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    • 43. 发明申请
    • BATTERY HEATING CIRCUITS AND METHODS WITH RESONANCE COMPONENTS IN SERIES USING VOLTAGE INVERSION AND FREEWHEELING CIRCUIT COMPONENTS
    • 电池加热电路和使用电压反相和自由绕组组件的系列中的谐振组件的方法
    • US20120031890A1
    • 2012-02-09
    • US13187890
    • 2011-07-21
    • Yaochuan HanWenhui XuWei FengQinyao YangWenjin XiaXianyin Li
    • Yaochuan HanWenhui XuWei FengQinyao YangWenjin XiaXianyin Li
    • H05B1/00
    • H01L23/345H01L2924/0002H01M10/615H01M10/625H01M10/651H01M10/657H01M10/6571H01M10/6572H02J7/0014H02J7/0054H02J7/0075H02J7/0091H02J7/0093H02M3/158Y02E60/12Y02T10/7055H01L2924/00
    • Certain embodiments of the present invention provide a battery heating circuit, comprising a switch unit (1), a switching control module (100), a damping component R1, an energy storage circuit, a freewheeling circuit (20), and an energy superposition unit, the energy storage circuit is configured to connect with the battery to form a loop, and comprises a current storage component L1 and a charge storage component C1; the damping component R1, the switch unit (1), the current storage component L1, and the charge storage component C1 are connected in series; the switching control module (100) is connected with the switch unit (1), and is configured to control ON/OFF of the switch unit (1), so as to control the energy flowing between the battery and the energy storage circuit; the energy superposition unit is connected with the energy storage circuit, and is configured to superpose the energy in the energy storage circuit with the energy in the battery when the switch unit (1) switches on and then switches off; the freewheeling circuit (20) is configured to form a serial loop with the battery and the current storage component L1 to sustain current flow in the battery after the switch unit (1) switches on and then switches off.
    • 本发明的某些实施例提供了一种电池加热电路,包括开关单元(1),开关控制模块(100),阻尼组件R1,能量存储电路,续流电路(20)和能量叠加单元 能量存储电路被配置为与电池连接以形成环路,并且包括电流存储部件L1和电荷存储部件C1; 阻尼部件R1,开关单元(1),电流存储部件L1和电荷存储部件C1串联连接; 开关控制模块(100)与开关单元(1)连接,并且被配置为控制开关单元(1)的接通/断开,以便控制在电池和能量存储电路之间流动的能量; 能量叠加单元与能量存储电路连接,并且被配置为当开关单元(1)接通然后断开时,将蓄能电路中的能量与电池中的能量叠加; 续流电路(20)被配置为与电池和当前存储部件L1形成串联回路,以在开关单元(1)接通然后关断之后维持电池中的电流流动。
    • 45. 发明申请
    • BATTERY HEATING CIRCUITS AND METHODS WITH RESONANCE COMPONENTS IN SERIES USING VOLTAGE INVERSION BASED ON PREDETERMINED CONDITIONS
    • 使用基于预测条件的电压反相系列中的谐振组件的电池加热电路和方法
    • US20120032642A1
    • 2012-02-09
    • US13187279
    • 2011-07-20
    • Wenhui XuYaochuan HanWei FengQinyao YangWenjin XiaXianyin Li
    • Wenhui XuYaochuan HanWei FengQinyao YangWenjin XiaXianyin Li
    • H02J7/00
    • H01L23/345H01L2924/0002H01M10/615H01M10/625H01M10/651H01M10/657H01M10/6571H01M10/6572H02J7/0014H02J7/0054H02J7/0075H02J7/0091H02J7/0093H02M3/158Y02E60/12Y02T10/7055H01L2924/00
    • Certain embodiments of the present invention provide a battery heating circuit, comprising a switch unit (1), a switching control module (100), a damping component R1, an energy storage circuit, and an energy superposition unit, the energy storage circuit is configured to connect with the battery to form a loop, and comprises a current storage component L1 and a charge storage component C1; the damping component R1, the switch unit (1), the current storage component L1, and the charge storage component C1 are connected in series; the switching control module (100) is connected with the switch unit (1), and is configured to control ON/OFF of the switch unit (1), so as to control the energy flowing between the battery and the energy storage circuit; the energy superposition unit is connected with the energy storage circuit, and is configured to superpose the energy in the energy storage circuit with the energy in the battery when the switch unit (1) switches on and then switches off; the switching control module (100) is also configured to control the switch unit (1) to switch off after the first positive half cycle of current flow through the switch unit (1) after the switch unit (1) switches on, and the voltage applied to the switch unit (1) at the time the switch unit (1) switches off is lower than the voltage rating of the switch unit (1).
