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    • 14. 发明授权
    • Battery cover having one or more quenching media
    • 电池盖具有一个或多个淬火介质
    • US08076022B1
    • 2011-12-13
    • US11784727
    • 2007-04-09
    • Hisashi Tsukamoto
    • Hisashi Tsukamoto
    • H01M2/00
    • H01M10/4235H01M2/34
    • A battery includes a case having an interior holding an electrolyte activating one or more anodes and one or more cathodes. A cover is positioned on the case. The cover includes one or more quenching media that each has a phase transition that occurs at a temperature above a failure temperature of the battery and below a failure temperature of the battery. The failure temperature is the temperature at which a chain reaction associated with thermal runaway is initiated. The failure temperature of the battery is the temperature of the battery at which the thermal runaway causes failure of the battery.
    • 电池包括壳体,其具有内部,其保持活化一个或多个阳极和一个或多个阴极的电解质。 盖子位于外壳上。 盖子包括一个或多个淬火介质,每个淬火介质各自具有在高于电池的故障温度并低于电池的故障温度的温度下发生的相变。 故障温度是与热失控相关联的链反应开始的温度。 电池的故障温度是热失控导致电池故障的电池的温度。
    • 18. 发明申请
    • Battery pack system
    • 电池组系统
    • US20090289598A1
    • 2009-11-26
    • US12462095
    • 2009-07-28
    • Hisashi TsukamotoTiehua PiaoTaison Tan
    • Hisashi TsukamotoTiehua PiaoTaison Tan
    • H02J7/00H01M10/46
    • H01M10/441B60L11/1855Y02T10/7005Y02T10/7055
    • A battery pack system is disclosed. The battery pack system includes a battery pack having batteries arranged in a plurality of parallel groups that are connected in series. Each parallel group includes a plurality of the batteries connected in parallel. The electronics are configured to drop the current at which the battery pack is operating from a first current level to a second current level one or more times. The second current level is lower than the first current level. The electronics can drop the current from the first current level to the second current level during the charge and/or discharge of the battery pack. In some instances, the electronics intermittently drop the current from the first current level to the second current level during the charge and/or discharge of the battery pack.
    • 公开了一种电池组系统。 电池组系统包括具有以串联连接的多个并联组的电池的电池组。 每个并联组包括并联连接的多个电池。 电子设备被配置为将电池组操作的电流从第一电流水平降低到第二电流水平一次或多次。 第二个当前水平低于第一个当前水平。 在电池组的充电和/或放电期间,电子器件可以将电流从第一电流电平降低到第二电流电平。 在一些情况下,在电池组的充电和/或放电期间,电子设备间歇地将电流从第一电流电平降低到第二电流电平。
    • 20. 发明授权
    • Energy storage device configured to discharge energy in response to unsafe conditions
    • 能量存储装置被配置为响应于不安全的条件释放能量
    • US07592776B2
    • 2009-09-22
    • US10935869
    • 2004-09-08
    • Hisashi TsukamotoClay KishiyamaDavid Comarow
    • Hisashi TsukamotoClay KishiyamaDavid Comarow
    • H01M10/46
    • H01M10/44G01R31/025H01M10/446H01M2200/00H01M2200/10H01M2200/20H02J7/0029
    • A method, device and system is disclosed for rapidly and safely discharging remaining energy stored in an electrochemical battery 104 in the event of an internal short circuit or other fault. In its best mode of implementation, if a sensor 116 detects one or more parameters such as battery temperature 204 or pressure 206, exceeding a predetermined threshold value 334, the terminals 144 of the battery or cell are intentionally short-circuited external to the battery through a low or near zero resistance load 150 which rapidly drains energy from the battery 104. Heat generated by such rapid drain is absorbed by a heat absorbing material 151 such as an endothermic phase-change material like paraffin. The rate energy is drained via the external discharge load 150 may be controlled with an electronic circuit 136 responsive to factors such as state of charge and battery temperature. Devices such as inductive charging coils 160, piezoelectric and Peltier devices 300, may also be used as emergency energy discharge loads. Heat absorption material 163 may be used to protect adjacent issue in medically-implanted devices.
    • 公开了一种方法,装置和系统,用于在内部短路或其他故障的情况下快速且安全地排放存储在电化学电池104中的剩余能量。 在其最佳实施方式中,如果传感器116检测到超过预定阈值334的一个或多个参数(例如电池温度204或压力206),则电池或电池的端子144有意地短于电池外部短路 低电阻或近零电阻负载150,其快速地从电池104排出能量。由这种快速排水产生的热量被诸如石蜡的吸热相变材料等吸热材料151吸收。 通过外部放电负载150排出的速率能量可以响应于诸如充电状态和电池温度等因素的电子电路136来控制。 诸如感应充电线圈160,压电和珀耳帖装置300的装置也可以用作紧急能量放电负载。 吸收材料163可用于保护医疗植入装置中的相邻问题。