Abstract:
An electron emission display includes first and second substrates facing each other, a plurality of election emission regions provided on the first substrate, a black layer formed on a first surface of the second substrate between the phosphor layers, and an anode electrode coupled to the phosphor and black layers. The anode electrode has a light transmissivity ranging from about 3% to about 15%. A method of forming the anode electrode includes forming an interlayer on the phosphor and black layer, depositing a conductive material on the second substrate, and removing the interlayer through a firing process.
Abstract:
A light emission device and a display device provided with the light emission device are provided. The light emission device includes first and second substrates opposing each other. An electron emission unit is arranged on the first substrate. A light emission unit is provided on the second substrate and has an active area and an inactive area surrounding the active area. An arcing preventing member is formed on the inactive area. The arcing preventing member is formed to satisfy the condition: 0.3≦H/W≦1.0, where W is a width of the active area and H is a height of the arcing preventing member.
Abstract translation:设置有发光装置的发光装置和显示装置。 发光装置包括彼此相对的第一和第二基板。 电子发射单元布置在第一衬底上。 发光单元设置在第二基板上,并且具有活动区域和围绕有源区域的无效区域。 防静电部件形成在非活动区域。 防弧部件形成为满足条件:0.3 <= H / W <= 1.0,其中W是有效面积的宽度,H是防止起弧部件的高度。
Abstract:
An electron emission display includes first and second substrates facing each other. First electrodes are arranged on the first substrate along a first direction. Second electrodes are arranged along a second direction such that the second electrodes cross the first electrodes. Sub-pixels are formed at crossed regions of the first and second electrodes, and electron emission regions are provided on the first electrodes within the sub-pixels. Phosphor layers are formed on a surface of the second substrate such that the phosphor layers are spaced apart from each other with a distance therebetween. A metallic reflection layer is formed on the second substrate to cover the phosphor layers. The metallic reflection layer has spaced portions covering at least two of the phosphor layers and spaced away from the phosphor layers with an open gap therebetween, and contact portions not spaced away from the second substrate with an open gap therebetween.
Abstract:
An electron emission display includes first and second substrates facing each other, a plurality of electron emission regions provided on the first substrate, a plurality of phosphor layers formed on a first surface of the second substrate, a black layer formed on the first surface of the second substrate between the phosphor layers, and an anode electrode coupled to the phosphor and black layers. The anode electrode has a light transmissivity ranging from about 3% to about 15%. A method of forming the anode electrode includes forming an interlayer on the phosphor and black layers, removing a portion of the interlayer corresponding to the black layer, depositing a conductive material on the second substrate, and removing the interlayer through a firing process.
Abstract:
An electron emission device includes a first substrate having an electron emission unit for emitting electrons, and a second substrate facing the first substrate and having a light emission unit for emitting visible rays due to the electrons emitted by the electron emission unit. The light emission unit has a plurality of reflective layers formed on a surface of the second substrate facing the first substrate, and phosphor layers formed on the surface of the second substrate between the reflective layers as well as on lateral sides of the reflective layers. The reflective layer is formed of an achromatic color, particularly a white color. Black layers are disposed between the second substrate and the reflective layers.
Abstract:
An electron emission display includes first and second substrates that face each other, a plurality of electron emission elements that are arrayed on the first substrate, phosphor and black layers that are formed on a surface of the second substrate, and an anode electrode that is formed of metal and located on surfaces of the phosphor and black layers. The anode electrode is formed to satisfy the following condition: 0.3 μm≦A≦3 μm where, A indicates a distance between the anode electrode and the phosphor layer.
Abstract translation:电子发射显示器包括彼此面对的第一和第二基板,排列在第一基板上的多个电子发射元件,形成在第二基板的表面上的荧光体和黑色层,以及形成的阳极电极 的金属并位于荧光体和黑色层的表面上。 阳极电极形成为满足以下条件:0.3μm<= A <=3μm其中,A表示阳极电极和荧光体层之间的距离。
Abstract:
A light emission device is provided having a first substrate and a second substrate facing the first substrate. An electron emission unit is provided on the first substrate. A light emission unit is provided on the second substrate. The light emission unit includes red, green, and blue phosphor layers and includes an anode electrode formed over the red, green, and blue phosphor layers. The light emission unit satisfies at least one of the following conditions: 0.7
Abstract translation:提供一种发光器件,其具有面向第一衬底的第一衬底和第二衬底。 电子发射单元设置在第一基板上。 在第二基板上设置发光单元。 发光单元包括红色,绿色和蓝色荧光体层,并且包括在红色,绿色和蓝色荧光体层上形成的阳极电极。 发光单元满足以下条件中的至少一个:0.7 <(T / B / Phi / R)/(t B B / b> u> u> u> b> b> > B <2,其中T,R,T和B B是厚度的红色,绿色和/或 蓝色磷光体层,并且其中Phi,Phi i,,i i i>>>>>> and and and and and and and and and and and and and and and and and and 蓝色荧光体层。
Abstract:
An electron emission device includes first and second substrates facing each other, first electrodes formed on the first substrate, and second electrodes separated from the first electrodes by interposing an insulating layer. The first electrodes have first sub electrodes which with a partially removed portions, and second sub electrodes formed on at least one surface of the first sub electrodes with a transparent conductive material. Electron emission regions are formed on the second sub electrodes within the partially removed portions of the first sub electrodes. The electron emission regions are in surface contact with the second sub electrodes.
Abstract:
A system and method for advantageously forming an alignment film are provided. An anilox roll is operably engaged with a printing roll to print an alignment film onto a substrate, in one example including a liquid crystal display panel. Multiple rotations of the printing roll are used to provide efficiency and flexibility in printing a variety of alignment film patterns onto a variety of substrates.
Abstract:
Display devices having improved color reproduction ranges and improved color purity of the screen images are provided. In one embodiment, the display device includes a display panel for displaying an image, and a light emitting panel for providing light to the display panel. The light emitting panel includes first and second substrates facing each other, an electron emission unit on an inner surface of the first substrate and including electron emission regions and driving electrodes, a light emission unit on an inner surface of the second substrate and including an anode electrode and a phosphor layer, and a filter layer formed on a surface of the second substrate for selectively absorbing light in wavelength bands ranging from about 480 nm to about 500 nm and from about 580 nm to about 600 nm.