TY - JOUR
T1 - A parametric study on the microscale-hole-type AC PDP
AU - Sook Bae, Hyun
AU - Kyun Kim, Joong
PY - 2012/9
Y1 - 2012/9
N2 - In some previous studies, the effect of the microcapillary hole structure in the front dielectric layer was introduced. There have not yet been any report, however, on the detailed study on the discharge characteristics of the hole type, and on the optimization of the microscale hole size. In this study, the discharge characteristics of the microscale hole types in the front dielectric layer in plasma display panels were investigated through plasma numerical simulation. The numerical analysis discussed in this work may shed more light on the discharge mechanism. The modification of the structure of microscale holes is expected to improve the driving voltage and luminance, which may have been due to more energetically charged particles and Xe-excited species, which may in turn have been due to an expanded sheath electric field in the vicinity of the microholes.
AB - In some previous studies, the effect of the microcapillary hole structure in the front dielectric layer was introduced. There have not yet been any report, however, on the detailed study on the discharge characteristics of the hole type, and on the optimization of the microscale hole size. In this study, the discharge characteristics of the microscale hole types in the front dielectric layer in plasma display panels were investigated through plasma numerical simulation. The numerical analysis discussed in this work may shed more light on the discharge mechanism. The modification of the structure of microscale holes is expected to improve the driving voltage and luminance, which may have been due to more energetically charged particles and Xe-excited species, which may in turn have been due to an expanded sheath electric field in the vicinity of the microholes.
KW - discharge characteristics
KW - microscale hole
KW - plasma display panel
UR - http://www.scopus.com/inward/record.url?scp=84866839795&partnerID=8YFLogxK
U2 - 10.1080/15980316.2012.724032
DO - 10.1080/15980316.2012.724032
M3 - Article
AN - SCOPUS:84866839795
SN - 1598-0316
VL - 13
SP - 131
EP - 137
JO - Journal of Information Display
JF - Journal of Information Display
IS - 3
ER -