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    • 8. 发明授权
    • Offline synchronous rectifier circuit with turned-on arbiter and phase-lock for switching power converters
    • 具有开启电源转换器的开启仲裁器和相位锁定的离线同步整流电路
    • US08154888B2
    • 2012-04-10
    • US12348335
    • 2009-01-05
    • Ta-Yung YangChou-Sheng WangPei-Sheng Tsu
    • Ta-Yung YangChou-Sheng WangPei-Sheng Tsu
    • H02M3/335H02H7/122
    • H02M3/33592Y02B70/1475
    • A synchronous rectifier circuit of a switching power converter is provided and includes first and second power transistors and first and second diodes connected to a transformer and an output of the power converter for rectifying. An arbiter circuit generates a lock signal to prevent the second power transistor from being turned on when the first power transistor is turned on. A controller generates a drive signal to control the first power transistor according to an on signal and an off signal. A phase-lock circuit generates the off signal according to the on signal. The on signal is enabled once the first diode is forward biased. The one signal enables the drive signal for turning on the first power transistor. The off signal disables the drive signal for turning off the first power transistor. The off signal is enabled before the disabling of the on signal.
    • 提供了一种开关电源转换器的同步整流电路,包括第一和第二功率晶体管以及连接到变压器的第一和第二二极管以及用于整流的功率转换器的输出。 仲裁器电路产生锁定信号,以防止当第一功率晶体管导通时第二功率晶体管导通。 控制器根据接通信号和截止信号产生驱动信号以控制第一功率晶体管。 锁相电路根据接通信号产生关断信号。 第一个二极管正向偏置后,导通信号被使能。 一个信号使得驱动信号能够接通第一功率晶体管。 关闭信号禁用用于关闭第一功率晶体管的驱动信号。 关闭信号在禁用接通信号之前被使能。
    • 9. 发明授权
    • Floating driving circuit
    • 浮动驱动电路
    • US07724034B2
    • 2010-05-25
    • US11984122
    • 2007-11-14
    • Pei-Sheng TsuTa-Yung Yang
    • Pei-Sheng TsuTa-Yung Yang
    • H03K19/0175
    • H03K17/6871H03K2217/0036H03K2217/0081
    • A floating driving circuit according to the present invention comprises an input circuit to receive an input signal. A latch circuit receives a trigger signal for generating a latch signal. The latch signal is used to turn on/off a switch. A coupling capacitor is connected between the input circuit and the latch circuit to generate the trigger signal in response to the input signal. A diode is connected from a voltage source to a floating supply terminal of the latch circuit for charging a capacitor. The capacitor is coupled between the floating supply terminal and a floating ground terminal of the latch circuit to provide a supply voltage to the latch circuit. The latch circuit is controlled by the input signal via the coupling capacitor.
    • 根据本发明的浮动驱动电路包括用于接收输入信号的输入电路。 锁存电路接收用于产生锁存信号的触发信号。 锁存信号用于打开/关闭开关。 耦合电容器连接在输入电路和锁存电路之间,以响应输入信号产生触发信号。 二极管从电压源连接到锁存电路的浮动电源端,用于对电容器充电。 电容器耦合在浮动电源端子和锁存电路的浮动接地端子之间以向锁存电路提供电源电压。 锁存电路由输入信号通过耦合电容控制。
    • 10. 发明申请
    • Floating driving circuit
    • 浮动驱动电路
    • US20080061827A1
    • 2008-03-13
    • US11984122
    • 2007-11-14
    • Pei-Sheng TsuTa-Yung Yang
    • Pei-Sheng TsuTa-Yung Yang
    • H03K19/0175
    • H03K17/6871H03K2217/0036H03K2217/0081
    • A floating driving circuit according to the present invention comprises an input circuit to receive an input signal. A latch circuit receives a trigger signal for generating a latch signal. The latch signal is used to turn on/off a switch. A coupling capacitor is connected between the input circuit and the latch circuit to generate the trigger signal in response to the input signal. A diode is connected from a voltage source to a floating supply terminal of the latch circuit for charging a capacitor. The capacitor is coupled between the floating supply terminal and a floating ground terminal of the latch circuit to provide a supply voltage to the latch circuit. The latch circuit is controlled by the input signal via the coupling capacitor.
    • 根据本发明的浮动驱动电路包括用于接收输入信号的输入电路。 锁存电路接收用于产生锁存信号的触发信号。 锁存信号用于打开/关闭开关。 耦合电容器连接在输入电路和锁存电路之间,以响应输入信号产生触发信号。 二极管从电压源连接到锁存电路的浮动电源端,用于对电容器充电。 电容器耦合在浮动电源端子和锁存电路的浮动接地端子之间以向锁存电路提供电源电压。 锁存电路由输入信号通过耦合电容控制。