1. Field of the Invention
The present invention relates to a display, a television set, and a liquid crystal television set, and more particularly, it relates to a display, a television set, and a liquid crystal television set each including light directing portions directing light emitted from a light source to a light-emitting surface of a light guide plate.
2. Description of the Background Art
A display including light directing portions directing light emitted from a light source to a light-emitting surface of a light guide plate is known in general, as disclosed in Japanese Patent Laying-Open No. 2007-12323, for example.
Japanese Patent Laying-Open No. 2007-12323 discloses an edge light type liquid crystal module including light sources, a light guide plate, a plurality of light directing portions, and a liquid crystal cell, in which the light sources are arranged to be opposed to a side surface of the light guide plate. The plurality of light directing portions are provided on the rear surface of the light guide plate, and have a function of directing light emitted from the light sources toward the light guide plate to a light-emitting surface of the light guide plate.
On the light guide plate provided in the conventional edge light type module disclosed in Japanese Patent Laying-Open No. 2007-12323, the plurality of light directing portions may be arranged to correspond to the positions of the light sources. Specifically, the light directing portions are arranged such that the number of the light directing portions is relatively small (the density of the light directing portions is low) on regions of the light guide plate facing the light sources (regions having a large amount of incident light), and the number of the light directing portions is relatively large (the density of the light directing portions is high) on regions of the light guide plate corresponding to positions between the light sources (regions having a small amount of incident light). The light directing portions distributed with high and low densities direct a larger amount of light to the light-emitting surface of the light guide plate in the regions having a small amount of incident light as compared with the regions having a large amount of incident light. Thus, the amount of light directed to the light-emitting surface of the light guide plate is equalized in the regions having a large amount of incident light and the regions having a small amount of incident light, so that display quality can be maintained.
In the edge light type module described in Japanese Patent Laying-Open No. 2007-12323, however, the regions where the light directing portions are densely provided may face the light sources while the regions where the light directing portions are sparsely provided may face the positions between the light sources, if relative positional deviation of the light sources and the light guide plate occurs. In this case, the densely provided light directing portions direct a large amount of light to the light-emitting surface of the light guide plate in the regions having a large amount of incident light. On the other hand, the sparsely provided light directing portions direct a small amount of light to the light-emitting surface of the light guide plate in the regions having a small amount of incident light. Therefore, in general, if the relative positional deviation of the light sources and the light guide plate occurs, the amount of light emitted from the light guide plate considerably varies to be unequalized. Consequently, display quality is disadvantageously reduced.
The present invention has been proposed in order to solve the aforementioned problem, and an object of the present invention is to provide a display, a television set, and a liquid crystal television set each capable of suppressing reduction in display quality even if positional deviation of a light guide plate and a light source occurs.
A display according to a first aspect of the present invention includes a light source, a light guide plate having a side surface constituting a light-receiving surface on which light emitted from the light source is incident, a bottom surface, and a surface constituting a light-emitting surface, a plurality of light directing portions provided on the bottom surface of the light guide plate, directing the light incident on the light guide plate to the light-emitting surface, and a display cell arranged on the light-emitting surface of the light guide plate, while the plurality of light directing portions provided on the bottom surface of the light guide plate are so arranged that at least either arrangement intervals between the plurality of light directing portions or areas of the plurality of light directing portions are irregular.
In the display according to the first aspect of the present invention, as hereinabove described, the plurality of light directing portions provided on the bottom surface of the light guide plate are so arranged that at least either the arrangement intervals between the plurality of light directing portions or the areas of the plurality of light directing portions are irregular, whereby the light directing portions may not be arranged on the light guide plate to correspond to the arrangement position of the light source. Thus, variation in the amount of light emitted from the light guide plate in a case where positional deviation of the light guide plate and the light source occurs can be suppressed, and hence reduction in display quality can be suppressed even if the positional deviation of the light guide plate and the light source occurs.
In the aforementioned display according to the first aspect, the plurality of light directing portions are preferably so arranged that density of the plurality of light directing portions increases with distance from the light source while at least either arrangement intervals between the plurality of light directing portions or areas of the plurality of light directing portions are irregular. According to this structure, in a portion of the light guide plate having a small amount of incident light from the light source, far from the light source, the densely arranged light directing portions can efficiently direct light to the light-emitting surface of the light guide plate so that a sufficient amount of emitted light can be ensured over the entire light-emitting surface of the light guide plate, while the irregularly arranged light directing portions suppress reduction in display quality even if the positional deviation of the light guide plate and the light source occurs.
In the aforementioned display according to the first aspect, the plurality of light directing portions are preferably so configured that at least either arrangement intervals between the plurality of light directing portions or areas of the plurality of light directing portions are irregular in at least a prescribed region of the light guide plate in a vicinity of the light-receiving surface. According to this structure, variation in the amount of light emitted from the light guide plate resulting from positional deviation of the light guide plate and the light source can be suppressed in the region of the light guide plate in the vicinity of the light-receiving surface, where difference in brightness due to the amount of incident light easily appears because of a small distance from the light source. Thus, reduction in display quality can be effectively suppressed in the region of the light guide plate in the vicinity of the light-receiving surface.
