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    • 3. 发明申请
    • CONTACTLESS REPLACEMENT FOR CABLED STANDARDS-BASED INTERFACES
    • 基于标准接口的接口替换
    • US20130266026A1
    • 2013-10-10
    • US13760089
    • 2013-02-06
    • Gary D. McCormackIan A. Kyles
    • Gary D. McCormackIan A. Kyles
    • H04L29/06
    • H04B5/0031G06F13/00H04B5/0037H04B5/0075H04L29/06068H04L69/08
    • A contactless, electromagnetic (EM) replacement (substitute, alternative) for cabled (electric) Standards-based interfaces (such as, but not limited to USB) which effectively handles the data transfer requirements (such as bandwidth, speed, latency) associated with the Standard, and which is also capable of measuring and replicating relevant physical conditions (such as voltage levels) on data lines so as to function compatibly and transparently with the Standard. A contactless link may be provided between devices having transceivers. A non-conducting housing may enclose the devices. Some applications for the contactless (EM) interface are disclosed. A dielectric coupler facilitating communication between communications chips which are several meters apart. Conductive paths may provide power and ground for bus-powered devices.
    • 对于有效处理与之相关的数据传输要求(如带宽,速度,延迟)的电缆(电)基于标准的接口(例如但不限于USB)的非接触式,电磁(EM)替代(替代,替代) 标准,并且还能够测量和复制数据线上的相关物理条件(如电压电平),以便与标准兼容和透明地运行。 可以在具有收发器的设备之间提供非接触式链路。 不导电的外壳可能会封闭设备。 公开了用于非接触式(EM)接口的一些应用。 介质耦合器,其有助于彼此间隔数米的通信芯片之间的通信。 导电路径可为总线供电设备提供电源和接地。
    • 5. 发明申请
    • Tightly-coupled near-field communication-link connector-replacement chips
    • 紧耦合近场通信链路连接器替换芯片
    • US20100159829A1
    • 2010-06-24
    • US12655041
    • 2009-12-21
    • Gary D. McCormack
    • Gary D. McCormack
    • H04B5/00
    • H04B5/02
    • Tightly-coupled near-field transmitter/receiver pairs are deployed such that the transmitter is disposed at a terminal portion of a first conduction path, the receiver is disposed at a terminal portion of a second conduction path, the transmitter and receiver are disposed in close proximity to each other, and the first conduction path and the second conduction path are discontiguous with respect to each other. In some embodiments of the present invention, close proximity refers to the transmitter antenna and the receiver antenna being spaced apart by a distance such that, at wavelengths of the transmitter carrier frequency, near-field coupling is obtained. In some embodiments, the transmitter and receiver are disposed on separate substrates that are moveable relative to each other. In alternative embodiments, the transmitter and receiver are disposed on the same substrate.
    • 部署紧耦合的近场发射机/接收机对,使得发射机设置在第一传导路径的终端部分,接收机设置在第二传导路径的终端部分,发射机和接收机处于紧密状态 彼此接近,并且第一导电路径和第二导电路径彼此不连续。 在本发明的一些实施例中,靠近是指发射机天线和接收机天线间隔开一定距离,使得在发射机载波频率的波长处获得近场耦合。 在一些实施例中,发射器和接收器设置在可相对于彼此移动的分离的基板上。 在替代实施例中,发射器和接收器设置在同一衬底上。
    • 8. 发明申请
    • SMART CONNECTORS AND ASSOCIATED COMMUNICATIONS LINKS
    • 智能连接器和相关通信链接
    • US20140024314A1
    • 2014-01-23
    • US13969565
    • 2013-08-17
    • Gary D. McCormackIan A. KylesRoger D. Isaac
    • Gary D. McCormackIan A. KylesRoger D. Isaac
    • H04W76/04
    • H04W76/043H04B1/40H04B5/0031H04W52/0229H04W76/23H05K1/0243H05K1/0259H05K2201/10098Y02D70/142Y02D70/144Y02D70/166Y02D70/40Y02D70/42
    • “Smart” connectors with embedded processors, measurement circuits and control circuits are disclosed for establishing a “contactless” radio frequency (RF) electromagnetic (EM) Extremely High Frequency (EHF) communications link between two electronic devices having host systems. The connectors are capable of monitoring, controlling, and directing (managing) link operation to dynamically adapt to conditions, as well as monitoring and altering (or modifying) data passing through the connector, and selecting a protocol suitable for a communications session. The connectors are capable of identifying the type of content being transferred, providing authentication and security services, and enabling application support for the host systems based on the type of connection or the type of content. The connectors may operate independently of the host systems, and may perform at least one of sensing proximity of a nearby object; detecting a shape of a nearby object; and detecting vibrations.
