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首页> 外文期刊>Measurement Science & Technology >A complementary metal oxide semiconductor--integrable conditioning circuit for resistive chemical sensor management
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A complementary metal oxide semiconductor--integrable conditioning circuit for resistive chemical sensor management

机译:互补金属氧化物半导体-集成式调节电路,用于电阻式化学传感器管理

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摘要

This paper presents a new interface circuit (for MOX-based resistive chemical sensors) capable of overcoming the main limit of the circuits based on the resistance-to-time approach, i.e. the long measuring time with high-value resistances. The system is designed to operate with a single supply of 3.3 V, thus facilitating an ASIC implementation together with digital electronics for a first data analysis and transmission. This is particularly advantageous when the elaboration process requires a large computational load and a data pre-elaboration is advisable. Simulations of the integrable solution of the system have shown the feasibility of the proposed approach. A prototype with discrete components has been furthermore fabricated and experimentally tested, showing good performance in the range 0.5 M(OMEGA) to 10 G(OMEGA) with a maximum measuring time of 60 ms.
机译:本文提出了一种新的接口电路(用于基于MOX的电阻式化学传感器),该接口电路能够克服基于电阻时间方法的电路的主要限制,即具有高价值电阻的长测量时间。该系统设计为采用3.3 V单电源供电,因此有助于ASIC与数字电子设备一起用于首次数据分析和传输。当细化过程需要较大的计算负荷并且建议进行数据预细化时,这尤其有利。系统集成解决方案的仿真表明了该方法的可行性。具有离散组件的原型已被进一步制造和实验测试,显示出在0.5 M(OMEGA)至10 G(OMEGA)范围内的良好性能,最大测量时间为60 ms。

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