The Experts below are selected from a list of 20475 Experts worldwide ranked by ideXlab platform
Kun-ming Lee - One of the best experts on this subject based on the ideXlab platform.
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regenerative power electronics driver for Plasma Display panel in sustain mode operation
IEEE Transactions on Industrial Electronics, 2000Co-Authors: Horng-bin Hsu, Chern-lin Chen, Song-yi Lin, Kun-ming LeeAbstract:A regenerative power electronic circuit is proposed to drive a Plasma Display panel (PDP) in sustain-mode operation. This driver utilizes inductors to resonate with the equivalent intrinsic capacitance of the PDP to avoid the abrupt charging/discharging operation. The energy losses due to conventional hardswitching driving and the displacement current of the PDP are mainly recovered. Compared with prior approaches, this driving circuit has a quite simple structure and is suitable for asymmetrical operation.
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Regenerative power electronics driver for Plasma Display panel in sustain mode operation
IECON'99. Conference Proceedings. 25th Annual Conference of the IEEE Industrial Electronics Society (Cat. No.99CH37029), 1Co-Authors: Horng-bin Hsu, Chern-lin Chen, Song-yi Lin, Kun-ming LeeAbstract:A regenerative power electronic circuit is proposed to drive a Plasma Display panel (PDP) in sustain mode operation. This driver utilizes inductors to resonate with the equivalent intrinsic capacitance of the Plasma Display panel so that the abrupt charging/discharging operation is avoided. The energy losses due to conventional hard switching driving and the displacement current of Plasma Display panel are mainly recovered. Compared with prior approaches, this driving circuit has a quite simple structure and is suitable for asymmetrical operation. The presented circuit is experimentally verified to be applicable on an 8-inch Plasma Display panel.
Horng-bin Hsu - One of the best experts on this subject based on the ideXlab platform.
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regenerative power electronics driver for Plasma Display panel in sustain mode operation
IEEE Transactions on Industrial Electronics, 2000Co-Authors: Horng-bin Hsu, Chern-lin Chen, Song-yi Lin, Kun-ming LeeAbstract:A regenerative power electronic circuit is proposed to drive a Plasma Display panel (PDP) in sustain-mode operation. This driver utilizes inductors to resonate with the equivalent intrinsic capacitance of the PDP to avoid the abrupt charging/discharging operation. The energy losses due to conventional hardswitching driving and the displacement current of the PDP are mainly recovered. Compared with prior approaches, this driving circuit has a quite simple structure and is suitable for asymmetrical operation.
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Regenerative power electronics driver for Plasma Display panel in sustain mode operation
IECON'99. Conference Proceedings. 25th Annual Conference of the IEEE Industrial Electronics Society (Cat. No.99CH37029), 1Co-Authors: Horng-bin Hsu, Chern-lin Chen, Song-yi Lin, Kun-ming LeeAbstract:A regenerative power electronic circuit is proposed to drive a Plasma Display panel (PDP) in sustain mode operation. This driver utilizes inductors to resonate with the equivalent intrinsic capacitance of the Plasma Display panel so that the abrupt charging/discharging operation is avoided. The energy losses due to conventional hard switching driving and the displacement current of Plasma Display panel are mainly recovered. Compared with prior approaches, this driving circuit has a quite simple structure and is suitable for asymmetrical operation. The presented circuit is experimentally verified to be applicable on an 8-inch Plasma Display panel.
Li Zheng - One of the best experts on this subject based on the ideXlab platform.
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The Design of Power Supply for Plasma Display Panel
IEEE Transactions on Power Electronics, 2003Co-Authors: Li ZhengAbstract:This article introduces the Plasma Display Panel (PDP) simply and emphasizes the technologic characters of the PDP control power supply,stand by power and the design of the PFC circuit,the design of the address power and logic power.The achievement has met the demand of the PDP control power supply perfectly and been used successfully.
Eun Ha Choi - One of the best experts on this subject based on the ideXlab platform.
