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    • 2. 发明授权
    • Current switch driving circuit and digital to analog converter
    • 电流开关驱动电路和数模转换器
    • US08542139B2
    • 2013-09-24
    • US13310606
    • 2011-12-02
    • Min-Hyung ChoYi-Gyeong KimJong-Kee Kwon
    • Min-Hyung ChoYi-Gyeong KimJong-Kee Kwon
    • H03M1/00
    • H03K17/04106H03M1/06H03M1/66
    • Provided are a current switch driving circuit generating a signal for driving a current switch, and a digital-to-analog converter using the same. The current switch driving circuit includes a first PMOS transistor in which a source terminal is connected to a power supply terminal, a gate terminal receives an input signal, and a drain terminal outputs a driving signal, an NMOS transistor in which a drain terminal is connected to the drain terminal of the first PMOS transistor, and a gate terminal receives the input signal, a second PMOS transistor in which a source terminal is connected to a source terminal of the NMOS transistor, a gate terminal is connected to a bias voltage terminal, and a drain terminal is connected to a ground terminal, and a control current source allowing the second PMOS transistor to be maintained constantly in an ON state.
    • 提供了产生用于驱动电流开关的信号的电流开关驱动电路和使用该电流开关的数模转换器。 电流开关驱动电路包括:第一PMOS晶体管,源极端子连接到电源端子,栅极端子接收输入信号,漏极端子输出驱动信号;漏极端子连接的NMOS晶体管 到第一PMOS晶体管的漏极端子,并且栅极端子接收输入信号;第二PMOS晶体管,其源极端子连接到NMOS晶体管的源极端子,栅极端子连接到偏置电压端子, 并且漏极端子连接到接地端子,并且使得允许第二PMOS晶体管恒定地处于导通状态的控制电流源。
    • 5. 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。
    • 10. 发明授权
    • Read-out circuit with high input impedance
    • 具有高输入阻抗的读出电路
    • US08300850B2
    • 2012-10-30
    • US12511361
    • 2009-07-29
    • Min Hyung ChoYi Gyeong KimJae Won NamJong Kee Kwon
    • Min Hyung ChoYi Gyeong KimJae Won NamJong Kee Kwon
    • H04R3/00
    • H04R3/00
    • Provided is a read-out circuit that is connected to a microphone and configured to linearly amplify a current signal generated by the microphone and output the amplified current signal. The read-out circuit includes an amplification unit and a feedback resistor. The amplification unit has an amplification gain between 0 and 1. The feedback resistor is connected between input and output terminals of the amplification unit. As the amplification gain of the amplification unit becomes closer to 1, an input impedance becomes higher. A preamp of the read-out circuit can have a high input impedance due to the amplification gain, and the read-out circuit can be manufactured using a CMOS process.
    • 提供了一种连接到麦克风并被配置为线性放大由麦克风产生的电流信号并输出​​放大的电流信号的读出电路。 读出电路包括放大单元和反馈电阻器。 放大单元的放大增益在0和1之间。反馈电阻连接在放大单元的输入和输出端之间。 随着放大单元的放大增益变得更接近于1,输入阻抗变高。 由于放大增益,读出电路的前置放大器可以具有高输入阻抗,并且读出电路可以使用CMOS工艺制造。