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    • 76. 发明授权
    • Audio and music data transmission medium and transmission protocol
    • 音频和音乐数据传输介质和传输协议
    • US09087552B2
    • 2015-07-21
    • US14262886
    • 2014-04-28
    • Avid Technology, Inc.
    • John C. Weitz
    • G06F17/00G11B20/10H04H60/04
    • G11B20/10527H04H60/04
    • A transmission medium and protocol is provided for bi-directional communication between an audio system and a peripheral device. The transmission medium includes a communication medium for communicating data and a communication medium for communicating a clock signal that corresponds to a transmission rate of bits on the other communication media. By transmitting the clock signal on a separate communication medium from the data, clock recovery is avoided. There may be multiple clock domains. By having multiple clock domains, multiple sample rates can be supported. Synchronization information is embedded in the signal by using run length limiting markers between the data for each channel and a synchronization word having more consecutive zero bits than the number of bits for each channel. One or more channels may be dedicated to providing control and status information.
    • 提供传输介质和协议用于音频系统和外围设备之间的双向通信。 传输介质包括用于传送数据的通信介质和用于传送对应于其它通信介质上的位传输速率的时钟信号的通信介质。 通过在单独的通信介质上从数据发送时钟信号,避免了时钟恢复。 可能有多个时钟域。 通过拥有多个时钟域,可以支持多个采样率。 通过使用每个通道的数据之间的游程长度限制标记和具有比每个通道的位数更多的连续零比特的同步字来将同步信息嵌入在信号中。 一个或多个信道可以专用于提供控制和状态信息。
    • 78. 发明申请
    • INTERCONNECTED MULTIMEDIA SYSTEMS WITH SYNCHRONIZED PLAYBACK OF MEDIA STREAMS
    • 具有同步回放媒体流的互连多媒体系统
    • US20150063774A1
    • 2015-03-05
    • US14013384
    • 2013-08-29
    • Avid Technology, Inc.
    • Robert M. Brown, JR.
    • G11B27/19
    • G11B27/19G11B27/10G11B27/3045H04N5/76H04N21/4307H04N21/4622
    • Synchronous playback of time-based media received from one or more locations remote from a primary editing/mixing studio is achieved by time-stamping media samples with a local presentation time before streaming them to the primary studio. At the primary studio, samples having the same presentation timestamp are played back at the same time, independently of the samples' arrival time at the playback system. Media stored locally to the playback system may also be included as part of the synchronous playback using locally computed presentation times. In order to accommodate media streaming transmission delays, the playback system negotiates a suitable delay with the remote systems such that samples corresponding to a given presentation time are received at the playback system from remote locations prior to playback of media corresponding to the given presentation time.
    • 从远离主要编辑/混音工作室的一个或多个位置接收到的基于时间的媒体的同步播放通过在将它们传送到主演播室之前用本地呈现时间对媒体样本进行时间戳记来实现。 在主要演播室,与播放系统的样本到达时间无关,同时播放具有相同呈现时间戳的样本。 本地存储在播放系统中的媒体也可以作为使用本地计算的呈现时间的同步回放的一部分被包括。 为了适应媒体流传输延迟,播放系统与远程系统协商合适的延迟,使得对应于给定呈现时间的样本在播放与给定呈现时间相对应的媒体播放之前从远程位置在播放系统处被接收。
    • 80. 发明授权
    • Audio and music data transmission medium and transmission protocol
    • 音频和音乐数据传输介质和传输协议
    • US08712562B1
    • 2014-04-29
    • US10342963
    • 2003-01-15
    • John C. Weitz
    • John C. Weitz
    • G06F17/00
    • G11B20/10527H04H60/04
    • A transmission medium and protocol is provided for bi-directional communication between an audio system and a peripheral device. The transmission medium includes a communication medium for communicating data and a communication medium for communicating a clock signal that corresponds to a transmission rate of bits on the other communication media. By transmitting the clock signal on a separate communication medium from the data, clock recovery is avoided. There may be multiple clock domains. By having multiple clock domains, multiple sample rates can be supported. Synchronization information is embedded in the signal by using run length limiting markers between the data for each channel and a synchronization word having more consecutive zero bits than the number of bits for each channel. One or more channels may be dedicated to providing control and status information.
    • 提供传输介质和协议用于音频系统和外围设备之间的双向通信。 传输介质包括用于传送数据的通信介质和用于传送对应于其它通信介质上的位传输速率的时钟信号的通信介质。 通过在单独的通信介质上从数据发送时钟信号,避免了时钟恢复。 可能有多个时钟域。 通过拥有多个时钟域,可以支持多个采样率。 通过使用每个通道的数据之间的游程长度限制标记和具有比每个通道的位数更多的连续零比特的同步字来将同步信息嵌入在信号中。 一个或多个信道可以专用于提供控制和状态信息。