用LED灯作为指标,测试电动势源频率变化的归纳电电器的归纳电容器关系

Alhidayatuddiniyah T W, S. Astuti
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引用次数: 0

摘要

本研究的目的是了解电感元件的工作原理,特别是以LED为指示器的电感元件的电感抗特性。研究开始于组装一个装置,利用电感作为低通滤波器计算电感阻抗随频率变化的变化,然后继续研究电感中交流电流和电压之间的关系。结果表明,电感中电流的大小与交流电流的角频率成反比,而电感上的电压与交流电流的角频率大小成正比。根据观察和计算的结果,得到不同的值,这可能是由于电流表的误差,其中电流表具有将交流电压整流到直流的特性,因此有可能只测量峰值信号。并且仅基于50 Hz和100 Hz频率的线性图,因为在这个频率下,波在示波器上看起来仍然很完美,而其他山谷信号被切断,图形变得非线性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Pengujian Hubungan Reaktansi Induktif pada Induktor Terhadap Perubahan Frekuensi Sumber Arus dengan LED Sebagai Indikator
The purpose of this study is to understand the working principle of the inductor component, especially the characteristics of the inductive reactance of the inductor using LED as an indicator. The research began by assembling a device, calculating the change in inductor impedance to changes in frequency using the inductor as a Low Pass Filter, then proceeding to investigate the relationship between AC current and voltage in the inductor. The results obtained that the magnitude of the current in the inductor is inversely proportional to the angular frequency of the AC current, while the voltage on the inductor is directly proportional to the magnitude of the angular frequency of the AC current. Based on the results of observations and calculations, different values are obtained, this can be due to an error in the ammeter, where the ammeter has the property of rectifying AC voltage to DC, so there is a possibility that only the peak signal is measured. And based on the linear graph only at frequencies of 50 Hz and 100 Hz, because at this frequency the waves still look perfect on the oscilloscope, while the other valley signals are cut off, the graph becomes non-linear.
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