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    • 5. 发明授权
    • High-speed reflected signal detection for primary-side controlled power converters
    • 用于初级侧受控电源转换器的高速反射信号检测
    • US08854841B2
    • 2014-10-07
    • US12840919
    • 2010-07-21
    • Ta-Yung YangLi LinChuh-Ching LiSheng-Fu HsuRui-Hong Lu
    • Ta-Yung YangLi LinChuh-Ching LiSheng-Fu HsuRui-Hong Lu
    • H02M3/335
    • H02M3/33523
    • A controller for a power converter includes a clamping circuit, a switching circuit and a pulse generator. The clamping circuit is coupled to an input terminal of the controller for detecting a detection signal from a transformer. The switching circuit generates a switching signal to switch the transformer in response to the detection signal for regulating the power converter. A maximum level of the detection signal is clamped to be under a level of a threshold voltage during an off-period of the switching signal. Since the maximum level of the detection signal is clamped and the oscillating energy of the reflected signal is discharged, the speed of detecting the detection signal is increased. Therefore, the regulation of the primary-side controlled power converter can be improved accordingly.
    • 一种用于功率转换器的控制器包括钳位电路,开关电路和脉冲发生器。 钳位电路耦合到控制器的输入端,用于检测来自变压器的检测信号。 开关电路响应于用于调节功率转换器的检测信号产生开关信号以切换变压器。 检测信号的最大电平在切换信号的截止周期期间被钳位在阈值电压的电平以下。 由于检测信号的最大电平被钳位并且反射信号的振荡能量被放电,所以检测信号的速度增加。 因此,可以相应地改善初级侧受控功率转换器的调节。
    • 6. 发明授权
    • Switching controller with valley-lock switching and limited maximum frequency for quasi-resonant power converters
    • 具有谷锁开关的开关控制器和准谐振功率转换器的最大频率受限
    • US08730687B2
    • 2014-05-20
    • US13293276
    • 2011-11-10
    • Ta-Yung YangChao-Chih Lin
    • Ta-Yung YangChao-Chih Lin
    • H02M3/335
    • H02M3/33523H02M2001/0035Y02B70/1433Y02B70/16
    • The present invention provides a controller for a power converter. The controller comprises a PWM circuit, a detection circuit, a signal generator, an oscillation circuit, a valley-lock circuit, a timing circuit and a burst circuit. The PWM circuit generates a switching signal coupled to switch a transformer of the power converter. A feedback signal is coupled to control and disable the switching signal. The detection circuit is coupled to the transformer via a resistor for generating a valley signal in response to a waveform obtained from the transformer. The signal generator is coupled to receive the feedback signal and the valley signal for generating an enabling signal. The oscillation circuit generates a maximum frequency signal. The maximum frequency signal associates with the enabling signal to generate a turning-on signal. The turning-on signal is coupled to enable the switching signal. A maximum frequency of the turning-on signal is limited.
    • 本发明提供了一种用于功率转换器的控制器。 控制器包括PWM电路,检测电路,信号发生器,振荡电路,谷底锁定电路,定时电路和突发电路。 PWM电路产生耦合以切换功率转换器的变压器的开关信号。 耦合反馈信号以控制和禁用开关信号。 检测电路经由电阻器耦合到变压器,用于响应于从变压器获得的波形来产生谷值信号。 信号发生器被耦合以接收反馈信号和谷值信号以产生使能信号。 振荡电路产生最大频率信号。 最大频率信号与使能信号相关联以产生导通信号。 接通信号被耦合以使能开关信号。 导通信号的最大频率受到限制。
    • 8. 发明授权
    • Control circuit with ZVS-lock and asymmetrical PWM for resonant power converter
    • 用于谐振功率转换器的具有ZVS锁定和不对称PWM的控制电路
    • US08659916B2
    • 2014-02-25
    • US13478252
    • 2012-05-23
    • Ta-Yung YangTien-Chi Lin
    • Ta-Yung YangTien-Chi Lin
    • H02M3/335
    • H02M3/3376H02M2001/0058Y02B70/1433Y02B70/1491
    • A control circuit for a resonant power converter and a control method thereof are disclosed. The control circuit comprises a first transistor and a second transistor switching a transformer through a resonant tank. A controller receives a feedback signal for generating a first switching signal and a second switching signal coupled to drive the first transistor and the second transistor respectively. The feedback signal is correlated to an output of the resonant power converter. A diode is coupled to the second transistor for detecting the state of the second transistor for the controller. The first switching signal and the second switching signal are modulated to achieve a zero voltage switching (ZVS) for the second transistor.
    • 公开了一种用于谐振功率转换器的控制电路及其控制方法。 控制电路包括第一晶体管和第二晶体管,通过谐振槽切换变压器。 控制器接收用于产生第一开关信号的反馈信号和耦合以分别驱动第一晶体管和第二晶体管的第二开关信号。 反馈信号与谐振功率转换器的输出相关。 二极管耦合到第二晶体管,用于检测用于控制器的第二晶体管的状态。 第一开关信号和第二开关信号被调制以实现用于第二晶体管的零电压开关(ZVS)。
    • 9. 发明授权
    • Method and apparatus for a flyback power converter providing output voltage and current regulation without input capacitor
    • 用于反激式功率转换器的方法和装置,其提供没有输入电容器的输出电压和电流调节
    • US08593833B2
    • 2013-11-26
    • US13013100
    • 2011-01-25
    • Ta-Yung YangLi Lin
    • Ta-Yung YangLi Lin
    • H02M3/335
    • H02M3/33523
    • A control circuit of a power converter according to the present invention comprises an output circuit, at least one input circuit and an input-voltage detection circuit. The output circuit generates a switching signal for regulating an output of the power converter in response to at least one feedback signal. The switching signal is coupled to switch a transformer of the power converter. The input circuit samples at least one input signal for generating the feedback signal. The input signal is correlated to the output of the power converter. The input-voltage detection circuit generates an input-voltage signal in response to the level of the an input voltage of the power converter. The input circuit will not sample the input signal when the input-voltage signal is lower than a threshold. The control circuit can eliminate the need of the input capacitor for improving the reliability of the power converter.
    • 根据本发明的功率转换器的控制电路包括输出电路,至少一个输入电路和输入电压检测电路。 输出电路响应于至少一个反馈信号产生用于调节功率转换器的输出的开关信号。 开关信号被耦合以切换功率转换器的变压器。 输入电路对至少一个用于产生反馈信号的输入信号进行采样。 输入信号与功率转换器的输出相关。 输入电压检测电路响应于功率转换器的输入电压的电平产生输入电压信号。 当输入电压信号低于阈值时,输入电路不会对输入信号进行采样。 控制电路可以消除输入电容器的需要,提高功率转换器的可靠性。