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    • 4. 发明授权
    • Downconverter and upconverter
    • 下变频器和上变频器
    • US07627295B2
    • 2009-12-01
    • US11403980
    • 2006-04-13
    • Kishi TakahikoSato TakahiroWon-Jin BaekJeong-Ki Choi
    • Kishi TakahikoSato TakahiroWon-Jin BaekJeong-Ki Choi
    • H04B17/02
    • H03D7/166H03D3/007H03D7/18
    • A downconverter and upconverter are provided which can obtain a sufficient image rejection ratio in a low-Intermediate Frequency (IF) scheme while reducing power consumption and can suppress Error Vector Magnitude (EVM)-related degradation in a zero-IF scheme. A complex-coefficient transversal filter rejects one side of a positive or negative frequency, and converts a Radio Frequency (RF) signal to a complex RF signal configured by real and imaginary parts. A local oscillator outputs a real local signal with a set frequency. A half-complex mixer, connected to the complex-coefficient transversal filter and the local oscillator, performs a frequency conversion process by multiplying the complex RF signal output from the complex-coefficient transversal filter and the real local signal output from the local oscillator, and outputs a complex signal of a frequency separated by the set frequency from a frequency of the RF signal.
    • 提供下变频器和上变频器,其可以在降低功率消耗的同时在低中频(IF)方案中获得足够的镜像抑制比,并且可以抑制零中频方案中的误差矢量幅度(EVM)相关的劣化。 复系数横向滤波器拒绝正或负频率的一侧,并将射频(RF)信号转换为由实部和虚部配置的复合RF信号。 本地振荡器输出具有设定频率的实际本地信号。 连接到复系数横向滤波器和本地振荡器的半复合混频器通过将从复系数横向滤波器输出的复RF信号与从本地振荡器输出的实局信号相乘来执行频率转换处理,以及 从RF信号的频率输出由设定频率分开的频率的复信号。
    • 5. 发明申请
    • QUADRATURE VOLTAGE CONTROLLED OSCILLATOR
    • 正弦电压控制振荡器
    • US20070077905A1
    • 2007-04-05
    • US11469274
    • 2006-08-31
    • Seung Min OHWon Jin BAEK
    • Seung Min OHWon Jin BAEK
    • H04B1/40H04B1/06
    • H03B27/00H03B5/1215H03B5/1228H03B5/1243H03B2200/0078
    • In a quadrature voltage controlled oscillator, a first oscillator includes a first resonant circuit for generating a preset first resonant frequency and a first pair of cross-coupled transistors for supplying energy to the first resonant frequency to generate first and second signals having a phase difference of 180°. A second oscillator includes a second resonant circuit for generating a preset second resonant frequency and a second pair of cross-coupled transistors for generating third and fourth signals for supplying energy to the second resonant frequency having a phase difference of 180°. A first current source is connected between a first common node of the first cross-coupled transistor pair and a ground. A second current source is connected between a second common node of the second cross-coupled transistor pair and the ground. A differential load is connected between a third common node of the first and second current sources and the ground.
    • 在正交压控振荡器中,第一振荡器包括用于产生预设的第一谐振频率的第一谐振电路和用于向第一谐振频率提供能量的第一对交叉耦合晶体管,以产生具有相位差的第一和第二信号 180°。 第二振荡器包括用于产生预设的第二谐振频率的第二谐振电路和用于产生用于向具有180°的相位差的第二谐振频率提供能量的第三和第四信号的第二对交叉耦合晶体管。 第一电流源连接在第一交叉耦合晶体管对的第一公共节点和地之间。 第二电流源连接在第二交叉耦合晶体管对的第二公共节点和地之间。 差分负载连接在第一和第二电流源的第三公共节点与地之间。
    • 7. 发明申请
    • DERIVATIVE SUPERPOSITION CIRCUIT FOR LINEARIZATION
    • 用于线性化的衍生超导电路
    • US20070044024A1
    • 2007-02-22
    • US11428345
    • 2006-06-30
    • YOO SAM NABYUNG SUNG KIMWON JIN BAEKMOON SUN KIM
    • YOO SAM NABYUNG SUNG KIMWON JIN BAEKMOON SUN KIM
    • G06F9/00
    • H03F1/3252
    • The present invention relates to a derivative superposition circuit for linearization. The derivative superposition circuit for linearization includes a first active element that is provided with first to third terminals and in which the magnitude and direction of current flowing the second terminal to the third terminal changes on the basis of the magnitude of a voltage applied between the first and second terminals; and a second active element that is provided with first to third terminals and has complementary characteristics with the first active element. The first terminals of the first and second active elements are connected to each other so that a predetermined operational bias voltage is maintained by first and second power supplies through a first impedance, and are connected to an input end through a second impedance. The third terminals of the first and second active elements are connected to an output end, and the second terminals of the first and second active elements are connected to the second power supply through a third impedance.
    • 本发明涉及用于线性化的导数叠加电路。 用于线性化的导数叠加电路包括:第一有源元件,其设置有第一至第三端子,并且其中流过第二端子的电流的大小和方向根据施加在第一端子与第三端子之间的电压的大小而变化 和第二终端; 以及设置有第一至第三端子并且与第一有源元件具有互补特性的第二有源元件。 第一和第二有源元件的第一端子彼此连接,使得通过第一阻抗由第一和第二电源维持预定的操作偏置电压,并且通过第二阻抗连接到输入端。 第一和第二有源元件的第三端子连接到输出端,并且第一和第二有源元件的第二端子通过第三阻抗连接到第二电源。
    • 10. 发明授权
    • Derivative superposition circuit for linearization
    • 用于线性化的导数叠加电路
    • US07570935B2
    • 2009-08-04
    • US11428345
    • 2006-06-30
    • Yoo Sam NaByung Sung KimWon Jin BaekMoon Sun Kim
    • Yoo Sam NaByung Sung KimWon Jin BaekMoon Sun Kim
    • H04B1/10H04B1/04
    • H03F1/3252
    • A derivative superposition circuit for linearization includes a first active element that is provided with first to third terminals and in which the magnitude and direction of current flowing from the second terminal to the third terminal changes on the basis of the magnitude of a voltage applied between the first and second terminals; and a second active element that is provided with first to third terminals and has complementary characteristics with the first active element. The first terminals of the first and second active elements are connected to each other so that a predetermined operational bias voltage is maintained by first and second power supplies through a first impedance, and are connected to an input end through a second impedance. The third terminals of the first and second active elements are connected to an output end, and the second terminals of the first and second active elements are connected to the second power supply through a third impedance.
    • 用于线性化的导数叠加电路包括设置有第一至第三端子的第一有源元件,并且其中从第二端子流到第三端子的电流的大小和方向基于施加在第二端子之间的电压的大小而变化 第一和第二终端; 以及设置有第一至第三端子并且与第一有源元件具有互补特性的第二有源元件。 第一和第二有源元件的第一端子彼此连接,使得通过第一阻抗由第一和第二电源维持预定的操作偏置电压,并且通过第二阻抗连接到输入端。 第一和第二有源元件的第三端子连接到输出端,并且第一和第二有源元件的第二端子通过第三阻抗连接到第二电源。