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    • 1. 发明授权
    • Battery module
    • 电池模块
    • US08399114B2
    • 2013-03-19
    • US13386814
    • 2011-07-22
    • Daisuke KishiiTakuya Nakashima
    • Daisuke KishiiTakuya Nakashima
    • H01M2/12H01M2/20
    • H01M10/0525H01M2/105H01M2/1077H01M2/12H01M2/204H01M2/206Y02T10/7011
    • A battery module includes a first unit cell, a second unit cell, a first exhaust chamber, and a second exhaust chamber. The first unit cell is disposed so that a positive electrode terminal faces the first direction. The second unit cell is connected in series to the first unit cell, the negative electrode terminal is disposed so as to face the first direction, and the second unit is disposed so as to be adjacent to the first unit cell. The first exhaust chamber is disposed so as to face the positive electrode terminal of the first unit cell, and discharges a gas which is emitted from the positive electrode terminal of the first unit cell. The second exhaust chamber is disposed so as to face the positive electrode terminal of the second unit cell, and discharges a gas generated from the positive electrode terminal of the second unit cell. The end surface of the second unit cell in the first direction and the outer surface of the first exhaust chamber in the first direction are flush with each other. The end surface of the first unit cell in a second direction opposite to the first direction and the outer surface of the second exhaust chamber in the second direction are flush with each other.
    • 电池模块包括第一单元电池,第二单电池,第一排气室和第二排气室。 第一单电池被设置为使正极端子朝向第一方向。 第二单电池与第一单电池串联连接,负电极端子配置成朝向第一方向,第二单元配置成与第一单电池相邻。 第一排气室配置成与第一单电池的正极端子相对,排出从第一单电池的正极端子射出的气体。 第二排气室配置成与第二单元电池的正极端子相对,并且排出从第二单元电池的正极端子产生的气体。 第一单元电池的第一方向的端面和第一排气室的外表面在第一方向上彼此齐平。 第一单元电池的与第一方向相反的第二方向的端面和第二排气室的外表面在第二方向上彼此齐平。
    • 2. 发明申请
    • BATTERY MODULE
    • 电池模块
    • US20120189885A1
    • 2012-07-26
    • US13386814
    • 2011-07-22
    • Daisuke KishiiTakuya Nakashima
    • Daisuke KishiiTakuya Nakashima
    • H01M2/12H01M2/20
    • H01M10/0525H01M2/105H01M2/1077H01M2/12H01M2/204H01M2/206Y02T10/7011
    • A battery module includes a first unit cell, a second unit cell, a first exhaust chamber, and a second exhaust chamber. The first unit cell is disposed so that a positive electrode terminal faces the first direction. The second unit cell is connected in series to the first unit cell, the negative electrode terminal is disposed so as to face the first direction, and the second unit is disposed so as to be adjacent to the first unit cell. The first exhaust chamber is disposed so as to face the positive electrode terminal of the first unit cell, and discharges a gas which is emitted from the positive electrode terminal of the first unit cell. The second exhaust chamber is disposed so as to face the positive electrode terminal of the second unit cell, and discharges a gas generated from the positive electrode terminal of the second unit cell. The end surface of the second unit cell in the first direction and the outer surface of the first exhaust chamber in the first direction are flush with each other. The end surface of the first unit cell in a second direction opposite to the first direction and the outer surface of the second exhaust chamber in the second direction are flush with each other.
    • 电池模块包括第一单元电池,第二单电池,第一排气室和第二排气室。 第一单电池被设置为使正极端子朝向第一方向。 第二单电池与第一单电池串联连接,负电极端子配置成朝向第一方向,第二单元配置成与第一单电池相邻。 第一排气室配置成与第一单电池的正极端子相对,排出从第一单电池的正极端子射出的气体。 第二排气室配置成与第二单元电池的正极端子相对,并且排出从第二单元电池的正极端子产生的气体。 第一单元电池的第一方向的端面和第一排气室的外表面在第一方向上彼此齐平。 第一单元电池的与第一方向相反的第二方向的端面和第二排气室的外表面在第二方向上彼此齐平。
    • 9. 发明授权
    • Camera
    • 相机
    • US07346276B2
    • 2008-03-18
    • US11136535
    • 2005-05-25
    • Daisuke Kishii
    • Daisuke Kishii
    • G03B17/00
    • G03B17/02Y10T70/5765
    • The present invention provides a highly operable easy-to-use camera having a simple configuration with a few parts without losing a locking function. In a camera comprising: a rotary operation dial 6 to be operated rotationally; a locking function for locking the rotary operation dial 6 relative to a predetermined position; and a body case 2 to be fitted with the rotary operation dial 6, the rotary operation dial 6 is made of elastic body in an integrated manner, the rotary operation dial 6 comprising a lock lever part 63 having an operation lever 631 and a hook 632 which lie, respectively, outside and inside of the body case 2 relative to the rotary operation dial 6, the hook 632 being adapted to be fitted into a lock groove 23 formed inside the body case 2.
    • 本发明提供了一种高度可操作的易于使用的相机,其具有简单的配置,并且不失去锁定功能。 一种照相机,包括:旋转操作盘6,其被旋转地操作; 用于相对于预定位置锁定旋转操作盘6的锁定功能; 以及装配有旋转操作盘6的主体壳体2,旋转操作转盘6以一体的方式由弹性体制成,旋转操作转盘6包括具有操作杆631和钩632的锁定杆部63 它们分别位于主体壳体2相对于旋转操作盘6的外部和内部,钩632适于装配在形成在主体壳体2内部的锁定槽23中。
    • 10. 发明申请
    • BATTERY BLOCK
    • 电池块
    • US20130344376A1
    • 2013-12-26
    • US13695194
    • 2012-03-01
    • Yasuhiro AsaidaYukio NishikawaHideaki HamadaNaoto HosotaniDaisuke Kishii
    • Yasuhiro AsaidaYukio NishikawaHideaki HamadaNaoto HosotaniDaisuke Kishii
    • H01M2/02
    • H01M2/0242H01M2/0262H01M2/0267H01M2/1077H01M2/1094H01M10/6555
    • The present invention provides a battery block that accommodates unit cells having higher capacities, and, even in case of abnormal heat generation in the unit cell, does not cause abnormal heat generation in the neighboring unit cells, thereby preventing a chain reaction of degradations and abnormalities of the accommodated unit cells. The battery block of the present invention includes a battery case having a minimum thickness section satisfying the relationship “K2/K1≧K3−1”. K1 is the thermal conductance between the battery case and the unit cell. K2 is the thermal conductance of the minimum thickness section of the battery case between two neighboring holes for accommodating the respective unit cells. K3 is a ratio between the abnormal heat temperature of a reference cell and the ambient temperature causing abnormal heat generation in this cell.
    • 本发明提供了容纳具有较高容量的单电池的电池块,即使在单元电池中发生异常发热的情况下,也不会在相邻的单元电池中产生异常的发热,从而防止劣化和异常的链式反应 的容纳单元电池。 本发明的电池模块包括具有满足关系“K2 / K1> = K3-1”的最小厚度部分的电池盒。 K1是电池盒和单元电池之间的热导率。 K2是用于容纳各个单电池的两个相邻孔之间的电池壳体的最小厚度部分的热导率。 K3是参考电池的异常加热温度与引起该电池异常发热的环境温度之比。