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    • 1. 发明授权
    • WCDMA transmit architecture
    • WCDMA传输架构
    • US07953377B2
    • 2011-05-31
    • US12119066
    • 2008-05-12
    • Theodoros GeorgantasKonstantinos D. VavelidisSofoklis PlevridisBabis (Charalampos) KapnistisSpyridon Kavadias
    • Theodoros GeorgantasKonstantinos D. VavelidisSofoklis PlevridisBabis (Charalampos) KapnistisSpyridon Kavadias
    • H04B1/02
    • H03G3/3042
    • Wideband-Code Division Multiple Access (W-CDMA) transmit architecture. A baseband digital processing module operates cooperatively with an analog signal processing module to effectuate highly adjustable and highly accurate gain adjustment in accordance with transmitter processing within a communication device. The gain adjustment and/or gain control is partitioned between the digital and analog domains by employing two cooperatively operating digital and analog modules, respectively. Gain adjustment in the analog domain is performed in a relatively more coarse fashion that in the digital domain. If desired, gain adjustment in each of the analog and digital domains is performed across a range of discrete steps. The discrete steps in the analog domain are larger than the discrete steps in the digital domain. Also, the discrete steps in the digital domain may be interposed between two successive discrete steps in the analog domain.
    • 宽带码分多址(W-CDMA)传输架构。 基带数字处理模块与模拟信号处理模块协同工作,以根据通信设备内的发射机处理实现高度可调节和高度准确的增益调整。 增益调节和/或增益控制通过分别使用两个协同操作的数字和模拟模块在数字和模拟域之间进行分区。 模拟域中的增益调整以数字域中相对较粗略的方式执行。 如果需要,在每个模拟和数字域中的增益调整在一系列离散步骤中执行。 模拟域中的离散步长大于数字域中的离散步长。 此外,数字域中的离散步骤可以插入在模拟域中的两个连续离散步骤之间。
    • 3. 发明授权
    • WCDMA transmit architecture
    • WCDMA传输架构
    • US08620228B2
    • 2013-12-31
    • US13459546
    • 2012-04-30
    • Theodoros GeorgantasKonstantinos D. VavelidisSofoklis PlevridisBabis (Charalampos) KapnistisSpyridon Kavadias
    • Theodoros GeorgantasKonstantinos D. VavelidisSofoklis PlevridisBabis (Charalampos) KapnistisSpyridon Kavadias
    • H04B1/02
    • H03G3/3042
    • Wideband-Code Division Multiple Access (W-CDMA) transmit architecture. A baseband digital processing module operates cooperatively with an analog signal processing module to effectuate highly adjustable and highly accurate gain adjustment in accordance with transmitter processing within a communication device. The gain adjustment and/or gain control is partitioned between the digital and analog domains by employing two cooperatively operating digital and analog modules, respectively. Gain adjustment in the analog domain is performed in a relatively more coarse fashion that in the digital domain. If desired, gain adjustment in each of the analog and digital domains is performed across a range of discrete steps. The discrete steps in the analog domain are larger than the discrete steps in the digital domain. Also, the discrete steps in the digital domain may be interposed between two successive discrete steps in the analog domain.
    • 宽带码分多址(W-CDMA)传输架构。 基带数字处理模块与模拟信号处理模块协同工作,以根据通信设备内的发射机处理实现高度可调节和高度准确的增益调整。 增益调节和/或增益控制通过分别使用两个协同操作的数字和模拟模块在数字和模拟域之间进行分区。 模拟域中的增益调整以数字域中相对较粗略的方式执行。 如果需要,在每个模拟和数字域中的增益调整在一系列离散步骤中执行。 模拟域中的离散步长大于数字域中的离散步长。 此外,数字域中的离散步骤可以插入在模拟域中的两个连续离散步骤之间。
    • 4. 发明申请
    • WCDMA transmit architecture
    • WCDMA传输架构
    • US20120220244A1
    • 2012-08-30
    • US13459546
    • 2012-04-30
    • Theodoros GeorgantasKonstantinos D. VavelidisSofoklis PlevridisBabis (Charalampos) KapnistisSpyridon Kavadias
    • Theodoros GeorgantasKonstantinos D. VavelidisSofoklis PlevridisBabis (Charalampos) KapnistisSpyridon Kavadias
    • H04B1/02
    • H03G3/3042
    • Wideband-Code Division Multiple Access (W-CDMA) transmit architecture. A baseband digital processing module operates cooperatively with an analog signal processing module to effectuate highly adjustable and highly accurate gain adjustment in accordance with transmitter processing within a communication device. The gain adjustment and/or gain control is partitioned between the digital and analog domains by employing two cooperatively operating digital and analog modules, respectively. Gain adjustment in the analog domain is performed in a relatively more coarse fashion that in the digital domain. If desired, gain adjustment in each of the analog and digital domains is performed across a range of discrete steps. The discrete steps in the analog domain are larger than the discrete steps in the digital domain. Also, the discrete steps in the digital domain may be interposed between two successive discrete steps in the analog domain.
