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    • 2. 发明申请
    • Battery Charger and Battery Charging Method
    • 电池充电器和电池充电方法
    • US20120038320A1
    • 2012-02-16
    • US13194753
    • 2011-07-29
    • Takashi KabasawaHisanori Honma
    • Takashi KabasawaHisanori Honma
    • H02J7/00
    • H02J7/0019H01M10/441H02J7/0072
    • Charging is started with charge voltage set to a first voltage value (lower than a normal charge voltage) by a charge voltage change means, the first voltage value being predetermined to ensure that secondary batteries constituting a parallel-arrangement battery pack are charged up to and maintained at a predetermined SOC lower than full charge (between 80 and 90% of full charge). When a charge current detection means detects that charge current has decreased to a predetermined value A1, the charge voltage is set to a second voltage value (normal charge voltage) higher than the first voltage value by the charge voltage change means, the second voltage value being predetermined to enable the secondary batteries to be charged up to full charge. When a battery SOC detection means detects that at least one of the secondary batteries has reached full charge, charging is terminated.
    • 通过充电电压改变装置将充电电压设定为第一电压值(低于正常充电电压)开始充电,第一电压值被预先确定,以确保构成并联电池组的二次电池充电到 保持在低于完全充电(在满充电的80%到90%之间)的预定SOC。 当充电电流检测装置检测到充电电流已经降低到预定值A1时,通过充电电压改变装置将充电电压设置为高于第一电压值的第二电压值(正常充电电压),第二电压值 被预定为使二次电池充满电充电。 当电池SOC检测装置检测到至少一个二次电池已经达到完全充电时,终止充电。
    • 6. 发明申请
    • PTC Device and Secondary Battery Equipped with Same
    • PTC设备和配备相同的二次电池
    • US20130202917A1
    • 2013-08-08
    • US13696589
    • 2011-05-06
    • Arata Tanaka
    • Arata Tanaka
    • H01C7/00H01M2/34
    • H01C7/008H01C7/021H01M2/34H01M2/348H01M10/345H01M2200/106
    • The present invention provides a PTC device which makes more compact a PTC device as well as an electrical device such as a battery pack comprising the PTC device and a secondary battery or a dry-cell type secondary battery. The PTC device includes a PTC component including a laminar polymer PTC element containing an electrically conductive filler, and a polymer material, and a metal electrode disposed on a surface of each side of the polymer PTC element. A lead is positioned at least in part on the metal electrode of the PTC component, and connected to the metal electrode by an electrically conductive material. An exposed part of the conductive material is covered by a protective member containing a material that is able to absorb or envelop an alkali.
    • 本发明提供一种PTC器件,其使PTC器件更紧凑,以及诸如包括PTC器件和二次电池或干电池型二次电池的电池组的电气器件。 PTC器件包括PTC元件,其包括含有导电填料的层状聚合物PTC元件和聚合物材料,以及设置在聚合物PTC元件的每一侧的表面上的金属电极。 引线至少部分地位于PTC部件的金属电极上,并且通过导电材料连接到金属电极。 导电材料的暴露部分被包含能够吸收或包围碱的材料的保护构件覆盖。
    • 7. 发明申请
    • Charger
    • 充电器
    • US20120286722A1
    • 2012-11-15
    • US13467559
    • 2012-05-09
    • Takashi KabasawaHisanori Honma
    • Takashi KabasawaHisanori Honma
    • H02J7/00
    • H02J7/0018
    • The charger 10 includes a first charging path that charges battery banks via current limiting resistors R1 to R3, a second charging path that charges the battery banks without passing through the current limiting resistors R1 to R3, and a circuit that is capable of selectively switching the first and second charging paths to one another, being provided to the respective battery banks, and being identical in resistance values of the current limiting resistors R1 to R3. A battery voltage detection circuit detects the voltages of the battery banks; and a controller 16 controls the first to third charging circuits so that the battery banks are charged through the first charging path when there is difference in the voltages of the battery banks. The battery banks are charged through the second charging path when there is no difference in the voltages of the battery banks.
    • 充电器10包括第一充电路径,其通过限流电阻器R1至R3对电池组充电;第二充电路径,其不经过限流电阻器R1至R3而对电池组充电;以及电路,其能够选择性地切换 第一和第二充电路径彼此相对设置,并且与限流电阻R1至R3的电阻相同。 电池电压检测电路检测电池组的电压; 并且控制器16控制第一至第三充电电路,使得当电池组的电压存在差异时,电池组通过第一充电路径充电。 当电池组的电压没有差异时,电池组通过第二充电路径充电。