基于ThinkSpeak平台的物联网热电偶(K型)八通道温度监测

Candra Prastyadi, B. Utomo, Her Gumiwang Ariswati, D. Titisari, S. Sumber, A. S. Kumar
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引用次数: 0

摘要

实验室培养箱是用来培养一个品种的设备。培养箱中一个非常重要的条件是微生物生长的最佳温度条件。培养箱装有温控器,可以根据饲养的品种调节温度。孵化器使用像干热一样的烤箱。本研究的目的是测试和分析在实验室培养箱校准器中使用培养介质的热电偶传感器的准确性。主要设计方法采用8max 6675模块、8k型热电偶模块、Arduino Mega和SD卡数据存储。温度测量用K型热电偶传感器测量。热电偶传感器有8个通道,用于测量培养箱每个弧度点的温度。温度将存储在SD卡上进行数据分析,数据可以图形化处理。使用温度数据记录仪进行基准测试。这样做是为了使设计结果低于标准比较工具。与比较工具相比,模块上的测量结果误差值最大,为3.98%,即在35℃时T6通道上使用普通培养液,在37℃时T6点上使用普通培养液误差最小,为0.06%,在35℃时培养箱风扇温度误差最大,为2.98%,误差最小,为0.86%。通过在每个点测试比较工具,模块可以表现良好
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Eight Channel Temperature Monitoring using Thermocouple Sensors (type K) Based on Internet of Thing using ThinkSpeak Platform
A laboratory incubator is a device used to incubate a breed. a very important condition in the procedure Incubator is the optimal temperature conditions for microorganisms to grow. The incubator is equipped with a temperature controller so that the temperature can be adjusted according to the breed to be raised. Incubators use an oven like dry heat. The purpose of this study was to test and analyze the accuracy of the thermocouple sensor with incubator media in a laboratory incubator calibrator. The main design method uses the 8 MAX 6675 module, the 8 K type Thermocouple module, Arduino Mega, and SD Card data storage. Temperature measurements were measured with a Type K thermocouple sensor. The thermocouple sensor has 8 channels which function to measure the temperature at each camber point of the incubator. The temperature will be stored on the SD card for data analysis and the data can be processed in graphical form. Benchmarking is done using a temperature data logger. This is done so that the design results are below the standard comparison tool. The measurement results on the module compared to the comparison tool obtained the largest error value, namely 3.98%, namely on channel T6 at 35°C with ordinary incubator media and the smallest error on ordinary incubator media at point T6 at 37°C, which is 0.06 % and at 35 C the temperature of the incubator fan has the largest error of 2.98% and the smallest error of 0.86%. the module can perform well by testing the comparison tool at every point
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