0431H01M2/1229H01M2/263H01M10/052H01M10/0587Y02E60/122
    • A battery includes a cylindrical shaft core, and a wound electrode formed by winding a first electrode plate, a second electrode plate, and a separator around the outer periphery of the core. The wound electrode has a first wound portion formed by winding a first active material uncoated portion of the first electrode plate, a second wound portion formed by winding a second active material uncoated portion of the second electrode plate, and a power generating portion positioned between the first and second wound portions and formed by winding the first and second electrode plates, and the separator. The shaft core has a current collector portion composed of a metal, which is comprised of a joint portion connected to the first or second wound portion. The portions of the first or second wound portion, which are positioned on the outside of the shaft core in the radial direction with respect to the joint portion, are overlapped and welded to the joint portion.
    • 电池包括圆筒形轴芯和缠绕电极,其通过围绕芯的外周缠绕第一电极板,第二电极板和隔板而形成。 卷绕电极具有通过卷绕第一电极板的第一活性材料未涂覆部分而形成的第一卷绕部分,通过缠绕第二电极板的第二活性材料未涂覆部分形成的第二卷绕部分和位于第二电极板之间的发电部分 第一和第二卷绕部分,并且通过卷绕第一和第二电极板以及隔膜而形成。 轴芯具有由金属构成的集电部,该集电部由连接到第一或第二卷绕部的接合部组成。 第一或第二卷绕部分相对于接合部分在径向方向上位于轴芯的外侧上的部分被重叠并焊接到接合部分。
    • 28. 发明授权
    • Nickel-metal hydride storage battery
    • 镍氢蓄电池
    • US07807282B2
    • 2010-10-05
    • US11630329
    • 2005-06-29
    • Shinji HamadaTomohiro MatsuuraToyohiko EtoHiroyuki Miyamoto
    • Shinji HamadaTomohiro MatsuuraToyohiko EtoHiroyuki Miyamoto
    • H01M2/12
    • H01M2/1229H01M2/0285H01M2/1264H01M2/1276H01M10/345Y02E60/124
    • A nickel-metal hydride storage battery is provided capable of suppressing an increase of discharge reserve of a negative electrode and preventing lowering of battery characteristics. A nickel-metal hydride storage battery 100 of the present invention comprises a battery main part (an electrode plate group 150, an electrolyte, and others), a case 102 housing this battery main part, and a safety valve device 101 having an excessive pressure preventing function for preventing excessive rise of the internal pressure in the case 102 by discharging gas from the case 102 when the internal pressure in the case 102 exceeds a predetermined value. The safety valve device 101 includes a valve member 110 having a protruding wall 118 forming a valve internal space C communicated with a release hole 122 and has a hydrogen leakage function for allowing leakage of hydrogen gas in the case 102 out of the battery through the valve internal space C even when the internal pressure in the case 102 is the predetermined value or less.
    • 提供能够抑制负极的放电储备的增加并防止电池特性降低的镍氢蓄电池。 本发明的镍氢蓄电池100包括电池主体部(电极板组150,电解液等),容纳该电池主体的壳体102和具有过压的安全阀装置101 防止在壳体102内的内部压力超过规定值时从壳体102排出气体来防止壳体102的内部压力过度上升的防止功能。 安全阀装置101包括阀构件110,阀构件110具有形成与释放孔122连通的阀内部空间C的突出壁118,并且具有氢泄漏功能,用于允许壳体102中的氢气通过阀从电池泄漏出电池 内部空间C即使在外壳102的内部压力为规定值以下的情况下也是如此。
    • 30. 发明申请
    • Nickel-Metal Hydride Storage Battery
    • 镍金属氢化物蓄电池
    • US20080020268A1
    • 2008-01-24
    • US11630329
    • 2005-06-29
    • Shinji HamadaTomohiro MatsuuraToyohiko EtoHiroyuki Miyamoto
    • Shinji HamadaTomohiro MatsuuraToyohiko EtoHiroyuki Miyamoto
    • H01M2/12
    • H01M2/1229H01M2/0285H01M2/1264H01M2/1276H01M10/345Y02E60/124
    • A nickel-metal hydride storage battery is provided capable of suppressing an increase of discharge reserve of a negative electrode and preventing lowering of battery characteristics. A nickel-metal hydride storage battery 100 of the present invention comprises a battery main part (an electrode plate group 150, an electrolyte, and others), a case 102 housing this battery main part, and a safety valve device 101 having an excessive pressure preventing function for preventing excessive rise of the internal pressure in the case 102 by discharging gas from the case 102 when the internal pressure in the case 102 exceeds a predetermined value. The safety valve device 101 includes a valve member 110 having a protruding wall 118 forming a valve internal space C communicated with a release hole 122 and has a hydrogen leakage function for allowing leakage of hydrogen gas in the case 102 out of the battery through the valve internal space C even when the internal pressure in the case 102 is the predetermined value or less.
    • 提供能够抑制负极的放电储备的增加并防止电池特性降低的镍氢蓄电池。 本发明的镍氢蓄电池100包括电池主体部(电极板组150,电解液等),容纳该电池主体的壳体102和具有过压的安全阀装置101 防止在壳体102内的内部压力超过规定值时从壳体102排出气体来防止壳体102的内部压力过度上升的防止功能。 安全阀装置101包括阀构件110,阀构件110具有形成与释放孔122连通的阀内部空间C的突出壁118,并且具有氢泄漏功能,用于允许壳体102中的氢气通过阀从电池泄漏出电池 内部空间C即使在外壳102的内部压力为规定值以下的情况下也是如此。