Embedded system based on microcontroller for generating I-V curves of electronic devices

Mario J. Illera, S. Sepulveda
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Abstract

A key parameter in the analysis of electronic devices behavior is their current-voltage curve, also known as characteristic curve. This information allows the designer to select the type of components required for a given application in order to obtain an optimal system performance. This paper presents a low-cost and low-power consumption embedded system able to accurately generate the characteristic curve of electronic devices. Microcontroller PIC18F4550 effectively handles different serial communication protocols to exchange data between a Java application running on a computer and different peripheral devices. The firmware within the microcontroller receives data from the Java interface and executes an algorithm to send a series of analog voltages to the element being characterized and it also measures the resultant current for each voltage; then, the pair of data points is sent back to the Java application to build the plot. The resultant data can be exported to a spreadsheet to be further analyzed. We characterized different electronic devices to evaluate the performance of the prototype. Successful repeatability tests and validation of theoretical models with experimental data indicated that the embedded system developed is accurate and reliable.
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基于单片机的嵌入式电子器件I-V曲线生成系统
分析电子器件性能的一个关键参数是它们的电流-电压曲线,也称为特性曲线。这些信息使设计人员能够选择给定应用所需的组件类型,以获得最佳的系统性能。本文提出了一种低成本、低功耗的嵌入式系统,能够准确地生成电子器件的特性曲线。微控制器PIC18F4550有效地处理不同的串行通信协议,以在计算机上运行的Java应用程序和不同的外围设备之间交换数据。微控制器内的固件接收来自Java接口的数据并执行算法以向被表征的元件发送一系列模拟电压,并且还测量每个电压的合成电流;然后,将这对数据点发送回Java应用程序以构建图。结果数据可以导出到电子表格中,以便进一步分析。我们对不同的电子器件进行了表征,以评估原型的性能。成功的重复性测试和理论模型与实验数据的验证表明,所开发的嵌入式系统是准确可靠的。
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