Automatic page detection method for print article and print article using the same

    公开(公告)号:US10127823B2

    公开(公告)日:2018-11-13

    申请号:US15081564

    申请日:2016-03-25

    Inventor: Li Sheng Lo

    Abstract: An automatic page detection method for a print article and a print article using the same are provided in the present invention. The automatic page detection method for the print article includes the steps of: disposing N receiving units at N first preset position of a cover of the print article; disposing a transmitting unit at the second preset position of the cover of the print article; disposing N thin conductors respectively at N pages, wherein the a thin conductor is disposed between Kth first preset position of the Kth page and the second preset position of the Kth page; emitting a detection signal by the transmitter; and determining the present page according to the receiving unit(s) of the N receiving units which receive(s) the detection signal.

    Interactive method for communication with smart mobile device and interactive communication system using the same

    公开(公告)号:US09654185B2

    公开(公告)日:2017-05-16

    申请号:US15136422

    申请日:2016-04-22

    Inventor: Li Sheng Lo

    CPC classification number: H04B5/0081 H04B5/02

    Abstract: An interactive method for communication with a smart mobile device and an interactive communication system using the same are provided. The interactive communication system comprises an external device and a smart mobile device. The external device comprises a microprocessor circuit and an AC magnetic emitter. The microprocessor circuit is for encoding specific data into an encoded signal. The AC magnetic emitter is for converting the encoded signal into an AC magnetic signal. The smart mobile device comprises an E-compass sensor. In addition, the smart mobile device stores a specific application program for acquiring a magnetic variation of the E-compass sensor. When the magnetic variation of the E-compass sensor is greater than a threshold variation, the AC magnetic signal is decoded through the specific application program to obtain the specific data.

    Expandable device for wireless audio input
    13.
    发明授权
    Expandable device for wireless audio input 有权
    可扩展的无线音频输入设备

    公开(公告)号:US09166647B2

    公开(公告)日:2015-10-20

    申请号:US14087492

    申请日:2013-11-22

    CPC classification number: H04B1/44 H04B1/0346

    Abstract: An expandable device for wireless audio input is provided in the present invention. The expandable device for wireless audio input is compatible with an audio provider, wherein the audio provider is used for converting an audio to a wireless signal to output the wireless signal. The expandable device for wireless audio input is used for outputting an audio signal to an audio output device, wherein, the audio output device includes a first audio jack. The expandable device for wireless audio input includes a first audio jack plug, a wireless receiver and a second audio jack. The first audio jack plug is used for outputting a first audio signal. The wireless receiver receives the wireless signal outputting from the audio provider and converts the wireless signal into the first audio signal to transmit to the first audio jack plug. When a second audio signal is inputted from the second audio jack plug, the second audio signal is provided to the first audio jack plug.

    Abstract translation: 本发明提供了一种用于无线音频输入的可扩展装置。 用于无线音频输入的可扩展设备与音频提供商兼容,其中音频提供器用于将音频转换为无线信号以输出无线信号。 用于无线音频输入的可扩展装置用于将音频信号输出到音频输出装置,其中,音频输出装置包括第一音频插孔。 用于无线音频输入的可扩展装置包括第一音频插孔插头,无线接收器和第二音频插孔。 第一音频插孔用于输出第一音频信号。 无线接收器接收从音频提供商输出的无线信号,并将无线信号转换成第一音频信号,以传输到第一音频插孔。 当从第二音频插孔插入第二音频信号时,第二音频信号被提供给第一音频插孔。

    Touch-control communication system and touch-control communication method

    公开(公告)号:US10331284B2

    公开(公告)日:2019-06-25

    申请号:US16130343

    申请日:2018-09-13

    Inventor: Li Sheng Lo

    Abstract: A touch-control communication system and a touch control communication method are provided in the present invention. The system includes a mobile device and a data transmission device. The mobile device has a capacitive touch panel, and the capacitive touch panel emits a touch sensing signal when the capacitive touch panel senses touch. The data transmission device is configured with a transceiver antenna and a signal inverting circuit. According to the transmission data, the data transmission device determines whether or not the signal inverting circuit outputs an inversion signal to the transceiver antenna, so that the capacitive touch panel obtains a logic state of the transmission data by detecting whether or not a touch point exists. Thus, the transmission data can be transmitted to the mobile device.

    Apparatus with both touch sensing and electrical field sensing functions and interactive apparatus using the same

    公开(公告)号:US09454276B2

    公开(公告)日:2016-09-27

    申请号:US14618915

    申请日:2015-02-10

    CPC classification number: G06F3/044 G01D5/24

    Abstract: An apparatus with both touch sensing and electrical field sensing functions and an interactive apparatus using the same are provided. The apparatus with both touch sensing and electrical field sensing functions comprises a control circuit, a first capacitive sensing electrode and a second capacitive sensing electrode. The first capacitive sensing electrode is coupled to a first sensing control terminal of the control circuit. The second capacitive sensing electrode is coupled to a second sensing control terminal of the control circuit. In a first period, the first capacitive sensing electrode is charged to a first voltage through the first sensing control terminal, and the second sensing control terminal supplies an electrical field pulse to the second capacitive sensing electrode such that the second capacitive sensing electrode outputs an electrical field pulse signal. In the first period, the control circuit determines whether the first capacitive sensing electrode is touched or not according to a period, during which a voltage of the first capacitive sensing electrode is discharged from the first voltage to a second voltage, and determines whether the second capacitive sensing electrode approximates the first capacitive sensing electrode or not according to whether the first capacitive sensing electrode synchronously detects the electrical field pulse or not.

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