Abstract and keywords
Abstract:
This paper presents a comprehensive study of automation processes for calibration and testing of electronic components in modern production environments. A mathematical model of the quality control technological process has been developed, incorporating differential equations describing the dynamics of the measurement system and statistical models of measurement errors. An architecture for an automated testing system based on the PXIe standard with an integrated adaptive calibration module is proposed. Experimental studies on the efficiency of the developed system were conducted using the testing of a batch of control boards for technological equipment as a case study. The results demonstrate a 37% reduction in testing cycle time, a decrease in measurement uncertainty to 0.15%, and an increase in the defect detection rate to 99.8%.

Keywords:
production automation, electronic component testing, calibration, mathematical modeling, control system, quality control, technological process
References

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