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Experimental Study on Differentiating between Natural Honey and Honey Glucose Syrup by Using Hall Effect Sensor

机译:用霍尔效应传感器对天然蜂蜜和蜂蜜葡萄糖糖浆的实验研究

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This study presents the application of Hall Effect sensor for differentiating the combination of liquids based on electrical conductance. Electromagnetic field was generated from wire (AWG 31) bound on high frequency magnetic core namely Toroidal iron power (T131-26) or C-shape Toroidal core. In this study, the electrochemical cell was fixed at 0.09375 cm"1 and there were 10 samples of several liquid types for testing. Hall Effect sensor was designed to place with high frequency magnetic cores bound by 310-turns wire. From experiment using electromagnetic field generated by C-shape Toroidal core, it can be observed that the samples of natural honey from Germany (J) and sugar substitute for diabetics (I) could be distinguished by considering output voltage of Hall Effect sensor (Vh) and electrical conductance. The output voltage and the electrical conductance from measurement of natural honey (J) were 3.037 V and 0.941 mS.T, respectively while those from measurement of sugar substitute (I) were 3.030 V and 0.938 mS.T, respectively. Moreover, it can be noted that this methodology could be applied for measuring electrical conductance of several liquid types due to the relationships of output voltage of Hall Effect sensor and electrical conductance of liquid. However, only C-shape Toroidal core was used in this study due to the appropriate generation of electromagnetic field for differentiating both sample liquid types with +1.83% of error for natural honey and ±1.51% of error for sugar substitute from 195 Times of repetitive measurement.
机译:本研究介绍了霍尔效应传感器的应用,以确定基于电导率的液体组合。电磁场由在高频磁芯的焊丝(AWG 31)中产生环形铁功率(T131-26)或C形环形芯。在本研究中,电化学电池固定在0.09375cm“1,并且有10种样品的几种液体类型进行测试。霍尔效应传感器设计为用310转线绑定的高频磁芯放置。使用电磁场实验由C形环形芯产生,可以观察到,通过考虑霍尔效应传感器(VH)和电导率的输出电压,可以区分来自德国(J)和糖果替代品(i)的天然蜂蜜的样品。该来自天然蜂蜜(j)的测量的输出电压和电导分别为3.037V和0.941 ms.t,而糖替代物(i)的测量分别为3.030 v和0.938 ms。此外,它可以是注意到,由于霍尔效应传感器的输出电压和液体的电导,可以应用这种方法来测量几种液体类型的电导。但是,只有C-SH本研究中使用了猿环形核心由于适当产生的电磁场,用于将样品液体类型与天然蜂蜜误差的±1.83%区分,从195次重复测量的糖替代品误差±1.51%。

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