This non-provisional application claims priority under 35 U.S.C. §119(a) on Patent Application No(s). 101120658 filed in Taiwan, R.O.C. on Jun. 8, 2012, the entire contents of which are hereby incorporated by reference.
1. Field of the Invention
The present invention relates to the field of backlight modules applied in liquid crystal displays, in particular to the high-contrast direct type backlight module used for enhancing the color saturation, brightness and contrast of the liquid crystal displays to provide rich effects of a screen.
2. Description of the Related Art
Since liquid crystal, display (LCD) is a passive display device without the self-emitting function, therefore it is necessary to add and install a backlight module to provide a required display light source for a display panel, and the condition whether an area light source produced by the backlight module has sufficient and uniform brightness affects the display quality of the liquid crystal display directly. At present, the backlight module can be mainly divided into two types, respectively an edge type backlight module and a direct type backlight module, wherein the direct type backlight module has the features of a high illumination uniformity, a good light-exit viewing angle, a high light energy utility rate, a simple assembly and a quick fine-tune brightness of display areas to enhance the dynamic contrast, and thus the direct type backlight module are applied extensively in large liquid crystal displays.
In addition, the LED also has the features of high light emission efficiency, long service life and low power consumption, so that the LED has become the first choice of applications to the backlight module, in general a conventional direct type backlight module has a plurality of LED light sources installed on a substrate and arranged in a matrix, and a diffusion plate is covered onto the LED light sources with an appropriate distance apart from the LED light sources for uniformly diffusing the light emitted from each of the LED light sources, so that the diffused lights can be projected onto a display panel, to provide an area light source with uniform brightness. With, reference to
To meet the market requirements of audio and video enjoyment and stimulate consumers' visual senses, it is art important and urgent subject of the present invention to further refine the grayscale of each pixel to enhance the sophistication of images on screen.
In view of the aforementioned problems of the prior art, it is a primary objective of the present invention to provide a high-contrast direct type backlight module that improves the brightness and contrast to achieve a clear full-color display for the images on screen.
To achieve the foregoing objective, the present invention provides a high-contrast direct type backlight module combined with a display module, and the high-contrast direct type backlight module comprises a plurality of LED light sources and a diffusion plate, and after the light emitted from the LED light sources passes through the diffusion plate, the light is transmitted to the display module, and the high-contrast direct type backlight module is characterized in that the LED light sources is arranged in a matrix, and the light emitted from the LED light sources form an elliptical light pattern on the diffusion plate separately.
Wherein, each of the elliptical light patterns has a long axis and a short axis, and the long axis is parallel to a vertical line of the display module, and the short axis is parallel to a horizontal line of the display module; or each of the elliptical light patterns has a long axis and a short axis, and the long axis is parallel to a horizontal line of the display module, and the short axis is parallel to a vertical line of the display module. The display module has an aspect ratio of 16:9, which can meet the market requirements for the widescreen display specifications.
To optimize the light pattern distribution, each of the elliptical light patterns is formed by a primary optical refraction of each of the LED light sources that passes through a packaging colloid, and a distance L between the LED light sources and the display module satisfies the relation of 1 mm≦L≦50 mm. Alternately, the high-contrast direct type backlight module further comprises a plurality of light pattern ovalization means installed between the LED light sources and the diffusion plate respectively, so that after each of the light emitting from the LED light sources passes through the packaging colloid and then through each of the light pattern ovalization means to have a secondary optical refraction to form each of the elliptical light patterns. Similarly, a distance L between the LED light sources and the display module satisfies the relation of 1 mm≦L≦50 mm to uniformize the light irradiation.
Another objective of the present invention is to provide a high-contrast direct type backlight module combined with a display module, and the high-contrast direct type backlight module comprises a plurality of LED light sources and a diffusion plate. After the light emitted from the LED light sources passes through the diffusion plate, the light is transmitted to the display module. The high-contrast direct type backlight module is characterized in that the diffusion plate comprises a plurality of light pattern ovalization means installed at a light Incident position of the LED light sources that enter into the diffusion plate, and the LED light sources are arranged in a matrix. After the light emitted from the LED light sources passes through the light pattern ovalization means, an elliptical light pattern Is formed.
Wherein the light pattern ovalization means are a plurality of microlenses, and the microlenses are arranged into a matrix.
The technical contents of the present invention will become apparent with the detailed description of preferred embodiments and the illustration of related drawings as follows.
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In this preferred embodiment, each of the elliptical light patterns 23 has a long axis 230 and a short axis 231, and the long axis 230 is parallel to a horizontal line of the display module, and the short axis 231 is parallel to a vertical line of the display module, in order to enhance the illumination intensity of the horizontal line of the display module.
| Number | Date | Country | Kind |
|---|---|---|---|
| 101120658 | Jun 2012 | TW | national |