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    • 21. 发明授权
    • Timing control circuit
    • 定时控制电路
    • US09146891B2
    • 2015-09-29
    • US13924629
    • 2013-06-24
    • ShenZhen Treasure City Technology Co., LTD.
    • Guang-Chen Li
    • G06F1/00G06F13/40G06F13/00
    • G06F13/4068G06F13/00
    • A timing control circuit includes a single chip having a plurality of output ports; a chip selecting circuit having a plurality of control ports connected to the output ports and paths; a signal input circuit; a signal output circuit; and a switching circuit including a plurality of signal channels. The chip selecting circuit generates a selection signal according to a control signal and outputs the selected signal via one of the selected paths. One of the channels is selected when a selection signal is output via the selected channel. When one of the signal channels is selected and there are signals inputted by the signal input circuit via the signal channel, the signals from the signal input circuit are passed to the signal output circuit through the signal channel and the light emitting diode in the signal channel is turned on.
    • 定时控制电路包括具有多个输出端口的单个芯片; 芯片选择电路,具有连接到输出端口和路径的多个控制端口; 信号输入电路; 信号输出电路; 以及包括多个信号通道的开关电路。 芯片选择电路根据控制信号产生选择信号,并通过所选择的路径之一输出所选择的信号。 当通过所选通道输出选择信号时,选择其中一个通道。 当选择信号通道中的一个并且经由信号通道由信号输入电路输入的信号时,来自信号输入电路的信号通过信号通道和信号通道中的发光二极管传递到信号输出电路 打开
    • 23. 发明授权
    • Over-current protection device for expansion cards
    • 扩展卡过流保护装置
    • US09490622B2
    • 2016-11-08
    • US14490287
    • 2014-09-18
    • ShenZhen Treasure City Technology Co., LTD.
    • Bo TianKang Wu
    • H02H3/08
    • H02H3/08
    • An over-current protection device is provided. A first end of a first resistor is coupled to a voltage input terminal and a second end of the first resistor is coupled to a control terminal of an electronic switch. A detecting pin of a control chip is coupled to the second end of the first resistor and an input pin of the control chip is coupled to the first end of the first resistor. A control pin of the control chip is coupled to a control terminal of the electronic switch. The voltage output terminal is coupled to a first terminal of the electronic switch. The control chip compares a preset current value saved therein with a detecting current passing through the first resistor. If the detecting current is greater than the preset current value, there is no voltage output from the voltage output terminal.
    • 提供过电流保护装置。 第一电阻器的第一端耦合到电压输入端子,并且第一电阻器的第二端耦合到电子开关的控制端子。 控制芯片的检测引脚耦合到第一电阻器的第二端,并且控制芯片的输入引脚耦合到第一电阻器的第一端。 控制芯片的控制引脚耦合到电子开关的控制端子。 电压输出端子耦合到电子开关的第一端子。 控制芯片将保存的预设电流值与通过第一电阻器的检测电流进行比较。 如果检测电流大于预设电流值,则电压输出端子没有电压输出。
    • 25. 发明授权
    • Mounting apparatus for battery module
    • 电池模块安装装置
    • US09219258B2
    • 2015-12-22
    • US13958289
    • 2013-08-02
    • ShenZhen Treasure City Technology Co., LTD.
    • Xiu-Zhong YinXiu-Quan Hu
    • H01M10/10H01M2/10
    • H01M2/1022
    • A mounting apparatus for securing a battery module to an enclosure includes a bracket and a latching member. The bracket is secured to the enclosure and defines a receiving space for receiving the battery module. The latching member is attached to the bracket and includes a resilient portion and a blocking flange perpendicularly connected to the resilient portion. The blocking flange is engaged with the battery module to prevent the battery module from disengaging from the receiving space, and the resilient portion is resiliently deformable to disengage the blocking flange from the battery module so that the battery module is easily installed or detached from the enclosure without extra tools.
    • 用于将电池模块固定到外壳的安装装置包括支架和闩锁构件。 支架被固定到外壳并且限定用于接收电池模块的接收空间。 闩锁构件附接到支架并且包括弹性部分和垂直地连接到弹性部分的阻挡凸缘。 阻挡凸缘与电池模块接合以防止电池模块从接收空间脱离,并且弹性部分可弹性变形以使阻挡凸缘与电池模块脱离,使得电池模块容易地从外壳安装或拆卸 没有额外的工具。
    • 27. 发明授权
    • Testing system for anti-electromagnetic interference
    • 测试系统抗电磁干扰
    • US09154777B2
    • 2015-10-06
    • US13858097
    • 2013-04-08
    • ShenZhen Treasure City Technology Co., LTD.
