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Wide-Dynamic-Range and High-Sensitivity Current-to-Voltage Converters

机译:宽动态范围和高灵敏度电流电压转换器

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A wide dynamic range and a high sensitivity are often incompatible with each other in analog circuits, such as signal converters or amplifiers. In this paper, we present a method of developing current-to-voltage converters featuring both. It comprises two current-to-voltage conversions. One is to convert the DC component, i.e., the average level of the current input, into a voltage with a nonlinear compression. The other is to apply a "linear" conversion to the signal component of the input current. This conversion is considered to be "linear" as the gain is made to be almost constant if the varying signal is rippling at a given current level, and to increase if the level is changed to be lower. Hence, the gain is adaptive to the input current, i.e., getting stronger if the current signal is weaker, and vice versa. This adaptability is implemented by (a) an adaptive bias by means of the voltage converted from the DC component of the input current, and (b) the current-dependent finite drain-source resistances of MOS transistors. A low-pass current filter is used, in the proposed conversion operation, to separate the DC component of the input current from the signal one. We propose, in this paper, a basic structure of the filter and techniques to improve the filtering quality over a wide current range, also an approach to an effective reduction of the effect of the device mismatch as well. A design example of the proposed conversion is presented in this paper. The simulation results have shown its dynamic range of 5-decades and its sensitivity high enough to detect sub-nA current variations.
机译:在诸如信号转换器或放大器的模拟电路中,宽动态范围和高灵敏度通常彼此不兼容。在本文中,我们提出了一种开发兼具这两种功能的电流-电压转换器的方法。它包括两个电流到电压的转换。一种是通过非线性压缩将DC分量即电流输入的平均电平转换为电压。另一种是对输入电流的信号分量进行“线性”转换。这种转换被认为是“线性的”,因为如果变化的信号以给定的电流电平波动,则增益几乎恒定,而如果电平降低则增益增加。因此,增益适应于输入电流,即,如果电流信号较弱,则增益变强,反之亦然。这种适应性是通过(a)通过从输入电流的DC分量转换而来的电压提供自适应偏置,以及(b)MOS晶体管的电流相关有限漏极-源极电阻来实现的。在建议的转换操作中,使用低通电流滤波器将输入电流的直流分量与信号之一分开。在本文中,我们提出了滤波器的基本结构以及在较宽的电流范围内改善滤波质量的技术,并且还提出了一种有效降低器件失配影响的方法。本文提出了一个建议的转换的设计示例。仿真结果表明,其动态范围为5个十年,其灵敏度足以检测亚nA电流变化。

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