    • 宽带码分多址(W-CDMA)传输架构。 基带数字处理模块与模拟信号处理模块协同工作,以根据通信设备内的发射机处理实现高度可调节和高度准确的增益调整。 增益调节和/或增益控制通过分别使用两个协同操作的数字和模拟模块在数字和模拟域之间进行分区。 模拟域中的增益调整以数字域中相对较粗略的方式执行。 如果需要,在每个模拟和数字域中的增益调整在一系列离散步骤中执行。 模拟域中的离散步长大于数字域中的离散步长。 此外,数字域中的离散步骤可以插入在模拟域中的两个连续离散步骤之间。
    • 6. 发明申请
    • WCDMA TRANSMIT ARCHITECTURE
    • WCDMA发射架构
    • US20090253390A1
    • 2009-10-08
    • US12119066
    • 2008-05-12
    • Theodoros GeorgantasKonstantinos D. VavelidisSofoklis PlevridisBabis(Charalampos) KapnistisSpyridon Kavadias
    • Theodoros GeorgantasKonstantinos D. VavelidisSofoklis PlevridisBabis(Charalampos) KapnistisSpyridon Kavadias
    • H04B1/02
    • H03G3/3042
    • Wideband-Code Division Multiple Access (W-CDMA) transmit architecture. A baseband digital processing module operates cooperatively with an analog signal processing module to effectuate highly adjustable and highly accurate gain adjustment in accordance with transmitter processing within a communication device. The gain adjustment and/or gain control is partitioned between the digital and analog domains by employing two cooperatively operating digital and analog modules, respectively. Gain adjustment in the analog domain is performed in a relatively more coarse fashion that in the digital domain. If desired, gain adjustment in each of the analog and digital domains is performed across a range of discrete steps. The discrete steps in the analog domain are larger than the discrete steps in the digital domain. Also, the discrete steps in the digital domain may be interposed between two successive discrete steps in the analog domain.
    • 宽带码分多址(W-CDMA)传输架构。 基带数字处理模块与模拟信号处理模块协同工作,以根据通信设备内的发射机处理实现高度可调节和高度准确的增益调整。 增益调节和/或增益控制通过分别使用两个协同操作的数字和模拟模块在数字和模拟域之间进行分区。 模拟域中的增益调整以数字域中相对较粗略的方式执行。 如果需要,在每个模拟和数字域中的增益调整在一系列离散步骤中执行。 模拟域中的离散步长大于数字域中的离散步长。 此外,数字域中的离散步骤可以插入在模拟域中的两个连续离散步骤之间。
    • 9. 发明申请
    • Method and system for filter calibration using fractional-N frequency synthesized signals
    • 使用分数N频率合成信号进行滤波校准的方法和系统
    • US20070207760A1
    • 2007-09-06
    • US11431960
    • 2006-05-11
    • Spyridon KavadiasKonstantinos VavelidisNikolaos Haralabidis
    • Spyridon KavadiasKonstantinos VavelidisNikolaos Haralabidis
    • H04B1/40H04B1/06
    • H04B1/30H04B1/405H04H60/91
    • A method and system for filter calibration using fractional-N frequency synthesized signals are presented. Aspects of the method may include generating an LO signal by a PLL circuit within a chip. A reference signal may be generated based on the generated LO signal and a synthesizer control signal. A frequency response for a filter circuit integrated within the chip may be calibrated by adjusting parameters associated with the filter circuit based on the generated LO signal. Aspects of the system may include a single-chip multi-band RF receiver that enables generation of a LO signal by a PLL circuit within the single-chip, and enables calibration of a frequency response for a filter circuit integrated within the chip. A reference signal may be generated based on the generated LO signal and a synthesizer control signal. The frequency response may be calibrated by adjusting the filter based on the generated reference signal.
    • 提出了使用分数N频率合成信号进行滤波校准的方法和系统。 该方法的方面可以包括通过芯片内的PLL电路生成LO信号。 可以基于所生成的LO信号和合成器控制信号来生成参考信号。 集成在芯片内的滤波器电路的频率响应可以通过基于产生的LO信号调整与滤波器电路相关联的参数来校准。 系统的方面可以包括单芯片多频带RF接收机,其能够通过单芯片内的PLL电路产生LO信号,并且能够校准集成在芯片内的滤波器电路的频率响应。 可以基于所生成的LO信号和合成器控制信号来生成参考信号。 可以通过基于产生的参考信号调整滤波器来校准频率响应。