Assembled device of a light module and a liquid crystal panel
An assembled device of a light module and a liquid crystal panel is composed of a liquid crystal panel whose bottom surface is provided with a light module which includes a circuit board on which are welded at least more than one blue light chip, which is next to a red light chip, as a blue light emitting source, and more than one red light chip as a red light emitting source. A light emitting illumination layer, which is made by uniformly mixing an illumination powder with a transparent glue, is located above the blue light chip and the red light chip, so as to develop into a white light as a back light source whose rendering effect and uniformity are of a good quality and can be easily controlled.
a) Field of the Invention
The present invention relates to an assembled device of a light module and a liquid crystal panel and more particularly to a device wherein a back light source in a white color on the liquid crystal panel is provided with a better light rendering effect.
b) Description of the Prior Art
A typical structure of an assembled device of a liquid crystal panel and a back light source is disclosed in the Taiwan Utility Model Reg. No. M245448, “Light Module of A Liquid Crystal Display,” wherein the light emitting diode used by the light source is composed of an ultraviolet (UV) LED and illumination materials which can emit red, blue, and green light (R, B, G). Its drawback is that the ultraviolet light will create damage to the structure of epoxy resin which is used widely, thereby causing a problem of attenuation to the white light, and enabling a weak brightness to the white light. In particular, the cladding layer of the aforementioned invention is made by mixing illumination powders of red, green, and blue colors. Therefore, another drawback is that the proportions of these three colors and the manufacturing process are difficult to control. Moreover, the claim item 5 of the aforementioned invention discloses that the light emitter diode is a blue light LED, and the illumination powders are red and green light illumination materials. However, it is found that it is difficult to control the proportions of red and green illumination powders and the manufacturing process, so as to hard to control the uniformity of the mixed light (or the white light), thereby causing an inferior light rendering effect to the white light manifested by the liquid crystal panel.
In the Taiwan Utility Model Reg. No. M251143, “Light Device of a Liquid Crystal Screen,” the light source uses a blue light or UV light with the wavelength between 202 nm and 500 nm as a single light source. However, the light source is in short of red light in the spectrum. Therefore, the white light mixed by exciting the illumination board (or the mixed light) is not provided with a good rendering effect and uniformity, and is defined as an impure white light by human eyes.
The Taiwan Utility Model Reg. No. 1228837, “Light Emitting Device,” invented by the present inventor is a white light LED, which uses a blue light and a red light emitting chips (LED) as two light sources. The illumination layer is glued on the blue light chips and the red light chips, and is excited by a light source to emit a green light which is mixed with the blue and red light to form the white light. The invention effectively overcomes the problem of hard to control the proportions of illumination powders of different colors and the manufacturing process as described in the aforementioned invention, and uses the red light LED to replace a conventional red illumination powder, so as to enable the material of illumination layer to be a single color material. This kind of design can solve the problem of hard to control the mixing proportions of different colors and the manufacturing process, and can further control the wavelength of single excited light (i.e., the wavelength of green light). In addition, the invention uses a mixing of the red light emitted from the red light LED, the excited light, and the blue light, to obtain a white light with a better rendering effect. However, the implementation of invention is limited to the new design of white light LED, and there is still no extended implementation applied to the assembled device of a liquid crystal panel and a back light module.
SUMMARY OF THE INVENTIONThe primary object of present invention is to provide an assembled device of a light module and a liquid crystal panel, wherein a white light transmitted from a back light source is provided with a rendering effect and uniformity which are easy to control and are of a good quality.
Another object of the present invention is to provide an assembled device of a light module and a liquid crystal panel, wherein an illumination layer used for the back light module is a light emitting material, such that the wavelength of excited light can be easily controlled, thereby achieving a function of easily controlling the rendering effect and uniformity of the white light from back light source of the liquid crystal panel.
Still another object of the present invention is to provide an assembled device of light module and a liquid crystal panel, wherein the device can be replaced by easily exchanging a light diffusion plate coated with an illumination layer.
To enable a further understanding of the said objectives and the technological methods of the invention herein, the brief description of the drawings below is followed by the detailed description of the preferred embodiments.
BRIEF DESCRIPTION OF THE DRAWINGS
Referring to
Accordingly, a light diffusion plate 12 is located between the light module 20 and the liquid crystal panel 10, and the illumination layer 40 can be uniformly coated on an upper surface 121 or a lower surface 122 of the light diffusion plate 12. An adhesive layer 124 is located at the lower surface 122 of light diffusion plate 12 for being attached to a frame 211 at a periphery of circuit board 21 (as shown in
Accordingly, the blue light chip 32 and the red light chip 34 are located in a slot 61 of a same light reflection cap 60 whose pins 62, 64 of two electrodes are welded on the circuit board 21, and the transparent glue 45 is filled in the slot 61.
Accordingly, the blue light chip 32 and the red light chip 34 are located in slots 61 of light reflection caps 60, (60), respectively, and pins 62, 64 of electrodes of the two light reflection caps 60, (60) are welded on the circuit board 21, respectively. A pitch L between the two light reflection caps 60, (60) is controlled to be within 1 mm (as shown in
Accordingly, one or two or three combinations from the following mixtures can be chosen as a material of illumination powder in the illumination layer 40: the aluminum garnet series activated by plutonium and containing Y and Al (YAG:Ce3+), the garnet series activated by europium (YAG:EU2+/3+), and the garnet series activated by terbium (YAG:Tb3+).
