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    • 3. 发明申请
    • BATTERY PACK AND CONTROL METHOD THEREFOR
    • 电池组及其控制方法
    • US20090315520A1
    • 2009-12-24
    • US12485120
    • 2009-06-16
    • Shoichi NishiyamaMasaru HiratsukaHiroyuki SuzukiTakehiko Tanaka
    • Shoichi NishiyamaMasaru HiratsukaHiroyuki SuzukiTakehiko Tanaka
    • H02J7/00H01M2/00
    • H01M10/482G01R19/16542G01R31/3658
    • A battery pack includes one or more cell blocks in which one or more secondary battery cells are connected in series and/or in parallel, and a control section for measuring a voltage of the one or more cell blocks to detect an abnormality of a cell block on the basis of a measurement result. The control section calculates a time differential of the voltage for the one or more cell blocks on the basis of the measured voltage, extracts a first time differential which is maximum and a second time differential which is minimum from the time differentials of the voltage for the one or more cell blocks, and determines that a cell block corresponding to the second time differential is abnormal in a case where a difference between the first time differential and the second time differential is less than a prescribed value.
    • 一种电池组包括其中一个或多个二次电池单元串联和/或并联连接的一个或多个单元块,以及用于测量所述一个或多个单元块的电压以检测单元块异常的控制单元 在测量结果的基础上。 控制部根据测定的电压来计算一个以上的单电池块的电压的时间差,根据该测量电压的时间差,提取最大的第一时间差和最小的第二时间微分 一个或多个单元块,并且在第一时间差和第二时间差之间的差小于规定值的情况下,确定与第二时间差相对应的单元块是异常的。
    • 8. 发明授权
    • Battery pack and control method therefor
    • 电池组及其控制方法
    • US08629656B2
    • 2014-01-14
    • US13397882
    • 2012-02-16
    • Shoichi NishiyamaMasaru HiratsukaHiroyuki SuzukiTakehiko Tanaka
    • Shoichi NishiyamaMasaru HiratsukaHiroyuki SuzukiTakehiko Tanaka
    • H02J7/00
    • H01M10/482G01R19/16542G01R31/3658
    • A battery pack includes one or more cell blocks in which one or more secondary battery cells are connected in series and/or in parallel, and a control section for measuring a voltage of the one or more cell blocks to detect an abnormality of a cell block on the basis of a measurement result. The control section calculates a time differential of the voltage for the one or more cell blocks on the basis of the measured voltage, extracts a first time differential which is maximum and a second time differential which is minimum from the time differentials of the voltage for the one or more cell blocks, and determines that a cell block corresponding to the second time differential is abnormal in a case where a difference between the first time differential and the second time differential is less than a prescribed value.
    • 一种电池组包括其中一个或多个二次电池单元串联和/或并联连接的一个或多个单元块,以及用于测量所述一个或多个单元块的电压以检测单元块异常的控制单元 在测量结果的基础上。 控制部根据测定的电压来计算一个以上的单电池块的电压的时间差,根据该测量电压的时间差,提取最大的第一时间差和最小的第二时间微分 一个或多个单元块,并且在第一时间差和第二时间差之间的差小于规定值的情况下,确定与第二时间差相对应的单元块是异常的。
    • 9. 发明授权
    • Outer casing of non-aqueous electrolyte battery and production method therefor
    • 非水电解质电池外壳及其制造方法
    • US08057555B2
    • 2011-11-15
    • US12707356
    • 2010-02-17
    • Masaru HiratsukaMitsuo SakamotoMasanori Naritomi
    • Masaru HiratsukaMitsuo SakamotoMasanori Naritomi
    • H01M2/00H01M2/08
    • H01M2/1061H01M10/052Y10T29/49108Y10T29/4911Y10T29/49114
    • An outer casing of a non-aqueous electrolyte battery is capable of being mass-produced as well as thin and resistant to damage. The outer casing 4 comprises a casing body 4a and a cover 4b. After being internally packaged, a non-aqueous electrolyte battery 2, e.g. a lithium-ion polymer secondary battery, is sandwiched between the casing body 4a and the cover 4b, which are then joined together integrally. The cover 4b is formed from a film-shaped sheet material 4c of a synthetic resin to make the outer casing 4 thin. The casing body 4a and the cover 4b have a casing body outer peripheral frame 9 and a cover outer peripheral frame 10, respectively, formed by injection molding. Joint portions of the casing body 4a and the cover 4b have stepped portions 9a and 10a, respectively. The stepped portions ensure the mechanical strength against shock and impact. With this structure, the outer casing 4 is resistant to damage.
    • 非水电解质电池的外壳能够大量生产以及薄且耐损坏。 外壳4包括壳体4a和盖4b。 在内部包装之后,非水电解质电池2,例如, 锂离子聚合物二次电池被夹在壳体主体4a和盖4b之间,然后将其一体地连接在一起。 盖4b由合成树脂的薄膜状片材4c形成,使得外壳4变薄。 壳体4a和盖4b分别通过注射成型形成壳体主体外周框架9和盖外周框架10。 壳体主体4a和盖4b的接合部分别分别具有阶梯部分9a和10a。 阶梯部分确保了抗冲击和冲击的机械强度。 利用这种结构,外壳4不受损坏。