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    • 1. 发明授权
    • Circuit and method for dynamic current compensation
    • 动态电流补偿电路及方法
    • US07741911B2
    • 2010-06-22
    • US12170866
    • 2008-07-10
    • Shiau-Wen KaoMing-Ching KuoChih-Hung Chen
    • Shiau-Wen KaoMing-Ching KuoChih-Hung Chen
    • H03F3/45
    • H03F3/45475H03F3/45183H03F3/45659H03F2200/411H03F2200/456H03F2203/45526H03F2203/45528
    • An operational amplifier includes a first stage and a second stage, the first stage for receiving two input signals and the second stage being coupled to the first stage, wherein the second stage includes a first part with a first output of the operational amplifier, and a second part with a second output of the operational amplifier. A method includes providing a first current to the first part of the second stage, and providing a second current to the second part of the second stage. The method further includes adjusting the first current based on a current consumption of the first part of the second stage, and adjusting the second current based on a current consumption of the second part of the second stage, wherein the sum of the first current and the second current is substantially constant.
    • 运算放大器包括第一级和第二级,第一级用于接收两个输入信号,第二级耦合到第一级,其中第二级包括具有运算放大器的第一输出的第一部分和 第二部分是运算放大器的第二个输出。 一种方法包括向第二级的第一部分提供第一电流,并向第二级的第二部分提供第二电流。 该方法还包括基于第二级的第一部分的电流消耗来调整第一电流,并且基于第二级的第二部分的电流消耗来调整第二电流,其中第一电流和 第二电流基本上是恒定的。
    • 3. 发明授权
    • Low noise amplifier
    • 低噪声放大器
    • US07671686B2
    • 2010-03-02
    • US12188280
    • 2008-08-08
    • Ming-Ching KuoShiau-Wen KaoChih-Hung Chen
    • Ming-Ching KuoShiau-Wen KaoChih-Hung Chen
    • H03F3/04
    • H03F3/45179H03F3/19H03F2200/294H03F2203/45306H03F2203/45318
    • A low-noise amplifier circuit to convert a single-ended input into a dual-ended output includes an input transconductance stage circuit, including a first MOS transistor coupled in parallel with a second MOS transistor; a current buffer circuit, including a third MOS transistor coupled in parallel with a fourth MOS transistor; each of the first, second, third, and fourth transistors having a body, gate, source, and drain; the input transconductance stage circuit and the current buffer circuit being cascode coupled, forming a cascode amplifier configuration; the single-ended input being at the source of one of the first and second transistors in the input transconductance stage circuit; the dual-ended output being a differential output across the drain of the third transistor and the drain of the fourth transistor; the first and second transistors of the input transconductance stage circuit being cross-coupled, wherein the body of the first transistor is coupled to the source of the second transistor, and the body of the second transistor is coupled to the source of the first transistor; and the third and fourth transistors of the current buffer circuit being cross-coupled, wherein a first capacitance is coupled between the gate of the third transistor and the source of the fourth transistor, and a second capacitance is coupled between the gate of the fourth transistor and the source of the third transistor.
    • 将单端输入转换为双端输出的低噪声放大器电路包括输入跨导级电路,包括与第二MOS晶体管并联耦合的第一MOS晶体管; 电流缓冲电路,包括与第四MOS晶体管并联耦合的第三MOS晶体管; 第一,第二,第三和第四晶体管中的每一个具有主体,栅极,源极和漏极; 输入跨导级电路和当前缓冲电路被共源共栅耦合,形成共源共栅放大器配置; 单端输入在输入跨导级电路中位于第一和第二晶体管之一的源极处; 所述双端输出是跨越所述第三晶体管的漏极和所述第四晶体管的漏极的差分输出; 输入跨导级电路的第一和第二晶体管交叉耦合,其中第一晶体管的主体耦合到第二晶体管的源极,并且第二晶体管的主体耦合到第一晶体管的源极; 并且当前缓冲电路的第三和第四晶体管是交叉耦合的,其中第一电容耦合在第三晶体管的栅极和第四晶体管的源极之间,第二电容耦合在第四晶体管的栅极之间 和第三晶体管的源极。
    • 4. 发明授权
    • Frequency synthesizer
    • 频率合成器
    • US07733136B2
    • 2010-06-08
    • US12108843
    • 2008-04-24
    • Chih-Hung ChenMing-Ching KuoShiau-Wen Kao
    • Chih-Hung ChenMing-Ching KuoShiau-Wen Kao
    • H03L7/06
    • H03L7/18H03L7/0895H03L7/095
    • A frequency synthesizer includes: a fractional-N synthesizer configured to provide, in a locked condition, an output signal with an output frequency based on an input signal with a reference frequency, the fractional-N synthesizer including a charge pump outputting a current to be calibrated; a lock detector coupled to the fractional-N synthesizer to detect the locked condition, the lock detector being configured to send a first signal indicating the detection; a calibration component coupled to the lock detector and the fractional-N synthesizer, the calibration component being configured to provide a second signal to calibrate the current after receiving the first signal, based on a voltage sampled from the fractional-N synthesizer; and a current source array coupled to the calibration component and the fractional N synthesizer, the current source array being configured to calibrate the current based on the second signal.
    • 频率合成器包括:分数N合成器,被配置为在锁定状态下提供具有基于具有参考频率的输入信号的输出频率的输出信号,分数N合成器包括输出电流的电荷泵 校准; 锁定检测器,其耦合到所述分数N合成器以检测所述锁定状态,所述锁定检测器被配置为发送指示所述检测的第一信号; 耦合到所述锁定检测器和所述分数N合成器的校准部件,所述校准部件被配置为基于从所述分数N合成器采样的电压来提供第二信号以在接收到所述第一信号之后校准所述电流; 以及耦合到所述校准组件和所述分数N个合成器的电流源阵列,所述电流源阵列被配置为基于所述第二信号校准所述电流。
    • 5. 发明申请
    • FREQUENCY SYNTHESIZER
    • 频率合成器
    • US20090108892A1
    • 2009-04-30
    • US12108843
    • 2008-04-24
    • Chih-Hung CHENMing-Ching KuoShiau-Wen Kao
    • Chih-Hung CHENMing-Ching KuoShiau-Wen Kao
    • H03B21/02
    • H03L7/18H03L7/0895H03L7/095
    • A frequency synthesizer includes: a fractional-N synthesizer configured to provide, in a locked condition, an output signal with an output frequency based on an input signal with a reference frequency, the fractional-N synthesizer including a charge pump outputting a current to be calibrated; a lock detector coupled to the fractional-N synthesizer to detect the locked condition, the lock detector being configured to send a first signal indicating the detection; a calibration component coupled to the lock detector and the fractional-N synthesizer, the calibration component being configured to provide a second signal to calibrate the current after receiving the first signal, based on a voltage sampled from the fractional-N synthesizer; and a current source array coupled to the calibration component and the fractional N synthesizer, the current source array being configured to calibrate the current based on the second signal.
    • 频率合成器包括:分数N合成器,被配置为在锁定状态下提供具有基于具有参考频率的输入信号的输出频率的输出信号,分数N合成器包括输出电流的电荷泵 校准; 锁定检测器,其耦合到所述分数N合成器以检测所述锁定状态,所述锁定检测器被配置为发送指示所述检测的第一信号; 耦合到所述锁定检测器和所述分数N合成器的校准部件,所述校准部件被配置为基于从所述分数N合成器采样的电压来提供第二信号以在接收到所述第一信号之后校准所述电流; 以及耦合到所述校准组件和所述分数N个合成器的电流源阵列,所述电流源阵列被配置为基于所述第二信号校准所述电流。