Abstract:
An image display apparatus includes a display unit including a substrate having an outer surface and an image display area, a conductive layer disposed on the substrate via an adhesive layer, and a conductive tape disposed on the outer surface of the substrate. In addition, a member holds the conductive layer against the substrate. Part of the adhesive layer is layered between the conductive tape and at least a part of the conductive layer, with the conductive tape including a projection portion contacting the conductive layer such that the conductive layer and the conductive tape are electrically connected. The member sandwiches the conductive layer, the conductive tape having the projection portion, and the display unit, and the conductive tape is a ground potential.
Abstract:
Disclosed is a Plasma Display Panel (PDP). According to an example, the PDP includes a panel, a base film in the front surface of the panel, and an Electro Magnetic Interference (EMI) shielding film in the base film. Another example of the PDP includes a panel with a panel grounding unit in the front surface, a base film in the front surface of the panel, an EMI shielding film on the base film, a back cover surrounding the panel, and a grounding unit for electrically connecting the panel grounding unit to the back cover. The panel grounding unit and the grounding unit are connected through a conductive substance. The PDP of this research can protect the panel from being damaged by the grounding unit and reduce production costs. Also, it can increase EMI shielding rate by grounding the EMI absorbed in the EMI shielding film.
Abstract:
A plasma display device has a reduced number of components, thereby lowering manufacturing costs, improving productivity of assembly, and reducing a weight thereof. The display device includes a PDP module; a front frame positioned in front of the PDP module and having an opening; a rear cover covering a rear side of the PDP module to shield electromagnetic waves; a front filter positioned to face the opening of the front frame to shield the electromagnetic waves; and a shielding member positioned along a periphery of the PDP module to shield the electromagnetic waves. The front filter has a rear side supported by the PDP module.
Abstract:
A display-use filter, which comprises a laminated body comprising a transparent substrate, light-shielding convex portions formed on the transparent substrate, a resin layer stacked on the light-shielding convex portions and a non-convex area existing between the light-shielding convex portions, wherein a concave section of the resin layer is formed in the non-convex area, and the resin layer has a center-line average roughness Ra in a range from 50 to 500 nm.
Abstract:
A metal film 21 is laminated directly to or by means of an adhesive 13 to a transparent base sheet 11. A mesh metal film including lines defining apertures is formed by coating the metal film 21 with a mesh resist layer 109a patterned in a mesh, etching the metal film 21 through the mesh resist layer 109a, and removing the mesh resist layer 109a. The front surfaces and side surfaces of the lines of the mesh metal film are coated with a black coating layer 23.
Abstract:
A filter for a plasma display includes an electromagnetic interference shielding mesh formed on a substrate to shield electromagnetic waves and a hard coating layer made of inorganic material formed on the electromagnetic interference shielding mesh. The filter is fabricated so as to provide a reduced thickness of a plasma display, to prevent cracks from being generated on surfaces of the mesh and to reduce manufacturing costs.
Abstract:
An optical filter 17 is attached to the display screen surface of a flat display panel 3 of a flat display apparatus. The optical filter 17 is constituted of a lamination of an electromagnetic-wave blocking sheet 17A, an infrared-radiation absorbing and color-tone correcting sheet 17B and an ambient light antireflective sheet 17C.
Abstract:
A conductive substrate includes a metal fine particle layer laminated onto at least one surface of a substrate in a random network form; a resin layer including a resin having an anionic ionic group laminated at an opening portion of a network of the metal fine particle layer and in contact with the metal fine particle layer; and a plated metal layer laminated onto the metal fine particle layer and in contact with the resin layer.
Abstract:
The present invention relates to a plasma display apparatus. The plasma display apparatus includes a PDP, and a filter formed at the front of the panel. The filter includes an external light shielding sheet including a first base unit, and first pattern units formed in the first base unit, and an EMI shielding sheet including second pattern units. A thickness of the external light shielding sheet is 1.01 to 2.25 times greater than a height of each of the first pattern units, and an angle formed by the first pattern units and the second pattern units is set in the range of 20 to 65 degrees. Thereby, external light can be shielded and an EMI shielding effect can be improved.
Abstract:
An optical filter 17 is attached to the display screen surface of a flat display panel 3 of a flat display apparatus. The optical filter 17 is constituted of a lamination of an electromagnetic-wave blocking sheet 17A, an infrared-radiation absorbing and color-tone correcting sheet 17B and an ambient light antireflective sheet 17C.