1. Field of the Invention
The present invention relates to a display system and more particularly, to a power-saving, non-color filter type display system composed of a LED backlight set and a monochrome gray-tone LCD panel for displaying color video images.
2. Description of the Related Art
Because the color LCD panel 100 does not emit light itself, the backlight source 190 provides the necessary light source to the color LCD panel 100. However, when the light of the backlight source 190 goes through the two polarizers 110 and 170, the brightness is reduced to about 38%, and then reduced to about 12.54% when passed the color filter 130, and then reduced to about 7% when passed through the pixel aperture ratio, and finally reduced to about 6% when absorbed by the liquid crystal layer 140 and the glass substrates 120 and 160. Therefore, the backlight source 190 must be a high power backlight source to provide the necessary brightness. However, a high power backlight source consumes much power supply. Further, because a high voltage is necessary to drive the cold cathode fluorescent lamp (CCFL) of the backlight source 190, the internal power source design of the display system must have a booster circuit to boost the voltage to the desired level for driving cold cathode fluorescent lamp (CCFL). The booster circuit design lowers the power utilization efficiency, and has a high voltage risk.
Therefore, it is desirable to provide a LED backlight type display system that eliminates the aforesaid drawbacks.
The present invention has been accomplished under the circumstances in view. It is therefore the main object of the present invention to provide a display system with LED backlight means, which saves much power consumption and avoids a high voltage risk.
It is another object of the present invention to provide a display system with LED backlight means, which uses a monochrome gray-tone LCD panel for display color video images, eliminating the use of a color filter and saving much the manufacturing cost. In a 15″ color LCD panel, the color filter is about 26% of the total cost. Eliminating the use of a color filter in a display system greatly reduces the cost.
To achieve these and other objects of the present invention, the display system with LED backlight means comprises a backlight panel; a LED backlight set adapted to emit a first light source, a second light source, and/or a third light source to the backlight panel; a LCD panel disposed at a top side of the backlight panel; and a video signal controller adapted to. output a first monochrome video image, a second monochrome video image, and/or a third monochrome video image to the LCD panel for synthesizing into a color video image for display on the LCD panel.
Referring to
The upper polarizer 10, the upper glass substrate 20, the liquid crystal layer 30, the thin-film substrate 40, the lower glass substrate 50, the lower polarizer 60, and the backlight panel 70 function in the same manner as the like parts in the prior art design shown in
The LED backlight unit 80 is provided at one side of the backlight panel 70, and controllable to emit a first light source, a second light source and a third light source to the backlight panel 70. According to this embodiment, the LED backlight unit 80 is provided at the left side of the backlight panel 70, comprising a plurality of LEDs (light emitting diodes) 81. According to this embodiment, the LEDs 81 are arranged in a line. Further, the LEDs 81 are RGB tri-color LEDs. According to this embodiment, the first light source is red light, the second light source is green light, and the third light source is blue light.
The upper polarizer 10, upper glass substrate 20, liquid crystal layer 30, thin-film substrate 40, lower glass substrate 50, lower polarizer 60 and backlight panel 70 constitute a LCD panel 75 for displaying images. The LCD panel 75 can be a monochrome gray-tone LCD panel or color LCD panel. According to this embodiment, the LCD panel 75 is a monochrome gray-tone LCD panel for the advantage of low manufacturing cost.
Referring to
The CPU 210 is the core of the computer 200, adapted to process data or execute other application programs. Because the CPU 210 is of the known technology, no further detailed description in this regard is necessary.
The video signal controller 220 is coupled to the CPU 210, and adapted to output a color video and to decompose the color video into an original digital video-R, an original digital video-G, and an original digital video-B.
The color signal generating circuit 230 is coupled to the video signal controller 220 to receive the original digital video-R, the original digital video-G and the original digital video-B from the video signal controller 220, and to output a digital video-R, a digital video-G and a digital video-B to the LCD panel 75 and the LED backlight unit 80 for display subject to the time sequence shown in
During operation, the video signal controller 220 decomposes the original color image into an original digital video-R, an original digital video-G and an original digital video-B, so that the color signal generating circuit 230 outputs a first single-color video R1, a second single-color video G1 and a third single-color video B1 to the LCD panel 75 subject to the time sequence shown in
Further, because the LED backlight unit 80 is comprised of RGB Tri-color LEDs 81, it simply requires a regular low voltage DC power source about 1.5˜5V. This feature simplifies the circuit layout and fabrication cost, avoiding the risk of a high voltage circuit.
The main feature of the present invention is the use of RGB Tri-color LEDs 81 to compose a backlight unit 80, which is used with any of a variety of LCD panels to form a display system.
The backlight set is assembled with the color LCD panel 100 shown in
The backlight set is assembled with a regular color LCD panel similar to that shown in
The backlight set is assembled with a monochrome (black-and-white) gray-tone LCD panel to form a display system, reducing much the cost. Under a same size and same resolution, every single pixel in a monochrome gray-tone LCD panel 75 is one single zone not to be divided into RGB three zones. Therefore, the circuit layout is simplified, and the pixel aperture area is tripled or more when compared with a regular color LCD panel, i.e., the transmittancy is about triple or more of that of a regular color LCD panel. Therefore, a display system made according to this third example requires light energy about (⅓)×(⅓)= 1/9 or less when compared to an equivalent color LCD system, saving much power consumption. When displaying a color image through a conventional color LCD panel, the images of RGB three prime colors may be dislocated. In a monochrome gray-tome LCD panel, RGB three prime colors are from the same location. Therefore this third example avoids image dislocation, and the mixed color will be highly close to the original color. In general, this third example greatly reduces the cost, saves much power consumption, and provides an excellent image displaying effect. Further, when compared with a regular color LCD panel having the same aperture area, the resolution of the monochrome gray-tone LCD panel is about 3 times better.
When a four-color (RGB plus yellow) LED backlight set or more than four colors LED backlight set is used to substitute for the aforesaid RGB Tri-color LED backlight set, the displayed color image is composed of four or more than four colors, and the displayed color is more natural.
As stated above, the invention provides a display system with LED backlight means, which uses a LED backlight set and a monochrome gray-tone LCD panel to display images, saving much the manufacturing cost and power consumption, and eliminating the drawbacks of conventional LCD display systems.
Although particular embodiments of the invention haves been described in detail for purposes of illustration, various modifications and enhancements may be made without departing from the spirit and scope of the invention.
Number | Date | Country | Kind |
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096105008 | Feb 2007 | TW | national |