Abstract:
A display device comprises a substrate and a laminate structure formed on the substrate and comprising a plurality of layers including a display region. The laminate structure has a recessed/projected portions at least one of an outermost surface of display side and an interface between the layers. The projected portions of the recessed/projected portions have a mean circle-equivalent diameter ranging from 50 nm to 250 nm with the standard deviation of circle-equivalent diameter of the projected portions being within the range of 10 to 50% of the mean circle-equivalent diameter, and a mean height ranging from 100 nm to 500 nm with the standard deviation of height being within the range of 10 to 50% of the mean height. The projected portions have a circularity coefficient ranging from 0.6 to 1, and an area ratio ranging from 20 to 75%.
Abstract:
A filter for a display device and a method for fabricating the filter are provided. The filter includes a base including a transparent polymer resin and a color compensation colorant mixed in the transparent polymer resin, an external light blocking pattern formed at the base, and an electromagnetic wave blocking layer formed on the base.
Abstract:
A spacer for an image display apparatus includes a glass base member which contains SiO2 by 10 to 35 wt %, RO (R representing an alkali earth metal) by 20 to 60 wt %, B2O3 by 9 to 30 wt % and Sb2O3 by 0.01 to 5 wt %.
Abstract translation:用于图像显示装置的间隔件包括玻璃基底构件,其包含SiO 2为10〜35重量%,RO(R表示碱土金属)为20〜60重量%,B 2 O 3为9〜30重量%,Sb 2 O 3为0.01〜 5重量%。
Abstract:
A heat dissipation apparatus for use with a plasma display device and a method of conducting the heat generated in the plasma display panel and the driving ICs of the plasma display device to various surfaces of the device for dissipation to air. A first heat sink is disposed between the plasma display panel and the chassis base. The first heat sink is positioned at a first region where the heat generated from the driver ICs is substantially concentrated. A second heat sink is positioned at a second region between the plasma display panel and the chassis base where the heat generated by the plasma display panel is substantially concentrated. A number of additional thermal conduction media are also used in the various embodiments of the invention.
Abstract:
A method of manufacturing a glass substrate for a display including the steps of: preparing a glass raw material blended so as to adjust as, on the basis of mass percentage, SiO2 40-70%, Al2O3 2-25%, B2O3 0-20%, MgO 0-3.5%, CaO 0-15%, SrO 0-10%, BaO 0-2%, ZnO 0-10%, R2O 0-25% (where R denotes at least one of Li, Na and K), As2O3 0-0.4%, Sb2O3 0-0.9%, and 0.1%
Abstract translation:一种制造用于显示器的玻璃基板的方法,包括以下步骤:制备混合的玻璃原料,以基于质量百分比调节SiO 2 40-70%,Al 2 O 3 2-25%,B 2 O 3 0-20 %,MgO 0-3.5%,CaO 0-15%,SrO 0-10%,BaO 0-2%,ZnO 0-10%,R 2 O 0-25%(其中R表示Li,Na和K中的至少一种 ),As2O3 0-0.4%,Sb2O3 0-0.9%和0.1%
Abstract:
A display panel includes a first substrate having a plurality of address electrodes, and a second substrate having a plurality of display electrodes that include bus electrodes, the first and second substrates being arranged opposite to each other. The bus electrodes may include a mixture of a chromophore element and an electrically conductive metal, the chromophore element including at least one of a transition element and a rare earth element metal.
Abstract:
A filter for a display apparatus is placed in front of a display panel, wherein CIE chromaticity coordinates of the filter under a standard of a D65 light source have values of −2.0≦a*≦2.0 and −2.0≦b*≦2.0. The CIE chromaticity coordinates of the filter under the standard of the D65 light source have a value of 60≦L*≦80. The colorants include a first colorant absorbing 380 nm to 480 nm wavelength light, a second colorant absorbing 450 nm to 550 nm wavelength light, and a third colorant absorbing 560 nm to 620 nm wavelength light. The first to third colorants can be contained in at least one of a color compensating layer, a low-refraction layer having a refractive index of 1.5 or less, an external light shielding layer, a hard coating layer and an adhesive layer.
Abstract translation:用于显示装置的滤光器放置在显示面板的前面,其中在D65光源的标准下的滤光器的CIE色度坐标具有-2.0 <= a * <= 2.0和-2.0 <= b * = 2.0。 在D65光源标准下的滤光片的CIE色度坐标值为60 <= L * <= 80。 着色剂包括吸收380nm至480nm波长的光的第一着色剂,吸收450nm至550nm波长的光的第二着色剂和吸收560nm至620nm波长的光的第三着色剂。 第一至第三着色剂可以包含在颜色补偿层,折射率为1.5以下的低折射层,外部遮光层,硬涂层和粘合剂层中的至少一个中。
Abstract:
Disclosed is an electromagnetic wave blocking member for a display apparatus. The electromagnetic wave blocking member may include a transparent substrate, an electrode layer, and a transparent conductive layer. The electrode layer can include i) a grounding electrode corresponding to at least one frame area of the transparent substrate, and ii) an auxiliary electrode overlying the transparent substrate for connection with the grounding electrode and having a mesh or stripe pattern. The transparent conductive layer can be formed either on the electrode layer or between the transparent substrate and the electrode layer. In one example, the transparent conductive layer can include a series of a metal thin film alternating with a metal oxide thin film a plurality of times.
Abstract:
A method for manufacturing a display panel module is provided by which production costs are reduced. A method is provided for manufacturing a display panel module that includes a display panel, a functional film and a drive circuit board. The method includes attaching the drive circuit board to the display panel, conducting a lighting test of the display panel using the drive circuit board to confirm that the display panel is an acceptable product, and bonding the functional film to a front face of the display panel. In the bonding process, an adhesive layer having a thickness equal to or more than 200 microns is interposed between the front face of the display panel and the functional film.
Abstract:
Disclosed are an optical sheet for a plasma display panel, a method for manufacturing the same and a plasma display panel employing the same. More particularly, provided are an optical sheet for a plasma display panel to improve a contrast ratio and a method for manufacturing the same. The optical sheet for a plasma display panel comprises a transparent substrate, a plurality of light-transmitting structures arranged on the transparent substrate, a reflective film arranged on the side of each of the light-transmitting structures, a black matrix arranged on the reflective film, and a cover part arranged on the black matrix.