减小漂移电压影响的积分器结构

Wang Haiqiang, Hou Ligang, Ye Tongyang, Wang Jinhui, Geng Shuqin
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引用次数: 0

摘要

本文旨在设计一种高精度、低漂移的模拟积分器,采用的方法是利用积分电阻来控制积分器产生的漂移。其主要思想是采用最佳电路结构使零漂和非线性误差最小化,并选用高精度元件,尽可能采用大的积分电阻,使运放尽可能具有大的开环增益和高输入阻抗以及良好的高频特性,高输入阻抗的频率集成电路,在积分电路中非反相输入接入可调平衡电阻;对于结构差的情况使用两个积分器。最后对结果进行了总结,并进行了Cadence仿真。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Integrator structure for reducing drift voltage influence
This paper aims to design a high precision, low drift analog integrator, The method used is to use integral resistance to control the drift generated by the integrator. The main idea is to use the best circuit structure to minimize the zero drift and non-linear error, and select the high-precision components, As far as possible to use a large integral resistance, The op amp has a large open-loop gain and high input impedance and good high frequency characteristics as much as possible, high input impedance frequency integrated circuit, the integral circuit in the non-inverting input access adjustable balance resistor, and the use of two integrators for the poor structure. Finally, the results was summarized and the Cadence simulation is carried out.
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