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    • 2. 发明授权
    • Method and apparatus for signal power loss reduction in RF communication systems
    • RF通信系统信号功率损耗降低的方法和装置
    • US08320847B2
    • 2012-11-27
    • US11559382
    • 2006-11-13
    • David J. WeberManolis TerrovitisDavid K. Su
    • David J. WeberManolis TerrovitisDavid K. Su
    • H04B1/02
    • H04B7/04Y02D70/444
    • Multiple power amplifiers in an RF front end are coupled to multiple antennas without diversity switching between the PAs and antennas. Diversity switches direct signals to broadcast by a selected antenna to a PA coupled to the selected antenna. Multiple LNAs are similarly coupled to the diverse antennas. Having one PA and LNA set for each antenna removes the need for diversity switching between the PA/LNAs and each antenna improving signal reception. In one embodiment, a single external PA performs broadcast functions and plural on-chip LNAs are used for reception. In another embodiment, phase shifters are coupled to each PA and LNA, which provide beam forming capability for broadcasts, and in phase signal combinations for received signals.
    • RF前端中的多个功率放大器耦合到多个天线,而不需要PA和天线之间的分集切换。 分集将直接信号通过所选天线广播到耦合到所选天线的PA。 多个LNA类似地耦合到多个天线。 为每个天线设置一个PA和LNA消除了PA / LNA之间的分集切换和每个天线改善信号接收的需要。 在一个实施例中,单个外部PA执行广播功能,并且多个片上LNA被用于接收。 在另一个实施例中,移相器耦合到每个PA和LNA,其提供用于广播的波束形成能力,以及用于接收信号的相位信号组合。
    • 4. 发明授权
    • Method and apparatus for signal power loss reduction in RF communication systems
    • RF通信系统信号功率损耗降低的方法和装置
    • US07590390B2
    • 2009-09-15
    • US11624669
    • 2007-01-18
    • David J. WeberManolis TerrovitisDavid K. Su
    • David J. WeberManolis TerrovitisDavid K. Su
    • H04B1/44
    • H04B7/04Y02D70/444
    • Multiple power amplifiers in an RF front end are coupled to multiple antennas without diversity switching between the PAs and antennas. Diversity switches direct signals to broadcast by a selected antenna to a PA coupled to the selected antenna. Multiple LNAs are similarly coupled to the diverse antennas. Having one PA and LNA set for each antenna removes the need for diversity switching between the PA/LNAs and each antenna improving signal reception. In one embodiment, a single external PA performs broadcast functions and plural on-chip LNAs are used for reception. In another embodiment, phase shifters are coupled to each PA and LNA, which provide beam forming capability for broadcasts, and in phase signal combinations for received signals.
    • RF前端中的多个功率放大器耦合到多个天线,而无需在PA和天线之间进行分集切换。 分集将直接信号通过所选天线广播到耦合到所选天线的PA。 多个LNA类似地耦合到多个天线。 为每个天线设置一个PA和LNA消除了PA / LNA之间的分集切换和每个天线改善信号接收的需要。 在一个实施例中,单个外部PA执行广播功能,并且多个片上LNA被用于接收。 在另一个实施例中,移相器耦合到每个PA和LNA,其提供用于广播的波束形成能力,以及用于接收信号的相位信号组合。
    • 5. 发明授权
    • Sleep clock error recovery scheme
    • 休眠时钟错误恢复方案
    • US08504889B2
    • 2013-08-06
    • US12945067
    • 2010-11-12
    • Paul J. HustedWilliam J. McFarlandDavid K. Su
    • Paul J. HustedWilliam J. McFarlandDavid K. Su
    • H04L1/18
    • H04W56/0015H04W52/0216Y02D70/142Y02D70/144Y02D70/164
    • A wireless device includes a functional unit, a wireless transceiver, an antenna and a clock. The wireless transceiver and antenna are coupled to the functional unit. The clock is coupled to the functional unit and the wireless transceiver. The clock is generates a clock signal. The wireless device is coupled wirelessly to a wireless slave device. The functional unit is configured to determine an amount of time since a last keep alive transmission with the slave device has occurred based on the clock. The functional unit determines a number of keep alive transmissions to transmit to the slave device, and appropriate transmission times for the keep alive transmissions relative to a next scheduled keep alive transmission time, based on the determined amount of time since the last keep alive transmission. The functional unit begins successive transmission of the keep alive transmissions to the slave device per the transmission times.
