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    • 11. 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。
    • 14. 发明授权
    • Keyboard circuit and method for keyboard circuit
    • 键盘电路和键盘电路的方法
    • US09128533B2
    • 2015-09-08
    • US13095885
    • 2011-04-28
    • Fan-Lin LuXin ZhaoRuey-Shyang YouXiao-Guang LiHan-Che Wang
    • Fan-Lin LuXin ZhaoRuey-Shyang YouXiao-Guang LiHan-Che Wang
    • G06F3/02G06F3/023G06F1/32
    • G06F3/023G06F1/3271Y02D10/156
    • A keyboard and a keyboard circuit, wherein the keyboard acts as an input device for a portable device or a computer. The keyboard circuit comprises an interface for connecting with the computer or the portable device, a detection circuit for detecting the logic level signal of the power supply from the computer or the portable device connected to the keyboard, and a microprocessor determining whether a computer or a portable device is connected to the keyboard in accordance with the logic level signal of the power input. The keyboard circuit uses a first communication circuit to communicate with the computer and a second communication circuit to communicate with the portable device, thus the keyboard is compatible with the computer or the portable device. The keyboard is capable of entering a sleep mode after finishing the transmission of the key codes to the computer or the portable device.
    • 键盘和键盘电路,其中键盘用作便携式设备或计算机的输入设备。 键盘电路包括用于与计算机或便携式设备连接的接口,用于检测来自计算机或连接到键盘的便携式设备的电源的逻辑电平信号的检测电路,以及确定计算机或 便携式设备根据电源输入的逻辑电平信号连接到键盘。 键盘电路使用第一通信电路与计算机通信,第二通信电路与便携式设备通信,因此键盘与计算机或便携式设备兼容。 完成密钥代码传输到计算机或便携式设备后,键盘能够进入睡眠模式。
    • 20. 发明授权
    • Robotic device
    • 机器人装置
    • US07996111B2
    • 2011-08-09
    • US11970535
    • 2008-01-08
    • Hua-Dong ChengHan-Che WangXiao-Guang LiTsu-Li ChiangKuan-Hong Hsieh
    • Hua-Dong ChengHan-Che WangXiao-Guang LiTsu-Li ChiangKuan-Hong Hsieh
    • G05B19/04A63H9/00
    • A63H11/00A63H2200/00
    • A robotic device in accordance with a plurality of embodiments is provided. The robotic device generally includes a plurality of groups of sensing devices for sensing environmental events; a plurality of controllers for recognizing the environmental events and generating corresponding commands; a plurality of driving devices for driving the robotic device to respond to the environmental events under control of the commands; at least one communication line for communication between the controllers; at least one power line for transmitting power to the sensing devices, the controllers and the driving devices; a plurality of ground lines; a plurality of branches extending out from the communication line, the power line and the ground lines; and a plurality of connectors for connecting the controllers to the branches.
    • 提供了根据多个实施例的机器人装置。 机器人装置通常包括用于感测环境事件的多组感测装置; 多个控制器,用于识别环境事件并产生相应的命令; 多个驱动装置,用于驱动所述机器人装置在所述命令的控制下响应所述环境事件; 用于控制器之间的通信的至少一个通信线路; 用于向感测装置,控制器和驱动装置发送电力的至少一个电力线; 多条地线; 从通信线,电力线和接地线延伸的多个分支; 以及用于将控制器连接到分支的多个连接器。