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    • 1. 发明申请
    • UNIVERSAL POWER ADAPTER
    • 通用电源适配器
    • US20150069956A1
    • 2015-03-12
    • US14481493
    • 2014-09-09
    • Apple Inc.
    • Yongxuan HuShimon ElkayamCollin E. ConnorsLiyu Yang
    • H02J7/00
    • H02J7/0052H02J7/0004H02J7/0065H02J7/007H02J2007/0059H02M3/1582
    • A charger circuit includes an interface connector that may be coupled to a power adapter that provides an input signal having an input voltage, and a buck-boost converter circuit that may be coupled to a battery having a charging voltage. At a given time, the buck-boost converter circuit operates in a mode in a group of modes based on a control signal, where the group of modes may include at least a buck mode and a boost mode. In particular, the charger circuit includes control logic that generates the control signal based on the charging voltage and a charging capability of the power adapter. Thus, if the charging voltage suitably exceeds the input voltage, the buck-boost converter circuit may operate in the boost mode. However, if the charging voltage is approximately less than or equal to the input voltage, the buck-boost converter circuit may operate in the buck mode.
    • 充电器电路包括可以耦合到提供具有输入电压的输入信号的电源适配器的接口连接器,以及可以耦合到具有充电电压的电池的降压 - 升压转换器电路。 在给定时间,降压 - 升压转换器电路基于控制信号以一组模式工作,其中该组模式可以至少包括降压模式和升压模式。 特别地,充电器电路包括基于充电电压和电源适配器的充电能力产生控制信号的控制逻辑。 因此,如果充电电压适当地超过输入电压,则降压 - 升压转换器电路可以在升压模式下操作。 然而,如果充电电压大致小于或等于输入电压,则降压 - 升压转换器电路可以在降压模式下工作。
    • 9. 发明申请
    • BATTERY CHARGER WITH BUCK-BOOST OPERATION
    • 电池充电器具有升压运行
    • US20150069958A1
    • 2015-03-12
    • US14481524
    • 2014-09-09
    • Apple Inc.
    • Liyu YangYongxuan HuShimon Elkayam
    • H02J7/00
    • H02J7/0052H02J7/0004H02J7/0065H02J7/007H02J2007/0059H02M3/1582
    • A charging circuit includes an interface connector that may be coupled to a power adapter that provides an input voltage, and a buck-boost charging circuit that receives the input voltage and may be coupled to and may provide an output signal to a battery having a charging voltage. For a given input voltage and a given charging voltage, the buck-boost charging circuit operates in one of a group of modes based on a control signal, where the group of modes comprises: a buck mode, a boost mode and a buck-boost mode. In particular, the charging circuit includes control logic that generates the control signal based on the charging voltage and the input voltage. Thus, the buck-boost charging circuit may operate over a continuous range of input voltages and charging voltages.
    • 充电电路包括可以耦合到提供输入电压的电源适配器的接口连接器,以及接收输入电压的降压 - 升压充电电路,并且可以耦合到并且可以向具有充电的电池提供输出信号 电压。 对于给定的输入电压和给定的充电电压,降压 - 升压充电电路基于控制信号工作在一组模式中,其中模式组包括降压模式,升压模式和降压 - 升压 模式。 特别地,充电电路包括基于充电电压和输入电压产生控制信号的控制逻辑。 因此,降压 - 升压充电电路可以在连续的输入电压和充电电压范围内工作。
    • 10. 发明申请
    • RECONFIGURABLE COMPENSATOR WITH LARGE-SIGNAL STABILIZING NETWORK
    • 具有大信号稳定网络的可重构补偿器
    • US20150069957A1
    • 2015-03-12
    • US14481510
    • 2014-09-09
    • Apple Inc.
    • Arthur H. ChangYongxuan HuShimon Elkayam
    • H02J7/00
    • H02J7/0052H02J7/0004H02J7/0065H02J7/007H02J2007/0059H02M3/1582
    • During operation, the DC converter and a DC battery charger controller in a charger circuit transitions from a first error signal to a second error signal for use in charging a battery, wherein the first error signal and the second error signal, respectively, correspond to feedback sources in a plurality of feedback sources with a plurality of feedback sources. Then, the DC converter and a DC battery charger controller selects a gain and an impedance to ground of a damping circuit based on the selected second error signal, where the damping circuit applies the gain and the impedance to ground to the second error signal. Moreover, the DC converter and a DC battery charger controller selects one or more clamping voltages of a voltage-clamping circuit based on the selected second error signal, where the voltage-clamping circuit applies the one or more clamping voltages to an output from the damping circuit.
    • 在操作期间,充电器电路中的DC转换器和DC电池充电器控制器从第一误差信号转换到用于对电池充电的第二误差信号,其中第一误差信号和第二误差信号分别对应于反馈 具有多个反馈源的多个反馈源中的源。 然后,DC转换器和DC电池充电器控制器基于所选择的第二误差信号选择阻尼电路的增益和接地阻抗,其中阻尼电路将增益和对地的阻抗施加到第二误差信号。 此外,DC转换器和DC电池充电器控制器基于所选择的第二误差信号选择钳位电路的一个或多个钳位电压,其中钳位电路将一个或多个钳位电压施加到来自阻尼的输出 电路。