Abstract:
The present invention discloses an LCD device, which includes a display panel, a frame, and a fastener. The frame is disposed on a surface of the display panel. The fastener is disposed between the frame and the display panel. The fastener includes a male button and a female button. The male button is fixed on the surface of the display panel facing the frame, and the female button is disposed on a surface of the frame facing the display panel. The male button and the female button are fitted together so that the display panel is fixed on the frame, whereby the LCD device without a bezel can be realized.
Abstract:
A display device is proposed. The display device includes a frame, a back plate, a display panel, a flexible printed circuit board, and a tape. The frame is assembled to the back plate to form an accommodation space. The display panel, is disposed in the accommodation space and situated on top of the back plate. The flexible printed circuit board is stuck to and electrically connected to the display panel. The tape includes a first portion and a second portion. The first portion of the tape is disposed opposite the flexible printed circuit board on the display panel. The second portion of the tape is disposed between an edge of the display panel and a side wall of the frame. Therefore, light is prevented from being leaked from the display panel and the flexible printed circuit board is protected against being scratched in the present invention.
Abstract:
The present invention provides a slim bezel liquid crystal display device, which includes a rear enclosure, a front enclosure mating the rear enclosure, and a liquid crystal display module arranged inside the rear enclosure. The rear enclosure forms a retention plate. The retention plate functions to retain a lower end of the liquid crystal display module so as to fix the liquid crystal display module in the rear enclosure. The slim bezel liquid crystal display device uses an inverted L-shaped retention plate mounted at a lower end portion of a rear enclosure to retain a liquid crystal display module in position so as to fix the liquid crystal display module in the rear enclosure. The structure is simple and assembling is easy so as to effectively achieve bezel slimming and device thinning of a liquid crystal display device.
Abstract:
A cover of a backlight module for protecting backlight components is disclosed. The cover includes: a main body; and bent clasping sheets arranged on at least one edge portion of the main body, the clasping sheet is fixed in a groove cavity between a backplane and a front frame so as to fix the cover on the backplane. In addition, a backlight module and a liquid crystal display are disclosed. The above-mentioned cover, the backlight module, and the liquid crystal display may simplify the assembly process of the backlight module, and may reduce the cost at the same time.
Abstract:
The present invention provides a package cushioning structure for module, which includes a cushioning bottom board and a cushioning band extending through and interlaced with the cushioning bottom board. The cushioning bottom board forms a plurality of spaced hollow sections. A bar is arranged between every two of the hollow sections. The cushioning band includes a plurality of cushioning air columns mounted thereto at interval. The cushioning air columns are arranged alternately on the bars. To package, modules are each positioned on and born by each of the bars between two of the cushioning air columns. An alternate package cushioning structure includes a cushioning bottom board having a surface forming slots and a cushioning band arranged in the cushioning bottom board through a mounting channel extending through the bottom board from a side surface thereof. Air columns of the cushioning band are located in the slots to support modules.
Abstract:
The present invention relates to a backlight module suitable for transportation, which comprises a backlight unit, the backlight unit comprises a backplate, and a light source, as well as an optical film, a light guide plate and a reflection plate arranged on the backplate from up to down in turn; the backlight module further comprises a fixing belt used for fixing the optical film, the fixing belt being tightly wound outside the backlight unit along at least one of the length and width directions of the backlight unit. This backlight module uses the fixing belt to fix the optical film instead of using the rubber frame to press against the optical film, thus the cost of the rubber frame assembly is saved, the optical film can be prevented from translocating due to vibration, and the winding strength can be ensured to be moderate.