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    • 1. 发明授权
    • Method and apparatus for high-side input winding regulation
    • 高侧输入绕组调节方法及装置
    • US08724344B2
    • 2014-05-13
    • US13486287
    • 2012-06-01
    • David Michael Hugh Matthews
    • David Michael Hugh Matthews
    • H02M3/335
    • H02M3/33507
    • A controller for use in a power converter includes a control circuit coupled to control switching of a power switch coupled between a positive input supply rail of the power converter and an energy transfer element input of the power converter. A sampling circuit is coupled to the control circuit and is coupled to receive a signal across the energy transfer element input during an off time of the power switch to provide a sampled output of the converter. The sampled output of the power converter is disabled from being resampled by the sampling circuit during an on time of the power switch. A switch conduction scheduling circuit is included in the control circuit and is coupled to the sampling circuit such that the control circuit is coupled to switch the power switch in response to the sampled output of the power converter.
    • 用于功率转换器的控制器包括控制电路,其耦合以控制耦合在功率转换器的正输入电源轨与功率转换器的能量传递元件输入之间的功率开关的切换。 采样电路耦合到控制电路,并被耦合以在电源开关的关断时间期间跨越能量传输元件输入端接收信号,以提供转换器的采样输出。 功率转换器的采样输出在电源开关导通时被禁止被采样电路重新采样。 开关传导调度电路包括在控制电路中并且耦合到采样电路,使得控制电路被耦合以响应于功率转换器的采样输出来切换功率开关。
    • 3. 发明授权
    • Method and apparatus for implementing an unregulated dormant mode in a power converter
    • 在功率转换器中实现未调节休眠模式的方法和装置
    • US08519693B2
    • 2013-08-27
    • US13419940
    • 2012-03-14
    • David Michael Hugh Matthews
    • David Michael Hugh Matthews
    • H02M3/335G05F1/575
    • H02M3/33523H02J9/005H02M3/00Y10T307/406
    • A control circuit includes a drive signal generator controlling switching of a power switch to regulate a flow of energy to one or more loads coupled to a power converter output. A regulator circuit charges a capacitor to a first voltage and stops charging the capacitor if an energy requirement of the one or more loads falls below a threshold. The regulator again charges the capacitor after the capacitor is discharged from the first voltage to a second voltage. An unregulated dormant mode control circuit renders dormant the drive signal generator and the regulator circuit while the capacitor is discharged from the first voltage to the second voltage causing the regulation of the flow of energy to the power converter output to cease. The drive signal generator and the regulator circuit are powered up after the capacitor is discharged from the first voltage to the second voltage.
    • 控制电路包括驱动信号发生器,其控制功率开关的切换以调节能量流耦合到功率转换器输出的一个或多个负载。 调节器电路将电容器充电到第一电压,并且如果一个或多个负载的能量需求低于阈值,则停止对电容器充电。 在电容器从第一电压放电到第二电压之后,调节器再次对电容器充电。 当电容器从第一电压放电到第二电压时,不调节的休眠模式控制电路使得驱动信号发生器和调节器电路休眠,从而调节对功率转换器输出的能量流动停止。 在电容器从第一电压放电到第二电压之后,驱动信号发生器和调节器电路通电。
    • 5. 发明授权
    • Ultra low standby consumption in a high power power converter
    • 大功率电源转换器的超低待机功耗
    • US08369111B2
    • 2013-02-05
    • US12848617
    • 2010-08-02
    • Balu BalakrishnanDavid Michael Hugh Matthews
    • Balu BalakrishnanDavid Michael Hugh Matthews
    • H02M3/335H02H7/122
    • H02M3/33523H02M1/4225H02M2001/0032H02M2001/0048Y02B70/126Y02B70/1491Y02B70/16
    • A power converter with low power consumption during a standby operating condition. An example power controller includes a main converter coupled to a dc input of the power converter to control a transfer of energy from the dc input of the power converter to a main output of the power converter. A standby converter is also included and is coupled to the dc input of the power converter to control a transfer of energy from the dc input of the power converter to a standby output of the power converter during a standby operating condition of the power converter. A standby circuit is also included and is coupled to the dc input of the power converter and coupled to the main converter. The standby circuit decouples the main converter from the dc input of the power converter during the standby operating condition of the power converter.
    • 电源转换器,在待机状态下具有低功耗。 示例性功率控制器包括耦合到功率转换器的直流输入的主转换器,以控制从功率转换器的直流输入到功率转换器的主输出的能量传递。 还包括备用转换器,并且耦合到功率转换器的直流输入,以在功率转换器的待机操作状态期间控制从功率转换器的直流输入到功率转换器的备用输出的能量传递。 还包括备用电路并且耦合到功率转换器的直流输入并耦合到主转换器。 备用电路在电源转换器的待机运行状态下将主转换器与电源转换器的直流输入端分离。
    • 7. 发明授权
    • Method and apparatus to control a power converter having a low loop bandwidth
    • 控制具有低环路带宽的功率转换器的方法和装置
    • US08300434B2
    • 2012-10-30
    • US13315166
    • 2011-12-08
    • Yury GaknokiMingming MaoDavid Michael Hugh MatthewsTiziano Pastore
    • Yury GaknokiMingming MaoDavid Michael Hugh MatthewsTiziano Pastore
    • H02M3/335
    • H02M3/33507H02M1/4258H02M3/33515H05B33/0815Y02B20/346Y02B70/126
    • An example controller includes a feedback sensor circuit that receives a feedback signal representative of an output of a power converter. A feedback sampling signal generator is coupled to generate a feedback sampling signal. The feedback sensor circuit samples the feedback signal in response to the feedback sampling signal. A state machine controls switching of a switch of a power converter circuit according to one of a plurality of operating condition states in response to the feedback sensor circuit. Each of the plurality of operating condition states includes a substantially fixed switch on time. A feedback time period signal generator generates a feedback time period signal received by the state machine. A period of the feedback time period signal is substantially greater than a period of the feedback sampling signal. The state machine is updated in response to the feedback time period signal.
