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    • 2. 发明授权
    • Battery charging control circuit
    • 电池充电控制电路
    • US08089251B2
    • 2012-01-03
    • US12408727
    • 2009-03-23
    • Han-Che WangShin-Hong ChungXin ZhaoHong-Sheng OuyangRuey-Shyang You
    • Han-Che WangShin-Hong ChungXin ZhaoHong-Sheng OuyangRuey-Shyang You
    • H02J7/06H02J7/24H02J7/04H02J7/16
    • H02J7/0031H02J7/0072
    • The present disclosure provides a battery charging control circuit. The charging control circuit includes: a constant-current charging unit and a trickle charging unit. The charging control circuit further includes a branch switch, a control unit, and a detection unit. The branch switch is connected between a power source and the rechargeable battery for enabling or disabling the constant-current charging unit. The control unit is between the constant-current charging unit and the branch switch for controlling the branch switch. The detection unit is used to detect a state of the rechargeable battery. If the detection unit detects the state of the rechargeable battery is correspond to a predetermined state, then the control unit controls the branch switch to disable the constant-current charging unit and enable the trickle charging unit.
    • 本公开提供一种电池充电控制电路。 充电控制电路包括:恒流充电单元和涓​​流充电单元。 充电控制电路还包括分支开关,控制单元和检测单元。 分支开关连接在电源和可充电电池之间,用于启用或禁用恒流充电单元。 控制单元位于恒流充电单元和用于控制分支开关的分支开关之间。 检测单元用于检测可再充电电池的状态。 如果检测单元检测到可再充电电池的状态对应于预定状态,则控制单元控制分支开关以禁用恒流充电单元并启用涓流充电单元。
    • 3. 发明申请
    • BATTERY CHARGING CONTROL CIRCUIT
    • 电池充电控制电路
    • US20090256529A1
    • 2009-10-15
    • US12408727
    • 2009-03-23
    • Han-Che WangShin-Hong ChungXin ZhaoHong-Sheng OuyangRuey-Shyang You
    • Han-Che WangShin-Hong ChungXin ZhaoHong-Sheng OuyangRuey-Shyang You
    • H02J7/06H02J7/04
    • H02J7/0031H02J7/0072
    • The present disclosure provides a battery charging control circuit. The charging control circuit includes: a constant-current charging unit and a trickle charging unit. The charging control circuit further includes a branch switch, a control unit, and a detection unit. The branch switch is connected between a power source and the rechargeable battery for enabling or disabling the constant-current charging unit. The control unit is between the constant-current charging unit and the branch switch for controlling the branch switch. The detection unit is used to detect a state of the rechargeable battery. If the detection unit detects the state of the rechargeable battery is correspond to a predetermined state, then the control unit controls the branch switch to disable the constant-current charging unit and enable the trickle charging unit.
    • 本公开提供一种电池充电控制电路。 充电控制电路包括:恒流充电单元和涓​​流充电单元。 充电控制电路还包括分支开关,控制单元和检测单元。 分支开关连接在电源和可充电电池之间,用于启用或禁用恒流充电单元。 控制单元位于恒流充电单元和用于控制分支开关的分支开关之间。 检测单元用于检测可再充电电池的状态。 如果检测单元检测到可再充电电池的状态对应于预定状态,则控制单元控制分支开关以禁用恒流充电单元并启用涓流充电单元。
    • 4. 发明申请
    • ELECTRONIC DEVICE WITH INFRARED TOUCH INPUT FUNCTION
    • 具有红外触摸输入功能的电子设备
    • US20100171710A1
    • 2010-07-08
    • US12545876
    • 2009-08-24
    • Xin ZhaoZu-Pei HeRuey-Shyang YouHua-Dong ChengHan-Che WangKuan-Hong Hsieh
    • Xin ZhaoZu-Pei HeRuey-Shyang YouHua-Dong ChengHan-Che WangKuan-Hong Hsieh
    • G06F3/041
    • G06F3/0421
    • An electronic device with infrared touch input function is provided. The electronic device includes a display unit defining an signal display area; an infrared input device including a circuit board having two pairs of oppositely disposed sides defining an open area corresponding in size and shape to the signal display area, at least one light emitting device positioned on the circuit board, configured for emitting infrared light; at least one light detecting device positioned on the circuit board, configured for detecting infrared light emitted; a micro-processing unit configured for controlling the at least one light emitting device to emit infrared light, detecting infrared light paths obstructed via the light detecting devices, sending information of the obstructed infrared light paths to a central processing unit(CPU); and the CPU configured for performing functions according to the information of the obstructed infrared light paths.
