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    • 1. 发明授权
    • AC and DC temperature compensation scheme for DCR current sense
    • DCR电流检测的交流和直流温度补偿方案
    • US08072200B1
    • 2011-12-06
    • US12339500
    • 2008-12-19
    • Weihong QiuShangyang XiaoKun Xing
    • Weihong QiuShangyang XiaoKun Xing
    • G05F1/40
    • H02M3/1584G01R1/203G01R19/0092H02M2001/0009Y10S323/907
    • A current sensing circuit with AC and DC temperature compensation for sensing current through an output inductor which has an inherent DC resistor with a temperature varying resistance. A first RC circuit is coupled across the output inductor and has a time constant. The first amplifier provides a sense signal indicative of voltage of the first RC circuit. The second RC circuit is coupled to a first correction node and receives the sense signal. The second resistor has a temperature varying resistance so that the second RC circuit has a time constant commensurate with a time constant of the output inductor. The third RC circuit is coupled to a second correction node and has a time constant equal commensurate with the first RC circuit. The second amplifier provides a corrected sense signal based on the correction nodes.
    • 具有AC和DC温度补偿的电流感测电路,用于感测通过输出电感器的电流,该输出电感器具有具有耐温度变化电阻的固有直流电阻器。 第一个RC电路耦合在输出电感上,具有时间常数。 第一放大器提供表示第一RC电路的电压的感测信号。 第二RC电路耦合到第一校正节点并接收感测信号。 第二电阻器具有温度变化电阻,使得第二RC电路具有与输出电感器的时间常数相当的时间常数。 第三RC电路耦合到第二校正节点并且具有等于与第一RC电路相当的时间常数。 第二放大器基于校正节点提供校正的感测信号。
    • 2. 发明授权
    • Method and apparatus for efficient transitioning between different operating modes of a regulator
    • 用于在调节器的不同操作模式之间有效转换的方法和装置
    • US08080987B1
    • 2011-12-20
    • US11869070
    • 2007-10-09
    • Weihong QiuKun Xing
    • Weihong QiuKun Xing
    • G05F1/10G05F1/12
    • H02M3/156H02M2001/0025
    • A modulator circuit for a switching regulator including first and second ramp generators, a comparator circuit and a reset circuit. The switching regulator provides a compensation voltage indicative of output voltage error. The ramp generators generate leading- and trailing-edge ramp voltages which are compared to the compensation voltage for determining pulses on a pulse modulation signal. The reset circuit prevents the leading-edge ramp voltage from resetting if the leading-edge ramp voltage has not reached the compensation voltage while ramping. The reset circuit further clamps the leading-edge ramp voltage until the pulse modulation signal is asserted again. In a multiphase configuration, each leading-edge ramp voltage is suspended if any leading-edge ramp voltage is clamped. An offset voltage may be added to the compensation, leading-edge, or trailing-edge voltages when a mode select signal indicates a reduced load condition. The offset voltage may be adjusted based on various operating conditions.
    • 一种用于开关调节器的调制器电路,包括第一和第二斜坡发生器,比较器电路和复位电路。 开关稳压器提供表示输出电压误差的补偿电压。 斜坡发生器产生与用于确定脉冲调制信号上的脉冲的补偿电压相比较的前沿和后沿斜坡电压。 如果前沿斜坡电压在斜坡上没有达到补偿电压,则复位电路可以防止前沿斜坡电压复位。 复位电路进一步钳位前沿斜坡电压,直至再次断言脉冲调制信号。 在多相配置中,如果任何前沿斜坡电压被钳位,则每个前沿斜坡电压都将被暂停。 当模式选择信号指示减小的负载条件时,偏移电压可以被添加到补偿,前沿或后沿电压。 可以基于各种操作条件来调整偏移电压。
    • 3. 发明授权
    • System and method of intermittent diode braking for multiple phase voltage regulator
    • 多相电压调节器间歇二极管制动系统及方法
    • US08558523B2
    • 2013-10-15
    • US13047378
    • 2011-03-14
    • Weihong QiuChun CheungFaisal Ahmad
    • Weihong QiuChun CheungFaisal Ahmad
    • G05F1/565G05F1/59
    • H02M3/1584
    • A method of operating a regulator controller IC for performing intermittent diode braking for controlling a multiple phase voltage regulator. The method includes receiving at least one signal for detecting repetitive load transients, determining a rate of the repetitive load transients, generating diode braking control signals, each for applying diode braking to a corresponding one of multiple phases for at least one load transient when the repetitive load transients are below a first rate, and controlling the diode braking control signals to drop application of diode braking of at least one phase for at least one load transient when the repetitive load transients are at least the first rate. The method may include rotating the application of diode braking among the phases during successive applications of diode braking. The method may include dropping an increased number of phases for diode braking as the rate of repetitive load transients is increased.
