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    • 2. 发明申请
    • RECEIVER WITH BALANCED I/Q TRANSFORMER
    • 接收器与平衡I / Q变压器
    • WO2010132870A1
    • 2010-11-18
    • PCT/US2010/035079
    • 2010-05-17
    • QUALCOMM IncorporatedCHANG, Li-ChungBHAGAT, Maulin P.LEE, HanilSRIDHARA, Ravi
    • CHANG, Li-ChungBHAGAT, Maulin P.LEE, HanilSRIDHARA, Ravi
    • H03D7/14
    • H03D7/1466H03D7/1458H03D7/165H03D2200/0082
    • A receiver with a balanced I/Q transformer is described. In an exemplary design, the receiver includes an LNA that amplifies a received RF signal and provides a single-ended RF signal to the balanced I/Q transformer. The balanced I/Q transformer includes at least one primary coil and first and second secondary coils. The first secondary coil is magnetically coupled to the at least one primary coil and provides a first differential RF signal to a first mixer. The second secondary coil is magnetically coupled to the at least one primary coil and provides a second differential RF signal to a second mixer. The first and second mixers downconvert the first and second differential RF signals with I and Q LO signals, respectively, and provide differential I and Q downconverted signals. The primary and secondary coils may be fabricated on two conductive layers of an integrated circuit.
    • 描述了具有平衡I / Q变压器的接收机。 在示例性设计中,接收机包括放大接收到的RF信号并向平衡I / Q变换器提供单端RF信号的LNA。 平衡I / Q变压器包括至少一个初级线圈和第一和第二次级线圈。 第一次级线圈磁耦合到至少一个初级线圈,并向第一混频器提供第一差分RF信号。 第二次级线圈磁耦合到至少一个初级线圈,并将第二差分RF信号提供给第二混频器。 第一和第二混频器分别用I和Q LO信号下变频第一和第二差分RF信号,并提供差分I和Q下变频信号。 初级和次级线圈可以制造在集成电路的两个导电层上。
    • 3. 发明申请
    • METHOD AND APPARATUS FOR PROCESSING A COMMUNICATION SIGNAL IN A RECEIVER
    • 在接收机中处理通信信号的方法和装置
    • WO2009129330A1
    • 2009-10-22
    • PCT/US2009/040701
    • 2009-04-15
    • QUALCOMM INCORPORATEDGUDEM, Prasad, S.CABANILLAS, JoseCHANG, Li-ChungLIU, Li
    • GUDEM, Prasad, S.CABANILLAS, JoseCHANG, Li-ChungLIU, Li
    • H04B1/10
    • H04B1/109H03F1/3205H03F1/3211H03F3/193H03F3/245
    • A receiver includes a jammer detector configured to detect the presence or the absence of jamming in a communication signal within a gain state. The receiver further includes an amplifier configured to amplify the communication signal in a high linearity receiving mode or a low linearity receiving mode, wherein the high linearity receiving mode corresponds with a lower gain for the gain state in the amplifier relative to that of the low linearity receiving mode. In addition, the receiver includes a processing unit coupled to the jammer detector, the processing unit being configured to control the amplifier to amplify the communication signal in either the high linearity receiving mode or the low linearity receiving mode, based on the output of the jammer detector detecting the presence or the absence of jamming in the communication signal. A method is also provided for processing a communication signal in a receiver.
