Czasopismo |
Przegląd Elektrotechniczny |
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Tytuł artykułu |
Analysis of partial vacuum formation and effect on discharge parameter in short gap ESD |
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Autorzy | Ruan, F. Dlugosz, T. | |||||||
Treść / Zawartość | http://pe.org.pl/ | |||||||
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Języki publikacji | EN | |||||||
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Wydawca |
Wydawnictwo SIGMA-NOT |
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Czasopismo | Przegląd Elektrotechniczny | |||||||
Rocznik | 2011 | |||||||
Tom | R. 87, nr 2 | |||||||
Strony | 291--293 | |||||||
Opis fizyczny | Bibliogr. 13 poz., rys. | |||||||
Twórcy |
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Bibliografia |
[1] Daout B., Ryser H., Germond A., P. Zweiacker, “The correlation of rising slope and speed of approach in ESD tests”, the 7th International Symposium on Electromagnetic, 1987
[2] Pommerenke D., “ESD: transient fields, arc simulation and rise time limit ”, Journal of Electrostatics, 36 (1995) 31-54. [3] Pommerenke D., “On the Influence of the Speed of Approach, Humidity and Arc Length on ESD Breakdown”, ESD Form Grainau, 1993, pp. 103-111, December 2-3, Grainau, Germany [4] Pommerenke D., Aidam M., “ESD: waveform calculation, field and current of human and simulator ESD”, Journal of Electrostatics, 38 (1996), 33-51 [5] Sumida A., Yoshida T., Masui N., “Effects of the relative humidity on ESD from the charged metal”, Seidenki Gakkai Koen Ronbunshu, Vol.2006, 43-44. [6] Bonish S., Pommerenke D., Kalkner W., “Broadband Measurement of ESD Risetimes to Distinguish between Different Discharge Mechanisms”, J. Electrostatics, 56(2002), No.3, 363-383. [7] Greason W. D., “Methodology to Simulate Speed of Approach in Electrostatic Discharge(ESD) ”, EOS/ESD Symposium,1997. [8] Ruan F., Fujiwara O., “Effect of Approaching Contact Speed of Hand-Held Metal Piece on Characteristics of Discharge Current from Charged Human Body,” Proc. The 4th Asia-Pacific International Conference on EMC(CEEM’2006), Dalian, Aug2- Aug4, 2006: 107-112. [9] White F. M., Fluid Mechanics, 4th ed., New York: McGraw- Hill,1998. [10] Bonish S., Kalkner W., Pommerenke D., “Modeling of Short- Gap ESD under Consideration of Different Discharge Mechanisms,” IEEE Trans. on Plasma Science, 31(2003), 736– 744. [11] Ruan F., Dlugosz T., Sun S., Wang X., Zhou F., „Property of Sub-process Transition in Short Gap Electrostatic Discharge with Electrode Moving Speed to Target”, Asia-Pacific Symposium on Electromagnetic Compatibility & Technical Exhibition on EMC RF/Microwave Measurement & Instrumentation, 12-16 April 2010, Beijing China, 490-493. [12] Ruan F., Gao Y., Shi D., “Analysis on Electrode Speed Correlation of Discharge Parameters Applying Short-gap Electrostatic Discharge Model” , Proc. IEEE International Conference on EMC, Aug19-Aug23, 2008, Detroit, Michigan, U.S. [13] Ruan F., Shi D., Gao Y., Song Z., “Electrode Speed Effect on Discharge Properties in Short Gap Electrostatic Discharge,” IEEE International Conference on EMC, Aug17-Aug21, 2009, Austin, Texas, U.S.: 215-219. |
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Kolekcja | BazTech | |||||||
Identyfikator YADDA | bwmeta1.element.baztech-article-BPW8-0017-0021 | |||||||
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