This application relates to and claims priority from Japanese Patent Application No. 2009-200119 filed on Aug. 31, 2009 and Japanese Patent Application No. 2009-200127 filed on Aug. 31, 2009, the entire disclosure of which are incorporated herein by reference.
(1) Field of the Invention
The present invention relates to a liquid crystal display device, particularly, a liquid crystal display device using LEDs as light sources for a backlight device.
(2) Description of the Related Art
In recent years, with TV broadcasting digitalization and the introduction of high-definition broadcasting being promoted, large-sized (large-screen), thin image display devices, i.e. flat panel displays (FPDs), are in demand. Liquid crystal display (LCD) devices are among conventional large-sized, thin flat panel displays. A thin LCD device to be realized requires a thin backlight device for incorporation therein.
Conventional backlight devices for LCD devices are surface light source devices which output surface light using linear or point, primary light sources. Such surface light source devices each use, for example, light emitting diodes (LEDs) or a cold cathode fluorescent lamp (CCFL) as a primary light source and light guide plates for converting light fluxes emitted from the primary light source into surface light. A surface light source device using plural combinations of light guide plates and light sources, like those described above, which are two-dimensionally arranged so as to acquire a relatively wide emission area are referred to as tandem-type surface light source devices.
Techniques for such tandem-type surface light source devices have been disclosed, for example, in Japanese Patent Application Laid-Open Nos. 2006-286638 and 2001-93321.
As stated above, LCD devices have been growing thinner and larger in screen size. The tandem-type surface light source devices are advantageous in making LCD devices thinner and larger in screen size.
In a tandem-type surface light source device, light sources are, as described in Japanese Patent Application Laid-Open Nos. 2006-286638 and 2001-93321, installed such that the light fluxes generated by them travel along the horizontal direction of a display screen (for example, leftwardly or rightwardly along the display screen) to be then incident to light guide plates.
According to the conventional techniques, an image displayed on a display screen, with the light from light sources inputted rightwardly, as seen from the front side of the display screen (from the user's side), to light guide plates, appears bright when viewed from the right side and dark when viewed from the left side. This is because viewing the display screen from the right side is seeing the light sources from in front of the light sources, whereas viewing the display screen from the left side is seeing the light sources from behind the light sources.
As described above, when the light from light sources is arranged to be incident to light guide plates along the horizontal direction of a display screen, the image brightness at a horizontal viewing angle becomes asymmetric between when the display screen is viewed from the right side and when it is viewed from the left side. This causes image brightness unevenness dependent on the horizontal viewing angle. Since the user, in many cases, views the display screen at a horizontal angle with respect to a line perpendicular to the display screen, it is preferable to minimize the image brightness unevenness dependent on the horizontal viewing angle of the user.
Furthermore, in a tandem-type surface light source device, plural combinations of light guide plates and light sources are two-dimensionally arranged. This lowers the assembly work efficiency (assembly workability) for the surface light source device. In addition, there can be cases where a light source for inputting light to a first light guide plate comes in physical contact with a second light guide plate adjacent to the light source to possibly damage the light source.
The present invention has been made in view of the above problems, and an object of the present invention is to provide a technique which makes it possible, in an LCD device using a tandem-type backlight device including plural combinations of light sources and light guide plates, to reduce the image brightness unevenness dependent on the horizontal viewing angle and realize high-quality image display.
Another object of the present invention is to provide a technique, related to an LCD device using a tandem-type backlight device including plural combinations of light sources and light guide plates, which is advantageous in improving assembly workability and protecting the light sources.
It is a first characteristic of the present invention that a liquid crystal display (LCD) device for displaying an image using a liquid crystal panel includes a plurality of light sources and a plurality of light guide plates to which light from the plurality of light sources is incident and which output the light incident from the plurality of light sources to the liquid crystal panel as surface light. Furthermore, in the LCD device: the plurality of light guide plates are arranged along a vertical direction of the liquid crystal display device, each of the plurality of light guide plates having a rectangular shape longitudinally extending along a horizontal direction of the liquid crystal display device; an incident surface, to which light is incident from a corresponding one of the plurality of light sources, of each of the plurality of light guide plates faces up; and each of the plurality of light sources is disposed to emit light downwardly along the liquid crystal panel toward a corresponding one of the plurality of light guide plates.
