Abstract:
A waterproof structure of a packing box for a LCD panel is disclosed. The waterproof structure includes the first engaging portion and the second engaging portion. The first engaging portion is disposed on a bottom plate of the packing box. At least one opening passing through the bottom plate is disposed in the bottom plate. The first engaging portion is located between the opening and a side wall of the packing box. The second engaging portion is disposed on a bottom surface of a cushion of the packing box. The second engaging portion is corresponding to the first engaging portion to allow the second engaging portion engage with the first engaging portion when the cushion is disposed on the bottom plate. A packing box for a LCD panel is further disclosed.
Abstract:
A liquid crystal module includes a liquid crystal glass, plastic frames, a front frame, and a COF base film is disclosed. Connecting pins of the COF base film closely connects to a first end of the liquid crystal glass. The plastic frames cover a rim of the liquid crystal glass. The front frame abuts against the plastic frames arranged on two opposite surfaces of the liquid crystal glass to fasten the liquid crystal glass. Wherein the liquid crystal module further includes a positioning member causes the COF base film to bend toward a predetermined direction. At least one end of the positioning member is fixed between the front frame and the plastic frame by the front frame. A liquid crystal device includes the above-mentioned liquid crystal module is also disclosed. The liquid crystal module prevents the COF base film from being stripped off or harmed so as to enhance the non-defective rate and reduce the manufacturing cost.
Abstract:
The present invention provides a backlight module, containing an edge-lit backlight source; a light guide plate having a light incident surface and a light emitting surface where the light incident surface faces directly towards the backlight source; an optical film set positioned on a top side of the light guide plate facing directly towards the light emitting surface of the light guide plate; a reflection plate on a bottom side of the light guide plate; and a thermal conductive layer on a bottom side of the reflection plate conducting heat produced from the backlight source at least to the center of the reflection plate. The backlight module raises the temperature in the center of the panel, thereby preventing the cross talk resulted from having lower temperature in the center of the panel. There is no significant change to the existing backlight modules and therefore the cost is low.
Abstract:
The present invention provides a backlight module, containing an edge-lit backlight source; a light guide plate having a light incident surface and a light emitting surface where the light incident surface faces directly towards the backlight source; an optical film set positioned on a top side of the light guide plate facing directly towards the light emitting surface of the light guide plate; a reflection plate on a bottom side of the light guide plate; and a thermal conductive layer on a bottom side of the reflection plate conducting heat produced from the backlight source at least to the center of the reflection plate. The backlight module raises the temperature in the center of the panel, thereby preventing the cross talk resulted from having lower temperature in the center of the panel. There is no significant change to the existing backlight modules and therefore the cost is low.