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    • 4. 发明授权
    • Distributing time slots in parallel configured, switching power supplies
    • 分配时隙并行配置,切换电源
    • US07746045B2
    • 2010-06-29
    • US11684017
    • 2007-03-09
    • William Todd HarrisonXuening Li
    • William Todd HarrisonXuening Li
    • G05F1/40
    • H02J1/10
    • A multi-phase power system including a plurality of Pulse Width Modulation (PWM) controllers is provided, including a first PWM controller and at least one second PWM controller. The first PWM controller is configured to generate at least one first output signal based on a first clock signal, and to insert at least one synchronizing pulse into the first clock signal, the synchronizing pulse having a predetermined characteristic differing from pulses of the first clock signal, and to provide the first clock signal including the synchronizing pulse to the second PWM controller. The second PWM controller is configured to generate at least one second output signal based on the first clock signal, and to synchronize the generation of the first and second output signals using the synchronizing pulse within the first clock signal, thereby maintaining a predetermined phase relationship between the first and second output signals. The synchronizing pulse may be, for example, a skinny pulse or a pulse having a magnitude larger than the pulses of the first clock signal.
    • 提供了包括多个脉宽调制(PWM)控制器的多相电力系统,包括第一PWM控制器和至少一个第二PWM控制器。 第一PWM控制器被配置为基于第一时钟信号产生至少一个第一输出信号,并且将至少一个同步脉冲插入到第一时钟信号中,该同步脉冲具有与第一时钟信号的脉冲不同的预定特性 并且向第二PWM控制器提供包括同步脉冲的第一时钟信号。 第二PWM控制器被配置为基于第一时钟信号产生至少一个第二输出信号,并且使用第一时钟信号内的同步脉冲同步第一和第二输出信号的产生,从而保持第一时钟信号之间的预定相位关系 第一和第二输出信号。 同步脉冲可以是例如瘦的脉冲或具有大于第一时钟信号的脉冲的幅度的脉冲。
    • 5. 发明授权
    • Double-edge, stackable PWM with built-in feedforward
    • 双边,可堆叠的PWM,内置前馈
    • US07332898B1
    • 2008-02-19
    • US11695181
    • 2007-04-02
    • William Todd HarrisonXuening LiStefan W WiktorLarry Joe Wofford
    • William Todd HarrisonXuening LiStefan W WiktorLarry Joe Wofford
    • G05F1/40
    • H02M1/084H02M2001/0022
    • A method and apparatus for use in a multi-phase power system. The power system is of the type having a plurality of Pulse Width Modulation (PWM) controllers including a first PWM controller and at least one second PWM controller. The first PWM controller generates at least one first PWM output signal based on a cyclic signal having a cyclically recurring parameter, and provides the cyclic signal including the cyclically recurring parameter to the second PWM controller. The second PWM controller generates at least one second PWM output signal based on the cyclic signal, and synchronizes the generation of the first and second output signals using the cyclically recurring parameter within the cyclic signal, thereby maintaining a predetermined phase relationship between the first and second output signals. The second PWM controller generates a cyclic, triangular RAMP waveform signal having a series of periods, the RAMP waveform having in each period a signal rising portion and a signal falling portion, and compares the RAMP waveform against an error signal to generate the second PWM signal, the RAMP waveform rising portion and falling portion being generated by charging and discharging, respectively, a capacitor. A feedforward path is provided by setting a charging current for the capacitor that is proportional to an input voltage.
