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Test module development to detect the flase call probe pins on microeprocessor test equipment

机译:测试模块开发,以检测微处理器测试设备上的假呼叫探针引脚

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Probe pins are useful for electrical testing of microelectronic components, printed circuit board assembly (PCBA), microprocessors and other electronic devices due to it provides the conductivity test based on specific device circuit design. During the repeatable test runs, the load of test modules, contact failures and the current conductivity induces layer wear off all the tip of probe pins contact. Contamination will be build-up on probe pins and increased contact resistivity which results of cost loss and time loss for rectifying programs, rectifying testers and exchanging new probe pins. In this study, a resistivity approach will be developed to provide "Testing of Test Probes". The test module based on "Four-wire Ohm measurement" method with two alternative ways of applying power supply, that are 9V from a single power supply and 5V from Arduino UNO power supply were demonstrated to measure the small resistance value of microprocessor probe pin. A microcontroller with VEE Pro software was used to record the measurement data. The accuracy of both test modules were calibrated under different temperature conditions and result shows that 9V from a single power supply test module has higher measurement accuracy.
机译:探针针对微电子元件的电气测试,印刷电路板组件(PCBA),微处理器和其他电子设备由于其提供了基于特定器件电路设计的电导率测试。在可重复的测试运行期间,测试模块的负载,接触故障和电流电导率引起层磨损的所有探针引脚触点的磨损。污染将在探针引脚上积聚和增加的接触电阻率,这些接触电阻率是针对整流计划,整流测试仪和交换新探针引脚的成本损失和时间损失。在这项研究中,将开发电阻率方法以提供“测试探针的测试”。基于“四线OHM测量”方法的测试模块具有两种替代方式的施加电源,从单个电源和5V从Arduino UNO电源的5V进行了测量,以测量微处理器探头引脚的小电阻值。使用VEE Pro软件的微控制器用于记录测量数据。在不同的温度条件下校准两个测试模块的精度,结果表明,来自单个电源测试模块的9V具有更高的测量精度。

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