@inproceedings{de83b1e1272f4845aa8f4bc63186b1a2,
title = "Dynamics analysis of vibration process in particle impact noise detection",
abstract = "Particle Impact Noise Detection (PIND) test is a reliability screening technique for hermetic components that is prescribed by MIL-PRF-39016E. Some experiment conditions which are applied to the devices under test are specified, but MIL-PRF-39016E didn't specify how to obtain these conditions. This paper establishes the dynamics models of vibration process based on first order mass-spring system. The corresponding Simulink model is established to simulate vibration and shock process in optional input excitations. The response equations are also derived in sinusoidal and square wave excitations respectively and the required electromagnetic force waves are computed in order to obtain a given vibration and shock accelerations. Last, some simulation results are given.",
keywords = "Electromagnetic force, Particle impact noise detection, Vibration",
author = "Hui Zhang and Changlei Zhou and Shujuan Wang and Guofu Zhai",
year = "2007",
language = "英语",
series = "ICREPEC 2007 - Proceedings of the 2nd International Conference on Reliability of Electrical Products and Electrical Contacts",
publisher = "China Science and Technology Press",
pages = "301--304",
editor = "Jingqin Wang and Jingying Zhao",
booktitle = "ICREPEC 2007 - Proceedings of the 2nd International Conference on Reliability of Electrical Products and Electrical Contacts",
note = "2nd International Conference on Reliability of Electrical Products and Electrical Contacts, ICREPEC 2007 ; Conference date: 28-03-2007 Through 31-03-2007",
}