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    • 1. 发明授权
    • Low noise filter for a wireless receiver
    • 无线接收机的低噪声滤波器
    • US07415264B2
    • 2008-08-19
    • US10949534
    • 2004-09-25
    • Aly IsmailJohn E. VasaBalasubramanian Ramachandran
    • Aly IsmailJohn E. VasaBalasubramanian Ramachandran
    • H04B1/16H04B1/10
    • H04B1/30H03F3/45968H03F2200/294H03F2200/372
    • A low noise filter is arranged to receive an input signal from a downconverter. The low noise filter is constructed to block or cancel any DC offset in the input signal, as well as filter selected frequency components from the input signal. The low noise filter uses a shared capacitor both to handle the DC offset and to set filter response characteristics. As the low noise filter is implemented with a Frequency Dependent Negative Resistance (FDNR) device, the shared capacitor may be relatively small. The low noise filter has a load capacitor, with the output of the load capacitor coupled to a bias resistor and voltage. This bias structure cooperates with the load capacitor to set a high cutoff frequency for the low noise filter useful for blocking or canceling the DC offset.
    • 低噪声滤波器布置成从下变频器接收输入信号。 低噪声滤波器被构造为阻挡或消除输入信号中的任何DC偏移,以及从输入信号中滤除所选择的频率分量。 低噪声滤波器使用共享电容器来处理DC偏移并设置滤波器响应特性。 由于利用频率相关负电阻(FDNR)器件实现低噪声滤波器,所以共享电容器可能相对较小。 低噪声滤波器具有负载电容,负载电容的输出耦合到偏置电阻和电压。 该偏置结构与负载电容器配合,为低噪声滤波器设置高截止频率,可用于阻断或抵消DC偏移。
    • 2. 发明授权
    • Receiver for a multimode radio
    • 接收机用于多模式无线电
    • US07515929B2
    • 2009-04-07
    • US11116086
    • 2005-04-27
    • Balasubramanian RamachandranJohn E. VasaTudor LipanNorman J Beamish
    • Balasubramanian RamachandranJohn E. VasaTudor LipanNorman J Beamish
    • H04M1/00
    • H04B1/707H04B1/0067H04B2201/70711
    • A receiver for a multi-mode wireless device is provided. The receiver has multiple analog RF front end modules, with each module supporting a different mode of operation. The receiver has a single digital backend module for generating a digital baseband signal. A controller selects one of the available RF modules to use, and the selected RF module provides an analog communication signal to the digital backend. Each available mode has an associated set of factors. When a particular mode is selected, the set of factors associated with the selected mode is provided to the digital backend. The digital backend uses these factors to adjust the processing characteristics of its components, such as its analog to digital converter, filters, and gain controller. In this way, the single digital backend is adaptable to the requirements of each of the available radio modes.
    • 提供了一种用于多模式无线设备的接收机。 接收器具有多个模拟RF前端模块,每个模块支持不同的操作模式。 接收器具有用于产生数字基带信号的单个数字后端模块。 控制器选择可使用的RF模块之一,并且所选择的RF模块向数字后端提供模拟通信信号。 每个可用模式都有一组相关的因素。 当选择特定模式时,将与所选模式相关联的因子集提供给数字后端。 数字后端使用这些因素来调整其组件的处理特性,例如其模数转换器,滤波器和增益控制器。 以这种方式,单个数字后端可以适应每个可用无线电模式的要求。
    • 6. 发明申请
    • Adaptive predistortion for controlling an open loop power amplifier
    • 用于控制开环功率放大器的自适应预失真
    • US20080051042A1
    • 2008-02-28
    • US11510465
    • 2006-08-25
    • Jaleh KomailiJohn E. VasaMorten DamgaardDavid S. Ripley
    • Jaleh KomailiJohn E. VasaMorten DamgaardDavid S. Ripley
    • H04B1/04
    • H04B1/0475H03F1/3241H03F1/3288H03F3/195H03F3/24H03F2201/3233H04B2001/0425
    • An adaptive predistortion system for controlling an open loop power amplifier includes a transmitter, a receiver, a phase and amplitude determination element configured to determine amplitude and phase characteristics of an output signal generated in the transmitter, the signal representing transmitter characteristics, an amplitude resampling element configured to generate an updated AM-AM predistortion signal based on the output signal generated in the transmitter, and an amplitude predistortion element configured to compare the updated AM-AM predistortion signal with a factory-calibrated AM-AM predistortion signal and generate an amplitude compensation signal. The adaptive predistortion system also includes a phase comparison element configured to compare the signal representing transmitter characteristics with a desired phase signal, a phase resampling element configured to generate an updated AM-PM predistortion signal based on the output signal generated in the transmitter, and a phase predistortion element configured to compare the updated AM-PM predistortion signal with a factory-calibrated AM-PM predistortion signal and generate a phase compensation signal.
