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    • 1. 发明授权
    • Storage battery and production method thereof
    • 蓄电池及其制作方法
    • US07709147B2
    • 2010-05-04
    • US11914853
    • 2006-05-19
    • Shuji SugimotoFuminori OzakiTakashi Yokoyama
    • Shuji SugimotoFuminori OzakiTakashi Yokoyama
    • H01M2/26
    • H01M2/266H01M2/22H01M10/04H01M10/28Y02E60/124Y02P70/54
    • A storage battery includes: a bottomed metal case (10) accommodating an electrolyte and a collector (7) having a flat plate connected to one side of an electrode assembly (5) containing a strip-shaped positive electrode plate (1), a strip-shaped negative electrode plate (2), and a separator (6); a sealing plate (11) sealing upside of the bottomed metal case; and a lead terminal (9) electrically connecting the sealing plate to the collector, wherein the collector has at least one projection (13) and the collector and the lead terminal are electrically connected with each other via the projection. This construction eliminates the problem of increased contact resistance between the lead terminal and the collector and realizes a storage battery having high current discharging performance in which the contact resistance is reduced.
    • 蓄电池包括:容纳电解质的有底金属外壳(10)和具有与包含带状正电极板(1)的电极组件(5)的一侧连接的平板的集电器(7),带 形状的负极板(2)和隔膜(6); 密封板(11),其密封有底金属壳体的上侧; 以及将密封板电连接到集电器的引线端子(9),其中集电器具有至少一个突起(13),并且集电器和引线端子经由突起彼此电连接。 这种结构消除了引线端子和集电极之间的接触电阻增加的问题,并实现了具有降低接触电阻的高电流放电性能的蓄电池。
    • 2. 发明申请
    • BATTERY STRUCTURE
    • 电池结构
    • US20100167094A1
    • 2010-07-01
    • US12600956
    • 2008-06-04
    • Shinya GeshiYasunori UchidaMasahiko KatouShintaro ShimizuFuminori Ozaki
    • Shinya GeshiYasunori UchidaMasahiko KatouShintaro ShimizuFuminori Ozaki
    • H01M2/30
    • H01M2/206H01M2/1072H01M2/1094
    • This invention relates to a battery structure with improved safety. The battery structure includes: at least two batteries disposed axially parallel to each other, positive terminals thereof facing opposite directions, negative terminals thereof facing opposite directions; an insulating material covering each of the batteries; and a connecting member provided at an end of the at least two batteries for connecting the positive terminal of one of the batteries with the negative terminal of the other battery. The connecting member includes: a negative terminal connector attached to the other battery so as to come into contact with the negative terminal of the other battery; and a bus bar connected at one end portion thereof to the positive terminal of the one battery. The negative terminal connector has a socket into which the other end portion of the bus bar is to be inserted. The tip of the other end portion of the bus bar in the direction of insertion into the socket is chamfered so that it does not impair the insulating material.
    • 本发明涉及具有改进的安全性的电池结构。 电池结构包括:至少两个彼此轴向平行布置的电池,其正极面向相反方向,其负极端子朝向相反方向; 覆盖每个电池的绝缘材料; 以及设置在所述至少两个电池的端部处的连接构件,用于将所述电池中的一个的正极端子与所述另一个电池的负极端子连接。 连接构件包括:负极端子连接器,其连接到另一个电池,以便与另一个电池的负极端子接触; 以及在其一端部连接到一个电池的正极端子的汇流条。 负极端子连接器具有插座,母线的另一端部将插入该插座中。 汇流条的另一端部在插入插座的方向上的尖端被倒角,从而不损害绝缘材料。
    • 3. 发明授权
    • Battery structure
    • 电池结构
    • US08399121B2
    • 2013-03-19
    • US12600956
    • 2008-06-04
    • Shinya GeshiYasunori UchidaMasahiko KatouShintaro ShimizuFuminori Ozaki
    • Shinya GeshiYasunori UchidaMasahiko KatouShintaro ShimizuFuminori Ozaki
    • H01M2/24
    • H01M2/206H01M2/1072H01M2/1094
    • This invention relates to a battery structure with improved safety. The battery structure includes: at least two batteries disposed axially parallel to each other, positive terminals thereof facing opposite directions, negative terminals thereof facing opposite directions; an insulating material covering each of the batteries; and a connecting member provided at an end of the at least two batteries for connecting the positive terminal of one of the batteries with the negative terminal of the other battery. The connecting member includes: a negative terminal connector attached to the other battery so as to come into contact with the negative terminal of the other battery; and a bus bar connected at one end portion thereof to the positive terminal of the one battery. The negative terminal connector has a socket into which the other end portion of the bus bar is to be inserted. The tip of the other end portion of the bus bar in the direction of insertion into the socket is chamfered so that it does not impair the insulating material.
