Abstract:
A panel display and a method for manufacturing the same are provided. The panel display includes a frame, an elastic pad, and a display panel. The frame has a supporting tray and a side wall which perpendicularly extends from the end of the supporting tray. A groove is formed on the supporting tray adjacent to the foot of the side wall. One end of the elastic pad is located within the groove while the other end leans on the side wall before the display panel is configured with the frame. When entering the display panel into the frame, the edge of the display panel compels the elastic pad to bend and form a bottom portion and a side portion. The bottom portion is accommodated in the groove while the side portion is compressed by the edge of the display panel and lies on the side wall.
Abstract:
A liquid crystal module is provided. A bezel includes an upper frame, a lower frame, a left frame and a right frame which are connected to each other in the shape of a rectangular frame and encloses four peripheral edges of a liquid crystal panel. A protruding end portion protrudes inwardly at a right angle from each of both ends of the left and right frames. The protruding end portion is disposed at a position outwardly offset from the liquid crystal panel as viewed from above. A receiving step portion which receives the protruding end portion is provided at each of both ends of the upper and lower frames. The receiving step portion is disposed at a position outwardly offset from the liquid crystal panel as viewed from above. The protruding end portion is overlapped with the receiving step portion such that both end faces of the upper and lower frames except the receiving step portion are adjacent to inner side faces of the left and right frames and the protruding end portion is fixed to the receiving step portion with a screw.
Abstract:
A backlight chassis that is capable of preventing an unusual noise caused by vibrations of a backlight unit or a tubular lamp houses tubular lamps arranged behind a display panel via optical sheets. The backlight chassis includes lamp holding members provided on a lamp housing surface of the backlight chassis, for holding the tubular lamps at an approximate midpoint thereof, wherein the lamp holding members and the backlight chassis are defined by a unitary molded resin member.
Abstract:
The display device comprises a display screen comprising a bonding surface and a mechanical structure. The display device also comprises a glass protective casing consisting of two sheets of glass and inserts. This protective casing is bonded to the structure beneath the second sheet of glass. The screen is bonded to the inside of the protective casing on only one of the two sheets.The invention proposes a compact protective device for a flat screen which is applied essentially to liquid crystal matrix screens comprising light-emitting diode light. The preferred field of application is that of screens used for aviation.
Abstract:
A backlight module and a manufacture method thereof are provided. The backlight module includes a frame body and an optical plate. The frame body includes a first material frame and a second material frame, and the second material frame is embedded in the first material frame and the strength of the second material frame is higher than that of the first material frame. The first material frame enwraps part of the second material frame to form at least one connection part, and the optical plate is disposed in the frame body and is connected with at least one connection part.
Abstract:
In at least one embodiment of the disclosure, a driving substrate includes a substrate having a first portion and a second portion formed surrounding the first portion. A flexible printed circuit is formed on the second portion. The flexible printed circuit includes a protruding portion extending to the first portion.
Abstract:
A receiving container includes first to third sidewalls, first and second buffer recesses and a supporting portion. The first sidewall faces shorter first sides of the lower and upper substrates. The second and third sidewalls are connected to end portions of the first sidewall and face each other. The first buffer recesses are disposed in the first and second sidewalls at a region where the first and second sidewalls meet each other, and in the first and third sidewalls where the first and third sidewalls meet each other. The supporting portion is extended from inner surfaces of the first, second and third sidewalls and supports edge portions of the lower substrate. The second buffer recesses are disposed in the supporting portion and at a region of the supporting portion, which corresponds to corners of the lower substrate.
Abstract:
A fixing apparatus, applied to a diffuser plate of a backlight unit (BLU), includes a fixing groove and a positioning piece. The fixing groove is formed at the frame and symmetrically related to one end of a centrosymmetric line of a diffuser plate. A first pair of edges are set at two sides of the centrosymmetric line. A third edge connects the first pair of edges cutting across the centrosymmetric line. The positioning piece is located within the fixing groove. The positioning piece is separated from the first pair of edges of the fixing groove at a first distance, and separated from the third edge of the fixing groove at a second distance, wherein the first distance is smaller than the second distance.
Abstract:
A ruggedized, high brightness, liquid crystal display (LCD) unit having a thin display panel, a front cover glass faceplate and an improved backlight assembly is disclosed. The faceplate is bonded to the panel using an improved process to minimize panel deformation and the backlight assembly is configured with an array of selectively spaced light emitting diodes (LED's) adapted to provide a uniform high brightness display with a minimal quantity of LED's.
Abstract:
A transverse-electric-field liquid crystal display apparatus includes a transparent conductive resin portion and an electrode portion. The transparent conductive resin portion is provided on a surface of a counter substrate of a liquid crystal panel. The electrode portion is provided on an electrode pad portion of the liquid crystal panel and electrically connected to the transparent conductive resin portion and also to a ground wire of a printed circuit board connected to the liquid crystal panel.