等离子体显示单元中的阳极条纹现象,即等离子体密度沿阳极分布不均匀的现象,对于提高等离子体显示屏的显示性能具有重要影响。在许多等离子体显示单元的实验和模拟过程中,都观察到了条纹现象,但对于条纹形成的机理还没有定论。本文采用...等离子体显示单元中的阳极条纹现象,即等离子体密度沿阳极分布不均匀的现象,对于提高等离子体显示屏的显示性能具有重要影响。在许多等离子体显示单元的实验和模拟过程中,都观察到了条纹现象,但对于条纹形成的机理还没有定论。本文采用基于粒子模拟的PIC-MCC(Particle in Cell Monte Carlo Collide)模型,对荫罩式等离子体显示单元中阳极条纹产生过程进行了模拟,并结合放电过程中粒子浓度、等位线分布以及壁电荷积累分布等的变化情况,详细研究了荫罩式等离子体显示单元中阳极条纹的形成机理,通过对阳极条纹现象及其机理的研究,可以更好地理解等离子体放电单元的放电特性和机理,为我们寻找提高放电效率的途径提供一定的理论指导和依据。展开更多
Spatio-temporal distribution of individual filament in a square superlattice pattern, which consists of large and small spots (filaments), is studied in atmospheric dielectric barrier discharges. The spatial distrib...Spatio-temporal distribution of individual filament in a square superlattice pattern, which consists of large and small spots (filaments), is studied in atmospheric dielectric barrier discharges. The spatial distributions of the two discharges for individual large filament along the direction perpendicular to the electrode are estimated by the distributions of light signals along the electrode. It is found that the discharge at the rising edge of the applied voltage is with a wider column, weaker current, and longer current pulse duration in comparison with that at the falling edge展开更多
Different configurations and driving voltages have been employed to investigate the effect of the wall charge on the striations in macroscopic plasma display panel (PDP) cells. The experimental results show that a d...Different configurations and driving voltages have been employed to investigate the effect of the wall charge on the striations in macroscopic plasma display panel (PDP) cells. The experimental results show that a discharge channel near the dielectric layer is indispensable to striation occurring in the anode area during a discharge, while the pre-accumulated charge on the dielectric layer and the surface state are not important. The origin of the striation is related only to the physical process in the cell. The dielectric layer acts as a charge collector during a PDP discharge.展开更多
A single width NIM module that includes eight channels of the time-to-amplitude converter (TAC) and the charge-to-amplitude converter (QAC) is introduced in the paper, which is designed for the large neutron wall ...A single width NIM module that includes eight channels of the time-to-amplitude converter (TAC) and the charge-to-amplitude converter (QAC) is introduced in the paper, which is designed for the large neutron wall detector to measure charge (energy) and time interval simultaneously. The module adopts a high precision gated integration circuit to realize TAC and QAC. :The input range of TAC is from 30 ns to 1 μs, and the input range of QAC is from 40 pC to 600 pC. The linearity error of TAC is lower than 1.28%, and the time resolution of TAC is less than 0.871%. The linearity error of QAC is lower than 0.81%, and the resolution of QAC is better than 0.936%.展开更多
A new method is developed to measure the wall charge waveforms in coplanar alternating current plasma display panel (AC PDP). In the method, two groups of display electrodes are selected from a coplanar AC PDP and two...A new method is developed to measure the wall charge waveforms in coplanar alternating current plasma display panel (AC PDP). In the method, two groups of display electrodes are selected from a coplanar AC PDP and two capacitors are respectively connected with these two groups of display electrodes in series, and a measuring circuit and a reference circuit are thus constructed. With the help of special processing, discharge takes place in the cells included in the measuring circuit under a normal drive voltage but no discharge takes place in the cells included in the reference circuit under a normal drive voltage. The wall charge waveforms are obtained from the voltage difference between the two capacitors. Using the method, the wall charge waveforms are measured during resetting period, addressing period and sustaining period for the 304.8mm (12-inch) test PDP panel. The result shows that the wall voltage is about 96V during the sustaining period.展开更多
文摘等离子体显示单元中的阳极条纹现象,即等离子体密度沿阳极分布不均匀的现象,对于提高等离子体显示屏的显示性能具有重要影响。在许多等离子体显示单元的实验和模拟过程中,都观察到了条纹现象,但对于条纹形成的机理还没有定论。本文采用基于粒子模拟的PIC-MCC(Particle in Cell Monte Carlo Collide)模型,对荫罩式等离子体显示单元中阳极条纹产生过程进行了模拟,并结合放电过程中粒子浓度、等位线分布以及壁电荷积累分布等的变化情况,详细研究了荫罩式等离子体显示单元中阳极条纹的形成机理,通过对阳极条纹现象及其机理的研究,可以更好地理解等离子体放电单元的放电特性和机理,为我们寻找提高放电效率的途径提供一定的理论指导和依据。
基金supported by National Natural Science Foundation of China (No.10775037)Natural Science Foundation of Hebei Province of China (No.A2008000564) Natural Science Foundation of Hebei University 2008Q17, China
文摘Spatio-temporal distribution of individual filament in a square superlattice pattern, which consists of large and small spots (filaments), is studied in atmospheric dielectric barrier discharges. The spatial distributions of the two discharges for individual large filament along the direction perpendicular to the electrode are estimated by the distributions of light signals along the electrode. It is found that the discharge at the rising edge of the applied voltage is with a wider column, weaker current, and longer current pulse duration in comparison with that at the falling edge
基金the Natural Science Foundation of China(No.10475007)
文摘Different configurations and driving voltages have been employed to investigate the effect of the wall charge on the striations in macroscopic plasma display panel (PDP) cells. The experimental results show that a discharge channel near the dielectric layer is indispensable to striation occurring in the anode area during a discharge, while the pre-accumulated charge on the dielectric layer and the surface state are not important. The origin of the striation is related only to the physical process in the cell. The dielectric layer acts as a charge collector during a PDP discharge.
基金Supported by National Natural Science Foundation of China(11005135,11079045)National Instruments Special of China(2011YQ12009604)
文摘A single width NIM module that includes eight channels of the time-to-amplitude converter (TAC) and the charge-to-amplitude converter (QAC) is introduced in the paper, which is designed for the large neutron wall detector to measure charge (energy) and time interval simultaneously. The module adopts a high precision gated integration circuit to realize TAC and QAC. :The input range of TAC is from 30 ns to 1 μs, and the input range of QAC is from 40 pC to 600 pC. The linearity error of TAC is lower than 1.28%, and the time resolution of TAC is less than 0.871%. The linearity error of QAC is lower than 0.81%, and the resolution of QAC is better than 0.936%.
文摘A new method is developed to measure the wall charge waveforms in coplanar alternating current plasma display panel (AC PDP). In the method, two groups of display electrodes are selected from a coplanar AC PDP and two capacitors are respectively connected with these two groups of display electrodes in series, and a measuring circuit and a reference circuit are thus constructed. With the help of special processing, discharge takes place in the cells included in the measuring circuit under a normal drive voltage but no discharge takes place in the cells included in the reference circuit under a normal drive voltage. The wall charge waveforms are obtained from the voltage difference between the two capacitors. Using the method, the wall charge waveforms are measured during resetting period, addressing period and sustaining period for the 304.8mm (12-inch) test PDP panel. The result shows that the wall voltage is about 96V during the sustaining period.