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    • 1. 发明授权
    • Low supply regulator having a high power supply rejection ratio
    • 低电源调节器具有高电源抑制比
    • US08669754B2
    • 2014-03-11
    • US13081239
    • 2011-04-06
    • Abdellatif BellaouarArul BalasubramaniyanSolti Peng
    • Abdellatif BellaouarArul BalasubramaniyanSolti Peng
    • G05F3/16
    • H04B15/06
    • A power supply noise rejection circuit for functional circuits, such as a voltage controlled oscillator (VCO). The power supply noise rejection circuit includes an isolation transistor connected to a voltage supply for providing an output current and voltage substantially free of noise across the full frequency range. A current source, a diode connected reference transistor with resistance means connected between its gate and drain terminals, and a dummy circuit serially connected between the voltage supply and ground generate a bias voltage that is applied to the gate of the isolation transistor. The dummy circuit mimics the DC characteristics of the functional circuit such that the output current tracks with process and temperature variations. The isolation transistor and the reference transistor can have negative threshold voltages, and the circuit can include bleed means for drawing current from the gate of the reference transistor and isolation transistor.
    • 用于诸如压控振荡器(VCO)的功能电路的电源噪声抑制电路。 电源噪声抑制电路包括连接到电压源的隔离晶体管,用于在整个频率范围内提供基本上没有噪声的输出电流和电压。 电流源,二极管连接的参考晶体管,其电阻装置连接在其栅极和漏极端子之间,并且串联连接在电压源和地之间的虚拟电路产生施加到隔离晶体管的栅极的偏置电压。 虚拟电路模拟功能电路的DC特性,使得输出电流跟踪过程和温度变化。 隔离晶体管和参考晶体管可以具有负阈值电压,并且该电路可以包括用于从参考晶体管和隔离晶体管的栅极引出电流的放电装置。
    • 2. 发明授权
    • Method and system for amplifying a signal
    • 用于放大信号的方法和系统
    • US07286019B2
    • 2007-10-23
    • US11031185
    • 2005-01-07
    • Solti PengChien-Chung ChenAbdellatif BellaouarHeng-Chih Lin
    • Solti PengChien-Chung ChenAbdellatif BellaouarHeng-Chih Lin
    • H03F3/04
    • H03F1/30H03F3/189H03F2200/18H03F2200/456H03F2200/72
    • According to one embodiment of the invention, an amplifier includes a gate bias circuit operable to generate a gate bias voltage and a common gate amplifier that includes a transistor having a gate biased by an output of the gate bias circuit and also having a source connected to an inductor for providing a path to ground for direct current flowing through the transistor. According to another embodiment of the invention, a method for amplifying a signal by an amplifier includes generating a gate bias voltage indicative of a difference between a reference voltage and an output voltage of the amplifier, biasing the gate of the common-gate amplifier with the gate bias voltage, and blocking, by a passive device, alternating current signals from flowing from the source of the transistor to ground.
    • 根据本发明的一个实施例,放大器包括栅极偏置电路,其可操作以产生栅极偏置电压和公共栅极放大器,该公共栅极放大器包括具有由栅极偏置电路的输出偏置的栅极的晶体管,并且源极连接到 电感器,用于为直流电流流过晶体管提供路径。 根据本发明的另一个实施例,一种用于放大放大器的信号的方法包括:生成指示放大器的参考电压和输出电压之间的差异的栅极偏置电压,使公共栅极放大器的栅极偏置 栅极偏置电压和被无源器件阻塞从晶体管的源极流到地的交流信号。
    • 3. 发明授权
    • Apparatus and methods for downconverting radio frequency signals
    • 用于下变频射频信号的装置和方法
    • US07865164B2
    • 2011-01-04
    • US11862516
    • 2007-09-27
    • Yang XuSolti Peng
    • Yang XuSolti Peng
    • H04Q1/16
    • H03D7/1441H03D7/1458H03D7/1466H03D7/165H03D2200/0084
    • A noise isolation passive mixing apparatus is designed to mitigate noise contribution from intermediate frequency (IF) filters and amplifiers in a radio frequency translation stage. Common-gate configuration devices are inserted between passive mixer output and input of a transimpedance amplifier. In this way, circulation of the input-referred noise of the transimpedance amplifier is decreased, because of the relatively high output impedance of the common-gate devices, and the noise figure of the mixing apparatus can be improved. Since the radio frequency signal still sees low impedance, a radio frequency transconductance (RF gm) stage can be removed from the mixing apparatus, reducing current consumption. A double-balanced mixing apparatus with this general architecture may be implemented in a 0.18 micrometer CMOS technology and used in a low-IF global positioning system operating at 1.575 GHz, in an access terminal of a cellular communication system, and in other systems.
