Fabrication of a Simple Computerized High Power Supply for Magnetic Measurements

Sadeq H. Lafta, Ekhals Abbas Albahrani
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Abstract

A High current power supply was built and controlled by a personal computer using a simple design and a low-cost components for magnetic measurement applications. The design depends on the Arduino Uno board and Scilab software. Three Scilab block diagrams were given to simulate three magnetic tests, which are constant field block diagram (single field value), increasing and decreasing fields for FMR and magnetocaloric tests, and field for hysteresis loop test. Each Scilab block diagram contained different xcos blocks to control the Arduino output voltage and other blocks to sense, read, and calibrate the field value. This control was done via controlling pulse width modulation in the range (0-255). The output of each block diagram was simulated by measuring its variation with time using a cscope block display. The Arduino signal was amplified by a simple electronic circuit that involved two stages, BUL680 transistor as the first stage. Two high-power transistors EVK71-050 or Q50z were used in the second stage. The output of 107V-39.8A from the first one and 108V- 39.7A from the second one produces a magnetic field of about 30000Oe. The linearity between the current and the field value is better for Q50z due to the variation of α with the wide variation of collector current.
制作用于磁性测量的简易计算机化大功率电源
利用简单的设计和低成本元件,为磁性测量应用制作了一个大电流电源,并由个人电脑控制。设计依赖于 Arduino Uno 板和 Scilab 软件。给出了三个 Scilab 框图来模拟三种磁场测试,即恒定磁场框图(单一磁场值)、用于调频调相和磁致性测试的递增和递减磁场,以及用于磁滞回线测试的磁场。每个 Scilab 框图都包含不同的 xcos 块,用于控制 Arduino 输出电压,其他块用于感应、读取和校准磁场值。这种控制是通过控制脉冲宽度调制在(0-255)范围内完成的。通过使用 cscope 块显示屏测量其随时间的变化,模拟每个块图的输出。Arduino 信号通过一个简单的电子电路进行放大,该电路包括两级,第一级是 BUL680 晶体管。第二级使用了两个大功率晶体管 EVK71-050 或 Q50z。第一级输出 107V-39.8A 电流,第二级输出 108V-39.7A 电流,产生约 30000Oe 的磁场。Q50z 的电流与磁场值之间的线性关系较好,这是因为集电极电流变化较大时,α 也会发生变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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