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    • 5. 发明授权
    • Tracking filter for a receiver
    • 跟踪接收器的过滤器
    • US08090332B2
    • 2012-01-03
    • US11955118
    • 2007-12-12
    • Gurkanwal Singh SahotaChiewcharn NarathongRavi Sridhara
    • Gurkanwal Singh SahotaChiewcharn NarathongRavi Sridhara
    • H04B1/10H04B1/26H03D1/00
    • H04B1/18
    • A tracking filter for attenuating out-of-band signals and adjacent channel signals in a receiver is described. In one exemplary design, an apparatus includes a tracking filter, an LNA, and a downconverter. The tracking filter includes a summer, a filter, and an upconverter. The summer subtracts a feedback signal from an input signal and provides a first signal. The LNA amplifies the first signal and provides a second signal. The downconverter frequency downconverts the second signal and provides an output signal. The filter filters (e.g., differentiates) the output signal and provides a third signal. The filter blocks a desired signal and passes out-of-band signal components. The upconverter frequency upconverts the third signal and provides a fourth signal from which the feedback signal is derived. The tracking filter has an equivalent bandpass filter response and a variable center frequency determined based on the frequency of the desired signal.
    • 描述了用于衰减接收机中的带外信号和相邻信道信号的跟踪滤波器。 在一个示例性设计中,装置包括跟踪滤波器,LNA和下变频器。 跟踪过滤器包括夏季,过滤器和上变频器。 夏季从输入信号中减去反馈信号并提供第一信号。 LNA放大第一个信号并提供第二个信号。 下变频器降频转换第二信号并提供输出信号。 滤波器(例如,微分)输出信号并提供第三信号。 滤波器阻挡所需的信号并传出带外信号分量。 上变频器对第三信号进行上变频,并提供第四信号,从中得到反馈信号。 跟踪滤波器具有等效的带通滤波器响应和基于期望信号的频率确定的可变中心频率。
    • 6. 发明申请
    • TRACKING FILTER FOR A RECEIVER
    • 跟踪接收器的过滤器
    • US20090156152A1
    • 2009-06-18
    • US11955118
    • 2007-12-12
    • Gurkanwal Singh SahotaChiewcharn NarathongRavi Sridhara
    • Gurkanwal Singh SahotaChiewcharn NarathongRavi Sridhara
    • H04B1/10H04B1/16
    • H04B1/18
    • A tracking filter for attenuating out-of-band signals and adjacent channel signals in a receiver is described. In one exemplary design, an apparatus includes a tracking filter, an LNA, and a downconverter. The tracking filter includes a summer, a filter, and an upconverter. The summer subtracts a feedback signal from an input signal and provides a first signal. The LNA amplifies the first signal and provides a second signal. The downconverter frequency downconverts the second signal and provides an output signal. The filter filters (e.g., differentiates) the output signal and provides a third signal. The filter blocks a desired signal and passes out-of-band signal components. The upconverter frequency upconverts the third signal and provides a fourth signal from which the feedback signal is derived. The tracking filter has an equivalent bandpass filter response and a variable center frequency determined based on the frequency of the desired signal.
