Improvement of luminous efficacy in plasma display panels by a counter-type electrode configuration with a large gap

被引:10
作者
Hur, Min
Kim, Jae Rok
Yi, Jeong Doo
Cho, Yoon Hyoung
Bin Song, Su
Park, Jun Yong
Lee, Han Yong
机构
[1] Samsung SDI Co LTd, Corp R&D Ctr, Display 2 Team, Yongin 449577, Gyeonggi Do, South Korea
[2] Samsung SDI Co LTd, Corp R&D Ctr, CAE Team, Yongin 449577, Gyeonggi Do, South Korea
关键词
D O I
10.1063/1.2193165
中图分类号
O59 [应用物理学];
学科分类号
摘要
The discharge characteristics of plasma display panel with coplanar and counter-type electrode configurations are compared using the numerical modeling and experiment with respect to real and macrocells, respectively. Numerical analysis shows that the ultraviolet (UV) efficiency and driving voltage of counter type at a gap distance of 230 mu m are located at similar levels to those of coplanar type at a gap distance of 60 mu m. The UV efficiency for counter type is enhanced with the rise of xenon fraction and gap distance, between which the large gap operation is more advantageous to high UV efficiency. The measured temporal evolution of infrared emission reveals that the cathode layer plays an important role in forming the discharge current after the gas breakdown. It is found from the time-averaged visible and infrared emissions for the counter type that as the gap distance becomes larger, the positive column region increases but the sheath regime remains almost unchanged. On the other hand, the variation of gap distance gives a little influence on the average discharge current at the same applied voltage. The UV efficiency is thus greatly improved with the gap distance. When the gap becomes double, the UV efficiency is improved by 75%, which is well agreed with the results predicted in the numerical modeling. (c) 2006 American Institute of Physics.
引用
收藏
页数:8
相关论文
共 22 条
[11]  
LACOSTE A, 2003, INT DISPL WORKSH IDW, P1013
[12]  
MORI S, 2004, IDW 04, P937
[13]  
OKUMURA S, 2003, INT DISPL WORKSH IDW, P821
[14]   Improvement of the discharge efficiency in plasma displays [J].
Oversluizen, G ;
Klein, M ;
de Zwart, S ;
van Heusden, S ;
Dekker, T .
JOURNAL OF APPLIED PHYSICS, 2002, 91 (04) :2403-2408
[15]   Addressing and sustaining in alternating current coplanar plasma display panels [J].
Punset, C ;
Cany, S ;
Boeuf, JP .
JOURNAL OF APPLIED PHYSICS, 1999, 86 (01) :124-133
[16]  
QUYANG J, 2003, IEEE T PLASMA SCI, V31, P422
[17]   Two-dimensional modeling of a surface type alternating current plasma display panel cell: Discharge dynamics and address voltage effects [J].
Seo, J.H. ;
Chung, W.S. ;
Yoon, C.K. ;
Kim, J.K. ;
Whang, K.-W. .
IEEE Transactions on Plasma Science, 2001, 29 (5 II) :824-831
[18]   Development of panel structure for a high-resolution 21-in-diagonal full-color surface-discharge plasma display panel [J].
Shinoda, T ;
Wakitani, M ;
Nanto, T ;
Awaji, N ;
Kanagu, S .
IEEE TRANSACTIONS ON ELECTRON DEVICES, 2000, 47 (01) :77-81
[19]  
SON SH, 2004, SID INT S, P97
[20]  
UCHIDOI M, 2004, SID04, P202