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P‐84: Electron Plasma Propagation in the External Electrode Fluorescent Lamps
Author(s) -
Ahn SangHyun,
Yoo DongGun,
Gill DohHyun,
Song HyuckSoo,
Kim JeongHyun,
Kim SangJin,
Kim SangBeom,
Kim GaEul,
Jeong JongMun,
Shin MyeongJu,
Shin SangCho,
Lee MiRan,
Koo JeHuan,
Hong ByoungHee,
Choi EunHa,
Kang JuneGill,
Cho Guangsup,
Hwang MyungKeun,
Cho MeeRyoung,
Kim YoungWook,
Yang SeongYong
Publication year - 2006
Publication title -
sid symposium digest of technical papers
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.351
H-Index - 44
eISSN - 2168-0159
pISSN - 0097-966X
DOI - 10.1889/1.2433551
Subject(s) - backlight , electrode , plasma , fluorescence , plasma display , optoelectronics , electron , signal (programming language) , voltage , materials science , optics , tube (container) , liquid crystal display , chemistry , physics , electrical engineering , computer science , engineering , quantum mechanics , composite material , programming language
The plasma propagation has been investigated by observing the optical signal along the tube of the EEFL for 32″ LCD backlight unit. The light starting from the electrode of high voltage moves toward the other side of electrode grounded electrically with the electron plasma propagation speed about 4×10 5 m/s.

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