    • 接收机包括干扰检测器,其被配置为检测在增益状态内的通信信号中存在或不存在干扰。 接收器还包括放大器,被配置为以高线性度接收模式或低线性度接收模式放大通信信号,其中高线性度接收模式对应于放大器相对于低线性度的增益状态的较低增益 接收模式。 此外,接收机包括耦合到干扰检测器的处理单元,该处理单元被配置为基于干扰信号的输出来控制放大器以高线性接收模式或低线性接收模式放大通信信号 检测器检测通信信号中是否存在干扰。 还提供了一种用于处理接收机中的通信信号的方法。
    • 8. 发明申请
    • MULTI-LINEARITY MODE LNA HAVING A DEBOOST CURRENT PATH
    • 具有DEBOOST电流路径的多线性模式LNA
    • WO2009088813A2
    • 2009-07-16
    • PCT/US2008/088382
    • 2008-12-27
    • QUALCOMM IncorporatedCHANG, Li-chung
    • CHANG, Li-chung
    • H03F1/32
    • H03F1/3205H03F1/223H03F1/3252H03F3/72H03F2200/492
    • A modified derivative superposition (MDS) low noise amplifier (LNA) includes a main current path and a cancel current path. Third-order distortion in the cancel path is used to cancel third-order distortion in the main path. In one novel aspect, there is a separate source degeneration inductor for each of the two current paths, thereby facilitating tuning of one current path without affecting the other current path. In a second novel aspect, a deboost current path is provided that does not pass through the LNA load. The deboost current allows negative feedback to be increased without generating headroom problems. In a third novel aspect, the cancel current path and/or deboost current path is programmably disabled to reduce power consumption and improve noise figure in operational modes that do not require high linearity.
    • 修正导数叠加(MDS)低噪声放大器(LNA)包括主电流路径和消除电流路径。 取消路径中的三阶失真用于消除主路径中的三阶失真。 在一个新颖的方面,对于两个电流路径中的每一个,存在单独的源极退化电感器,从而有助于调谐一个电流路径而不影响另一个电流路径。 在第二个新颖的方面,提供了不穿过LNA负载的去桥电流路径。 去抖动电流允许增加负反馈而不产生余量问题。 在第三个新颖的方面,消除电流路径和/或去桥电流路径可编程地被禁用以降低功耗并改善不需要高线性度的操作模式中的噪声系数。
    • 10. 发明申请
    • RECEIVER WITH BYPASS MODE FOR IMPROVED SENSITIVITY
    • 接收器采用旁路模式提高灵敏度
    • WO2013003820A1
    • 2013-01-03
    • PCT/US2012/045129
    • 2012-06-29
    • QUALCOMM IncorporatedGUDEM, Prasad Srinivasa SivaKADOUS, Tamer AdelVERMA, SumitCHANG, Li-Chung
    • GUDEM, Prasad Srinivasa SivaKADOUS, Tamer AdelVERMA, SumitCHANG, Li-Chung
    • H04B1/10H04B1/52
    • H04B1/525H04B1/109H04B1/70712
    • A receiver with bypass mode for improved sensitivity is disclosed. An apparatus is provided that includes a non-bypass signal path coupled to a receiver, the non-bypass signal path comprising a filter, a bypass signal path coupled to the receiver, the bypass signal path configure to bypass the filter, and a switch configured to couple an antenna to the non-bypass signal path during time intervals when signals transmitted by a related local transmitter are transmitted with a signal power that exceeds a threshold, and to couple the antenna to the bypass signal path during other time intervals. In another aspect, the switch is configured to couple the antenna to the non-bypass signal path during time intervals when a jamming signal in a selected frequency range is received with a signal power that exceeds a threshold, and to couple the antenna to the bypass signal path during other time intervals.
    • 公开了一种具有旁路模式以提高灵敏度的接收机。 提供了一种装置,其包括耦合到接收器的非旁路信号路径,非旁路信号路径包括滤波器,耦合到接收器的旁路信号路径,配置为绕过滤波器的旁路信号路径和配置的开关 在由相关本地发射机发射的信号以超过阈值的信号功率发射的时间间隔内将天线耦合到非旁路信号路径,并且在其它时间间隔期间将天线耦合到旁路信号路径。 在另一方面,所述开关被配置为在以超过阈值的信号功率接收到所选频率范围内的干扰信号的时间间隔期间将天线耦合到非旁路信号路径,并且将天线耦合到旁路 信号路径在其他时间间隔。