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    • 1. 发明授权
    • Power supply device
    • 电源设备
    • US09112360B2
    • 2015-08-18
    • US13503532
    • 2010-09-02
    • Masahiko GotoMasaaki FukumotoKazuyuki Sakakibara
    • Masahiko GotoMasaaki FukumotoKazuyuki Sakakibara
    • H02J7/00
    • H02J7/0024H02J7/0063Y10T307/685
    • A power supply device includes battery interfaces configured to removably receive at least three batteries and a connection circuit configured to electrically connect the at least three batteries to each other. The connection circuit is capable of connecting at least two batteries in parallel and connecting at least one other battery to the at least two parallel-connected batteries in series. According to this power supply device, it is possible to supply high power to an electric device by connecting the batteries in series. In addition, it is possible to supply almost all of the electric power stored in the batteries to the electric device, even if amount of the remaining electric power in each battery is substantially uneven.
    • 电源装置包括被配置为可移除地接收至少三个电池的电池接口和被配置为将至少三个电池彼此电连接的连接电路。 连接电路能够并联连接至少两个电池,并且将至少一个其它电池串联连接至至少两个并联电池。 根据该电源装置,通过串联连接电池,可以向电气装置供给高功率。 此外,即使每个电池中的剩余电力的量基本上不均匀,也可以将存储在电池中的几乎所有的电力供应到电气设备。
    • 2. 发明申请
    • POWER SUPPLY DEVICE
    • 电源设备
    • US20120205984A1
    • 2012-08-16
    • US13503532
    • 2010-09-02
    • Masahiko GotoMasaaki FukumotoKazuyuki Sakakibara
    • Masahiko GotoMasaaki FukumotoKazuyuki Sakakibara
    • H02J1/00
    • H02J7/0024H02J7/0063Y10T307/685
    • A power supply device includes battery interfaces configured to removably receive at least three batteries and a connection circuit configured to electrically connect the at least three batteries to each other. The connection circuit is capable of connecting at least two batteries in parallel and connecting at least one other battery to the at least two parallel-connected batteries in series. According to this power supply device, it is possible to supply high power to an electric device by connecting the batteries in series. In addition, it is possible to supply almost all of the electric power stored in the batteries to the electric device, even if amount of the remaining electric power in each battery is substantially uneven.
    • 电源装置包括被配置为可移除地接收至少三个电池的电池接口和被配置为将至少三个电池彼此电连接的连接电路。 连接电路能够并联连接至少两个电池,并且将至少一个其它电池串联连接至至少两个并联电池。 根据该电源装置,通过串联连接电池,可以向电气装置供给高功率。 此外,即使每个电池中的剩余电力的量基本上不均匀,也可以将存储在电池中的几乎所有的电力供应到电气设备。
    • 7. 发明授权
    • Rechargeable battery devices
    • 充电电池装置
    • US07091699B2
    • 2006-08-15
    • US10816583
    • 2004-04-01
    • Tatsuki MoriKazuyuki SakakibaraMasaaki Fukumoto
    • Tatsuki MoriKazuyuki SakakibaraMasaaki Fukumoto
    • H02J7/00
    • H02J7/0031H02J2007/004H02J2007/005H02J2007/0098
    • Battery pack 10 may include rechargeable battery 12 and remaining capacity indicating circuit 14 for indicating the remaining capacity of the battery 12. Remaining capacity indicating circuit 14 may be coupled to the battery 12 via first switch SW1. When first switch SW1 is turned ON, a current flows from battery 12 to remaining capacity indicating circuit 14. When the first switch SW1 is turned OFF, the current flowing from battery 12 to remaining capacity indicating circuit 14 is turned OFF. The first switch SW1 may be coupled to first voltage detecting circuit (R2, R3) for detecting the voltage of battery 12. When the voltage that is being detected of battery 12 falls below a first predetermined value, first switch SW1 is turned off. Battery pack 10 may further include cut-off circuit (SW2, R4, R5) that cuts off the flow of current from battery 12 to first voltage detecting circuit (R2, R3) when first switch SW1 has been turned OFF.
    • 电池组10可以包括用于指示电池12的剩余容量的可充电电池12和剩余容量指示电路14。 剩余容量指示电路14可以经由第一开关SW 1耦合到电池12。 当第一开关SW 1接通时,电流从电池12流向剩余容量指示电路14。 当第一开关SW 1断开时,从电池12流向剩余容量指示电路14的电流被断开。 第一开关SW 1可以耦合到用于检测电池12的电压的第一电压检测电路(R 2,R 3)。 当电池12被检测到的电压低于第一预定值时,第一开关SW 1断开。 电池组10还可以包括截止电路(SW 2,R 4,R 5),当第一开关SW 1已经转动时,切断电路将电流从电池12流向第一电压检测电路(R 2,R 3) 关闭。
    • 10. 发明授权
    • Battery packs suitable for use with battery powered appliances
    • 电池组适用于电池供电设备
    • US07879483B2
    • 2011-02-01
    • US12498736
    • 2009-07-07
    • Kazuyuki Sakakibara
    • Kazuyuki Sakakibara
    • H01M10/50
    • H01M2/105H01M2/0202H01M2/1055H01M2/1094H01M10/345H01M10/486H01M10/613H01M10/6235H01M10/643H01M10/6554H01M10/6563H01M10/6566
    • Cooling air intake port (52), cooling air exhaust port (55), and securing walls (86, 87), which contact and secure the side surfaces of one or more battery cells (72), may be defined within two battery pack housing halves (50, 80). When battery pack (99) is assembled, at least one cooling air passage (91, 92) is defined by the side surfaces of the battery cells, the interior surface of the battery pack housing, and the securing walls. The cooling air passage connects the cooling air intake port to the cooling air exhaust port. Further, the securing walls isolate or physically separate the cooling air passage from battery terminals (72a, 72b). By forcing cooling air through the cooling air passage, the battery cells can be effectively and efficiently cooled. In addition, if the battery terminals are isolated from the cooling air by the securing walls, the electrical contact areas of the battery cells are protected or shielded against outside moisture and foreign substances that may be introduced into the battery pack by the cooling air.
    • 可以在两个电池组壳体内限定冷却空气吸入口(52),冷却空气排出口(55)和接触并固定一个或多个电池单元(72)的侧表面的固定壁(86,87) 一半(50,80)。 当组装电池组(99)时,由电池单元的侧表面,电池组壳体的内表面和固定壁限定至少一个冷却空气通道(91,92)。 冷却空气通道将冷却空气进入口连接到冷却空气排出口。 此外,固定壁将冷却空气通道与电池端子(72a,72b)隔离或物理分离。 通过迫使冷却空气通过冷却空气通道,能够有效且有效地冷却电池单元。 此外,如果电池端子通过固定壁与冷却空气隔离,则电池单元的电接触区域被保护或防止外部湿气和可能被冷却空气引入电池组的异物。