    • Xiao-Lian He
    • H04N7/18H04N17/04
    • H04N17/04
    • A testing system includes a signal emitter, a signal collection apparatus, and an analyzer. The signal emitter emits electromagnetic signals to cause electromagnetic interference in an electronic device. The signal collection apparatus collects the signals outputted by the target electronic device and includes a light emitter and an optical fiber. The analyzer is electronically connected to the signal collection apparatus. The light emitter emits light beams which reproduce the signals collected by the signal collection apparatus, and optical fiber transmits the light beams to the analyzer, the analyzer receives the light beams and reconstitutes the original electrical signals, and analyzes determines the electronic device performance while being subjected to the electromagnetic interference.
    • 测试系统包括信号发射器,信号采集装置和分析器。 信号发射器发射电磁信号以在电子设备中产生电磁干扰。 信号采集装置收集由目标电子装置输出的信号,并包括光发射器和光纤。 分析仪电连接到信号采集装置。 光发射器发射再现由信号采集装置收集的信号的光束,并且光纤将光束传输到分析器,分析仪接收光束并重构原始电信号,并且分析确定电子设备性能,同时 受到电磁干扰。
    • 28. 发明授权
    • Stacked electromagnetic bandgap structure
    • 堆叠电磁带隙结构
    • US09148947B2
    • 2015-09-29
    • US13971859
    • 2013-08-21
    • ShenZhen Treasure City Technology Co., LTD.
    • Shao-You Tang
    • H05K1/02
    • H05K1/0218H05K1/0224H05K1/0236H05K1/0298
    • An EBG (electromagnetic bandgap) device with a stacked structure includes a first ground plane, a first power plane, a via, a second power plane, a second ground plane; a third power plane, and several ground vias. The first ground plane, the second power plane, and the second ground plane are connected through the several ground vias. The ground vias and the second power plane do not have actually electrical connection. The first ground plane, the first power plane, the second power plane, and the via form a first EBG structure and the first ground plane, the second ground plane, the third power plane and the several ground vias form a second EBG structure.
    • 具有堆叠结构的EBG(电磁带隙)装置包括第一接地平面,第一电力平面,通孔,第二电力平面,第二接地平面; 第三个电源平面和几个接地通孔。 第一个接地层,第二个电源平面和第二个接地层通过几个接地通孔连接。 接地通孔和第二个电源平面没有实际的电气连接。 第一接地层,第一电源层,第二电源层和通孔构成第一EBG结构,第一接地层,第二接地层,第三电源层和多个接地通孔构成第二EBG结构。
    • 30. 发明授权
    • Electronic device and method for removing interferential signals of mobile device
    • 用于去除移动设备的干扰信号的电子设备和方法
    • US09490933B2
    • 2016-11-08
    • US14262818
    • 2014-04-28
    • ShenZhen Treasure City Technology Co., LTD.
    • Shang-Jue Ding
    • H03D1/04H03D1/06H03K5/01H03K6/04H04B1/10H04L1/00H04L25/08H04L25/03
    • H04L1/00H04L25/03006
    • In a method for removing interferential signals of a mobile device, an original communication signal waveform of the mobile device is acquired. A differential signal waveform corresponding to each signal frame in a group is generated, and a DPPPV of the differential signal waveform is acquired. The differential signal is determined to be an interferential signal, in response to that the DPPPV is not less than a calculated differential threshold value, and a DNPPV at a target time point is not less than a preset ratio of the DPPPV. A signal interference section is determined and compensation values corresponding to the signal interference section is calculated, to generate a differential compensation waveform of the signal frame. An integrated differential compensation waveform of all signal frames and the original communication signal waveform are incorporated to obtain a processed signal waveform without interferential signals.
    • 在移除移动设备的干扰信号去除方法中,获取移动设备的原始通信信号波形。 产生与组中的每个信号帧相对应的差分信号波形,并获取差分信号波形的DPPPV。 响应于DPPPV不小于计算的差分阈值,并且目标时间点的DNPPV不小于DPPPV的预设比率,将差分信号确定为干扰信号。 确定信号干扰部分,并且计算与信号干扰部分对应的补偿值,以产生信号帧的差分补偿波形。 整合所有信号帧和原始通信信号波形的积分差分补偿波形,以获得无干扰信号的处理信号波形。