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Discrete-time programmable-gain analog-to-digital converter (ADC) input circuit with multi-phase reference application

机译:具有多相参考应用的离散时间可编程增益模数转换器(ADC)输入电路

摘要

A discrete-time programmable-gain analog-to-digital converter (ADC) input circuit with multi-phase reference application, provides a high input impedance level substantially independent of input capacitor size and input signal gain setting. An input voltage is sampled at the common mode voltage of the input, using one or more reference capacitor(s) that has been charged in a previous clock phase to the reference feedback voltage. The sampled input voltage is then applied in series with a quantizer-controlled reference voltage to the input of an integrator in a second clock phase. The summing mode of the integrator is maintained at the reference common-mode voltage. Since the charge pulled from the input voltage source is substantially determined only by the quantization error and input noise voltage, the circuit has a high signal input impedance. Since the input voltage source is sampled with respect to its common-mode voltage, the common-mode input impedance is also high.
机译:具有多相参考应用的离散时间可编程增益模数转换器(ADC)输入电路提供了高输入阻抗电平,基本上与输入电容器的尺寸和输入信号增益设置无关。使用一个或多个参考电容器在输入的共模电压下对输入电压进行采样,该一个或多个参考电容器已在前一个时钟相位中充电至参考反馈电压。然后,在第二时钟相位中,将采样的输入电压与量化器控制的参考电压串联施加到积分器的输入。积分器的求和模式保持在参考共模电压下。由于从输入电压源提取的电荷基本上仅由量化误差和输入噪声电压确定,因此该电路具有较高的信号输入阻抗。由于输入电压源是相对于其共模电压采样的,因此共模输入阻抗也很高。

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