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High-efficiency Plasma Display panel based on a high xenon mole fraction
Physics of Plasmas, 2009Co-Authors: Byung H. Hong, Eun Ha ChoiAbstract:The luminance efficiency of a Plasma Display panel is directly related to the vacuum-ultraviolet (VUV) light emitted from excited xenon atoms and molecules. The emission efficiency of 173 nm VUV light is measured in terms of the xenon mole fraction (χ) and is shown to become considerably enhanced at a high xenon mole fraction. For example, the emission efficiency at χ=0.35 under a pressure of 400 Torr is more than 2.5 times that at χ=0.1. The experimental data agree remarkably well with theoretical predictions.
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vacuum ultraviolet luminous efficiency and Plasma ion density in alternating current Plasma Display panels
Applied Physics Letters, 2002Co-Authors: Eun Ha Choi, Min Wug Moon, Yoon Jung, Myung Chul Choi, Kunihide Tachibana, Ki-woong Whang, M. KristiansenAbstract:The correlation between the vacuum ultraviolet (VUV) luminous efficiency and the Plasma ion density has been investigated in terms of the xenon mole fraction in the neon filling gas for alternating current Plasma Display panels. The VUV luminous efficiency and Plasma ion density are found to have strong correlation and to be saturated at xenon mole fractions greater than 7% and gas pressures of 400 Torr.
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influence of gas mixture ratio on the luminous efficiency in surface discharge alternating current Plasma Display panels
Journal of Applied Physics, 2000Co-Authors: Jaejun Ko, Eun Ha ChoiAbstract:The improvement of luminosity and luminous efficiency is the one of the most important tasks in alternating current Plasma Display panels. The influence of gas mixture ratio, Ne–Xe and He–Ne(27%)–Xe(3%), on luminosity and luminous efficiency in surface discharge alternating-current Plasma Display panels has been investigated. It is found that discharge power does not strongly depend on the gas mixtures, while the luminosity for three species mixture gas, He–Ne(27%)–Xe(3%), is shown to be much higher than those for the two species mixture gas of Ne–Xe. The three species mixture gas, He–Ne(27%)–Xe(3%), can be suggested as the one of the candidates for achieving high luminosity and luminous efficiency for color Plasma Display panels, based on the experimental observations of luminosity, discharge power, response time, and efficiency.
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analysis of firing voltage in a Plasma Display panel of coplanar electrodes
Japanese Journal of Applied Physics, 1998Co-Authors: Guangsup Cho, Young Guon Kim, Youngsam Kim, Dai Geun Joh, Eun Ha ChoiAbstract:The analytical solution of Laplace's equation with a symmetric potential profile has been obtained for investigating the breakdown criteria between the sustaining electrodes in the coplanar AC-type Plasma Display panel. Using this solution, Paschen's Law has been analyzed along the various discharge paths in the panel space using various sustaining electrode gap distances.
Song-yi Lin - One of the best experts on this subject based on the ideXlab platform.
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regenerative power electronics driver for Plasma Display panel in sustain mode operation
IEEE Transactions on Industrial Electronics, 2000Co-Authors: Horng-bin Hsu, Chern-lin Chen, Song-yi Lin, Kun-ming LeeAbstract:A regenerative power electronic circuit is proposed to drive a Plasma Display panel (PDP) in sustain-mode operation. This driver utilizes inductors to resonate with the equivalent intrinsic capacitance of the PDP to avoid the abrupt charging/discharging operation. The energy losses due to conventional hardswitching driving and the displacement current of the PDP are mainly recovered. Compared with prior approaches, this driving circuit has a quite simple structure and is suitable for asymmetrical operation.
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Regenerative power electronics driver for Plasma Display panel in sustain mode operation
IECON'99. Conference Proceedings. 25th Annual Conference of the IEEE Industrial Electronics Society (Cat. No.99CH37029), 1Co-Authors: Horng-bin Hsu, Chern-lin Chen, Song-yi Lin, Kun-ming LeeAbstract:A regenerative power electronic circuit is proposed to drive a Plasma Display panel (PDP) in sustain mode operation. This driver utilizes inductors to resonate with the equivalent intrinsic capacitance of the Plasma Display panel so that the abrupt charging/discharging operation is avoided. The energy losses due to conventional hard switching driving and the displacement current of Plasma Display panel are mainly recovered. Compared with prior approaches, this driving circuit has a quite simple structure and is suitable for asymmetrical operation. The presented circuit is experimentally verified to be applicable on an 8-inch Plasma Display panel.