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    • 3. 发明申请
    • Active Auxiliary Channel Buffering
    • 主动辅助通道缓冲
    • US20110150055A1
    • 2011-06-23
    • US12645240
    • 2009-12-22
    • Ming QuZhengyu YuanKochung Lee
    • Ming QuZhengyu YuanKochung Lee
    • H04B1/38
    • G09G5/006G09G2330/021G09G2350/00G09G2370/045G09G2370/10H04L65/4023H04L65/4092H04L67/34
    • A system and a method for communicating configuration data between a source device and a sink are described. An active buffer receives data from an auxiliary communication channel which communicates data between the source device and the sink device. The active buffer modifies data received from the auxiliary communication channel. For example, the active buffer amplifies the received data or electrically reshapes the received data. The modified data is then transmitted from the active buffer to a destination device. In one embodiment, the auxiliary communication channel is bi-directional and upon receiving data from a first device, the active buffer is modified to permit uni-directional transmission of data from the first device to a second device.
    • 描述用于在源设备和宿之间传送配置数据的系统和方法。 主动缓冲器从辅助通信信道接收数据,该辅助通信信道在源设备和宿设备之间传送数据。 主动缓冲器修改从辅助通信信道接收到的数据。 例如,有源缓冲器放大所接收的数据或电接收数据。 然后将修改的数据从活动缓冲器发送到目的地设备。 在一个实施例中,辅助通信信道是双向的,并且在从第一设备接收数据时,主动缓冲器被修改以允许将数据从第一设备单向传输到第二设备。
    • 5. 发明授权
    • DisplayPort auxiliary channel active buffer with auxiliary channel/display data channel combiner for fast auxiliary channel
    • DisplayPort辅助通道主动缓冲器,辅助通道/显示数据通道组合器,用于快速辅助通道
    • US08144625B2
    • 2012-03-27
    • US12643759
    • 2009-12-21
    • Ming QuZhengyu YuanKochung Lee
    • Ming QuZhengyu YuanKochung Lee
    • H04L12/28H04L1/00H04L12/26H03K5/01G06F13/00
    • G06F3/14G09G5/003G09G5/363G09G2370/047G09G2370/12H04L43/16
    • A system and a method for exchanging communication data between devices using a bi-directional communication channel are disclosed. A combiner is coupled to a source device via first bi-directional configuration channel and to a sink device via a second bi-directional configuration channel. Upon receiving data from the first bi-directional configuration channel and not receiving data from the second bi-directional configuration channel, the combiner transmits the received data to the sink device using the second bi-directional configuration channel and prevents data transmission from the sink device to the source device using the second bi-directional configuration channel. Similarly, upon receiving data from the second bi-directional configuration channel and not receiving from the first bi-directional configuration channel, the combiner prevents data transmission from the source device to the sink device and transmits the received data to the source device using the first bi-directional configuration channel.
    • 公开了一种使用双向通信信道在设备之间交换通信数据的系统和方法。 组合器经由第一双向配置信道耦合到源设备,并经由第二双向配置信道耦合到宿设备。 在从第一双向配置信道接收数据并且没有从第二双向配置信道接收数据时,组合器使用第二双向配置信道将接收的数据发送到宿设备,并且防止从宿设备的数据传输 使用第二双向配置信道到源设备。 类似地,当从第二双向配置信道接收到数据并且没有从第一双向配置信道接收时,组合器防止从源设备到宿设备的数据传输,并且使用第一双向配置信道将接收到的数据发送到源设备 双向配置通道。