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    • 2. 发明授权
    • Method and apparatus for a control circuit responsive to an impedance coupled to a control circuit terminal
    • 用于响应耦合到控制电路端子的阻抗的控制电路的方法和装置
    • US08582327B2
    • 2013-11-12
    • US13553730
    • 2012-07-19
    • Zhao-Jun WangStefan BäurleDavid Michael Hugh Matthews
    • Zhao-Jun WangStefan BäurleDavid Michael Hugh Matthews
    • H02M3/335
    • H02M3/33523H02M1/32H02M3/33507
    • A method, in a power supply controller, of responding to an increase in current through a terminal of the power supply controller, is disclosed. The method includes regulating the terminal to a first voltage level and sensing a magnitude of a first current through the terminal while the controller is regulating the terminal to the first voltage level. The method also includes providing an initial response by the power supply controller in response to the magnitude of the first current exceeding a first threshold current level and then regulating the terminal to a second voltage level after the magnitude of the first current exceeds the first threshold current level. The magnitude of a second current through the terminal is sensed while the controller is regulating the terminal to the second voltage level and the controller determines a final response based on the magnitude of the second current.
    • 公开了一种在电源控制器中响应于通过电源控制器的端子的电流增加的方法。 该方法包括:当控制器将端子调节到第一电压电平时,将端子调节到第一电压电平并感测通过端子的第一电流的幅度。 该方法还包括响应于超过第一阈值电流电平的第一电流的幅度提供电源控制器的初始响应,然后在第一电流的幅度超过第一阈值电流之后将端子调节到第二电压电平 水平。 当控制器将端子调节到第二电压电平时,感测通过端子的第二电流的大小,并且控制器基于第二电流的大小来确定最终响应。
    • 5. 发明申请
    • METHOD AND APPARATUS FOR A CONTROL CIRCUIT RESPONSIVE TO AN IMPEDANCE COUPLED TO A CONTROL CIRCUIT TERMINAL
    • 用于与控制电路端子耦合的阻抗的控制电路的方法和装置
    • US20120280666A1
    • 2012-11-08
    • US13553730
    • 2012-07-19
    • Zhao-Jun WangStefan BäurleDavid Michael Hugh Matthews
    • Zhao-Jun WangStefan BäurleDavid Michael Hugh Matthews
    • G05F1/10
    • H02M3/33523H02M1/32H02M3/33507
    • A method, in a power supply controller, of responding to an increase in current through a terminal of the power supply controller, is disclosed. The method includes regulating the terminal to a first voltage level and sensing a magnitude of a first current through the terminal while the controller is regulating the terminal to the first voltage level. The method also includes providing an initial response by the power supply controller in response to the magnitude of the first current exceeding a first threshold current level and then regulating the terminal to a second voltage level after the magnitude of the first current exceeds the first threshold current level. The magnitude of a second current through the terminal is sensed while the controller is regulating the terminal to the second voltage level and the controller determines a final response based on the magnitude of the second current.
    • 公开了一种在电源控制器中响应于通过电源控制器的端子的电流增加的方法。 该方法包括:当控制器将端子调节到第一电压电平时,将端子调节到第一电压电平并感测通过端子的第一电流的幅度。 该方法还包括响应于超过第一阈值电流电平的第一电流的幅度提供电源控制器的初始响应,然后在第一电流的幅度超过第一阈值电流之后将端子调节到第二电压电平 水平。 当控制器将端子调节到第二电压电平时,感测通过端子的第二电流的大小,并且控制器基于第二电流的大小来确定最终响应。
    • 7. 发明授权
    • Method and apparatus to provide temporary peak power from a switching regulator
    • 从开关调节器提供临时峰值功率的方法和装置
    • US07388360B2
    • 2008-06-17
    • US11805725
    • 2007-05-23
    • Stefan BäurleWilliam M. PolivkaDavid Michael Hugh Matthews
    • Stefan BäurleWilliam M. PolivkaDavid Michael Hugh Matthews
    • G05F1/40H02H7/122
    • H02M3/33507
    • Various techniques directed to providing temporary peak power from a switching regulator are disclosed. In one aspect, a switching regulator includes a switch that is to be coupled between a power supply input and an energy transfer element of the power supply. A controller is coupled to be responsive to a feedback signal to be received from an output of the power supply. The controller is coupled to switch the switch in response to the feedback signal to regulate the output of the power supply. An oscillator is coupled to provide an oscillating signal to the controller to determine a maximum switching frequency of the switch. The oscillating signal is coupled to oscillate at a first frequency under a first moderate load condition at the power supply output. The oscillating signal is coupled to oscillate at a second frequency under a second peak load condition at the power supply output.
