DocumentCode
1523147
Title
Analysis of Sustaining Waveforms for Improving Luminance and Luminous Efficacy in AC Plasma Display Panels
Author
Choi, Nak-Won ; Seo, Jeong Hyun
Author_Institution
Visual Display Div., Samsung Electron. Co., Ltd., Suwon, South Korea
Volume
56
Issue
12
fYear
2009
Firstpage
3218
Lastpage
3222
Abstract
Wall voltage and priming particles are the main parameters to enable the improvement of luminance and luminous efficacy in AC plasma display panels. By moderately controlling the sustaining pulsewidth (T on) and the time interval between successive sustaining pulses (T off), the wall voltage and the amount of priming particles in the discharge space can be manipulated. In this brief, two types of sustaining waveforms, namely, negative- and positive-going pulses (which have different potential distributions during the off period), are investigated to analyze their effect on luminance and luminous efficacy. In both waveforms, the sustaining pulsewidths and the time intervals between the pulses have been varied to control the wall voltage and priming particles. Each sustaining waveform showed different trends in the resulting luminance and luminous efficacy with the sustaining pulsewidth and time intervals used. The T on time was a dominant factor in the negative-going pulse waveform, while the T off time was more important in the positive-going pulse waveform.
Keywords
brightness; plasma displays; AC plasma display panels; discharge space; luminance efficacy; luminous efficacy; negative-going pulse waveform; positive-going pulse waveform; priming particles; successive sustaining pulses; sustaining waveform analysis; wall voltage; Electrodes; Indium tin oxide; Numerical simulation; Plasma displays; Research and development; Space vector pulse width modulation; Surface discharges; Surface waves; Testing; Voltage control; Efficacy; luminance; plasma display panel; sustain waveform;
fLanguage
English
Journal_Title
Electron Devices, IEEE Transactions on
Publisher
ieee
ISSN
0018-9383
Type
jour
DOI
10.1109/TED.2009.2033166
Filename
5299040
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