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    • 42. 发明申请
    • THREE-PHASE ALTERNATING CURRENT VOLTAGE REGULATOR
    • 三相交流电流稳压器
    • US20080150510A1
    • 2008-06-26
    • US11748502
    • 2007-05-15
    • SHIH-FANG WONGTSUNG-JEN CHUANGJUN LI
    • SHIH-FANG WONGTSUNG-JEN CHUANGJUN LI
    • G05F5/04G05F5/00
    • G05F1/12
    • A three-phase AC voltage regulator is for adjusting a line voltage on transmission lines. The three-phase AC voltage regulator includes a sampling circuit, a reference-voltage circuit, a comparator, a switch, a power supply, and a compensator. The sampling circuit is for sampling the line voltage. The reference-voltage circuit is for receiving a line-to-line voltage from the transmission lines and generating a standard voltage. The comparator is for comparing the line voltage and the standard voltage to obtain a signal. The switch is for being turned on or off based on the signal. The power supply is for supplying various electric powers to the compensator. The compensator is for receiving the electric power and generating compensating voltages. The compensating voltages are used to compensate the line voltage.
    • 三相交流电压调节器用于调整传输线路上的线路电压。 三相交流电压调节器包括采样电路,参考电压电路,比较器,开关,电源和补偿器。 采样电路用于对线路电压进行采样。 参考电压电路用于从传输线接收线对线电压并产生标准电压。 比较器用于比较线路电压和标准电压以获得信号。 该开关用于根据信号开启或关闭。 电源用于向补偿器提供各种电力。 补偿器用于接收电力并产生补偿电压。 补偿电压用于补偿线路电压。
    • 44. 发明申请
    • HUMIDITY DETECTION AND POWER CUT-OFF DEVICE
    • 湿度检测和电源切断装置
    • US20080013241A1
    • 2008-01-17
    • US11746650
    • 2007-05-10
    • SHIH-FANG WONGTSUNG-JEN CHUANGWEN-JIAN CUIJUN-WEI ZHANG
    • SHIH-FANG WONGTSUNG-JEN CHUANGWEN-JIAN CUIJUN-WEI ZHANG
    • H02H1/00G01R27/02
    • H02H5/083Y10T307/779
    • A humidity detection and power cut-off device for electronic equipment is provided. The device is connected between a battery (10) and a motherboard (40) of the electronic equipment and includes an auto protection device (20) and a moisture-triggered device (30). The auto protection device is connected between the battery and the power management module and is used to establish or cut off the connection between the battery and the power management module. The moisture-triggered device is used to detect the immediate ambient humidity and controls the auto protection device. If the moisture-triggered circuit detects that the immediate ambient humidity exceeds a predetermined critical humidity value, the moisture-triggered device outputs a trigger signal to the auto protection device. The trigger signal controls the auto protection circuit to cut off a connection between the battery and the power management module, thus to achieve waterproofing protecting for the electronic equipment.
    • 提供电子设备的湿度检测和断电装置。 该装置连接在电子设备的电池(10)和母板(40)之间,并且包括自动保护装置(20)和湿气触发装置(30)。 自动保护装置连接在电池和电源管理模块之间,用于建立或切断电池与电源管理模块之间的连接。 水分触发装置用于检测即时环境湿度并控制自动保护装置。 如果湿气触发电路检测到即时环境湿度超过预定临界湿度值,则湿气触发装置向自动保护装置输出触发信号。 触发信号控制自动保护电路切断电池和电源管理模块之间的连接,从而实现电子设备的防水保护。
    • 45. 发明申请
    • ELECTRONIC DEVICE FOR ACTIVATING AND CONTROLLING USER-CONTROLLABLE FUNCTIONS THEREOF ACCORDING TO AN EARPHONE CONNECTED THERETO, AND ASSOCIATED METHOD
    • 用于根据与其连接的耳机来激活和控制用户可控功能的电子设备及相关方法
    • US20130044231A1
    • 2013-02-21
    • US13283597
    • 2011-10-28
    • TSUNG-JEN CHUANGSHIH-FANG WONGWEN-WU WANGWEN-DONG LUOBIN LIU
    • TSUNG-JEN CHUANGSHIH-FANG WONGWEN-WU WANGWEN-DONG LUOBIN LIU
    • H04N5/232G10L11/00H04R1/10
    • G11B19/08H04R3/00
    • An exemplary electronic device is connected with an earphone. The earphone includes a first storage unit storing information as to functions of the earphone. The electronic device includes a second storage unit storing a function information table recording information as to user-controllable functions of the electronic device, function units corresponding to the user-controllable functions, an identifying module, and a control module. The identifying module retrieves the information as to functions stored in the first storage unit, and determines whether one or more of the controllable functions of the electronic device are controllable by the earphone. The control module activates all of the function units corresponding to the controllable functions of the electronic device which are controllable by the earphone, and controls one or more of the activated function units according to one or more control signals transmitted from the earphone to the electronic device. A related method is also provided.
