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    • 1. 发明申请
    • APPARATUS AND METHODS FOR USB CONNECTION IN A MULTI-PROCESSOR DEVICE
    • 用于多处理器设备中的USB连接的装置和方法
    • WO2011063379A1
    • 2011-05-26
    • PCT/US2010/057743
    • 2010-11-23
    • QUALCOMM INCORPORATEDMALAMANT, IgorBHAVANSIKAR, RaghavendarKOLOR, Sergio
    • MALAMANT, IgorBHAVANSIKAR, RaghavendarKOLOR, Sergio
    • G06F13/38G06F1/32H04M1/72
    • G06F13/385G06F1/3203G06F1/325G06F1/3287G06F2213/3814Y02D10/151Y02D10/171
    • Disclosed are apparatus and methods for use in a USB device with multiple processors, allowing shared USB connectivity in the device. The disclosed apparatus and methods allow selective coupling of a first processor to a USB port of the device or to a USB hub operable to route a plurality of USB connections including connection of a second processor to the port. Providing selective coupling of the processors to the port by switching the coupling of the first processor and selectively powering the hub on and off for selective coupling of the second processor, thereby selectively enabling tethered networking such as wireless networking, affords increased power savings in the device. Furthermore, default coupling of the first processor to the port allows for USB battery charger detection, or direct connectivity to USB peripheral devices, as well as providing programming capability via the default coupling of the port to the first processor.
    • 公开了在具有多个处理器的USB设备中使用的设备和方法,允许在设备中共享USB连接。 所公开的装置和方法允许将第一处理器选择性地耦合到设备的USB端口或者可操作地将多个USB连接路由到包括第二处理器的连接到端口的USB集线器。 通过切换第一处理器的耦合并选择性地为集线器接通和关闭来为第二处理器的选择性耦合提供处理器到端口的选择性耦合,从而选择性地实现诸如无线联网之类的系统联网,从而在设备中增加功率节省 。 此外,第一处理器与端口的默认耦合允许USB电池充电器检测,或直接连接到USB外围设备,以及通过端口与第一处理器的默认耦合来提供编程能力。
    • 5. 发明申请
    • MINIMISING INTERFERENCE BY TIME DIVISION MULTIPLEXING OF IEEE 802.11 AND CDMA TRANSMISSIONS
    • 通过IEEE 802.11和CDMA传输的时间分段多路复用最小化干扰
    • WO2003067827A1
    • 2003-08-14
    • PCT/US2003/003488
    • 2003-02-04
    • QUALCOMM, INCORPORATED
    • EITAN, AlecsanderKOLOR, Sergio
    • H04L12/28
    • H04W72/1215H04W88/06H04W88/10
    • A method for preventing interference between electromagnetic (EM) signals, consisting of toggling a first transceiver, adapted to transmit in a first EM frequency band, and a second transceiver, adapted to transmit in a second EM frequency band, different from the first EM frequency band, between an on-period when the first transceiver is able to transmit and the second transceiver is prevented from transmitting, and an off-period when the first transceiver is prevented from transmitting and the second transceiver is able to transmit. The method further includes inhibiting a third transceiver, adapted to transmit in the first EM band, from transmitting during the off-period, and inhibiting a fourth transceiver, adapted to transmit in the second EM band, from transmitting during the on-period.
    • 一种用于防止电磁(EM)信号之间的干扰的方法,包括适于在第一EM频带中发射的第一收发器和适于在第二EM频带中发射的与第一EM频率不同的第二收发器 在第一收发器能够发送的接通周期和第二收发器被阻止发送之间的时段,以及当第一收发器被阻止发送并且第二收发器能够发送时的截止周期。 该方法还包括禁止适于在第一EM频带内发射的第三收发器在关闭周期期间的发射,以及禁止适于在第二EM频带中传输的第四收发器在接通周期期间的发射。
    • 6. 发明申请
    • FAST LINK TRAINING IN EMBEDDED SYSTEMS
    • 嵌入式系统中的快速链接培训
    • WO2016114873A1
    • 2016-07-21
    • PCT/US2015/064913
    • 2015-12-10
    • QUALCOMM INCORPORATED
    • ACHLAUG, NabeelGERBER, NirKOLOR, SergioVARDI, Dan
    • G06F13/42
    • G06F13/385G06F13/4291G06F13/4295G06F2213/0026Y02D10/14Y02D10/151
    • Fast link training in embedded systems is disclosed. In one aspect, a host takes advantage of situations in which the host is coupled to one or more static devices through a communication bus. In particular, because the one or more devices are static, the host may be provided with information about the one or more devices before start up, so that when the host does perform a start up, the host already knows which device(s) to expect. Accordingly, the host may directly query the expected device(s), and after receipt of response(s) from the expected device(s), may begin link training the expected device(s). By using the provided information about the expected device(s) in this fashion, the host may bypass or skip an initial signal detection step used by conventional link training processes. Bypassing the initial signal detection step may save time, which in turn saves power.
    • 披露了嵌入式系统中的快速链接训练。 在一个方面,主机利用主机通过通信总线耦合到一个或多个静态设备的情况。 特别地,因为一个或多个设备是静态的,所以主机可以在启动之前被提供关于一个或多个设备的信息,使得当主机执行启动时,主机已经知道哪个设备 期望。 因此,主机可以直接查询所期望的设备,并且在从预期设备接收到响应之后,可以开始链接训练期望的设备。 通过以这种方式使用关于预期设备的提供的信息,主机可以绕过或跳过常规链路训练过程所使用的初始信号检测步骤。 绕过初始信号检测步骤可以节省时间,从而节省电力。