The present invention relates to a direct backlight module and a liquid crystal display utilizing the same.
Generally, an LCD comprises a liquid crystal panel and a backlight module. The liquid crystal panel is the display of the LCD. Since the liquid crystal panel does not emit light, a light source providing sufficient brightness and uniform distribution is required to properly display images. A backlight module serves as the light source for the LCD. Further, a frame is applied to enclose the backlight module and the liquid crystal panel for protection of the LCD elements.
Generally, backlight modules can be categorized as direct and edge structures. In edge backlight modules, the light source is disposed on a side of the backlight module to reduce volume thereof, and a light guide plate guides the light toward the liquid crystal panel. Light distribution via the light guide plate is, however, typically non-uniform.
In direct backlight modules the light source is disposed directly in the cavity of the backlight module, thus occupying a relatively large volume thereof. Besides, more than one lamp can be employed to enhance light emission, and provide more uniform light distribution.
The reflector 10 is a U-shaped plate with an inner surface having high reflectivity, and comprises an opening for emitting light to the upper side of the backlight module shown in
Further, the supports 40 are disposed perpendicular to the reflector 10 at each end of the light source 30. Thus, the supports 40 fix the light source 30 to the reflector 10 and absorb shock from external force or impact. However, the perpendicular supports 40 block light emitted from each end of the light source 30. Light emission efficiency in the areas directly above the supports 40 in
In order to eliminate shadows created by the supports, another conventional direct backlight module is disclosed in Japanese Patent Publication JP 11-329040, which is shown in
In the conventional direct backlight module shown in
Accordingly, an object of the present invention is to provide a direct backlight module comprising a light source with enhanced light emission efficiency.
Another object of the present invention is to provide a liquid crystal display employing the disclosed direct backlight module to eliminate the shadows caused by the described supports.
The present invention discloses a direct backlight module, comprising a reflector, at least one light source, and a plurality of transparent supports. The reflector comprises an opening, wherein the light source is disposed parallel to the bottom surface thereof. The transparent supports are disposed at each end of the light source. Thus, light emitted from each end of the light source can be efficiently reflected by the reflector to maximize brightness over the entire liquid crystal display.
Further, the present invention discloses a liquid crystal display, comprising a liquid crystal panel and the aforementioned direct backlight module. Additionally, a frame covering the liquid crystal panel and the direct backlight module can be provided to protect the liquid crystal display.
In the present invention, the light source can be a cold cathode fluorescent lamp (CCFL), or an external electrode fluorescent lamp (EEFL).
A detailed description is given in the following embodiments with reference to the accompanying drawings.
The present invention can be more fully understood by the subsequent detailed description and examples with references to the accompanying drawings, wherein:
The present invention relates to a direct backlight module and a liquid crystal display utilizing the same. An embodiment of the present invention is described hereinafter with reference to
The reflector 10 has a highly reflective inner surface and an opening for allowing emitted light to reach the upper side of
Further, the transparent supports 40 of the backlight module shown in
The direct backlight module shown in
The transparent supports 40 can be fabricated in a variety of shapes. For example, each transparent support 40 in
The present invention employs transparent supports in the direct backlight module. Thus, light emission efficiency of the light source is enhanced, and brightness with uniform distribution can be obtained. Further, the length of the light source can be shortened due to the increased light emission efficiency of the light source. Accordingly, the size of the backlight module is reduced, which is preferable for portable devices such as notebook computers, PDAs and the like.
While the invention has been described by way of example and in terms of the preferred embodiments, it is to be understood that the invention is not limited to the disclosed embodiments. To the contrary, it is intended to cover various modifications and similar arrangements (as would be apparent to those skilled in the art). Therefore, the scope of the appended claims should be accorded the broadest interpretation so as to encompass all such modifications and similar arrangements.
Number | Date | Country | Kind |
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93110475 | Apr 2004 | TW | national |