    • 噪声隔离无源混频装置设计用于减轻射频转换级中的中频(IF)滤波器和放大器的噪声贡献。 共栅配置器件插在无源混频器输出和跨阻放大器的输入之间。 以这种方式,由于共栅极器件的输出阻抗相对较高,跨阻抗放大器的输入参考噪声的循环减小,并且可以提高混合装置的噪声系数。 由于射频信号仍然看到低阻抗,可以从混合装置中去除射频跨导(RF gm)级,从而降低电流消耗。 具有这种一般架构的双平衡混合装置可以以0.18微米CMOS技术实现,并且用于在蜂窝通信系统的接入终端中操作的1.575GHz的低IF全球定位系统和其它系统。
    • 6. 发明申请
    • Method and system for amplifying a signal
    • 用于放大信号的方法和系统
    • US20060152288A1
    • 2006-07-13
    • US11031185
    • 2005-01-07
    • Solti PengChien-Chung ChenAbdellatif BellaouarHeng-Chih Lin
    • Solti PengChien-Chung ChenAbdellatif BellaouarHeng-Chih Lin
    • H03F1/22
    • H03F1/30H03F3/189H03F2200/18H03F2200/456H03F2200/72
    • According to one embodiment of the invention, an amplifier includes a gate bias circuit operable to generate a gate bias voltage and a common gate amplifier that includes a transistor having a gate biased by an output of the gate bias circuit and also having a source connected to an inductor for providing a path to ground for direct current flowing through the transistor. According to another embodiment of the invention, a method for amplifying a signal by an amplifier includes generating a gate bias voltage indicative of a difference between a reference voltage and an output voltage of the amplifier, biasing the gate of the common-gate amplifier with the gate bias voltage, and blocking, by a passive device, alternating current signals from flowing from the source of the transistor to ground.
    • 根据本发明的一个实施例,放大器包括栅极偏置电路,其可操作以产生栅极偏置电压和公共栅极放大器,该公共栅极放大器包括具有由栅极偏置电路的输出偏置的栅极的晶体管,并且源极连接到 电感器,用于为直流电流流过晶体管提供路径。 根据本发明的另一个实施例,一种用于放大放大器的信号的方法包括:生成指示放大器的参考电压和输出电压之间的差异的栅极偏置电压,使公共栅极放大器的栅极偏置 栅极偏置电压和被无源器件阻塞从晶体管的源极流到地的交流信号。
    • 8. 发明申请
    • APPARATUS AND METHODS FOR DOWNCONVERTING RADIO FREQUENCY SIGNALS
    • 用于辐射无线电频率信号的装置和方法
    • US20090088122A1
    • 2009-04-02
    • US11862516
    • 2007-09-27
    • Yang XuSolti Peng
    • Yang XuSolti Peng
    • H04B1/28
    • H03D7/1441H03D7/1458H03D7/1466H03D7/165H03D2200/0084
    • A noise isolation passive mixing apparatus is designed to mitigate noise contribution from intermediate frequency (IF) filters and amplifiers in a radio frequency translation stage. Common-gate configuration devices are inserted between passive mixer output and input of a transimpedance amplifier. In this way, circulation of the input-referred noise of the transimpedance amplifier is decreased, because of the relatively high output impedance of the common-gate devices, and the noise figure of the mixing apparatus can be improved. Since the radio frequency signal still sees low impedance, a radio frequency transconductance (RF gm) stage can be removed from the mixing apparatus, reducing current consumption. A double-balanced mixing apparatus with this general architecture may be implemented in a 0.18 micrometer CMOS technology and used in a low-IF global positioning system operating at 1.575 GHz, in an access terminal of a cellular communication system, and in other systems.
    • 噪声隔离无源混频装置设计用于减轻射频转换级中的中频(IF)滤波器和放大器的噪声贡献。 共栅配置器件插在无源混频器输出和跨阻放大器的输入之间。 以这种方式,由于共栅极器件的输出阻抗相对较高,跨阻抗放大器的输入参考噪声的循环减小,并且可以提高混合装置的噪声系数。 由于射频信号仍然看到低阻抗,可以从混合装置中去除射频跨导(RF gm)级,从而降低电流消耗。 具有这种一般架构的双平衡混合装置可以以0.18微米CMOS技术实现,并且用于在蜂窝通信系统的接入终端中操作的1.575GHz的低IF全球定位系统和其它系统。