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An LMS Programming Scheme and Floating-Gate Technology Enabled Trimmer-Less and Low Voltage Flame Detection Sensor

机译:LMS编程方案和浮栅技术支持的微调和低压火焰检测传感器

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摘要

In this paper, a Least Mean Square (LMS) programming scheme is used to set the offset voltage of two operational amplifiers that were built using floating-gate transistors, enabling a 0.95 VRMS trimmer-less flame detection sensor. The programming scheme is capable of setting the offset voltage over a wide range of values by means of electron injection. The flame detection sensor consists of two programmable offset operational amplifiers; the first amplifier serves as a 26 μV offset voltage follower, whereas the second amplifier acts as a programmable trimmer-less voltage comparator. Both amplifiers form the proposed sensor, whose principle of functionality is based on the detection of the electrical changes produced by the flame ionization. The experimental results show that it is possible to measure the presence of a flame accurately after programming the amplifiers with a maximum of 35 LMS-algorithm iterations. Current commercial flame detectors are mainly used in absorption refrigerators and large industrial gas heaters, where a high voltage AC source and several mechanical trimmings are used in order to accurately measure the presence of the flame.
机译:本文采用最小均方(LMS)编程方案来设置两个使用浮栅晶体管构建的运算放大器的失调电压,从而实现0.95 VRMS的无微调火焰检测传感器。该编程方案能够通过电子注入在较大的值范围内设置偏移电压。火焰检测传感器由两个可编程的偏置运算放大器组成。第一个放大器用作26μV失调电压跟随器,而第二个放大器用作可编程的无微调电压比较器。这两个放大器构成了所提出的传感器,其功能原理基于火焰离子化产生的电变化的检测。实验结果表明,在对放大器进行最多35次LMS算法迭代的编程之后,可以精确地测量火焰的存在。当前的商用火焰检测器主要用于吸收式制冷机和大型工业燃气加热器,在这些设备中,使用高压交流电源和多个机械调整件以精确测量火焰的存在。

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