1. Field of the Invention
The present invention relates to the field of liquid crystal display (LCD) techniques, and in particular to an ultra-slim lighting device and a backlight module incorporating the lighting device.
2. The Related Arts
The employment of quantum dots (QD) technology in the field of display backlight is as follows. A QD tube is positioned in front of blue light emitting diodes (LEDs). Blue light enters the QD tube and excites the dots to produce red and green light. The red and green light, blended with the incident blue light, becomes white light of high saturation and high chromaticity. The white light is introduced into the light guide plate and provides enhanced color manifestation for the liquid crystal display (LCD) device. However, in order to compensate the loss of light as it passes through the QD tube, as shown in
To address the technical issue of the prior art described above, the present invention provides a lighting device and a backlight module incorporating the lighting device where two rows of lighting elements are employed to project converged light and to achieve enhance illumination.
The lighting device contains a substrate and a plurality of lighting elements on a front side of the substrate. The lighting elements are arranged in at least two parallel rows along the length of the substrate. The lighting elements of a first row are arranged along a first edge adjacent to the lighting elements of a second row, and the lighting elements of the second row are arranged along a second edge adjacent to the lighting elements of the first row. The first and second edges neighbor on each other. The front side of the substrate is configured so that the first and second edges are sunk backward into the substrate, and as such an included angle is formed between the lighting elements of the first and second rows; and the light produced by the lighting elements therefore intersects.
Specifically, the included angle is between 90 and 150 degrees.
Specifically, the substrate has an M-shaped cross-section.
Alternatively, the interface between the lighting elements and the substrate is a curved indentation into the substrate.
Specifically, each lighting element comprises a base and a light emitting diode (LED) lamp configured on the base.
The present invention also provides a backlight module which contains a light guide plate, a plastic frame, a back plate surrounding the light guide plate and the plastic frame, a lighting device configured on the back plate facing a light incident plane of the light guide plate, and a QD tube between the lighting device and the light guide plate. The lighting device contains a substrate and a plurality of lighting elements on a front side of the substrate. The lighting elements are arranged in at least two parallel rows along the length of the substrate. The lighting elements of a first row are arranged along a first edge adjacent to the lighting elements of a second row, and the lighting elements of the second row are arranged along a second edge adjacent to the lighting elements of the first row. The first and second edges neighbor on each other. The front side of the substrate is configured so that the first and second edges are sunk backward into the substrate, and as such an included angle is formed between the lighting elements of the first and second rows; and the light produced by the lighting elements therefore intersects.
Specifically, the included angle is between 90 and 150 degrees.
Specifically, the substrate has an M-shaped cross-section.
Alternatively, the interface between the lighting elements and the substrate is a curved indentation into the substrate.
Specifically, each lighting element comprises a base and a light emitting diode (LED) lamp configured on the base.
Specifically, the substrate and the back plate are integrally formed.
By adjusting the relative position of the two rows of lighting elements so that their light converges within the QD tube before entering the light guide plate, the present invention achieves a lighting device of enhanced illumination. Then, the backlight module incorporating the lighting device not only provides high saturation and high chromaticity, but also achieves greater optical coupling efficiency, thinner light guide plate and QD tube, reduced material cost and dimension.
To make the technical solution of the embodiments according to the present invention, a brief description of the drawings that are necessary for the illustration of the embodiments will be given as follows. Apparently, the drawings described below show only example embodiments of the present invention and for those having ordinary skills in the art, other drawings may be easily obtained from these drawings without paying any creative effort. In the drawings:
As illustrated in
Preferably, the substrate 11 has an M-shaped cross-section. The lighting elements 121 and 122 are arranged on the substrate 11's two bulging shoulders 11a, respectively. Each lighting element 121 or 122 contains a base 123 and a LED lamp 124 on the base 123. The base 123 can be a printed circuit board (PCB) and the LED lamp 124 is configured on a shoulder 11a of the substrate 11 through the PCB.
It should be obvious that, in addition to the above arrangement, the interface between the lighting elements 121 or 122 and the substrate 11 can be a curved indentation (not shown) into the substrate 11, as long as the lighting elements 121 and 122 can form an included angle in-between.
In alternative embodiments, each lighting element can has the LED lamp directly configured on a shoulder of the substrate. In this case, the substrate can be PCB having the above describe shape.
The present invention also provides a backlight module incorporating the above described lighting device. As illustrated in
Taking
Embodiments of the present invention have been described, but not intending to impose any unduly constraint to the appended claims. Any modification of equivalent structure or equivalent process made according to the disclosure and drawings of the present invention, or any application thereof, directly or indirectly, to other related fields of technique, is considered encompassed in the scope of protection defined by the clams of the present invention.
Number | Date | Country | Kind |
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2015 1 0106081 | Mar 2015 | CN | national |
Filing Document | Filing Date | Country | Kind |
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PCT/CN2015/074386 | 3/17/2015 | WO | 00 |
Publishing Document | Publishing Date | Country | Kind |
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WO2016/141599 | 9/15/2016 | WO | A |
Number | Name | Date | Kind |
---|---|---|---|
8564109 | Watari | Oct 2013 | B2 |
20070081329 | Chua | Apr 2007 | A1 |
20080316767 | Woo | Dec 2008 | A1 |
20100290246 | Kim | Nov 2010 | A1 |
20120001538 | Kim | Jan 2012 | A1 |
20120057367 | Park | Mar 2012 | A1 |
20120293721 | Ueyama | Nov 2012 | A1 |
20130271700 | Nakamura | Oct 2013 | A1 |
20130320878 | Tien | Dec 2013 | A1 |
20130335821 | Robinson | Dec 2013 | A1 |
20150260906 | Li | Sep 2015 | A1 |
Number | Date | Country | |
---|---|---|---|
20160306100 A1 | Oct 2016 | US |