    • 一种用于执行用于控制多相电压调节器的间歇二极管制动的调节器控制器IC的方法。 该方法包括接收至少一个用于检测重复负载瞬变的信号,确定重复负载瞬变的速率,产生二极管制动控制信号,每个用于将二极管制动施加到至少一个负载瞬变的相应的一个相, 当重复负载瞬变至少为第一速率时,负载瞬变低于第一速率,并且控制二极管制动控制信号以降低至少一个相位的二极管制动的至少一个负载瞬变的应用。 该方法可以包括在二极管制动的连续应用期间在相间旋转二极管制动的应用。 该方法可以包括当重复负载瞬变的速率增加时,减少用于二极管制动的增加的相位数。
    • 4. 发明授权
    • System and method for smoothing mode transitions in a voltage supply
    • 用于平滑电源中的模式转换的系统和方法
    • US08373400B2
    • 2013-02-12
    • US12876299
    • 2010-09-07
    • Weihong QiuJun LiuShangyang Xiao
    • Weihong QiuJun LiuShangyang Xiao
    • G05F1/56G05F1/569G05F1/575
    • H02M3/1588H02M2001/0032Y02B70/1466Y02B70/16
    • A system, voltage supply circuit, control unit for a voltage supply circuit, and method of controlling a voltage supply circuit are disclosed. For example, a system is disclosed that comprises at least one electronic circuit and a voltage supply unit coupled to an input of the at least one electronic circuit. The voltage supply unit includes a power unit to supply a voltage to the at least one electronic circuit and a control unit to control an operating mode of the power unit, an output of the control unit coupled to an input of the power unit. The control unit includes a mode selector to select the operating mode of the power unit, coupled to at least a first output of the power unit, an amplifier coupled to the at least a first output of the power unit, a compensation circuit, and a first switching unit coupled to the mode selector and the compensation circuit, to couple the compensation circuit to the amplifier if a selected operating mode of the power unit is a first mode.
    • 公开了一种系统,电压供应电路,用于电压供应电路的控制单元和控制电压供应电路的方法。 例如,公开了一种包括至少一个电子电路和耦合到至少一个电子电路的输入的电压供应单元的系统。 电压提供单元包括向至少一个电子电路提供电压的电源单元和用于控制功率单元的操作模式的控制单元,耦合到功率单元的输入的控制单元的输出。 控制单元包括模式选择器,用于选择耦合到功率单元的至少第一输出的功率单元的工作模式,耦合到功率单元的至少第一输出的放大器,补偿电路和 耦合到模式选择器和补偿电路的第一开关单元,如果功率单元的所选择的操作模式是第一模式,则将补偿电路耦合到放大器。
    • 9. 发明授权
    • Sensing a phase-path current in a multiphase power supply such as a coupled-inductor power supply
    • 感测多相电源(如耦合电感电源)中的相路电流
    • US08704500B2
    • 2014-04-22
    • US12189112
    • 2008-08-08
    • Shangyang XiaoWeihong QiuJun Liu
    • Shangyang XiaoWeihong QiuJun Liu
    • G05F1/00
    • H02M3/1584H02M2001/0009
    • An embodiment of a power supply includes a supply output node, phase paths, and sensor circuits. The supply output node is operable to carry a regulated output voltage, and each phase path has a respective phase-path non-output node, has a respective phase-path output node coupled to the supply output node, and is operable to carry a respective phase current. And each sensor circuit has a respective sensor node coupled to the phase-path non-output nodes and is operable to generate a respective sense signal that represents the phase current flowing through a respective one of the phase paths. For example, where the phase paths are magnetically coupled to one another, the sensor circuits take into account the portions of the phase currents induced by the magnetic couplings to generate sense signals that more accurately represent the phase currents as compared to conventional sensor circuits.
    • 电源的实施例包括电源输出节点,相位路径和传感器电路。 电源输出节点可操作以承载稳定的输出电压,并且每个相位路径具有相应的相位路径非输出节点,具有耦合到电源输出节点的相应的相位路径输出节点,并且可操作以携带相应的 相电流。 并且每个传感器电路具有耦合到相位路径非输出节点的相应传感器节点,并且可操作以产生表示流过相应一个相位路径的相电流的相应感测信号。 例如,当相位路径彼此磁耦合时,传感器电路考虑到由磁耦合引起的相电流的部分,以产生与常规传感器电路相比更精确地表示相电流的感测信号。