    • 用于控制开环功率放大器的自适应预失真系统包括发射机,接收机,相位和幅度确定元件,其被配置为确定在发射机中产生的输出信号的幅度和相位特性,表示发射机特性的信号,幅度重采样元件 被配置为基于在所述发射机中产生的输出信号产生更新的AM-AM预失真信号,以及幅度预失真元件,其被配置为将所述更新的AM-AM预失真信号与出厂校准的AM-AM预失真信号进行比较,并产生振幅补偿 信号。 自适应预失真系统还包括相位比较元件,其被配置为将表示发射机特性的信号与期望的相位信号进行比较;相位重采样元件,被配置为基于在发射机中产生的输出信号生成更新的AM-PM预失真信号,以及 相位预失真元件,被配置为将更新的AM-PM预失真信号与出厂校准的AM-PM预失真信号进行比较,并产生相位补偿信号。
    • 7. 发明申请
    • LMS Adaptive Filter for Digital Cancellation of Second Order Inter-Modulation Due to Transmitter Leakage
    • LMS自适应滤波器,用于由于发射机泄漏而进行二阶互调的数字消除
    • US20080232268A1
    • 2008-09-25
    • US12052991
    • 2008-03-21
    • Masoud KahriziJaleh KomailiJohn E. Vasa
    • Masoud KahriziJaleh KomailiJohn E. Vasa
    • H04J1/16
    • H04B1/525H04B1/30
    • A transmit signal second-order inter-modulation (IM2) canceller for a portable handset using a full duplex mode of operation (e.g., WCDMA) is used to controllably reduce IM2 introduced by a transmit signal that appears in a received signal in a receive channel of the portable handset. The transmit signal IM2 canceller includes a delay estimator and a digital signal adjuster. The delay estimator receives a first input from a receive channel and a second input from a transmit channel. The delay estimator generates an estimate of the IM2 that the transmit channel introduces in the receive channel. The digital signal adjuster removes the estimate of the IM2 before forwarding a modified receive channel signal to a baseband subsystem of the portable handset.
    • 使用用于使用全双工操作模式(例如,WCDMA)的便携式手持机的发射信号二阶互调制(IM 2)消除器可控制地减少出现在接收信号中的发射信号引入的IM 2 接收便携式手机的通道。 发送信号IM 2消除器包括延迟估计器和数字信号调节器。 延迟估计器从接收信道接收第一输入,并从发送信道接收第二输入。 延迟估计器产生发送信道在接收信道中引入的IM 2的估计。 在将修改的接收信道信号转发到便携式手持机的基带子系统之前,数字信号调节器去除IM 2的估计。
    • 9. 发明授权
    • Closed-loop adaptive power control for adjusting bandwidth in a mobile handset transmitter
    • 用于调整移动手持机发射机中的带宽的闭环自适应功率控制
    • US08606311B2
    • 2013-12-10
    • US12865687
    • 2009-02-07
    • Yongqiang HeJohn E. VasaMasoud Kahrizi
    • Yongqiang HeJohn E. VasaMasoud Kahrizi
    • H04B7/00
    • H04W52/52H04W52/226H04W52/367
    • A mobile handset is arranged with an adaptive power controller to controllably adjust transmit power. The adaptive power controller is coupled to a power amplifier module to form a closed feedback loop. The adaptive power control module includes a first shifter, a first sealer, an accumulator and a hold element. The first shifter and first sealer receive respective bandwidth control signals and an error signal. The first shifter and first sealer generate a modified error signal that is forwarded to and filtered by the accumulator and the hold element to generate a power control signal. The power control signal, which is generated the radio frequency subsystem of the handset can quickly and accurately track rapid changes in transmit power.
    • 移动手机配置有自适应功率控制器以可控地调节发射功率。 自适应功率控制器耦合到功率放大器模块以形成闭合反馈回路。 自适应功率控制模块包括第一变速器,第一闭合器,蓄能器和保持元件。 第一移位器和第一密封器接收相应的带宽控制信号和误差信号。 第一移位器和第一密封器产生经过累加器和保持元件转发和滤波的修正误差信号,以产生功率控制信号。 产生手机射频子系统的功率控制信号可以快速,准确地跟踪发射功率的快速变化。