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首页> 外文期刊>映像情報メディア学会誌 >Improvement in Address Discharge Response of HD PDPs with Stripe Rib and Discharge Deactivation Film
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Improvement in Address Discharge Response of HD PDPs with Stripe Rib and Discharge Deactivation Film

机译:带有条纹肋和放电钝化膜的HD PDP的地址放电响应的改善

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Stripe ribs make address discharge more stable than box ribs due presumably to the priming particles provided from vertically neighboring cells. Discharge deactivation film (DDF) of low γ_i material, which selectively covers an MgO surface so as to fold the relative bus lines, improves the address discharge response dramatically because DDF pushes the address discharge area closer to the surface discharge gap. A TiO_2 under-layer for phosphor also significantly improves the response. Presumably the electrification characteristic of the layer, which may depends on the surface treatment onto the TiO_2 grains, contributes much to the formation of an electric field for generating face-to-face address discharge. Using these in our 46-in. HD-PDP, Xe15%(by volume) is acceptable with respect to practical driving for TV use if the dielectric layer is arranged thinly to prevent extremely high sustain voltage. Thus white peak luminance and luminous efficiency of 1220 cd/m~2 and 2.16 lm/W, respectively, can be achieved.
机译:条纹状的肋条使得地址放电比盒状的肋条更加稳定,这大概是由于垂直相邻单元提供的启动粒子所致。低γ_i材料的放电失活膜(DDF)选择性地覆盖MgO表面以折叠相对的总线,由于DDF将地址放电区域推到更靠近表面放电间隙的位置,因此极大地改善了地址放电响应。磷光体的TiO_2底层也显着改善了响应。据推测,该层的带电特性可能取决于对TiO_2晶粒进行的表面处理,从而大大有助于形成电场以产生面对面的寻址放电。在我们的46英寸中使用这些。如果将介电层布置得很薄以防止极高的维持电压,则对于电视使用的实际驱动而言,HD-PDP Xe15%(体积)是可以接受的。因此,可以实现白峰亮度和发光效率分别为1220 cd / m〜2和2.16 lm / W。

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