    • 公开了用于提供来自开关调节器的临时峰值功率的各种技术。 在一个方面,开关调节器包括要耦合在电源输入和电源的能量传递元件之间的开关。 控制器被耦合以响应于从电源的输出接收的反馈信号。 控制器耦合以响应于反馈信号切换开关以调节电源的输出。 振荡器被耦合以向控制器提供振荡信号以确定开关的最大开关频率。 振荡信号被耦合以在电源输出处的第一中等负载条件下以第一频率振荡。 振荡信号被耦合以在电源输出处的第二峰值负载条件下以第二频率振荡。
    • 8. 发明授权
    • Method and apparatus to provide temporary peak power from a switching regulator
    • 从开关调节器提供临时峰值功率的方法和装置
    • US07759922B2
    • 2010-07-20
    • US12430709
    • 2009-04-27
    • Stefan BäurleWilliam M. PolivkaDavid Michael Hugh Matthews
    • Stefan BäurleWilliam M. PolivkaDavid Michael Hugh Matthews
    • G05F1/40H02H7/122
    • H02M3/33507
    • Various techniques directed to providing temporary peak power from a switching regulator are disclosed. In one aspect, a switching regulator includes a switch that is to be coupled between a power supply input and an energy transfer element of the power supply. A controller is coupled to be responsive to a feedback signal to be received from an output of the power supply. The controller is coupled to switch the switch in response to the feedback signal to regulate the output of the power supply. An oscillator is coupled to provide an oscillating signal to the controller to determine a maximum switching frequency of the switch. The oscillating signal is coupled to oscillate at a first frequency under a first moderate load condition at the power supply output. The oscillating signal is coupled to oscillate at a second frequency under a second peak load condition at the power supply output.
    • 公开了用于提供来自开关调节器的临时峰值功率的各种技术。 在一个方面,开关调节器包括要耦合在电源输入和电源的能量传递元件之间的开关。 控制器被耦合以响应于从电源的输出接收的反馈信号。 控制器耦合以响应于反馈信号切换开关以调节电源的输出。 振荡器被耦合以向控制器提供振荡信号以确定开关的最大开关频率。 振荡信号被耦合以在电源输出处的第一中等负载条件下以第一频率振荡。 振荡信号被耦合以在电源输出处的第二峰值负载条件下以第二频率振荡。
    • 9. 发明授权
    • Transformerless safety isolation in a power supply using safety capacitors for galvanic isolation
    • 使用安全电容器进行电隔离的电源中的无变压器安全隔离
    • US07453710B2
    • 2008-11-18
    • US11412630
    • 2006-04-26
    • Stefan BäurleDavid Michael Hugh MatthewsRoland S. Saint-Pierre
    • Stefan BäurleDavid Michael Hugh MatthewsRoland S. Saint-Pierre
    • H02H7/125
    • H02M3/07
    • An apparatus and method are disclosed to provide transformerless safety isolation in a power supply. One example regulated power converter includes input terminals included in a primary circuit of the power converter. Output terminals are included in a secondary circuit of the power converter. A plurality of safety capacitors including first and second safety capacitors are also included. Each of the plurality of safety capacitors includes a respective first terminal coupled to the primary circuit and a respective second terminal coupled to the secondary circuit. The plurality of safety capacitors galvanically isolates the primary circuit from the secondary circuit. A power switch is included in the primary circuit. The power switch is coupled such that switching of the power switch causes energy to transfer between the primary and secondary circuits through the plurality of safety capacitors. Substantially all of the energy that is transferred between the primary and secondary circuits is through the plurality of safety capacitors.
    • 公开了一种在电源中提供无变压器安全隔离的装置和方法。 一个示例性调节功率转换器包括包括在功率转换器的初级电路中的输入端子。 输出端子被包括在功率转换器的次级电路中。 还包括包括第一和第二安全电容器的多个安全电容器。 多个安全电容器中的每一个包括耦合到主电路的相应的第一端子和耦合到次级电路的相应的第二端子。 多个安全电容器将初级电路与次级电路电隔离。 电源开关包含在主电路中。 功率开关被耦合,使得功率开关的切换导致能量通过多个安全电容器在初级和次级电路之间传递。 在主电路和次级电路之间传输的基本上所有的能量通过多个安全电容器。
    • 10. 发明授权
    • Method and apparatus to provide temporary peak power from a switching regulator
    • 从开关调节器提供临时峰值功率的方法和装置
    • US07538533B2
    • 2009-05-26
    • US12125839
    • 2008-05-22
    • Stefan BäurleDavid Michael Hugh MatthewsWilliam M. Polivka
    • Stefan BäurleDavid Michael Hugh MatthewsWilliam M. Polivka
    • G05F1/40H02H7/122
    • H02M3/33507
    • Various techniques directed to providing temporary peak power from a switching regulator are disclosed. In one aspect, a switching regulator includes a switch that is to be coupled between a power supply input and an energy transfer element of the power supply. A controller is coupled to be responsive to a feedback signal to be received from an output of the power supply. The controller is coupled to switch the switch in response to the feedback signal to regulate the output of the power supply. An oscillator is coupled to provide an oscillating signal to the controller to determine a maximum switching frequency of the switch. The oscillating signal is coupled to oscillate at a first frequency under a first moderate load condition at the power supply output. The oscillating signal is coupled to oscillate at a second frequency under a second peak load condition at the power supply output.
    • 公开了用于提供来自开关调节器的临时峰值功率的各种技术。 在一个方面,开关调节器包括要耦合在电源输入和电源的能量传递元件之间的开关。 控制器被耦合以响应于从电源的输出接收的反馈信号。 控制器耦合以响应于反馈信号切换开关以调节电源的输出。 振荡器被耦合以向控制器提供振荡信号以确定开关的最大开关频率。 振荡信号被耦合以在电源输出处的第一中等负载条件下以第一频率振荡。 振荡信号被耦合以在电源输出处的第二峰值负载条件下以第二频率振荡。