Abstract:
The present invention is in the field of plasma display panel filters, and more specifically the present invention is in the field of multiple layer plasma display panel filters that can be effectively mounted directly to the front glass surface of a plasma display panel module.
Abstract:
Disclosed herein is a composition for use as a film on an image display filter. In some embodiments, the composition includes a cyanine dye exhibiting an absorption maximum in the wavelength region from about 830 to about 880 nm or from about 580 to about 600 nm and an anthraquinone dye comprising an anthraquinone compound substituted with an amino group in one or more positions selected from the 1-, 4-, 5-, and 8-position.
Abstract:
Provided is an MRT film filter that has improved interface characteristics, produces fewer dual images, and has reduced manufacturing costs. The MRT film filter includes: a base filter; an anti-glare layer disposed on top of the base film; a conductive layer that is disposed on one side of the base film and blocks electromagnetic waves; an MRT film disposed below the base film to be adhered to a flat display apparatus; and an adhesive adapted to fix the MRT film to the base film. Also provided is a plasma display device comprising the MRT film filter.
Abstract:
The present invention relates to methods of making a microstructures with a flexible mold, microstructure precursor compositions and articles.
Abstract:
A plasma display apparatus is provided having an improved glass filter. The plasma display includes a panel assembly, and a glass filter provided in front of the panel assembly. The glass filter includes a plurality of a dot parts disposed in front of a glass plate to adjust light transmissivity from the panel assembly and external light reflxibility. Thus, the glass filter may be produced simply, thereby lowering the production cost of the glass filter.
Abstract:
An object of the present invention is to provide a flat-panel display using a glass material suitable for reducing thickness and weight thereof. According to the present invention, there is provided an image display panel including, two glass substrates and a light-emitting part provided between these glass substrates,
Abstract:
A hermetic container used by an image display apparatus or the like is constituted of confronting substrates which are fixed together by a reinforcing member, and an inner space between the substrates is sealed by a sealing member. The reinforcing member is spaced apart from the sealing member to prevent breakage of the hermetic container to be caused by a difference between thermal expansion coefficients of materials.
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:
A method for fabricating microplasma discharge devices and arrays. The method employs techniques drawn from semiconductor device fabrication, such as chemical processing and photolithography, to produce arrays of devices inexpensively. An interdigitated electrode array is deposited on a first substrate. Cavities are formed in a second substrate by laser micromachining, etching, or by chemical (wet or dry) etching and the second substrate is overlaid on the electrode array. The inter-electrode spacing and electrode width are set so that each cavity has at least one pair of electrodes underneath it to excite a microplasma discharge in the cavity. The need to precisely register the two substrates is thus avoided.
Abstract:
A bandpass filter containing specific red dyes alone or in combination with other dyes selectively transmits predetermined primary color wavelengths as well as selectively absorbs wavelengths other than the predetermined primary color wavelength. The filter is particularly useful for enhancing the contrast of color plasma displays by absorbing visible light emitted at 590 nm from the display.