Abstract:
A display apparatus includes a display and a display filter, wherein the display filter includes a base film, a plurality of reflective elements, and a plurality of light absorbing elements, wherein each of the light absorbing elements corresponds to a reflective element.
Abstract:
A fluid supply apparatus is provided for feeding a fluid to two faces relatively moving in a clearance direction, a continuous flow supplied from the fluid supply apparatus is converted to an intermittent flow by utilizing pressure change caused by a fluctuation of a clearance space of the relative moving faces, and an intermittent discharge quantity per dot is adjusted by the number of revolutions of the fluid supply apparatus.
Abstract:
A plasma display apparatus comprising a connector is provided. The plasma display apparatus comprises a plasma display panel comprising an electrode of a predetermined width and a connector comprising an electrode line of a width narrower than the predetermined width of the electrode to supply a driving signal to the electrode. A distance between the electrode line and an adjacent electrode line is longer than a distance between the electrode and an adjacent electrode.
Abstract:
A plasma display panel includes an upper substrate and a lower substrate combined with the upper substrate by a sealant. A black layer is formed on a surface of the upper substrate, outside of a display area of the upper substrate. A film filter, not including a bordering layer, is located on the upper substrate. The film filter includes a ground unit of increased size adjacent its edge, which can electrically engage with a support, thus simplifying an alignment issue during construction of the plasma display and reducing a contact resistance between the ground unit and the support.
Abstract:
Evaporation chamber for depositing a protective film on a surface, where a dielectric layer is formed, of front substrate, front substrate is formed a display electrode and the dielectric layer thereon; transporting unit for transporting front substrate into evaporation chamber; gas introducing units for introducing gas containing H2O into evaporation chamber; and partial pressure detecting unit for measuring a certain partial pressure of gas within evaporation chamber, extending from the center of deposition space of evaporation chamber to the downstream of transport direction of front substrate are provided. Gas containing H2O is introduced from gas introducing units such that the partial pressure of gas is controlled in the partial pressure detecting unit.
Abstract:
An image display apparatus according to the present invention comprising a display panel including a face plate, a rear plate and a plate-like spacer arranged between the face plate and the rear plate, and a support member that supports a rear surface of the display panel, wherein the support member includes a plate-like member having a protruded portion, and wherein a longitudinal direction of the protruded portion and a longitudinal direction of the spacer are substantially parallel to each other.
Abstract:
Provided are a sheet for manufacturing a plasma display apparatus, and a method for manufacturing the plasma display apparatus. The sheet includes a base film; a photoresist layer formed on the base film; an electrode material layer formed on the photoresist layer; and a cover film formed on the electrode material layer.
Abstract:
To provide a float glass for a display substrate, of which the high temperature viscosity is low, without impairing properties for a substrate glass for a display.A float glass for a display substrate, characterized in that its composition consists essentially of, as represented by mass % based on oxide, from 52 to 62% of SiO2, from 5 to 15% of Al2O3, from more than 0% to 9% of MgO, from 3 to 12% of CaO, from 9 to 18% of SrO, from 0 to 13% of BaO, from 25 to 30% of MgO+CaO+SrO+BaO, from 6 to 14% of Na2O+K2O+Li2O, from 0 to 6% of ZrO2 and from 0 to 1% of SO3, the temperature of glass melt corresponding to the viscosity of 102 dPa·s is at most 1,520° C., the temperature of glass melt corresponding to the viscosity of 104 dPa·s is at most 1,120° C., the glass transition temperature is at least 610° C., and the specific gravity is at most 2.9.
Abstract translation:为了提供高温粘度低的显示基板的浮法玻璃,而不损害显示器用基板玻璃的特性。 一种用于显示基板的浮法玻璃,其特征在于其组成基本上由以氧化物为基准的质量%表示,52至62%的SiO 2,5至15%的Al 2 O 3,大于0%至9% 的MgO,3〜12%的CaO,9〜18%的SrO,0〜13%的BaO,25〜30%的MgO + CaO + SrO + BaO,6〜14%的Na2O + K2O + Li 2 O,0〜6%的ZrO 2和0〜1%的SO 3,对应于粘度为102dPa.s的玻璃熔体的温度为至多1520℃,玻璃熔体的温度对应于粘度 的104dPa.s为1120℃以下,玻璃化转变温度为610℃以上,比重为2.9以下。
Abstract:
A filter 100 for a display device includes a transparent substrate 110; a near infrared ray blocking layer 120; and electromagnetic shielding layer 130; an external light blocking layer 140; and a color compensation layer 150. The near infrared ray blocking layer 120 is formed on the transparent substrate 110 and includes a metal thin film and a metal oxide thin film which are alternately layered, each of the metal thin film and the metal oxide thin film being layered one or more times. The electromagnetic shielding layer 130 is formed on the near infrared ray blocking layer 120 and includes a metal mesh pattern. The external light blocking layer 140 includes an external light blocking pattern 144, the external light blocking pattern including a plurality of external light blocking parts with a wedge shape which are filled with a light absorbing material and a conductive material. The color compensation layer 150 is formed on the external light blocking layer 140 and includes a polymer resin and at least two kinds of colorants selectively absorbing lights. The filter 100 has a transmittance of 5% or less at an 850 nm wavelength. The filter 100 has excellent performance in blocking near infrared rays and electromagnetic waves and high transmittance to visible light.
Abstract:
The present invention is a novel, high resolution, color, three-dimensional (3-D) volumetric display system for dynamic images—the video cube. The video cube consists of an air-tight glass cube filled with a gas mixture and multiple planes of thin wires arranged in alternating orthogonal layers. These wires may be set at voltage potentials capable of producing a glow discharge at the intersection of pairs of wires. Using a computer capable of storing dynamic image data and electronic controllers capable of energizing pairs of wires appropriately at the proper time 3-D dynamic images may be formed from multiple glows between excited wire pairs. The video cube may be used to display complex real-time information from computers and other digital processors with high accuracy for unlimited number of simultaneous unaided observers.