    • 示例性控制器包括反馈传感器电路,其接收表示功率转换器的输出的反馈信号。 耦合反馈采样信号发生器以产生反馈采样信号。 反馈传感器电路响应于反馈采样信号对反馈信号进行采样。 响应于反馈传感器电路,状态机根据多个操作状态中的一个来控制功率转换器电路的开关的切换。 多个操作状态中的每一个包括基本上固定的开关开关。 反馈时间周期信号发生器产生由状态机接收的反馈时间周期信号。 反馈时间周期信号的周期显着大于反馈采样信号的周期。 响应于反馈时间段信号更新状态机。
    • 9. 发明授权
    • Method and apparatus for implementing an unregulated dormant mode in a power converter
    • 在功率转换器中实现未调节休眠模式的方法和装置
    • US08159839B2
    • 2012-04-17
    • US13090102
    • 2011-04-19
    • David Michael Hugh Matthews
    • David Michael Hugh Matthews
    • H02M3/335G05F1/575
    • H02M3/33523H02J9/005H02M3/00Y10T307/406
    • A control circuit for use in a power converter with an unregulated dormant mode of operation is disclosed. In one aspect a power converter includes a drive signal generator that is coupled to generate a drive signal to control switching of a power switch coupled to the control circuit to regulate a flow of energy to an output of the power converter in response to an energy requirement of one or more loads coupled to the output of the power converter. A regulator circuit is coupled to charge a capacitor. The capacitor determines a time period. The regulator circuit is coupled to not charge the capacitor if the energy requirement of the one or more loads coupled to the output of the power converter falls below a threshold. The regulator is coupled to again charge the capacitor after the time period has elapsed. An unregulated dormant mode control circuit is coupled to render dormant the drive signal generator and the regulator circuit during the time period thereby causing regulation of the flow of energy to the output of power converter output to cease. The unregulated dormant mode control circuit is further coupled to power up the drive signal generator and the regulator after the time period has elapsed.
    • 公开了一种用于具有未调节的休眠操作模式的功率转换器的控制电路。 在一个方面,功率转换器包括驱动信号发生器,其被耦合以产生驱动信号以控制耦合到控制电路的功率开关的切换,以响应于能量需求来调节能量流到功率转换器的输出 耦合到功率转换器的输出的一个或多个负载。 耦合电容器的调节器电路。 电容器确定一个时间段。 如果耦合到功率转换器的输出的一个或多个负载的能量需求低于阈值,则调节器电路被耦合以不对电容器充电。 在经过时间之后,稳压器被耦合以对电容器再次充电。 耦合不调节的休眠模式控制电路以在该时间段期间使驱动信号发生器和调节器电路休眠,由此导致能量流向功率转换器输出的输出的调节停止。 未调节的休眠模式控制电路还被耦合以在经过该时间段之后给驱动信号发生器和调节器供电。
    • 10. 发明申请
    • METHOD AND APPARATUS FOR HIGH-SIDE INPUT WINDING REGULATION
    • 高压输入调速方法与装置
    • US20110085358A1
    • 2011-04-14
    • US12579247
    • 2009-10-14
    • David Michael Hugh Matthews
    • David Michael Hugh Matthews
    • H02M3/335
    • H02M3/33507
    • A power supply control circuit for use in a power supply is disclosed. An example power supply control circuit includes a power switch coupled between first and second terminals. The first terminal is to be coupled to a positive input supply rail of the power supply. The second terminal is to be coupled to an energy transfer element input of the power supply. A sampling circuit is coupled to a third terminal. The sampling circuit coupled to sample a signal across the energy transfer element input of the power supply during an off time of the power switch to provide a sampled output of the power supply. The sampled output of the power supply is disabled from being be resampled by the sampling circuit during an on time of the power switch. A control circuit coupled to the sampling circuit and the power switch, the control circuit coupled to switch the power switch in response to the sampled output of the power supply.
    • 公开了一种用于电源的电源控制电路。 示例性电源控制电路包括耦合在第一和第二端子之间的功率开关。 第一个端子要耦合到电源的正输入电源轨。 第二端子被耦合到电源的能量传递元件输入端。 采样电路耦合到第三端子。 所述采样电路耦合以在所述电源开关的断开时间期间跨越所述电源的所述能量传递元件输入端采样信号,以提供所述电源的采样输出。 在电源开关接通时,电源的采样输出被禁止被采样电路重新采样。 耦合到采样电路和电源开关的控制电路,所述控制电路被耦合以响应于电源的采样输出来切换电源开关。