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    • 4. 发明授权
    • Method and system for multi-radio coexistence and a collaborative interface
    • 用于多无线电共存的方法和系统以及协作接口
    • US08345704B2
    • 2013-01-01
    • US11950559
    • 2007-12-05
    • Prasanna DesaiBrima IbrahimJohn WalleyGang Lu
    • Prasanna DesaiBrima IbrahimJohn WalleyGang Lu
    • H04L12/40
    • H04B1/0067H04B1/0064H04B1/0475H04B1/40H04W72/02H04W88/06
    • Aspects of a method and system for multi-radio coexistence and a collaborative interface may include exchanging information between a plurality of radio transceivers integrated within a single device to enable coexistence, and coordinating sharing of transmit and receive resources between the plurality of radio transceivers by controlling access to the transmit and receive resources, where any one of the plurality of radio transceivers may be enabled to be selected to control the access based on the exchanged information. Selecting one of the radio transceivers for the controlling of the access band may be based on processing capability or priority of communication. The resources may comprise frequency bands, time slots, and antenna access. The information may be exchanged via a serial bus between the plurality of radio transceivers, where the serial bus may conform to an I2C (I-square-C) multi-master serial bus. Each of the radio transceivers may conform to one or more radio frequency technology.
    • 用于多无线电共存和协作接口的方法和系统的方面可以包括在集成在单个设备内的多个无线电收发器之间交换信息以实现共存,以及通过控制来协调多个无线电收发器之间的发送和接收资源的共享 访问发送和接收资源,其中可以使多个无线收发器中的任一个能够被选择以基于所交换的信息来控制访问。 选择用于控制接入频带的无线电收发机之一可以基于处理能力或通信的优先级。 资源可以包括频带,时隙和天线接入。 信息可以通过串行总线在多个无线电收发器之间交换,其中串行总线可以符合I2C(I-square-C)多主机串行总线。 每个无线电收发器可以符合一个或多个射频技术。
    • 6. 发明申请
    • METHOD AND SYSTEM FOR SIGNAL STRENGTH MEASUREMENT
    • 信号强度测量方法与系统
    • US20120003942A1
    • 2012-01-05
    • US12878771
    • 2010-09-09
    • Norbert GrunertBrima IbrahimSiukai MakHea Joung KimAmir IbrahimThomas Baker
    • Norbert GrunertBrima IbrahimSiukai MakHea Joung KimAmir IbrahimThomas Baker
    • H04W24/00
    • H04W16/14H04W72/082
    • In a radio comprising a transmitter and a receiver, transmission and reception of signals may be controlled based on received signal strength measurements from a signal strength indicator module and transmitted signal strength measurements from the signal strength indicator module. For the transmitted signal strength measurements, the shared signal strength indicator module may measure signal strength of a signal output by a power amplifier. For the received signal strength measurements, the shared signal strength indicator module may measure signal strength of a received signal. A capacitance coupled to an output of the power amplifier may be configured based on a frequency of the signal output by the power amplifier. A gain of the power amplifier may be controlled based on the transmitted signal strength measurements. For the transmitted signal strength measurements, an analog-to-digital converter may process the signal output by the power amplifier.
    • 在包括发射机和接收机的无线电设备中,可以基于来自信号强度指示器模块的接收信号强度测量值和来自信号强度指示器模块的发射信号强度测量值来控制信号的发送和接收。 对于发射信号强度测量,共享信号强度指示器模块可以测量由功率放大器输出的信号的信号强度。 对于接收的信号强度测量,共享信号强度指示器模块可以测量接收信号的信号强度。 可以基于由功率放大器输出的信号的频率来配置耦合到功率放大器的输出的电容。 功率放大器的增益可以基于传输的信号强度测量来控制。 对于发射信号强度测量,模数转换器可以处理由功率放大器输出的信号。
    • 10. 发明授权
    • Method and system for frequency feedback adjustment in digital receivers
    • 数字接收机频率反馈调整方法及系统
    • US08050647B2
    • 2011-11-01
    • US12563765
    • 2009-09-21
    • Brima IbrahimHea Joung KimHenrik Tholstrup Jensen
    • Brima IbrahimHea Joung KimHenrik Tholstrup Jensen
    • H04B1/20
    • H03J7/02H03J2200/02H04L25/063H04L27/142H04L2027/0057H04L2027/0065
    • In RF transceivers, a method and a system for a frequency feedback adjustment in digital receivers are provided. A DC offset may result from the difference in frequencies between an RF transmitter and an RF receiver. An adjustment of the receiver's frequency may be implemented after synchronization occurs and may be performed by, for example, utilizing a header portion of a packet communicated via a wireless interface. The adjustment may be performed when the frequency difference exceeds a threshold value. In another aspect, adjusting the frequency of the RF receiver may be performed by modifying and/or changing a phase locked loop (PLL) trimmer register. This approach may allow an RF receiver to operate, in some instances, without the need for an equalizer. In this regard, the power consumed by the RF receiver may be minimized and/or the overall cost of the RF receiver may be reduced.
    • 在RF收发器中,提供了用于数字接收机中的频率反馈调整的方法和系统。 DC偏移可能由RF发射机和RF接收机之间的频率差引起。 接收机频率的调整可以在同步发生之后实现,并且可以通过例如利用经由无线接口传送的分组的报头部分来执行。 当频率差超过阈值时,可以进行调整。 在另一方面,可以通过修改和/或改变锁相环(PLL)微调寄存器来调整RF接收机的频率。 这种方法可以允许RF接收机在某些情况下操作,而不需要均衡器。 在这方面,RF接收机消耗的功率可以被最小化,和/或可以降低RF接收机的总体成本。