Accordingly, a transparent light enhancing membrane 125 or a piece of prism used for enhancing light is added between the liquid crystal panel 10 and the light diffusion plate 12 (as shown in
Accordingly, the plural and neighboring blue light chips 32 and red light chips 34 are welded on the circuit board 21 in multiple rows of one-dimensional array (as shown in
Referring to
Referring to
A blue light chip 32 is located in a slot 61 of independent light reflection cap 60, and a red light chip 34 is located in a slot 61 of another independent light reflection cap (60). A pitch L of every neighboring light reflection caps 60, (60) is controlled to be about 1 mm. A transparent glue 45 is sealed in two slots 61, (61) separately, so as to package the blue light chip 32 and the red light chip 34. Pins 62, 64 of positive and negative electrode enable the blue light chip 32 and red light chip 34 to emit a blue light B and a red light R simultaneously, by a function of electrodes. The blue light B and red light R transmits out of the transparent glue 45, the adhesive layer 124, the light diffusion plate 12, the illumination layer 40, and the liquid crystal panel 10, respectively, wherein the blue light B is primarily used to excite the illumination layer 40 to emit an excited light G with a wavelength between 500 nm and 570 nm, which is defined as a green light. The excited light G, the blue light B, and the red light R transmit out of the liquid crystal panel 10 and constitute into a mixed light, which is defined as a white light W. The white light W forms a back light source of the liquid crystal panel 10.
Referring to
Referring to
Referring to
Referring to
Referring to
Referring to
Referring to
Referring to
Referring to
The essential features of present invention lie in that the blue light chip 32 and the red light chip 34, which are mutually independent chips, are used as the back light source of liquid crystal panel 10, and a single color illumination material is further chosen as the illumination layer 10, for example, YAG:Ce3+ or YAG:EU2+/3+ or YAG:Tb3+ of a same color, or a combination of one or two or three kinds of those materials. Accordingly, the problem of considering a proportion of mixing with illumination powders of other different colors does not exist, and the color of light enabled by the illumination layer 40 of a single material is defined as a green light with a wavelength between 500 nm and 570 nm. Therefore, it is easy control the wavelength of excited light G (i.e., defined as the green light) generated when the illumination layer 40 is excited by the blue light B.
The red light chip 34 is a light emitting diode, and the blue light chip 32 is also a light emitting diode. Therefore, by a means of circuit control, the red light chip 34 and the blue light chip can be controlled to emit lights simultaneously, and strength of light emitting can also be controlled, such that the rendering of white light W can be initiated simultaneously.
Referring to
It is of course to be understood that the embodiments described herein is merely illustrative of the principles of the invention and that a wide variety of modifications thereto may be effected by persons skilled in the art without departing from the spirit and scope of the invention as set forth in the following claims.
Claims
1. An assembled device of a light module and a liquid crystal panel comprising a liquid crystal panel whose bottom surface is provided with a light module which includes a circuit board on which are welded at least more than one blue light chip, which is next to a red light chip, as a blue light emitting source, and more than one red light chip as a red light emitting source; a light emitting illumination layer made by uniformly mixing an illumination powder with a transparent glue, and located on the blue light chips and the red light chips.
2. The assembled device of a light module and a liquid crystal panel according to claim 1, wherein a light diffusion plate is located between the light module and the liquid crystal panel, the illumination layer can be uniformly coated on a surface of the light diffusion plate whose lower surface is provided with an adhesive layer for attaching to a frame at a periphery of the circuit board.
3. The assembled device of a light module and a liquid crystal panel according to claim 1, wherein the blue light chip and the red light chip are installed in a slot of a same light reflection cap whose pins of two electrodes are welded on the circuit board and the transparent glue is filled in the slot.
4. The assembled device of a light module and a liquid crystal panel according to claim 1, wherein the blue light chip and the red light chip are independently installed in slots of two separate light reflection caps whose pins of two electrodes are separately welded on the circuit board and whose pitch is controlled to be within 1 mm, and the transparent glue is filled in the slots of two light reflection caps and on the surface of circuit board.
5. The assembled device of a light module and a liquid crystal panel according to claim 1, wherein one or two or three combinations from the following mixtures can be chosen as a material of illumination powder in the illumination layer: the aluminum garnet series activated by plutonium and containing Y and Al (YAG:Ce3+), the garnet series activated by europium (YAG:EU2+/3+), and the garnet series activated by terbium (YAG:Tb3+).
6. The assembled device of a light module and a liquid crystal panel according to claim 1, wherein a transparent light enhancing membrane used for enhancing light is added between the liquid crystal panel and the light diffusion plate.
7. The assembled device of a light module and a liquid crystal panel according to claim 1, wherein the plural and neighboring blue light chips and red light chips are welded on the circuit board in multiple rows of one-dimensional array.
Type: Application
Filed: Nov 9, 2005
Publication Date: May 10, 2007
Inventors: Kun-Chui Lee (Taipei City), Tzu-Chi Cheng (Baoshan Township)
Application Number: 11/269,656
International Classification: A47F 3/00 (20060101);