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    • 6. 发明申请
    • ELECTRONIC DEVICE AND NETWORK ACCESS MODULE
    • 电子设备和网络访问模块
    • US20130084052A1
    • 2013-04-04
    • US13607828
    • 2012-09-10
    • Liang-Wei HuangTzu-Han HsuChing-Yao SuHsuan-Ting Ho
    • Liang-Wei HuangTzu-Han HsuChing-Yao SuHsuan-Ting Ho
    • H04N5/775H04N5/765
    • H04N5/765G09G5/003G09G2370/12G09G2370/20H04N5/775H04N21/43635
    • The disclosure provides an electronic device and a network access module. The electronic device comprises: a multimedia processing module and a network access module. The multi-media processing module comprises a first network control circuit, and the network access module comprises: a second network control circuit, a third network control circuit, at least a fourth network control circuit, a network transmission unit, and a multiplexer. The multiplexer is utilized for selecting at least a multimedia connecting port from a plurality of multimedia connecting ports to connect to the at least a fourth network control circuit, so as to make at least a multimedia device connected to the at least a multimedia connecting port to connect to an external network and access the external network via the at least a fourth network control circuit, the network transmission unit, the third network control circuit, and the network connecting port.
    • 本公开提供一种电子设备和网络接入模块。 电子设备包括:多媒体处理模块和网络访问模块。 多媒体处理模块包括第一网络控制电路,并且网络访问模块包括:第二网络控制电路,第三网络控制电路,至少第四网络控制电路,网络传输单元和多路复用器。 多路复用器用于从多个多媒体连接端口中选择至少一个多媒体连接端口以连接至该第四网络控制电路,从而使至少一个连接至多个多媒体连接端口的多媒体设备 连接到外部网络,并经由至少第四网络控制电路,网络传输单元,第三网络控制电路和网络连接端口访问外部网络。
    • 7. 发明授权
    • Data transmitting and receiving method and device for communication and system thereof
    • 用于通信的数据发送和接收方法和装置及其系统
    • US08665933B2
    • 2014-03-04
    • US13117699
    • 2011-05-27
    • Liang-Wei HuangMei-Chao YehTzu-Han HsuLi-Han Liang
    • Liang-Wei HuangMei-Chao YehTzu-Han HsuLi-Han Liang
    • H04B1/38
    • H04L25/03885H04L25/03343
    • A data transmitting and receiving device and method are used for saving powers and maintaining the connection quality, stability and continuous link. The method includes the step of gradually adjusting the de-emphasis of the signal transmitted from the data transmitting and receiving device according to the setting value thereof. The method also includes the steps of transmitting training sequence signal with an amplitude and the default de-emphasis by the data transmitting and receiving device to the remote device, receiving the training sequence signal from the remote device, thereby the channel attenuation is estimated using the method, and a better de-emphasis is set up. Then, the data transmitting and receiving device gradually increases the amplitude of the training sequence signal and re-transmits it until the remote device receives the training sequence signal transmitted therefrom.
    • 数据发送和接收设备和方法用于节省功率并保持连接质量,稳定性和连续性。 该方法包括根据其设定值逐渐调整从数据发送接收装置发送的信号的去加重的步骤。 该方法还包括将数据发送和接收设备的振幅和默认去加重的训练序列信号发送到远程设备的步骤,从远程设备接收训练序列信号,从而使用 方法,并建立更好的去重视。 然后,数据发送接收装置逐渐增加训练序列信号的振幅,并重新发送,直到远程装置接收到从其发送的训练序列信号。
    • 8. 发明申请
    • DATA TRANSMITTING AND RECEIVING METHOD AND DEVICE FOR COMMUNICATION AND SYSTEM THEREOF
    • 数据发送和接收方法及其通信系统及其系统
    • US20110299578A1
    • 2011-12-08
    • US13117699
    • 2011-05-27
    • Liang-Wei HuangMei-Chao YehTzu-Han HsuLi-Han Liang
    • Liang-Wei HuangMei-Chao YehTzu-Han HsuLi-Han Liang
    • H04B1/38H04L27/01
    • H04L25/03885H04L25/03343
    • A data transmitting and receiving device and method are used for saving powers and maintaining the connection quality, stability and continuous link. The method includes the step of gradually adjusting the de-emphasis of the signal transmitted from the data transmitting and receiving device according to the setting value thereof. The method also includes the steps of transmitting training sequence signal with an amplitude and the default de-emphasis by the data transmitting and receiving device to the remote device, receiving the training sequence signal from the remote device, thereby the channel attenuation is estimated using the method, and a better de-emphasis is set up. Then, the data transmitting and receiving device gradually increases the amplitude of the training sequence signal and re-transmits it until the remote device receives the training sequence signal transmitted therefrom.
    • 数据发送和接收设备和方法用于节省功率并保持连接质量,稳定性和连续性。 该方法包括根据其设定值逐渐调整从数据发送接收装置发送的信号的去加重的步骤。 该方法还包括将数据发送和接收设备的振幅和默认去加重的训练序列信号发送到远程设备的步骤,从远程设备接收训练序列信号,从而使用 方法,并建立更好的去重视。 然后,数据发送接收装置逐渐增加训练序列信号的振幅,并重新发送,直到远程装置接收到从其发送的训练序列信号。
    • 9. 发明申请
    • TRANSCEIVER WITHOUT USING A CRYSTAL OSCILLATOR
    • 收发器不使用水晶振荡器
    • US20130128933A1
    • 2013-05-23
    • US13609275
    • 2012-09-11
    • Ming-Feng HsuKai-Yin LiuTzu-Han HsuYuan-Jih Chu
    • Ming-Feng HsuKai-Yin LiuTzu-Han HsuYuan-Jih Chu
    • H04B1/40
    • H04L12/6418
    • A transceiver includes a transceiver and a clock generation unit. The clock generation unit includes a clock generator, a multiplexer, and a frequency difference detector. The transceiver exchanges data with a link partner according to a first clock generated by a phase-locked loop. The clock generator is used for generating and outputting a second clock. The multiplexer is used for receiving a calibration clock or a receiver clock of the link partner, and outputting the calibration clock or the receiver clock of the link partner. The frequency difference detector is used for generating a difference signal according to a difference between the calibration clock and the second clock, or a difference between the receiver clock of the link partner and the second clock. The clock generator adjusts the shift of the second clock according to the difference signal. The phase-locked loop generates the first clock according to the second clock.
    • 收发器包括收发器和时钟生成单元。 时钟生成单元包括时钟发生器,多路复用器和频率差检测器。 收发器根据由锁相环生成的第一时钟与链路伙伴交换数据。 时钟发生器用于产生和输出第二个时钟。 多路复用器用于接收链路伙伴的校准时钟或接收机时钟,并输出链路伙伴的校准时钟或接收机时钟。 频差检测器用于根据校准时钟和第二时钟之间的差异或链路伙伴的接收机时钟与第二时钟之间的差产生差分信号。 时钟发生器根据差信号调节第二时钟的移位。 锁相环根据第二个时钟产生第一个时钟。