It is a second characteristic of the present invention that an LCD device for displaying an image using a liquid crystal panel includes: a plurality of light sources; a plurality of light guide plates to which light from the plurality of light sources is incident and which output the light incident from the plurality of light sources to the liquid crystal panel as surface light; a plurality of reflection sheets disposed behind the plurality of light guide plates; and a plurality of support members for supporting the plurality of reflection sheets from behind. Furthermore, in the LCD device: the plurality of light guide plates are arranged along a vertical direction of the liquid crystal display device, each of the plurality of light guide plates having a rectangular shape longitudinally extending along a horizontal direction of the liquid crystal display device; an incident surface, to which light is incident from a corresponding one of the plurality of light sources, of each of the plurality of light guide plates faces up; each of the plurality of light sources is disposed to emit light downwardly along the liquid crystal panel toward a corresponding one of the plurality of light guide plates; and the plurality of support members each have a hole to enclose one of the plurality of light sources.
According to the first characteristic of the present invention, the light from light sources is incident to light guide plates along the downward direction of a liquid crystal panel, so that the image display brightness on the display screen is approximately the same between when the display screen is viewed from the right side with a horizontal viewing angle and when the display screen is viewed from the left side with the same horizontal viewing angle. Thus, the image brightness unevenness dependent on the horizontal viewing angle can be reduced.
According to the second characteristic of the present invention, an LCD device using illumination light emitted from light sources for backlighting can be provided in which the amount of light outputted from the light sources is effectively used and which can be fabricated with high workability while protecting the light sources from possible damage.
These and other features, objects and advantages of the present invention will become more apparent from the following description when taken in conjunction with the accompanying drawings wherein:
An embodiment of the present invention will be described below with reference to drawings.
Referring to
Referring to
Unlike conventional light guide plates, the light guide plates 4 are configured to guide the illumination light mainly in the downward direction of the display screen as indicated by the broken-line arrow in
Each of the light guide plates 4 is fixed in position mainly at its upper part for securer installation. In
In the example arrangement shown in
As described above, the LCD device of the present embodiment includes plural rectangular light guide plates vertically arranged with their longer sides extending along the horizontal direction of the rectangular screen (liquid crystal panel) of the LCD device. The horizontally positioned rectangular light guide plates receive the light emitted vertically downwardly, as indicated by the broken-line arrow shown in
Referring to
An assembled state of the above components will be described with reference to
Referring to
As shown in
In
The proportions among the dimensions along different directions of each component shown in the accompanying drawings only represent example dimensional proportions which may be optionally changed. The dimensional proportions among different components are also optional. The reflection sheets 3, for example, may be thinner than shown in the accompanying drawings relative to the thickness of the support members 1 or light guide plates 4.
As described above, in the present embodiment, plural rectangular light guide plates are vertically arranged with each light guide plate longitudinally extending along the horizontal direction of a display screen (LCD panel), and the light emitted from LEDs 11 used as light sources is downwardly inputted to the horizontally longitudinal light guide plates. Therefore, the image brightness unevenness dependent on the horizontal viewing angle is reduced, and the image brightness asymmetry between when the screen is viewed from the right side and when it is viewed from the left side is substantially eliminated. This arrangement also produces an effect to make boundaries between the vertically arranged light guide plates 4 visually less conspicuous. Furthermore, the illumination light emitted from the LEDs 11 is guided effectively to the light guide plates 4, the guided light including the light reflected from the inner surfaces of the LED grooves 21. The LED grooves 21 protect the LEDs 11 and reduce the chances of the LEDs 11 being erroneously broken during assembly work, so that they contribute toward improving assembly work efficiency. Still furthermore, in the present embodiment, the illumination light is effectively utilized as it is efficiently reflected from the rear surfaces of the light guide plates 4 with the reflection sheets 3 correctly kept, by the support members 2, in position along the light guide plates 4 also facilitating the reflection.
The above embodiment is only an example embodiment, and the present invention is not limited to the above embodiment. Many different embodiments can be devised using, for example, different numbers of LEDs, differently shaped components, and different installation methods without departing from the scope of the present invention.
While we have shown and described several embodiments in accordance with our invention, it should be understood that disclosed embodiments are susceptible of changes and modifications without departing from the scope of the invention. Therefore, we do not intend to be bound by the details shown and described herein but intend to cover all such changes and modifications that fall within the ambit of the appended claims.
Number | Date | Country | Kind |
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2009-200119 | Aug 2009 | JP | national |
2009-200127 | Aug 2009 | JP | national |