    • 无线设备包括功能单元,无线收发器,天线和时钟。 无线收发器和天线耦合到功能单元。 时钟耦合到功能单元和无线收发器。 时钟产生时钟信号。 无线设备被无线耦合到无线从设备。 功能单元被配置为基于时钟来确定与从设备的最后一次保持传输相关的时间量。 功能单元基于自从上一次保持活动传输以来确定的时间量,确定要传送到从设备的多个保持活动传输以及相对于下一个预定保持传送时间的保持传送的适当传输时间。 功能单元根据传输时间开始向从设备继续传输保持传送。
    • 6. 发明申请
    • Sleep Clock Error Recovery Scheme
    • 睡眠时钟错误恢复方案
    • US20120124444A1
    • 2012-05-17
    • US12945067
    • 2010-11-12
    • Paul J. HustedWilliam J. McFarlandDavid K. Su
    • Paul J. HustedWilliam J. McFarlandDavid K. Su
    • G06F1/04H04L1/18G06F11/14G06F1/12
    • H04W56/0015H04W52/0216Y02D70/142Y02D70/144Y02D70/164
    • A wireless device includes a functional unit, a wireless transceiver, an antenna and a clock. The wireless transceiver and antenna are coupled to the functional unit. The clock is coupled to the functional unit and the wireless transceiver. The clock is generates a clock signal. The wireless device is coupled wirelessly to a wireless slave device. The functional unit is configured to determine an amount of time since a last keep alive transmission with the slave device has occurred based on the clock. The functional unit determines a number of keep alive transmissions to transmit to the slave device, and appropriate transmission times for the keep alive transmissions relative to a next scheduled keep alive transmission time, based on the determined amount of time since the last keep alive transmission. The functional unit begins successive transmission of the keep alive transmissions to the slave device per the transmission times.
    • 无线设备包括功能单元,无线收发器,天线和时钟。 无线收发器和天线耦合到功能单元。 时钟耦合到功能单元和无线收发器。 时钟产生时钟信号。 无线设备被无线耦合到无线从设备。 功能单元被配置为基于时钟来确定与从设备的最后一次保持传输相关的时间量。 功能单元基于自从上一次保持活动传输以来确定的时间量,确定要传送到从设备的多个保持活动传输以及相对于下一个预定保持传送时间的保持传送的适当传输时间。 功能单元根据传输时间开始向从设备继续传输保持传送。
    • 7. 发明授权
    • Cancellation of spectral images in communication devices
    • 消除通信设备中的光谱图像
    • US08565707B2
    • 2013-10-22
    • US13272872
    • 2011-10-13
    • Amirpouya KavousianDavid K. Su
    • Amirpouya KavousianDavid K. Su
    • H04B1/10
    • H04B1/109
    • Digital-to-analog conversion in a communication device typically results in superimposed spectral images in the frequency spectrum of the analog waveform. These superimposed spectral images can distort the analog waveform and potentially violate the spectral mask and the constraints on out-of-band emissions set by the FCC. The communication device can be configured to implement a spectral image cancellation unit with feed-forward architecture to minimize the spectral images in the frequency spectrum of the analog waveform. The spectral image cancellation unit can generate a spectral image error signal comprising the spectral images at one or more spectral image frequencies. The spectral image cancellation unit can then subtract the spectral image error signal from the analog waveform to reduce spectral image components of the analog waveform and to yield an output signal for transmission.
    • 在通信设备中的数模转换通常在模拟波形的频谱中产生叠加的光谱图像。 这些叠加的光谱图像可能使模拟波形失真,并可能违反频谱掩模和由FCC设定的带外发射限制。 通信设备可以被配置为实现具有前馈架构的频谱图像消除单元,以最小化模拟波形的频谱中的频谱图像。 光谱图像消除单元可以产生包括在一个或多个光谱图像频率处的光谱图像的光谱图像误差信号。 然后,光谱图像消除单元可以从模拟波形中减去光谱图像误差信号,以减少模拟波形的光谱图像分量,并产生用于传输的输出信号。
    • 9. 发明授权
    • Differential mixer with improved linearity
    • 差分混频器具有提高的线性度
    • US06242963B1
    • 2001-06-05
    • US09392982
    • 1999-09-09
    • David K. SuMasoud Zargari
    • David K. SuMasoud Zargari
    • G06F712
    • H03D7/1441H03D7/1408H03D7/1458H03D7/1491H03D2200/0043
    • A mixing apparatus includes a Gilbert cell connected to a first load and a second load. In one embodiment each load contains transistors that are configured as a diode and a triode, where these circuits are additively combined to achieve substantially linear voltage-current characteristics over a predetermined range. The mixing apparatus takes two pairs of differential inputs and produces a pair of differential outputs. Because of the substantial linearity of the loads, the inputs and outputs of the mixing apparatus are acceptable over a relatively large range of input settings. In other embodiments each load may contain a transistor configured as a triode and a resistor, where these circuits are likewise additively combined to achieve substantially linear voltage-current characteristics over a predetermined range.
    • 混合装置包括连接到第一负载和第二负载的吉尔伯特电池。 在一个实施例中,每个负载包含配置为二极管和三极管的晶体管,其中这些电路被加法组合以在预定范围内实现基本上线性的电压 - 电流特性。 混合装置采用两对差分输入,并产生一对差分输出。 由于负载的实质线性,混合装置的输入和输出在相对大的输入设置范围内是可以接受的。 在其他实施例中,每个负载可以包含配置为三极管和电阻器的晶体管,其中这些电路同样地被加法组合以在预定范围内实现基本上线性的电压 - 电流特性。