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    • 1. 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。
    • 2. 发明申请
    • CHARGING CONTROL CIRCUIT
    • 充电控制电路
    • US20140062435A1
    • 2014-03-06
    • 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
    • G05F1/10
    • 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。
    • 7. 发明授权
    • Adaptive zero current sense apparatus and method for a switching regulator
    • 自适应零电流检测装置和开关调节器的方法
    • US07652945B2
    • 2010-01-26
    • US12078356
    • 2008-03-31
    • Kwan-Jen ChuNien-Hui KungTzu-Huan ChiuChien-Ping Lu
    • Kwan-Jen ChuNien-Hui KungTzu-Huan ChiuChien-Ping Lu
    • G11C5/14
    • H02M3/1588H02M2001/0009Y02B70/1466
    • A switching regulator includes a low-side switch having a body diode. During the low-side switch is on, a zero-current sense circuit monitors the inductor current of the switching regulator and triggers a signal to turn off the low-side switch when the inductor current falls down to a zero-current threshold, to prevent reverse inductor current from the output terminal of the switching regulator. A body-diode turn-on time controller monitors the turn-on time of the body diode and adjusts the zero-current threshold according thereto, and the turn-on time of the body diode can be reduced to an optimal interval subsequently. The self-adjustable zero-current threshold is adaptive according to the application conditions, such as the inductor size, input voltage and output voltage of the switching regulator.
    • 开关调节器包括具有体二极管的低侧开关。 在低侧开关导通时,零电流检测电路监测开关稳压器的电感电流,并在电感电流下降到零电流阈值时触发信号关闭低边开关,以防止 反向电感电流从开关稳压器的输出端子。 体二极管导通时间控制器监视体二极管的接通时间并根据其调整零电流阈值,并且体二极管的接通时间可以随后降低到最佳间隔。 根据应用条件,自适应零电流阈值是自适应的,如开关稳压器的电感尺寸,输入电压和输出电压。
    • 8. 发明申请
    • Boost driver circuit with fast discharging function
    • 升压驱动电路具有快速放电功能
    • US20100072915A1
    • 2010-03-25
    • US12384154
    • 2009-04-01
    • Kwan-Jen ChuNien-Hui KungTzu-Huan ChiuChien-Ping Lu
    • Kwan-Jen ChuNien-Hui KungTzu-Huan ChiuChien-Ping Lu
    • H05B39/04G05F1/00
    • H05B33/0815Y02B20/346
    • The present invention discloses a boost driver circuit which converts an input voltage to an output voltage and supplies it to a load, the boost driver circuit comprising: a power transistor electrically connected with a node between the input voltage and the output voltage; a pulse width modulation driver circuit for controlling the operation of the power transistor; an output node electrically connected with the output voltage; a feedback node electrically connected with the load; a low voltage transistor electrically connected with the feedback node; and a clamp and fast discharge circuit electrically connected with the feedback node for discharging the feedback node when the voltage at the feedback node is higher than a predetermined voltage.
    • 本发明公开了一种升压驱动器电路,其将输入电压转换为输出电压并将其提供给负载,该升压驱动电路包括:功率晶体管,其与输入电压和输出电压之间的节点电连接; 用于控制功率晶体管的操作的脉宽调制驱动电路; 与输出电压电连接的输出节点; 与负载电连接的反馈节点; 与所述反馈节点电连接的低压晶体管; 以及与反馈节点电连接的用于在反馈节点处的电压高于预定电压时对反馈节点放电的钳位和快速放电电路。
    • 9. 发明授权
    • Boost driver circuit with fast discharging function
    • 升压驱动电路具有快速放电功能
    • US07994728B2
    • 2011-08-09
    • US12384154
    • 2009-04-01
    • Kwan-Jen ChuNien-Hui KungTzu-Huan ChiuChien-Ping Lu
    • Kwan-Jen ChuNien-Hui KungTzu-Huan ChiuChien-Ping Lu
    • H05B37/00
    • H05B33/0815Y02B20/346
    • The present invention discloses a boost driver circuit which converts an input voltage to an output voltage and supplies it to a load, the boost driver circuit comprising: a power transistor electrically connected with a node between the input voltage and the output voltage; a pulse width modulation driver circuit for controlling the operation of the power transistor; an output node electrically connected with the output voltage; a feedback node electrically connected with the load; a low voltage transistor electrically connected with the feedback node; and a clamp and fast discharge circuit electrically connected with the feedback node for discharging the feedback node when the voltage at the feedback node is higher than a predetermined voltage.
    • 本发明公开了一种升压驱动器电路,其将输入电压转换为输出电压并将其提供给负载,该升压驱动电路包括:功率晶体管,其与输入电压和输出电压之间的节点电连接; 用于控制功率晶体管的操作的脉宽调制驱动电路; 与输出电压电连接的输出节点; 与负载电连接的反馈节点; 与所述反馈节点电连接的低压晶体管; 以及与反馈节点电连接的用于在反馈节点处的电压高于预定电压时对反馈节点放电的钳位和快速放电电路。