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    • 11. 发明申请
    • ANALOG DIGITAL CONVERTING DEVICE
    • 模拟数字转换器件
    • US20120062406A1
    • 2012-03-15
    • US12982531
    • 2010-12-30
    • Young Kyun ChoYoung-deuk JeonJaewon NamJong-Kee Kwon
    • Young Kyun ChoYoung-deuk JeonJaewon NamJong-Kee Kwon
    • H03M1/36H03M1/12
    • H03M1/145H03M1/365H03M1/468
    • Provided is an analog digital converting device which consumes a low power and guarantees fast operation characteristic. The analog digital converting device includes a sub-ADC and a successive approximation ADC. The sub-ADC converts an external analog signal into a first digital signal by using first and second reference voltages. The successive approximation ADC comprises a plurality of bit streams, and converts the external analog signal into a second digital signal according to a successive approximation operation using the first and second reference voltages. The successive approximation ADC receives the first digital signal, and converts the second digital signal in a state where one of the first and second reference voltages has been applied to the bit streams based on the first digital signal.
    • 提供了一种消耗低功耗并保证快速操作特性的模拟数字转换装置。 模拟数字转换装置包括子ADC和逐次逼近ADC。 子ADC通过使用第一和第二参考电压将外部模拟信号转换为第一数字信号。 逐次逼近ADC包括多个比特流,并且根据使用第一和第二参考电压的逐次逼近操作将外部模拟信号转换为第二数字信号。 逐次逼近ADC接收第一数字信号,并且在第一和第二参考电压中的一个被基于第一数字信号施加到比特流的状态下转换第二数字信号。
    • 15. 发明授权
    • Gain control device and amplifier using the same
    • 增益控制装置和放大器使用相同
    • US07821341B2
    • 2010-10-26
    • US12507701
    • 2009-07-22
    • Yi Gyeong KimMin Hyung ChoJong Kee Kwon
    • Yi Gyeong KimMin Hyung ChoJong Kee Kwon
    • H03G3/10
    • H03F3/45475H03F2203/45528H03F2203/45591
    • Provided are a gain control device and an amplifier using the gain control device. The gain control device includes a first input resistance unit having a first variable resistor whose resistance is linearly variable and a first fixed resistor respectively receiving a first input signal and a second input signal having a sign different from the first input signal and outputting current through a first output terminal, and a second input resistance unit having a second fixed resistor and a second variable resistor whose resistance is linearly variable respectively receiving the first input signal and the second input signal and outputting current through a second output terminal.Since the gain control device can separately perform dB-linear gain control, it is easily combined with a circuit, such as a continuous-time sigma-delta modulator (SDM), a continuous-time filter, and a continuous-time analog-to-digital converter (ADC), and enables miniaturization and low power consumption.
    • 提供了增益控制装置和使用增益控制装置的放大器。 所述增益控制装置包括具有电阻为线性变化的第一可变电阻器和分别接收第一输入信号的第一固定电阻器和具有与第一输入信号不同的符号的第二输入信号的第一输入电阻单元, 第一输出端子和具有第二固定电阻器和第二可变电阻器的第二输入电阻单元,其电阻为线性变化,分别接收第一输入信号和第二输入信号,并通过第二输出端子输出电流。 由于增益控制装置可以单独执行dB线性增益控制,所以可以容易地与诸如连续时间Σ-Δ调制器(SDM),连续时间滤波器以及连续时间模拟到 数字转换器(ADC),并实现小型化和低功耗。
    • 17. 发明授权
    • Algorithm analog-to-digital converter
    • 算法模数转换器
    • US07482966B2
    • 2009-01-27
    • US11946583
    • 2007-11-28
    • Seung Chul LeeYoung Deuk JeonKwi Dong KimJong Kee Kwon
    • Seung Chul LeeYoung Deuk JeonKwi Dong KimJong Kee Kwon
    • H03M1/38
    • H03M1/0678H03M1/162
    • Provided is an algorithm analog-to-digital converter (ADC). The algorithm ADC obtains two digital outputs through different capacitor connections for one analog input signal and adds the digital output signals to obtain a final output value, so that a mismatch factor of the capacitor is removed to minimize a linearity limitation resulting from the capacitor mismatch. In addition, the algorithm ADC minimizes power consumption by making the operating frequency slow at a cycle requiring a high resolution and making the operating frequency fast at a cycle requiring a low resolution, i.e., outputting different operating clock frequencies according to a required resolution.
    • 提供了一种算法模数转换器(ADC)。 算法ADC通过不同的电容器连接获得两个数字输出,用于一个模拟输入信号,并将数字输出信号相加以获得最终输出值,从而消除电容器的失配因子,以最小化由电容器失配引起的线性限制。 此外,算法ADC通过使工作频率在需要高分辨率的周期中变慢,并使工作频率在需要低分辨率的周期(即,根据所需分辨率输出不同的工作时钟频率)的情况下将功率消耗最小化。
    • 20. 发明授权
    • Adaptive loop gain control circuit for voltage controlled oscillator
    • 用于压控振荡器的自适应环路增益控制电路
    • US06833766B2
    • 2004-12-21
    • US10410829
    • 2003-04-09
    • Kwi-dong KimJong-kee KwonHee-bum JungKyung-soo Kim
    • Kwi-dong KimJong-kee KwonHee-bum JungKyung-soo Kim
    • H03L700
    • H03L1/00H03L7/0995
    • There is provided an adaptive loop gain control circuit for a voltage-controlled oscillator (VCO). The adaptive loop gain control circuit for a voltage-controlled oscillator (VCO) includes a detected voltage generating unit which generates a detected voltage signal according to changes in an operating voltage and an operating temperature, and a control circuit unit which outputs an oscillation control current signal according to the detected voltage signal and an input control voltage signal. The adaptive loop gain control circuit for a voltage-controlled oscillator (VCO) compensates for an oscillation control current according to changes in operating voltage and temperature and compensates for the gain of a phase locked loop (PLL) system, thereby ensuring high operating stability in the PLL circuit.
    • 提供了一种用于压控振荡器(VCO)的自适应环路增益控制电路。 用于压控振荡器(VCO)的自适应环路增益控制电路包括:检测电压产生单元,其根据工作电压和工作温度的变化产生检测的电压信号;以及控制电路单元,其输出振荡控制电流 信号根据检测到的电压信号和输入控制电压信号。 用于压控振荡器(VCO)的自适应环路增益控制电路根据工作电压和温度的变化补偿振荡控制电流,并补偿锁相环(PLL)系统的增益,从而确保在 PLL电路。