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    • 71. 发明申请
    • Battery System
    • 电池系统
    • US20130020997A1
    • 2013-01-24
    • US13415152
    • 2012-03-08
    • Hiroshi IWASAWAMitsutoshi Honda
    • Hiroshi IWASAWAMitsutoshi Honda
    • H02J7/00
    • H01M10/441H01M2220/10H02J7/0018
    • A battery system having a battery string configured by connecting in series a plurality of battery units includes: an SOC detection unit for individually detecting states of charge of the plurality of battery units; and a charge-and-discharge control unit for individually charging and discharging the battery units, based on a full charge capacity of each battery unit and each state of charge of the battery units individually detected by the detection unit, upon the battery system being in no load state, the control unit individually charges and discharges the battery units so that the states of charge of the battery units are approximately equal with each other when the battery units are in a discharge end state and so that a difference between the states of charge of the battery units is relatively large when the battery units are approximately in a full charge state.
    • 具有串联连接多个电池单元的电池串的电池系统包括:SOC检测单元,用于分别检测多个电池单元的电荷状态; 以及充放电控制单元,用于基于每个电池单元的完全充电容量和由所述检测单元单独检测的电池单元的每个充电状态,对所述电池单元进行单独充电和放电,所述充电和放电控制单元在所述电池系统处于 无负载状态时,控制单元分别对电池单元进行充电和放电,使得当电池单元处于放电结束状态时电池单元的充电状态彼此近似相等,并且使得充电状态之间的差异 当电池单元大约处于完全充电状态时,电池单元的相对较大。
    • 73. 发明申请
    • BATTERY BALANCING CIRCUIT AND BALANCING METHOD THEREOF AND BATTERY ACTIVATION METHOD
    • 电池平衡电路及其平衡方法及电池激活方法
    • US20120262121A1
    • 2012-10-18
    • US13236957
    • 2011-09-20
    • KUO-CHENG KUOSUNG-HSIN HSIAO
    • KUO-CHENG KUOSUNG-HSIN HSIAO
    • H02J7/00
    • H02J7/0018H02J7/0019
    • Disclosed is a battery balancing circuit for balancing the voltages of a reference battery module and a detachable battery apparatus, which has a load channel, a charging-discharging channel, a MCU and a charging-discharging control circuit. The reference battery module and detachable battery apparatus are connected in parallel. The load channel is connected to the reference battery module. The charging-discharging channel is disconnected from the reference battery module. The load and charging-discharging channels are connected to the detachable battery apparatus respectively through a first and a second switches. When the voltage of the detachable battery apparatus is higher or lower than a threshold value, the MCU controls the first and second switches, such that the detachable battery apparatus is connected to the charging-discharging control circuit through the charging-discharging channel and disconnected from the load channel. Then the MCU charges or discharges the detachable battery apparatus through the charging-discharging control circuit.
    • 公开了一种用于平衡参考电池模块和具有负载沟道,充电放电通道,MCU和充电放电控制电路的可拆卸电池装置的电压的电池平衡电路。 参考电池模块和可拆卸电池装置并联连接。 负载通道连接到参考电池模块。 充电放电通道与参考电池模块断开连接。 负载和充放电通道分别通过第一和第二开关连接到可拆卸电池装置。 当可拆卸电池装置的电压高于或低于阈值时,MCU控制第一和第二开关,使得可拆卸电池装置通过充电 - 放电通道连接到充放电控制电路, 负载通道。 然后,MCU通过充放电控制电路对可拆卸电池装置进行充电或放电。
    • 75. 发明授权
    • Charging system for prioritizing load consumption in a notebook computer
    • 用于优先考虑笔记本电脑中负载消耗的充电系统
    • US08248032B2
    • 2012-08-21
    • US12464960
    • 2009-05-13
    • Norihito OzekiNoritoshi Yamasaki
    • Norihito OzekiNoritoshi Yamasaki
    • H02J7/00
    • H02J7/0068H01M10/44H02J7/0018
    • A method for controlling a charging system having multiple loads is disclosed. Power is supplied from an AC/DC adapter to a first charger, a second charger, and system loads. The first charger is operated at a setting value having smaller power consumption than a setting value necessary for a first battery pack when output power of a power source reaches a first threshold value during a time when the first battery pack is required to be charged in a standard charging mode. The first charger is operated at a setting value according to a specific charging mode even when the output power of the power source reaches the first threshold value during a time when the first battery pack is required to be charged in the specific charging mode. A second charger is operated at a setting value having smaller power consumption than a setting value necessary for a second battery pack when the output power of the power source reaches a second threshold value larger than the first threshold value.
    • 公开了一种用于控制具有多个负载的充电系统的方法。 电源由AC / DC适配器提供给第一个充电器,第二个充电器和系统负载。 第一充电器在第一电池组被要求充电的时间期间以与电源的输出功率达到第一阈值相比具有比第一电池组所需的设定值小的功耗的设定值操作 标准充电模式。 即使在需要在特定充电模式下对第一电池组进行充电的时间期间,即使当电源的输出功率达到第一阈值时,第一充电器也按照特定的充电模式操作设定值。 当电源的输出功率达到大于第一阈值的第二阈值时,第二充电器以比第二电池组所需的设置值更小的功耗操作。