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    • 62. 发明授权
    • High-temperature resistant power bank circuit
    • 耐高压电力电路
    • US09153992B2
    • 2015-10-06
    • US13712791
    • 2012-12-12
    • Nien-Hui Kung
    • Nien-Hui Kung
    • H01M10/46H02J7/00
    • H02J7/0091H02J7/0068Y10T307/604
    • The present invention discloses a power bank circuit. The power bank circuit includes a charger circuit, a battery circuit, a power conversion circuit, a temperature detecting circuit and a current distribution circuit. The charger circuit receives an input voltage and provides a charging current to the battery circuit. The power conversion circuit converts a battery voltage to an output voltage and provides an output current. The temperature detecting circuit detects the temperature of the packaged structure. When the temperature of the packaged structure exceeds a first predetermined temperature, the current distribution circuit first reduces the output current. When the temperature of the packaged structure exceeds a second predetermined temperature, the current distribution circuit then reduces the charging current.
    • 本发明公开了一种电源组电路。 电力库电路包括充电器电路,电池电路,电力转换电路,温度检测电路和电流分配电路。 充电器电路接收输入电压并向电池电路提供充电电流。 电力转换电路将电池电压转换为输出电压并提供输出电流。 温度检测电路检测封装结构的温度。 当封装结构的温度超过第一预定温度时,电流分配电路首先降低输出电流。 当封装结构的温度超过第二预定温度时,电流分配电路然后减小充电电流。
    • 64. 发明授权
    • Charge control circuit
    • 充电控制电路
    • US09007035B2
    • 2015-04-14
    • US13525250
    • 2012-06-15
    • Nien-Hui Kung
    • Nien-Hui Kung
    • H02J7/06H02J7/24H02J7/00
    • H02J7/0068H02J7/0077
    • A charge control circuit supplies power from an external power source to a first common node and charges a second common node. A regulator circuit is coupled between the external power source and the first common node, and a transistor is coupled between the first common node and the second common node. A current sensing and control device senses the current from the first common node to the second common node and generates a first control signal. A first voltage sensing and control device senses a voltage at the first common node, and generates a conduction control signal to control the transistor. A second voltage sensing and control device senses a voltage at the second common node, and generates a second control signal. The regulator circuit provides system power to the first common node according to the first control signal and the second control signal.
    • 充电控制电路从外部电源向第一公共节点供电并对第二公共节点充电。 调节器电路耦合在外部电源和第一公共节点之间,并且晶体管耦合在第一公共节点和第二公共节点之间。 电流感测和控制装置感测从第一公共节点到第二公共节点的电流,并产生第一控制信号。 第一电压感测和控制装置感测第一公共节点处的电压,并产生导通控制信号以控制晶体管。 第二电压感测和控制装置感测第二公共节点处的电压,并产生第二控制信号。 调节器电路根据第一控制信号和第二控制信号向第一公共节点提供系统功率。
    • 65. 发明申请
    • BI-DIRECTIONAL SWITCHING REGULATOR AND CONTROL CIRCUIT THEREOF
    • 双向开关稳压器及其控制电路
    • US20150002097A1
    • 2015-01-01
    • US13928936
    • 2013-06-27
    • Nien-Hui Kung
    • Nien-Hui Kung
    • H02J7/00
    • H02J7/0072H02J7/0052H02J7/0065H02J7/0068H02J2007/0059H02M3/158
    • The present invention discloses a bi-directional switching regulator and a control circuit of the bi-directional switching regulator. The bi-directional switching regulator includes a power stage, an operation circuit, and a power path management circuit. The operation circuit generates a first operation signal to control a boost conversion operation or a buck conversion operation of the power stage. The power path management circuit includes a power path switch electrically connected between the output terminal and the battery, for controlling a charging operation from the output terminal to the battery. The operation circuit generates the first operation signal so that: (1) the output voltage is determined by a sum of a safety offset and the battery voltage; or (2) the output voltage is determined by a higher one between a predetermined voltage level and the sum of the safety offset and the battery voltage.
    • 本发明公开了双向开关调节器和双向开关调节器的控制电路。 双向开关调节器包括功率级,运算电路和功率路径管理电路。 操作电路产生第一操作信号以控制功率级的升压转换操作或降压转换操作。 电源路径管理电路包括电连接在输出端子和电池之间的电源路径开关,用于控制从输出端子到电池的充电操作。 操作电路产生第一操作信号,使得:(1)输出电压由安全偏移和电池电压之和确定; 或(2)输出电压由预定电压电平和安全偏移和电池电压之和之间的较高值确定。
    • 66. 发明授权
    • Charging control circuit
    • 充电控制电路
    • US08917062B2
    • 2014-12-23
    • US13597653
    • 2012-08-29
    • Chien-Ping LuNien-Hui KungLi-Wei LeeChia-Hsiang LinChen-Hsiang HsiaoKo-Ching Su
    • Chien-Ping LuNien-Hui KungLi-Wei LeeChia-Hsiang LinChen-Hsiang HsiaoKo-Ching Su
    • H02J7/00H02J7/16H02J7/06
    • H02J7/0072
    • The present invention discloses a charge control circuit for supplying power from an external power source to a first common node and charging a second common node from the first common node. A regulator circuit is coupled between the external power source and the first common node, and a transistor is coupled between the first common node and the second common node. The present invention detects an operation parameter of the transistor and controls an internal voltage source to generate a non-predetermined voltage difference accordingly. When the sum of the voltage at the second common node and the non-predetermined voltage is equal to or higher than the reference voltage, the voltage at the first common node is regulated to a level higher than the voltage at the second common node, and the transistor is in an optimum conductive state.
    • 本发明公开了一种用于从外部电源向第一公共节点提供电力并从第一公共节点对第二公共节点充电的充电控制电路。 调节器电路耦合在外部电源和第一公共节点之间,并且晶体管耦合在第一公共节点和第二公共节点之间。 本发明检测晶体管的操作参数,并且控制内部电压源以相应地产生非预定的电压差。 当第二公共节点和非预定电压之间的电压之和等于或高于参考电压时,第一公共节点处的电压被调节到高于第二公共节点处的电压的电平,以及 晶体管处于最佳导通状态。
    • 69. 发明授权
    • Power management circuit
    • 电源管理电路
    • US08378634B2
    • 2013-02-19
    • US13033950
    • 2011-02-24
    • Nien-Hui Kung
    • Nien-Hui Kung
    • H02J7/00H02J7/04H02J7/16
    • H02J7/0077H02M3/156
    • The present invention discloses a power management circuit, including: a first voltage regulator, which converts an input voltage to an output voltage; a second voltage regulator coupled between the output voltage and a battery; and a voltage difference control circuit, which receives the output voltage and a voltage of the battery, and outputs a voltage difference control signal to control the first voltage regulator. The voltage difference control circuit includes: a battery reference voltage determination circuit, which generates a battery reference voltage related to the battery voltage, and an error amplifier, which receives the output voltage and the battery reference voltage and generates the voltage difference control signal.
    • 本发明公开了一种电源管理电路,包括:第一电压调节器,其将输入电压转换为输出电压; 耦合在所述输出电压和电池之间的第二电压调节器; 以及电压差控制电路,其接收电池的输出电压和电压,并输出电压差控制信号以控制第一电压调节器。 电压差控制电路包括:产生与电池电压相关的电池参考电压的电池参考电压确定电路和接收输出电压和电池参考电压并产生电压差控制信号的误差放大器。