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    • 5. 发明公开
    • ACCUMULATOR BATTERY MANAGEMENT SYSTEM
    • VERWALTUNGSSYSTEMFÜREINEN AKKUMULATOR
    • EP3014691A1
    • 2016-05-04
    • EP13887626.3
    • 2013-07-24
    • Obschestvo S Ogranichennoi Otvetstvennostyu "Ensol Tekhnologii"
    • IVANOV, Andrei Vladimirovich
    • H01M10/42H02J7/12H02H7/18
    • H02J7/0016H01M10/052H01M10/4257H01M10/441H01M10/46H01M2010/4271H02J7/0014H02J7/0019H02J7/0021H02J7/0024
    • The invention relates to chargers of lithium-ion batteries. The system contains a common control block and control blocks of each of the multitude of battery cells, where each cell of the multitude of cells is controlled by its own control block, which contains a micro-controller that has the capabilities to receive data about the condition of the cell, transfer the received information to the block of common control, and balance voltages of cells by high currents, where the balancing mode efficiently operates in any mode of the battery operation, where the multitude of cells of the accumulator batter are connected in series by direct current, and in parallel by alternating current through the system of DC/AC converter balancing, where the converters are synchronized by the common control signal from the common control block. The invention reduces the charging time and increases the discharging time of the battery.
    • 本发明涉及电气工程,可用于锂离子电池的充电器。 该系统包含多个电池单元的公共控制块和控制块,其中多个单元的每个单元由其自己的控制块控制,该控制块包含具有接收关于该单元的数据的能力的微控制器 将接收到的信息传送到公共控制块,并且通过高电流平衡电池的电压(在接收到来自公共控制块的控制命令时),其中平衡模式在电池操作的任何模式下有效地操作 (在充电期间,放电期间和静止期间),其中蓄电池电池的多个电池通过直流串联连接,并且通过交流电流并联在DC / AC转换器平衡系统中,转换器同步 通过公共控制块的公共控制信号。 本发明减少了充电时间并增加了电池的放电时间。
    • 9. 发明公开
    • A dry cell battery re-activator
    • WiederaufladerfürTrockenzellenbatterie。
    • EP0047183A1
    • 1982-03-10
    • EP81304014.4
    • 1981-09-02
    • REACTOMATIC LIMITED
    • Morris, Wilfred
    • H02J7/04H02J7/12
    • H02J7/022H01M6/50H01M10/44H02J7/008
    • The positive pole of dry cell battery B being recharged by the re-activator is connected to the positive D.C. output side of a full wave bridge rectifier 6 giving an un-smoothed cyclically varying D.C. output. The negative pole of the battery is connected by current path 14 to current path 16 to the collector of transistor 18 and by biasing resistance 22 and current path 20 to the transistor base connected to a high impedance winding 26 of transformer 28 having a low impedance winding 30 connected to the transistor emitter. The transistor turns on during each cycle of D.C. The current in winding 30 is a function of the battery impedance. Accordingly the voltage output of winding 26 is a function of the battery impedance and causes switch off of the transistor earlier in a D.C. cycle the lower the battery impedance is.
    • 由再激活器再充电的干电池B的正极连接到全波桥式整流器6的正直流输出侧,给出不平滑的循环变化的直流输出。 电池的负极通过电流通路14连接到电流通路16到晶体管18的集电极,并且通过将电阻22和电流通路20偏置到连接到具有低阻抗绕组的变压器28的高阻抗绕组26的晶体管基极 30连接到晶体管发射极。 在D.C的每个周期期间,晶体管导通。绕组30中的电流是电池阻抗的函数。 因此,绕组26的电压输出是电池阻抗的函数,并且导致在直流循环中较早的晶体管的电流在电池阻抗越低时断开。