A broad bandwidth mixed analog/digital integrated circuit for measuring complex impedances; Principles and design considerations

M. A. Hilhorst, J. Balendonck, F. Kampers
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引用次数: 1

Abstract

A broad bandwidth measuring system for complex impedances is presented. The measuring principle, based on synchronous detection, is worked out mathematical. The final circuit is realized as a mixed analog/digital BiCMOS integrated circuit. The output of the IC is a modulated 100 kHz frequency and RS232. The phase accuracy requirement of the system is mainly determined by parameter deviation of transistors which share the same IC. The phase accuracy of the circuit is according to PSPICE simulations 0.07° at 20 MHz. This enables to measure a capacitance of 100 pF, in parallel with a conductance of 100 mS, with an accuracy of ± 1 pF. The requirements are based on the application of the IC in a sensor for water content and ionic concentration measurements ments in soil or other agricultural substrates.
用于测量复杂阻抗的宽带混合模拟/数字集成电路;原理和设计考虑
提出了一种复杂阻抗宽带宽测量系统。对基于同步检测的测量原理进行了数学推导。最终电路实现为模拟/数字混合BiCMOS集成电路。IC的输出是一个调制的100khz频率和RS232。系统的相位精度要求主要取决于同一集成电路中晶体管的参数偏差,根据PSPICE仿真,该电路在20 MHz时的相位精度为0.07°。这使得可以测量100pf的电容,与100ms的电导并行,精度为±1pf。该要求是基于IC在用于土壤或其他农业基质中含水量和离子浓度测量的传感器中的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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