    • 提供具有红外触摸输入功能的电子设备。 电子设备包括限定信号显示区域的显示单元; 红外输入装置,包括具有两对相对设置的侧面的电路板,所述两对相对设置的侧面限定了与信号显示区域相对应的大小和形状的开放区域;定位在电路板上的至少一个发光器件,被配置为发射红外光; 位于所述电路板上的至少一个光检测装置,被配置为检测发射的红外光; 微处理单元,被配置为用于控制所述至少一个发光装置发射红外光,检测经由所述光检测装置阻挡的红外光路,将阻挡的红外光路的信息发送到中央处理单元(CPU); 以及被配置为根据阻挡的红外光路的信息执行功能的CPU。
    • 5. 发明授权
    • Electronic device with infrared touch input function
    • 具有红外触摸输入功能的电子设备
    • US08264475B2
    • 2012-09-11
    • US12545876
    • 2009-08-24
    • Xin ZhaoZu-Pei HeRuey-Shyang YouHua-Dong ChengHan-Che WangKuan-Hong Hsieh
    • Xin ZhaoZu-Pei HeRuey-Shyang YouHua-Dong ChengHan-Che WangKuan-Hong Hsieh
    • G06F3/042
    • G06F3/0421
    • An electronic device with infrared touch input function is provided. The electronic device includes a display unit defining an signal display area; an infrared input device including a circuit board having two pairs of oppositely disposed sides defining an open area corresponding in size and shape to the signal display area, at least one light emitting device positioned on the circuit board, configured for emitting infrared light; at least one light detecting device positioned on the circuit board, configured for detecting infrared light emitted; a micro-processing unit configured for controlling the at least one light emitting device to emit infrared light, detecting infrared light paths obstructed via the light detecting devices, sending information of the obstructed infrared light paths to a central processing unit(CPU); and the CPU configured for performing functions according to the information of the obstructed infrared light paths.
    • 提供具有红外触摸输入功能的电子设备。 电子设备包括限定信号显示区域的显示单元; 红外输入装置,包括具有两对相对设置的侧面的电路板,所述两对相对设置的侧面限定了与信号显示区域相对应的大小和形状的开放区域;定位在电路板上的至少一个发光器件,被配置为发射红外光; 位于所述电路板上的至少一个光检测装置,被配置为检测发射的红外光; 微处理单元,被配置为用于控制所述至少一个发光装置发射红外光,检测经由所述光检测装置阻挡的红外光路,将阻挡的红外光路的信息发送到中央处理单元(CPU); 以及被配置为根据阻挡的红外光路的信息执行功能的CPU。
    • 6. 发明授权
    • Power management circuit and electronic device using the same
    • 电源管理电路和电子设备使用相同
    • US08552680B2
    • 2013-10-08
    • US12873232
    • 2010-08-31
    • Xin ZhaoHua-Dong ChengRuey-Shyang YouHan-Che WangXiao-Guang LiKuan-Hong Hsieh
    • Xin ZhaoHua-Dong ChengRuey-Shyang YouHan-Che WangXiao-Guang LiKuan-Hong Hsieh
    • H02J7/00
    • H01M10/46Y02B10/72
    • An electronic device includes a first rechargeable battery, a solar cell mounted on the electronic device, a second rechargeable battery and a power management circuit. The power management circuit includes a control module, a DC/DC module, a switch and a power supply switching module. The DC/DC module is configured for converting the DC power generated by the solar cell from one voltage level to another, and activating and maintaining the activation of the control module. The switch is turned on by the control module when the control module is activated, causing the DC power from the DC/DC module to charge the second rechargeable battery. The power supply switching module is controlled by the control module to select the second rechargeable battery to power the electronic device if the voltage level of the rechargeable battery is lower than that of the second rechargeable battery.
    • 电子设备包括第一可充电电池,安装在电子设备上的太阳能电池,第二可充电电池和电源管理电路。 电源管理电路包括控制模块,DC / DC模块,开关和电源开关模块。 DC / DC模块被配置为将由太阳能电池产生的直流电力从一个电压电平转换到另一个电压电平,并且激活和维持控制模块的激活。 当控制模块被激活时,开关由控制模块接通,导致来自DC / DC模块的DC电源对第二个可充电电池充电。 如果可再充电电池的电压低于第二可充电电池的电压,则电源开关模块由控制模块控制以选择第二可充电电池来为电子设备供电。