    • 示例性电子设备与耳机连接。 耳机包括存储关于耳机的功能的信息的第一存储单元。 电子设备包括存储关于电子设备的用户可控功能的功能信息表记录信息,与用户可控功能对应的功能单元,识别模块和控制模块的第二存储单元。 识别模块检索关于存储在第一存储单元中的功能的信息,并且确定电子设备的一个或多个可控功能是否可被耳机控制。 控制模块激活对应于由耳机控制的电子设备的可控功能的所有功能单元,并且根据从耳机发送到电子设备的一个或多个控制信号来控制一个或多个激活的功能单元 。 还提供了相关的方法。
    • 46. 发明申请
    • TOUCH DEVICE AND TOUCH METHOD
    • 触摸设备和触控方法
    • US20130033454A1
    • 2013-02-07
    • US13234107
    • 2011-09-15
    • WEN-DONG LUOWEN-WU WANGBIN LIUTSUNG-JEN CHUANGSHIH-FANG WONG
    • WEN-DONG LUOWEN-WU WANGBIN LIUTSUNG-JEN CHUANGSHIH-FANG WONG
    • G06F3/042
    • G06F3/0421
    • A touch method is applied in a touch device. The touch device includes a display unit, first infrared receivers, first infrared emitters, second infrared receivers, second infrared emitters, a storage unit, and motors. The first infrared receivers and the first infrared emitters are arranged on a first side of the display unit, and the second infrared receivers and the second infrared emitters are arranged on a second side of the display unit. The storage unit stores a table recording a relationship between identification and set of coordinates of the infrared receivers. The method includes: controlling motors to drive infrared emitters and infrared receivers to rotate; determining whether electrical signals comprising the identification of one first infrared receiver and one second infrared receiver are simultaneously received; if yes, determining the set of coordinates of the touch spot; determining an icon and determining the corresponding function corresponding to the touch spot.
    • 在触摸装置中应用触摸方法。 触摸装置包括显示单元,第一红外接收器,第一红外发射器,第二红外接收器,第二红外发射器,存储单元和电动机。 第一红外线接收器和第一红外发射器布置在显示单元的第一侧上,并且第二红外线接收器和第二红外发射器布置在显示单元的第二侧上。 存储单元存储记录红外线接收机的识别和坐标系之间的关系的表。 该方法包括:控制电机驱动红外发射器和红外接收器旋转; 确定是否同时接收包括一个第一红外接收器和一个第二红外接收器的识别的电信号; 如果是,确定触摸点的坐标集; 确定图标并确定对应于触摸点的相应功能。
    • 47. 发明申请
    • DRIVING CIRCUIT AND LIQUID CRYSTAL DISPLAY USING THE SAME
    • 驱动电路和使用其的液晶显示器
    • US20130009926A1
    • 2013-01-10
    • US13234097
    • 2011-09-15
    • QI-LONG YUJUN ZHANGJUN-WEI ZHANGCHIA-HUNG CHIENTSUNG-JEN CHUANGSHIH-FANG WONG
    • QI-LONG YUJUN ZHANGJUN-WEI ZHANGCHIA-HUNG CHIENTSUNG-JEN CHUANGSHIH-FANG WONG
    • G09G3/36G09G5/00
    • G09G3/18G09G2310/0264
    • A driving circuit for driving an LCD includes a common electrode, a number of pixel electrodes, a peripheral circuit, and a processing unit including a first input/output (I/O) port, a second I/O port; and a number of third I/O ports. The first I/O port and the second I/O ports are connected to the common electrode via the peripheral circuit, and each third I/O port is connected to a different pixel electrode. The processing unit controls the first I/O port, the second I/O port, and the third I/O ports to output a first or second voltage according to a display signal, thus the pixel electrodes are at the first or the second voltage accordingly, the common electrode is at a voltage in a range between the second voltage and the first voltage in receiving the voltage output by the peripheral circuit, thus driving the LCD to display an image.
    • 用于驱动LCD的驱动电路包括公共电极,多个像素电极,外围电路和包括第一输入/输出(I / O)端口,第二I / O端口的处理单元; 和多个第三个I / O端口。 第一个I / O端口和第二个I / O端口通过外围电路连接到公共电极,并且每个第三个I / O端口连接到不同的像素电极。 处理单元控制第一I / O端口,第二I / O端口和第三I / O端口,以根据显示信号输出第一或第二电压,因此像素电极处于第一或第二电压 因此,在接收由外围电路输出的电压时,公共电极处于第二电压和第一电压之间的范围内的电压,从而驱动LCD显示图像。
    • 49. 发明申请
    • OVER-CURRENT PROTECTION CIRCUIT AND ELECTRONIC DEVICE WITH THE SAME
    • 过电流保护电路和电子器件
    • US20120293902A1
    • 2012-11-22
    • US13221920
    • 2011-08-31
    • REN-WEN HUANGQIANG YOUTSUNG-JEN CHUANGSHIH-FANG WONG
    • REN-WEN HUANGQIANG YOUTSUNG-JEN CHUANGSHIH-FANG WONG
    • H02H3/08
    • H02H3/087
    • An over-current protection circuit for preventing a function module from over-current, the function module obtains power from a power source via an input port. The over-current protection circuit includes a path switch, a current detection circuit, a conductor switch, a first control module, and a second control module. The current detection circuit and the path switch form a loop with the input port and the function module. The current detection circuit detects a value of a current of the loop, and produces a first control signal when detecting the current of the loop is equal to or greater than a predetermined current value. The first control module turns off the conductor switch when receiving the first control signal. The second control module turns off the path switch when the conductor switch is turned off, thereby cutting off the loop.
    • 一种用于防止功能模块过电流的过电流保护电路,功能模块经由输入端口从电源获得电力。 过流保护电路包括路径开关,电流检测电路,导体开关,第一控制模块和第二控制模块。 电流检测电路和路径开关与输入端口和功能模块形成一个环路。 电流检测电路检测回路的电流值,并且当检测到回路的电流等于或大于预定电流值时产生第一控制信号。 当接收到第一控制信号时,第一控制模块关闭导体开关。 当导体开关关闭时,第二个控制模块关闭路径开关,从而切断回路。