    • 一种用于多相电力系统的方法和装置。 电力系统是具有多个脉冲宽度调制(PWM)控制器的类型,包括第一PWM控制器和至少一个第二PWM控制器。 第一PWM控制器基于具有周期性循环参数的循环信号产生至少一个第一PWM输出信号,并且将包括循环周期参数的循环信号提供给第二PWM控制器。 第二PWM控制器基于循环信号产生至少一个第二PWM输出信号,并且使用循环信号内的循环循环参数来同步第一和第二输出信号的产生,由此保持第一和第二输出信号之间的预定相位关系 输出信号。 第二PWM控制器产生具有一系列周期的循环三角形RAMP波形信号,RAMP波形在每个周期中具有信号上升部分和信号下降部分,并且将RAMP波形与误差信号进行比较,以产生第二PWM信号 分别通过充电和放电产生RAMP波形上升部分和下降部分的电容器。 通过设置与输入电压成比例的电容器的充电电流来提供前馈路径。
    • 6. 发明申请
    • DISTRIBUTING TIME SLOTS IN PARALLEL CONFIGURED, SWITCHING POWER SUPPLIES
    • 分配配置并行配置的时间段,切换电源
    • US20080158922A1
    • 2008-07-03
    • US11684017
    • 2007-03-09
    • William Todd HarrisonXuening Li
    • William Todd HarrisonXuening Li
    • H02J1/10
    • H02J1/10
    • A multi-phase power system including a plurality of Pulse Width Modulation (PWM) controllers is provided, including a first PWM controller and at least one second PWM controller. The first PWM controller is configured to generate at least one first output signal based on a first clock signal, and to insert at least one synchronizing pulse into the first clock signal, the synchronizing pulse having a predetermined characteristic differing from pulses of the first clock signal, and to provide the first clock signal including the synchronizing pulse to the second PWM controller. The second PWM controller is configured to generate at least one second output signal based on the first clock signal, and to synchronize the generation of the first and second output signals using the synchronizing pulse within the first clock signal, thereby maintaining a predetermined phase relationship between the first and second output signals. The synchronizing pulse may be, for example, a skinny pulse or a pulse having a magnitude larger than the pulses of the first clock signal.
    • 提供了包括多个脉宽调制(PWM)控制器的多相电力系统,包括第一PWM控制器和至少一个第二PWM控制器。 第一PWM控制器被配置为基于第一时钟信号产生至少一个第一输出信号,并且将至少一个同步脉冲插入到第一时钟信号中,该同步脉冲具有与第一时钟信号的脉冲不同的预定特性 并且向第二PWM控制器提供包括同步脉冲的第一时钟信号。 第二PWM控制器被配置为基于第一时钟信号产生至少一个第二输出信号,并且使用第一时钟信号内的同步脉冲同步第一和第二输出信号的产生,从而保持第一时钟信号之间的预定相位关系 第一和第二输出信号。 同步脉冲可以是例如瘦的脉冲或具有大于第一时钟信号的脉冲的幅度的脉冲。
    • 7. 发明申请
    • DOUBLE-EDGE, STACKABLE PWM WITH BUILT-IN FEEDFORWARD
    • 双边,带内置式前置放大器的堆叠PWM
    • US20080042634A1
    • 2008-02-21
    • US11695181
    • 2007-04-02
    • William Todd HarrisonXuening LiStefan W. WiktorLarry Joe Wofford
    • William Todd HarrisonXuening LiStefan W. WiktorLarry Joe Wofford
    • H02J1/10
    • H02M1/084H02M2001/0022
    • A method and apparatus for use in a multi-phase power system. The power system is of the type having a plurality of Pulse Width Modulation (PWM) controllers including a first PWM controller and at least one second PWM controller. The first PWM controller generates at least one first PWM output signal based on a cyclic signal having a cyclically recurring parameter, and provides the cyclic signal including the cyclically recurring parameter to the second PWM controller. The second PWM controller generates at least one second PWM output signal based on the cyclic signal, and synchronizes the generation of the first and second output signals using the cyclically recurring parameter within the cyclic signal, thereby maintaining a predetermined phase relationship between the first and second output signals. The second PWM controller generates a cyclic, triangular RAMP waveform signal having a series of periods, the RAMP waveform having in each period a signal rising portion and a signal falling portion, and compares the RAMP waveform against an error signal to generate the second PWM signal, the RAMP waveform rising portion and falling portion being generated by charging and discharging, respectively, a capacitor. A feedforward path is provided by setting a charging current for the capacitor that is proportional to an input voltage.
