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A Combination of Astable Multivibrator and Microcontroller for Thermistor-Based Temperature Measurement Over Internet

机译:基于互联网的基于热敏电阻的温度测量的多谐振荡器和微控制器的组合

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The paper reports the development of a cost-effective Negative Temperature Coefficient thermistor-based temperature transducer for embedded systems and for the Internet of Things applications. The venture uses a 555 timer-based astable multivibrator as a first-stage linearizer in which the thermistor and a linearizing resistance in series with it modulate the threshold voltages of the internal comparators of the integrated circuit. The output is further processed by a microcontroller which performs a second stage linearization with the help of a look-up table coupled with linear interpolation. Furthermore, the microcontroller uses an Ethernet shield to transmit the temperature information to remote locations. The performance of the proposed setup has been examined for three different thermistors, over 30 degrees C to 120 degrees C. The measurement strategy has been found to outperform the competing arrangements reported in recent times, with regard to the measurement accuracy, linearity of transfer, compactness, cost, reliability, and immunity to drift.
机译:该论文报告了针对嵌入式系统和物联网应用的具有成本效益的负温度系数热敏电阻温度传感器的开发。该企业使用基于555定时器的不稳定多谐振荡器作为第一级线性化器,其中热敏电阻和与之串联的线性化电阻会调制集成电路内部比较器的阈值电压。输出由微控制器进一步处理,该微控制器借助与线性插值结合的查找表来执行第二阶段线性化。此外,微控制器使用以太网屏蔽将温度信息传输到远程位置。已针对超过30摄氏度至120摄氏度的三种不同的热敏电阻检查了所建议设置的性能。在测量精度,传输线性,紧凑,成本,可靠性和抗漂移性。

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