    • 本发明的某些实施例提供了一种电池加热电路,包括开关单元(1),开关控制模块(100),阻尼组件R1,能量存储电路和能量叠加单元,能量存储电路被配置 与电池连接以形成回路,并且包括电流存储部件L1和电荷存储部件C1; 阻尼部件R1,开关单元(1),电流存储部件L1和电荷存储部件C1串联连接; 开关控制模块(100)与开关单元(1)连接,并且被配置为控制开关单元(1)的接通/断开,以便控制在电池和能量存储电路之间流动的能量; 能量叠加单元与能量存储电路连接,并且被配置为当开关单元(1)接通然后断开时,将蓄能电路中的能量与电池中的能量叠加; 开关控制模块(100)还被配置为在开关单元(1)接通之后,通过开关单元(1)的电流的第一正半周期之后控制开关单元(1)关闭,并且电压 在开关单元(1)关闭时施加到开关单元(1)的电压低于开关单元(1)的额定电压。
    • 47. 发明授权
    • Multi-cell protection circuit and method
    • 多单元保护电路及方法
    • US08378636B2
    • 2013-02-19
    • US12670393
    • 2008-09-27
    • Zhengdong WuJun ZhouQinyao Yang
    • Zhengdong WuJun ZhouQinyao Yang
    • H02J7/00G01N27/416
    • H02J7/0026H01M10/425H01M10/441H01M2010/4271
    • A multi-cell protection circuit and method. The multi-cell protection circuit comprises one or more multi-cell protection chips, a charge control switch (M2) and a discharge control switch (M1). Each multi-cell protection chip comprises a multi-cell protection integrated circuit module and an expansion connection module. The input terminals (VC1, VC2, VC3, GND1, VC4, VC5, VC6, VC7, GND) of the multi-cell protection integrated circuit module are connected to the positive and negative poles of corresponding cells. The output terminals (co, do) of the multi-cell protection integrated circuit module are connected to the interior signal input terminals (Dco, Ddo) of the expansion connection module. The expansion signal input terminals (exterior.co, exterior.do) of the expansion connection module are connected to expansion signal output terminals (Co′, Do′) of an expansion connection module in a multi-cell protection chip adjacent to this multi-cell protection chip. The output terminals (Co′, Do′) of the expansion connection module in the last multi-cell protection chip among the multi-cell protection chips connected in the multi-cell protection circuit are connected to the charge control switch and the discharge control switch, respectively.
    • 多单元保护电路及方法。 多单元保护电路包括一个或多个多电池保护芯片,充电控制开关(M2)和放电控制开关(M1)。 每个多单元保护芯片包括多单元保护集成电路模块和扩展连接模块。 多单元保护集成电路模块的输入端子(VC1,VC2,VC3,GND1,VC4,VC5,VC6,VC7,GND)连接到相应单元的正极和负极。 多单元保护集成电路模块的输出端子(co,do)连接到扩展连接模块的内部信号输入端子(Dco,Ddo)。 扩展连接模块的扩展信号输入端子(exterior.co,exterior.do)连接到与该多路复用器相邻的多单元保护芯片中的扩展连接模块的扩展信号输出端(Co',Do' 电池保护芯片。 连接在多单元保护电路中的多单元保护芯片中的最后多单元保护芯片中的扩展连接模块的输出端子(Co',Do')连接到充电控制开关和放电控制开关 , 分别。
    • 48. 发明申请
    • Multi-Cell Protection Circuit and Method
    • 多单元保护电路及方法
    • US20100207582A1
    • 2010-08-19
    • US12670393
    • 2008-09-27
    • Zhengdong WuJun ZhouQinyao Yang
    • Zhengdong WuJun ZhouQinyao Yang
    • H02J7/00
    • H02J7/0026H01M10/425H01M10/441H01M2010/4271
    • A multi-cell protection circuit and method. The multi-cell protection circuit comprises one or more multi-cell protection chips, a charge control switch (M2) and a discharge control switch (M1). Each multi-cell protection chip comprises a multi-cell protection integrated circuit module and an expansion connection module. The input terminals (VC1, VC2, VC3, GND1, VC4, VC5, VC6, VC7, GND) of the multi-cell protection integrated circuit module are connected to the positive and negative poles of corresponding cells. The output terminals (co, do) of the multi-cell protection integrated circuit module are connected to the interior signal input terminals (Dco, Ddo) of the expansion connection module. The expansion signal input terminals (exterior.co, exterior.do) of the expansion connection module are connected to expansion signal output terminals (Co′, Do′) of an expansion connection module in a multi-cell protection chip adjacent to this multi-cell protection chip. The output terminals (Co′, Do′) of the expansion connection module in the last multi-cell protection chip among the multi-cell protection chips connected in the multi-cell protection circuit are connected to the charge control switch and the discharge control switch, respectively.
    • 多单元保护电路及方法。 多单元保护电路包括一个或多个多电池保护芯片,充电控制开关(M2)和放电控制开关(M1)。 每个多单元保护芯片包括多单元保护集成电路模块和扩展连接模块。 多单元保护集成电路模块的输入端子(VC1,VC2,VC3,GND1,VC4,VC5,VC6,VC7,GND)连接到相应单元的正极和负极。 多单元保护集成电路模块的输出端子(co,do)连接到扩展连接模块的内部信号输入端子(Dco,Ddo)。 扩展连接模块的扩展信号输入端子(exterior.co,exterior.do)连接到与该多路复用器相邻的多单元保护芯片中的扩展连接模块的扩展信号输出端(Co',Do' 电池保护芯片。 连接在多单元保护电路中的多单元保护芯片中的最后多单元保护芯片中的扩展连接模块的输出端子(Co',Do')连接到充电控制开关和放电控制开关 , 分别。