    • 一种用于多相电力系统的方法和装置。 电力系统是具有多个脉冲宽度调制(PWM)控制器的类型,包括第一PWM控制器和至少一个第二PWM控制器。 第一PWM控制器基于具有周期性循环参数的循环信号产生至少一个第一PWM输出信号,并且将包括循环周期参数的循环信号提供给第二PWM控制器。 第二PWM控制器基于循环信号产生至少一个第二PWM输出信号,并且使用循环信号内的循环循环参数来同步第一和第二输出信号的产生,由此保持第一和第二输出信号之间的预定相位关系 输出信号。 第二PWM控制器产生具有一系列周期的循环三角形RAMP波形信号,RAMP波形在每个周期中具有信号上升部分和信号下降部分,并且将RAMP波形与误差信号进行比较,以产生第二PWM信号 分别由充电和放电产生RAMP波形上升部分和下降部分的电容器。 通过设置与输入电压成比例的电容器的充电电流来提供前馈路径。
    • 8. 发明申请
    • Systems and Methods of Smooth Light Load Operation in a DC/DC Converter
    • DC / DC转换器平滑轻载操作的系统与方法
    • US20120038331A1
    • 2012-02-16
    • US12854097
    • 2010-08-10
    • Wenkai WuWeidong ZhuHal ChenXuening Li
    • Wenkai WuWeidong ZhuHal ChenXuening Li
    • G05F1/10
    • H02M3/1588H02M2001/0032Y02B70/1466Y02B70/16
    • Systems and devices for smooth light load operation in a DC/DC converter are presented. The disclosed systems and methods enable smooth discontinuous conduction mode (DCM)/continuous conduction mode (CCM) transition. The disclosed systems and methods of smooth light load operation in a DC/DC converter may also avoid the generation of sub-harmonics during light load operation. In an example embodiment, a rising ramp is used to control the ON time of the converter oscillator, while a falling ramp controls the OFF time. During DCM operation, the minimum value of the falling ramp is clamped. The clamping of the falling ramp ensures a substantially similar level of the error amplifier output in both CCM and DCM and avoids disturbances caused by a difference in the error amplifier outputs between the modes.
    • 介绍了在DC / DC转换器中平滑轻载操作的系统和设备。 所公开的系统和方法实现了平滑的不连续导通模式(DCM)/连续导通模式(CCM)转换。 所公开的在DC / DC转换器中平滑轻载操作的系统和方法也可以避免在轻负载操作期间产生次谐波。 在示例实施例中,上升斜坡用于控制转换器振荡器的导通时间,而下降斜坡控制OFF时间。 在DCM操作期间,下降斜坡的最小值被钳位。 下降斜坡的钳位确保CCM和DCM中误差放大器输出的电平基本相似,并避免由模式之间误差放大器输出的差异引起的干扰。
    • 9. 发明授权
    • Discontinuous conduction mode pulse-width modulation
    • 不连续导通模式脉宽调制
    • US07872456B2
    • 2011-01-18
    • US12335923
    • 2008-12-16
    • Xuening LiWei DongLin Sheng
    • Xuening LiWei DongLin Sheng
    • G05F1/613G05F1/00
    • H02M3/1588Y02B70/1466
    • One embodiment of the invention includes a power regulator system. The system includes a switching system configured to generate an output voltage across a load based on a high-side switch coupling a power voltage to an output at an edge-trigger of a PWM control signal having an activation pulse-width of the high-side switch. The system also includes a switch driver system configured to set a duty-cycle of the PWM control signal such that the activation pulse-width of the PWM control signal is based on the power regulator system operating in one of a continuous conduction mode (CCM) and a discontinuous conduction mode (DCM). The edge-trigger of the PWM control signal can occur based on a relative magnitude of the output voltage and the power voltage while operating in the DCM.
    • 本发明的一个实施例包括功率调节器系统。 该系统包括:开关系统,被配置为基于在具有高侧的激活脉冲宽度的PWM控制信号的边沿触发处将电源电压耦合到输出的高侧开关来产生负载两端的输出电压 开关。 该系统还包括一个开关驱动器系统,其配置为设置PWM控制信号的占空比,使得PWM控制信号的激活脉冲宽度基于以连续导通模式(CCM)中的一个工作的功率调节器系统, 和不连续导通模式(DCM)。 PWM控制信号的边沿触发可以基于在DCM中工作时的输出电压和电源电压的相对幅度进行。