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    • 2. 发明授权
    • Electronic device including handheld electronic device with dual battery configuration, and associated method
    • 电子设备包括具有双电池配置的手持电子设备及相关方法
    • US08253371B2
    • 2012-08-28
    • US12333080
    • 2008-12-11
    • Kamen B. VitanovDusan Veselic
    • Kamen B. VitanovDusan Veselic
    • H02J7/00
    • H02J7/0044H02J7/0054
    • An improved handheld electronic device in conjunction with an improved holder for the handheld electronic device together form an improved electronic device. The handheld electronic device includes a first battery, and the holder includes a second battery and a charging apparatus. When the handheld electronic device and the holder are electrically connected together, such as when the handheld electronic device is received in a cavity formed in the holder and a plurality of first contacts on the handheld electronic device and a plurality of second contacts on the holder are electrically connected together, the charging apparatus charges the first battery on the handheld electronic device from the second battery on the holder.
    • 改进的手持式电子设备与用于手持电子设备的改进的保持器结合在一起形成改进的电子设备。 手持电子设备包括第一电池,并且保持器包括第二电池和充电装置。 当手持电子设备和保持器电连接在一起时,例如当手持电子设备被接收在形成在保持器中的空腔中并且手持式电子设备上的多个第一触点和保持器上的多个第二触点时 电连接在一起,充电装置从手持电子设备上的第一电池从保持器上的第二电池充电。
    • 7. 发明授权
    • Charging and power supply for mobile devices
    • 移动设备的充电和电源
    • US07965058B2
    • 2011-06-21
    • US13004175
    • 2011-01-11
    • Dusan Veselic
    • Dusan Veselic
    • H02J7/00
    • H02J7/0068H02J7/0052Y10T29/49002Y10T29/49117Y10T307/438
    • Charging and power supply for mobile devices is disclosed. A USB-compliant charging and power supply circuit includes switch-mode battery charging circuitry for receiving power from an external power source and for supplying output power through an output node to an electronic system of an electronic communication device and a battery. Battery isolation circuitry includes a semiconductor switch connecting the output node to the battery. The battery isolation circuitry senses voltage at the output node and variably restricts current to the battery when the voltage is below a minimum voltage value by operationally controlling the semiconductor switch as current passes through it. During variable current restriction the electronic system is supplied required power with said battery being supplied any additional available power.
    • 公开了用于移动设备的充电和电源。 USB兼容的充电和电源电路包括用于从外部电源接收电力并且通过输出节点向电子通信设备和电池的电子系统提供输出功率的开关模式电池充电电路。 电池隔离电路包括将输出节点连接到电池的半导体开关。 电池隔离电路感测输出节点处的电压,并且当电流通过其操作地控制半导体开关时,当电压低于最小电压值时,可变地限制电流到电池。 在可变电流限制期间,电子系统被供应所需的电力,所述电池被提供任何额外的可用功率。
    • 8. 发明申请
    • Systems and Methods for Charging a Chargeable USB Device
    • 充电USB设备充电的系统和方法
    • US20110127950A1
    • 2011-06-02
    • US13022541
    • 2011-02-07
    • Dusan Veselic
    • Dusan Veselic
    • H02J7/00
    • H02J7/0034G06F1/266H02J2007/006
    • Systems and methods are provided for charging a USB device. A USB connector may be used to couple the system to a USB port on the USB device, the USB connector including a bus voltage (Vbus) connector, a positive data (D+) connector, and a negative data (D−) connector. Charger circuitry may be used to receive a source voltage and convert the source voltage into the bus voltage (Vbus), wherein the bus voltage (Vbus) is used to charge the USB device. Presence detect circuitry may be used to compare a first voltage present on the D+ connector with a second voltage present on the D− connector in order to detect when the USB connector is coupled to the USB port of the USB device.
    • 系统和方法用于为USB设备充电。 USB连接器可用于将系统连接到USB设备上的USB端口,USB连接器包括总线电压(Vbus)连接器,正数据(D +)连接器和负数据(D-)连接器)。 充电器电路可用于接收源电压并将源电压转换为总线电压(Vbus),其中总线电压(Vbus)用于对USB设备充电。 存在检测电路可用于将存在于D +连接器上的第一电压与D-连接器上存在的第二电压进行比较,以便检测USB连接器何时耦合到USB设备的USB端口。
    • 10. 发明授权
    • Method and apparatus for handling a charging state in a mobile electronic device
    • 用于处理移动电子设备中的充电状态的方法和装置
    • US07663338B2
    • 2010-02-16
    • US11026443
    • 2004-12-30
    • Martin G. A. GuthrieDusan VeselicAlexei SkarineMichael F. Habicher
    • Martin G. A. GuthrieDusan VeselicAlexei SkarineMichael F. Habicher
    • H02J7/00F21L4/00H04N5/225H01M2/10H04B1/38
    • G06F1/266G06F1/263H02J7/0052H02J2007/0062
    • In accordance with the teachings described herein, a method and apparatus for handling a charging state in a mobile electronic device is provided. A universal serial bus (USB) interface may be used for connecting the mobile device to a USB host. A processing device may be used to execute programs and to control operation of the mobile device. The processing device may be operable to receive an enumeration acknowledgement signal from the USB host via the USB interface and generate an enable signal upon receiving the enumeration acknowledgement signal. A rechargeable battery may be used to power the processing device. A battery charger may be used to receive a USB bus voltage from the USB interface and use the USB bus voltage to power the processing device and to charge the rechargeable battery. The battery charger may be further operable to receive a charge enable signal that enables and disables the battery charger from powering the processing device and charging the rechargeable battery. A timing circuit may be used to detect the USB bus voltage and to measure the passage of a pre-determined amount of time upon detecting the USB bus voltage. A battery charger enabling circuit may be used to generate the charge enable signal to control the battery charger, the battery charger enabling the battery charger if the timer has measured the passage of the pre-determined amount of time or the enable signal is received from the processing device.
    • 根据本文所述的教导,提供了一种用于在移动电子设备中处理充电状态的方法和装置。 通用串行总线(USB)接口可用于将移动设备连接到USB主机。 处理装置可以用于执行程序并且控制移动装置的操作。 处理设备可以操作以经由USB接口从USB主机接收枚举确认信号,并且在接收到枚举确认信号时产生使能信号。 可以使用可充电电池为处理装置供电。 可以使用电池充电器从USB接口接收USB总线电压,并使用USB总线电压为处理设备供电并为可充电电池充电。 电池充电器可以进一步操作以接收充电使能信号,该充电使能信号使能和禁用电池充电器为处理装置供电并对可再充电电池充电。 可以使用定时电路来检测USB总线电压并且在检测到USB总线电压时测量预定量的时间的通过。 可以使用电池充电器使能电路来产生充电使能信号以控制电池充电器,如果定时器已经测量了预定时间量的通过或者从 处理装置。