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首页> 外文期刊>Instrumentation and Measurement, IEEE Transactions on >Thermal Conductivity Detector for Gas Chromatography: Very Wide Gain Range Acquisition System and Experimental Measurements
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Thermal Conductivity Detector for Gas Chromatography: Very Wide Gain Range Acquisition System and Experimental Measurements

机译:气相色谱热导检测器:非常宽的增益范围采集系统和实验测量

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The aim of this paper is to present an acquisition system featuring a very wide gain range and experimental measurements of a new micromachined thermal conductivity detector ($mu$ TCD), applied downstream of a gas-chromatography (GC) system. We describe a simple and innovative electronics for $mu$TCD control and data acquisition, outlining its resistance control, native imbalance compensation, and automatic gain control (AGC) algorithm. The acquisition electronics features two parallel amplification stages with programmable gain: a high-gain stage (gain: 70–1280) and a low-gain or attenuating stage (gain: 0.6–30). The resulting detection range turns out to be very wide, with full scales ranging between 3.9 mV and 6.5 V while voltage is acquired with a 10-b-resolution analog-to-digital converter. Measurements and sensitivity tests have been carried out by connecting our $mu$TCD and acquisition system downstream of the microfluidic section and GC column of a commercial GC system. Sensitivity measurements on several toluene masses gave very good results, having observed a system sensitivity of $15.2 pm 0.6 muhbox{Vsg}$ . This high sensitivity will enable the $mu$TCD to be used in many portable applications like in-line quality control, and industrial security and safety. We also show the good operation of the AGC algorithm.
机译:本文的目的是介绍一种采集系统,该系统具有非常宽的增益范围以及新型微机械导热系数检测器( $ mu $ TCD),应用于气相色谱(GC)系统的下游。我们描述了一种用于 $ mu $ TCD控制和数据采集的简单创新的电子产品,概述了其电阻控制,固有的不平衡补偿,和自动增益控制(AGC)算法。采集电子器件具有两个并行的,具有可编程增益的放大级:一个高增益级(增益:70–1280)和一个低增益或衰减级(增益:0.6–30)。最终的检测范围非常宽,满量程范围在3.9 mV至6.5 V之间,而电压是通过10位分辨率的模数转换器获取的。通过连接我们的 $ mu $ TCD和微流体部分和GC色谱柱下游的采集系统,进行了测量和灵敏度测试。商业气相色谱系统。观察到<甲苯分子式 $ 15.2 pm 0.6 muhbox {Vs / ng} $ 。这种高灵敏度将使 $ mu $ TCD可以用于许多便携式应用,例如在线质量控制和工业安全性。我们还展示了AGC算法的良好操作。

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