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An analog signal conditioning circuit for thermocouple temperature sensor employing thermistor for cold junction compensation

机译:使用热敏电阻进行冷端补偿的热电偶温度传感器的模拟信号调节电路

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摘要

Thermocouples are widely used as temperature sensors in industrial as well as laboratory settings owing to their low cost, usability and stability over a wide range of temperatures. However limitations arise in the form of cold junction compensation and non-linearity of the thermocouple emf. The present paper proposes an analog signal conditioning circuit that performs the dual task of cold junction compensation and linearization. Cold junction compensation is done using a thermistor based circuit to emulate the output voltages of the thermocouple at different ambient temperatures with respect to 0°C, and linearization is performed by employing a temperature-compensated dual-input logarithmic amplifier. Optimum circuit parameters have been found by standard optimizations methods, and simulations have been performed using a circuit simulation software ‘PSpice’ by considering the characteristics of a 5kΩ thermistor and a T-type Copper Constantan Thermocouple. Nonlinearity errors and variation of output voltage of the signal conditioning circuit with ambient temperature are investigated from the simulation results.
机译:由于热电偶的成本低,在广泛温度范围内的可用性和稳定性,热电偶被广泛用作工业和实验室环境中的温度传感器。但是,限制以冷端补偿和热电偶电动势的非线性形式出现。本文提出了一种模拟信号调节电路,该电路执行冷端补偿和线性化的双重任务。使用基于热敏电阻的电路来完成冷端补偿,以模拟相对于0°C在不同环境温度下热电偶的输出电压,并通过使用温度补偿的双输入对数放大器来执行线性化。通过标准的优化方法可以找到最佳的电路参数,并使用5k software热敏电阻和T型铜康斯坦康热电偶的特性,使用电路仿真软件“ PSpice”进行了仿真。根据仿真结果,研究了信号调理电路的非线性误差和输出电压随环境温度的变化。

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