Presentation 2000/10/13
Influence of Sustain Pulse-Width on Electrical Characteristics and Luminous Efficiency in Surface Discharge of AC-PDP
Y. W. Jeong, T. S. Cho, T. Y. Kim, M. C. Choi, J. C. Ahn, J. M. Jeong, J. Y. Lim, S. B. Kim, S. H. Choi, M. W. Chong, S . S. Kim, J. J. Ko, D. I. Kim, C. W. Lee, S. O. Kang, G. S. Cho, E. H. Choi,
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Abstract(in English) Influences of sustain pulse-width on electrical characteristics and luminous efficiency are experimentally investigated for surface discharge of AC-PDP. A square pulse with variable duty ratio and fixed rising time of 300 ns has been used in the experiment. It is found that the firing voltage is decreased as the pulse-width is increased from I μs to 5 μs with sweeping frequency range of 10 kHz to 180 kHz. It is also found that the memory coefficient is significantly increased at the critical pulse-width. And the wall charges and wall voltages as well as capacitances are experimentally measured by Q-V analysis method we suggested[1], in terms of the sustain pulse-width in the range of 1 μs to 5 its under driving frequency of 10 kHz to 180 kHz. And the luminous efficiency is also experimentally investigated in above range of sustain pulse-width with driving frequency of 10 kHz to 180 kHz. It is noted that the luminous efficiency for 10 kHz and 180 kHz are 1.29 lm/W and 0.68 lm/W respectively, since the power consumption for 10 kHz is much less than that for 180 kHz. It has been concluded that the optimal sustain pulse-width is in the range of 2.5 ~ 4.5 μs under driving frequency range of 10 kHz and 60 kHz, and in the range of 1.5 ~ 2.5 μs under driving frequency range of 120 kHz and 180 kHz based on observation of memory coefficient, wall charge, arid wall voltage as well as luminous efficiency.
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Paper # EID2000-100
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Committee EID
Conference Date 2000/10/13(1days)
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Language ENG
Title (in Japanese) (See Japanese page)
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Title (in English) Influence of Sustain Pulse-Width on Electrical Characteristics and Luminous Efficiency in Surface Discharge of AC-PDP
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1st Author's Name Y. W. Jeong
1st Author's Affiliation Department of Electrophysics, Kwangwoon University()
2nd Author's Name T. S. Cho
2nd Author's Affiliation Department of Electrophysics, Kwangwoon University
3rd Author's Name T. Y. Kim
3rd Author's Affiliation Department of Electrophysics, Kwangwoon University
4th Author's Name M. C. Choi
4th Author's Affiliation Department of Electrophysics, Kwangwoon University
5th Author's Name J. C. Ahn
5th Author's Affiliation Department of Electrophysics, Kwangwoon University
6th Author's Name J. M. Jeong
6th Author's Affiliation Department of Electrophysics, Kwangwoon University
7th Author's Name J. Y. Lim
7th Author's Affiliation Department of Electrophysics, Kwangwoon University
8th Author's Name S. B. Kim
8th Author's Affiliation Department of Electrophysics, Kwangwoon University
9th Author's Name S. H. Choi
9th Author's Affiliation Department of Electrophysics, Kwangwoon University
10th Author's Name M. W. Chong
10th Author's Affiliation Department of Electrophysics, Kwangwoon University
11th Author's Name S . S. Kim
11th Author's Affiliation Department of Electrophysics, Kwangwoon University
12th Author's Name J. J. Ko
12th Author's Affiliation Department of Electrophysics, Kwangwoon University
13th Author's Name D. I. Kim
13th Author's Affiliation Department of Electrophysics, Kwangwoon University
14th Author's Name C. W. Lee
14th Author's Affiliation Department of Electrophysics, Kwangwoon University
15th Author's Name S. O. Kang
15th Author's Affiliation Department of Electrophysics, Kwangwoon University
16th Author's Name G. S. Cho
16th Author's Affiliation Department of Electrophysics, Kwangwoon University
17th Author's Name E. H. Choi
17th Author's Affiliation Department of Electrophysics, Kwangwoon University
Date 2000/10/13
Paper # EID2000-100
Volume (vol) vol.100
Number (no) 356
Page pp.pp.-
#Pages 5
Date of Issue