    • 描述了用于衰减接收机中的带外信号和相邻信道信号的跟踪滤波器。 在一个示例性设计中,装置包括跟踪滤波器,LNA和下变频器。 跟踪过滤器包括夏季,过滤器和上变频器。 夏季从输入信号中减去反馈信号并提供第一信号。 LNA放大第一个信号并提供第二个信号。 下变频器降频转换第二信号并提供输出信号。 滤波器(例如,微分)输出信号并提供第三信号。 滤波器阻挡所需的信号并传出带外信号分量。 上变频器对第三信号进行上变频,并提供第四信号,从中得到反馈信号。 跟踪滤波器具有等效的带通滤波器响应和基于期望信号的频率确定的可变中心频率。
    • 9. 发明申请
    • MIXER WITH HIGH OUTPUT POWER ACCURACY AND LOW LOCAL OSCILLATOR LEAKAGE
    • 混合器具有高输出功率精度和低的局部振荡器泄漏
    • US20090075689A1
    • 2009-03-19
    • US11855997
    • 2007-09-14
    • Sankaran AniruddhanBo SunArun JayaramanGurkanwal Singh Sahota
    • Sankaran AniruddhanBo SunArun JayaramanGurkanwal Singh Sahota
    • H04B1/04H03B21/02H04M1/00
    • H03D7/165H04B1/0483H04B2001/0416H04B2001/0491
    • A circuit receives a first signal (for example, a baseband signal) and mixes it with a local oscillator (LO) signal, and outputs a second signal (for example, an RFOUT signal). The circuit includes multiple identical Mixer and Frequency Divider Pair (MFDP) circuits. Each MFDP can be enabled separately. Each MFDP includes a mixer and a frequency divider that provides the mixer with a local version of the LO signal. The MFDP outputs are coupled together so that the output power of the second signal (RFOUT) is the combined output powers of the various MFDPs. By controlling the number of enabled MFDPs, the output power of the second signal is controlled. Because the MFDPs all have identical layouts, accuracy of output power step size is improved. Because LO signal power within the circuit automatically changes in proportion to the number of enabled MFDPs, local oscillator leakage problems are avoided.
    • 电路接收第一信号(例如,基带信号)并将其与本地振荡器(LO)信号混合,并输出第二信号(例如,RFOUT信号)。 该电路包括多个相同的混频器和分频器对(MFDP)电路。 每个MFDP可以单独启用。 每个MFDP包括混频器和分频器,为混频器提供本地版本的LO信号。 MFDP输出耦合在一起,使得第二信号(RFOUT)的输出功率是各种MFDP的组合输出功率。 通过控制使能的MFDP的数量,控制第二信号的输出功率。 由于MFDP都具有相同的布局,因此输出功率步长的精度提高。 由于电路内的LO信号功率与启用MFDP的数量成比例地自动变化,因此避免了本地振荡器泄漏问题。
    • 10. 发明授权
    • Mixer with high output power accuracy and low local oscillator leakage
    • 混频器具有高输出功率精度和低本地振荡器泄漏
    • US07941115B2
    • 2011-05-10
    • US11855997
    • 2007-09-14
    • Sankaran AniruddhanBo SunArun JayaramanGurkanwal Singh Sahota
    • Sankaran AniruddhanBo SunArun JayaramanGurkanwal Singh Sahota
    • H04B7/00
    • H03D7/165H04B1/0483H04B2001/0416H04B2001/0491
    • A circuit receives a first signal (for example, a baseband signal) and mixes it with a local oscillator (LO) signal, and outputs a second signal (for example, an RFOUT signal). The circuit includes multiple identical Mixer and Frequency Divider Pair (MFDP) circuits. Each MFDP can be enabled separately. Each MFDP includes a mixer and a frequency divider that provides the mixer with a local version of the LO signal. The MFDP outputs are coupled together so that the output power of the second signal (RFOUT) is the combined output powers of the various MFDPs. By controlling the number of enabled MFDPs, the output power of the second signal is controlled. Because the MFDPs all have identical layouts, accuracy of output power step size is improved. Because LO signal power within the circuit automatically changes in proportion to the number of enabled MFDPs, local oscillator leakage problems are avoided.
    • 电路接收第一信号(例如,基带信号)并将其与本地振荡器(LO)信号混合,并输出第二信号(例如,RFOUT信号)。 该电路包括多个相同的混频器和分频器对(MFDP)电路。 每个MFDP可以单独启用。 每个MFDP包括混频器和分频器,为混频器提供本地版本的LO信号。 MFDP输出耦合在一起,使得第二信号(RFOUT)的输出功率是各种MFDP的组合输出功率。 通过控制使能的MFDP的数量,控制第二信号的输出功率。 由于MFDP都具有相同的布局,因此输出功率步长的精度提高。 由于电路内的LO信号功率与启用MFDP的数量成比例地自动变化,因此避免了本地振荡器泄漏问题。