    • 公开了具有嵌入式处理器,测量电路和控制电路的“智能”连接器,用于在具有主机系统的两个电子设备之间建立“非接触”射频(RF)电磁(EM)极高频(EHF)通信链路。 连接器能够监视,控制和指导(管理)链接操作以动态地适应条件,以及监视和改变(或修改)通过连接器的数据,并选择适合通信会话的协议。 连接器能够识别正在传送的内容的类型,提供认证和安全服务,并且基于连接的类型或内容的类型来为主机系统启用应用支持。 连接器可以独立于主机系统操作,并且可以执行感测邻近对象的接近中的至少一个; 检测附近物体的形状; 并检测振动。
    • 9. 发明申请
    • CONTACTLESS AUDIO ADAPTER, AND METHODS
    • 无接触音频适配器及方法
    • US20130266154A1
    • 2013-10-10
    • US13776727
    • 2013-02-26
    • Gary D. McCormackIan A. Kyles
    • Gary D. McCormackIan A. Kyles
    • H04R3/00
    • H04R3/00H01L2224/48137H01L2924/3011H01L2924/3025H01Q1/2283H04R2420/07H04R2420/09H01L2924/00
    • A contactless, electromagnetic (EM) replacement for cabled Standards-based interfaces (such as USB, I2S) which handles data transfer requirements associated with the Standard, and capable of measuring and replicating relevant physical conditions on data lines so as to function compatibly and transparently with the Standard. A contactless link between devices having transceivers. A non-conducting housing enclosing the devices. A dielectric coupler facilitating communication between communications chips. Conductive paths or an inductive link providing power between devices. An audio adapter communicates over a contactless link with a source device, and via a physical link with a destination device such as a conventional headset. Power may be provided to the adapter from the source device, and by the adapter to the destination device.
    • 用于处理与标准相关的数据传输需求的电缆标准接口(如USB,I2S)的非接触式电磁(EM)替换,能够测量和复制数据线上的相关物理条件,以便兼容和透明地运行 与标准。 具有收发器的设备之间的非接触式链路。 封闭设备的非导电外壳。 一种促进通信芯片之间通信的介质耦合器。 导电路径或在设备之间提供电力的感应链路。 音频适配器通过非接触式链路与源设备进行通信,并且经由与目标设备(例如常规耳机)的物理链路进行通信。 电源可以从源设备提供给适配器,并且可以由适配器提供给目标设备。
    • 10. 发明授权
    • Tightly-coupled near-field communication-link connector-replacement chips
    • 紧耦合近场通信链路连接器替换芯片
    • US08554136B2
    • 2013-10-08
    • US12655041
    • 2009-12-21
    • Gary D. McCormack
    • Gary D. McCormack
    • H04B5/00
    • H04B5/02
    • Tightly-coupled near-field transmitter/receiver pairs are deployed such that the transmitter is disposed at a terminal portion of a first conduction path, the receiver is disposed at a terminal portion of a second conduction path, the transmitter and receiver are disposed in close proximity to each other, and the first conduction path and the second conduction path are discontiguous with respect to each other. In some embodiments of the present invention, close proximity refers to the transmitter antenna and the receiver antenna being spaced apart by a distance such that, at wavelengths of the transmitter carrier frequency, near-field coupling is obtained. In some embodiments, the transmitter and receiver are disposed on separate substrates that are moveable relative to each other. In alternative embodiments, the transmitter and receiver are disposed on the same substrate.
    • 部署紧耦合的近场发射机/接收机对,使得发射机设置在第一传导路径的终端部分,接收机设置在第二传导路径的终端部分,发射机和接收机被紧密地设置 彼此接近,并且第一导电路径和第二导电路径彼此不连续。 在本发明的一些实施例中,靠近是指发射机天线和接收机天线间隔开一定距离,使得在发射机载波频率的波长处获得近场耦合。 在一些实施例中,发射器和接收器设置在可相对于彼此移动的分离的基板上。 在替代实施例中,发射器和接收器设置在同一衬底上。