    • 本发明涉及具有改进的安全性的电池结构。 电池结构包括:至少两个彼此轴向平行布置的电池,其正极面向相反方向,其负极端子朝向相反方向; 覆盖每个电池的绝缘材料; 以及设置在所述至少两个电池的端部处的连接构件,用于将所述电池中的一个的正极端子与所述另一个电池的负极端子连接。 连接构件包括:负极端子连接器,其连接到另一个电池,以便与另一个电池的负极端子接触; 以及在其一端部连接到一个电池的正极端子的汇流条。 负极端子连接器具有插座,母线的另一端部将插入该插座中。 汇流条的另一端部在插入插座的方向上的尖端被倒角,从而不损害绝缘材料。
    • 4. 发明授权
    • Sensitivity identifying device and steering assist system
    • 灵敏度识别装置和转向辅助系统
    • US07974751B2
    • 2011-07-05
    • US11786087
    • 2007-04-10
    • Hideaki ItoFuminori OzakiYumi TsutsumiMayumi KomatsuShinichi Kuratani
    • Hideaki ItoFuminori OzakiYumi TsutsumiMayumi KomatsuShinichi Kuratani
    • B62D6/00
    • B62D6/008B62D5/0463B62D6/007
    • A sensitivity identifying device has an operating object device configured to operate when an operation member is moved according to a force applied by a user, an assist force applying device for applying an assist force to movement of the operation member, an operation force parameter detecting device for detecting a value of an operation force parameter, an operation response parameter detecting device for detecting a value of an operation response parameter, a sensitivity identifying information storage section for storing sensitivity identifying information associating a sensitivity index, with a combination of the value of the operation force parameter and the operation response parameter, and a sensitivity determining unit for specifying the sensitivity index based on the combination of the value of the operation force parameter and the operation response parameter, and the sensitivity identifying information, and outputting the sensitivity index.
    • 灵敏度识别装置具有操作对象装置,其被配置为在操作构件根据用户施加的力而移动时进行操作;辅助力施加装置,用于向操作构件的移动施加辅助力;操作力参数检测装置 用于检测操作力参数的值,用于检测操作响应参数的值的操作响应参数检测装置,用于存储与灵敏度指标相关联的灵敏度识别信息的灵敏度识别信息存储部分, 操作力参数和操作响应参数,以及灵敏度确定单元,用于基于操作力参数的值和操作响应参数的组合以及灵敏度识别信息来指定灵敏度指数,并输出灵敏度指数。
    • 5. 发明申请
    • STORAGE BATTERY AND PRODUCTION METHOD THEREOF
    • 储存电池及其生产方法
    • US20090104522A1
    • 2009-04-23
    • US11914853
    • 2006-05-19
    • Shuji SugimotoFuminori OzakiTakashi Yokoyama
    • Shuji SugimotoFuminori OzakiTakashi Yokoyama
    • H01M2/08H01M2/02
    • H01M2/266H01M2/22H01M10/04H01M10/28Y02E60/124Y02P70/54
    • A storage battery includes: a bottomed metal case (10) accommodating an electrolyte and a collector (7) having a flat plate connected to one side of an electrode assembly (5) containing a strip-shaped positive electrode plate (1), a strip-shaped negative electrode plate (2), and a separator (6); a sealing plate (11) sealing upside of the bottomed metal case; and a lead terminal (9) electrically connecting the sealing plate to the collector, wherein the collector has at least one projection (13) and the collector and the lead terminal are electrically connected with each other via the projection. This construction eliminates the problem of increased contact resistance between the lead terminal and the collector and realizes a storage battery having high current discharging performance in which the contact resistance is reduced.
    • 蓄电池包括:容纳电解质的有底金属外壳(10)和具有与包含带状正电极板(1)的电极组件(5)的一侧连接的平板的集电器(7),带 形状的负极板(2)和隔膜(6); 密封板(11),其密封有底金属壳体的上侧; 以及将密封板电连接到集电器的引线端子(9),其中集电器具有至少一个突起(13),并且集电器和引线端子经由突起彼此电连接。 这种结构消除了引线端子和集电极之间的接触电阻增加的问题,并实现了具有降低接触电阻的高电流放电性能的蓄电池。
    • 6. 发明申请
    • Sensitivity identifying device and steering assist system
    • 灵敏度识别装置和转向辅助系统
    • US20070250234A1
    • 2007-10-25
    • US11786087
    • 2007-04-10
    • Hideaki ItoFuminori OzakiYumi TsutsumiMayumi KomatsuShinichi Kuratani
    • Hideaki ItoFuminori OzakiYumi TsutsumiMayumi KomatsuShinichi Kuratani
    • G05D1/00G05D3/00B62D6/00
    • B62D6/008B62D5/0463B62D6/007
    • A sensitivity identifying device has an operating object device configured to operate when an operation member is moved according to a force applied by a user, an assist force applying device for applying an assist force to movement of the operation member, an operation force parameter detecting device for detecting a value of an operation force parameter, an operation response parameter detecting device for detecting a value of an operation response parameter, a sensitivity identifying information storage section for storing sensitivity identifying information associating a sensitivity index, with a combination of the value of the operation force parameter and the operation response parameter, and a sensitivity determining unit for specifying the sensitivity index based on the combination of the value of the operation force parameter and the operation response parameter, and the sensitivity identifying information, and outputting the sensitivity index.
    • 灵敏度识别装置具有操作对象装置,其被配置为在操作构件根据用户施加的力而移动时进行操作;辅助力施加装置,用于向操作构件的移动施加辅助力;操作力参数检测装置 用于检测操作力参数的值,用于检测操作响应参数的值的操作响应参数检测装置,用于存储与灵敏度指标相关联的灵敏度识别信息的灵敏度识别信息存储部分, 操作力参数和操作响应参数,以及灵敏度确定单元,用于基于操作力参数的值和操作响应参数的组合以及灵敏度识别信息来指定灵敏度指数,并输出灵敏度指数。