In this case, a plurality of light sources are preferably provided to be spaced from each other by a distance D along a direction in which the light-receiving surface extends, and the prescribed region preferably includes a region where a ratio L/D of a distance L in a direction toward a side surface opposite to the light-receiving surface from the light-receiving surface of the light guide plate to the distance D between the adjacent light sources is less than or equal to 1. According to this structure, reduction in display quality can be easily suppressed in the region of L/D≦1 of the light guide plate in the vicinity of the light-receiving surface, where a difference in the amount of light between a region of the light guide plate having a large amount of incident light and a region thereof having a small amount of incident light easily appears.
In the aforementioned structure in which at least either the arrangement intervals between the plurality of light directing portions or the areas of the plurality of light directing portions are irregular in at least the prescribed region of the light guide plate in the vicinity of the light-receiving surface, the plurality of light directing portions are preferably so configured that at least either arrangement intervals between the plurality of light directing portions or areas of the plurality of light directing portions are irregular over an entire region of the light guide plate including not only the prescribed region in the vicinity of the light-receiving surface but also a region other than the prescribed region. According to this structure, variation in the amount of light emitted from the light guide plate can be suppressed over the overall light guide plate if positional deviation of the light guide plate and the light source occurs, and hence reduction in display quality can be suppressed over the entire display region of the display cell even if the positional deviation of the light guide plate and the light source occurs.
In the aforementioned structure in which at least either the arrangement intervals between the plurality of light directing portions or the areas of the plurality of light directing portions are irregular in at least the prescribed region, the plurality of light directing portions are preferably so configured that at least either arrangement intervals between the plurality of light directing portions or areas of the plurality of light directing portions have regularity in a region of the light guide plate other than the prescribed region. According to this structure, the light directing portions having regularity in the region of the light guide plate other than the prescribed region can direct light uniformly to the light-emitting surface of the light guide plate while reduction in display quality is effectively suppressed in the region of the light guide plate in the vicinity of the light-receiving surface.
In the aforementioned structure in which the plurality of light directing portions have regularity in the region of the light guide plate other than the prescribed region, the plurality of light directing portions are preferably so arranged that arrangement intervals between the plurality of light directing portions decrease with distance from the light source. According to this structure, the light directing portions can be densely arranged in the portion of the light guide plate having a small amount of incident light from the light source, far from the light source, and hence a sufficient amount of emitted light can be ensured over the entire light-emitting surface of the light guide plate.
In the aforementioned display according to the first aspect, a plurality of light sources are preferably provided to be spaced from each other along a first direction in which the light-receiving surface of the light guide plate extends, and the arrangement intervals between the plurality of light directing portions are preferably irregular in at least either the first direction or a second direction orthogonal to the first direction. According to this structure, the light guide plate and the light sources may not be precisely aligned in at least either the first direction in which the light-receiving surface of the light guide plate extends or the second direction orthogonal to the first direction, and hence reduction in display quality can be suppressed even if positional deviation of the light guide plate and the light sources occurs.
In the aforementioned structure in which the plurality of light directing portions are so arranged that the arrangement intervals between the plurality of light directing portions decrease with distance from the light source, the plurality of light directing portions preferably have substantially the same shape as each other. According to this structure, reduction in display quality can be easily suppressed simply by varying the arrangement intervals between the light directing portions, even if positional deviation of the light guide plate and the light source occurs.
In the aforementioned structure in which the plurality of light directing portions are so arranged that the arrangement intervals between the plurality of light directing portions decrease with distance from the light source, the arrangement intervals between the plurality of light directing portions are preferably irregular in a first direction. According to this structure, regions having a large amount of incident light and regions having a small amount of incident light emerge along the first direction in which the light sources are arranged so that the effect of positional deviation in the first direction can be effectively suppressed by irregularizing the arrangement intervals between the light directing portions in the first direction.
In the aforementioned display according to the first aspect, the plurality of light directing portions are preferably so configured that areas of the plurality of light directing portions are irregular. According to this structure, the plurality of light directing portions can be easily irregularized even if the arrangement intervals between the plurality of light directing portions are the same.
In this case, the plurality of light directing portions preferably include a first light directing portion having a substantially circular shape and a second light directing portion having a substantially flattened shape. According to this structure, the areas of the light directing portions can be easily irregularized by combining the first light directing portion having the substantially circular shape and the second light directing portion having the substantially flattened shape.
In the aforementioned display according to the first aspect, the light source is preferably constituted by a point light source, and light emitted from the point light source is preferably directed to the light-emitting surface by the plurality of light directing portions so arranged that at least either arrangement intervals between the plurality of light directing portions or areas of the plurality of light directing portions are irregular. Thus, reduction in display quality resulting from positional deviation of the light guide plate and the light source can be suppressed by the irregularly arranged light directing portions, even if the point light source likely to form the regions having a large amount of incident light and the regions having a small amount of incident light in the light guide plate is employed.
In the aforementioned display according to the first aspect, a plurality of light sources are preferably arranged, and each of the plurality of light directing portions preferably has a width smaller than a width of each of the plurality of light sources in a first direction in which the light-receiving surface of the light guide plate extends. According to this structure, the more numerous light directing portions can be arranged so that light can be efficiently applied to the light directing portions. Consequently, reduction in display quality can be easily suppressed even if positional deviation of the light guide plate and the light sources occurs.
In the aforementioned structure in which the plurality of light directing portions have regularity in the region of the light guide plate other than the prescribed region, each of the arrangement intervals between the plurality of light directing portions is smaller than a width of the light source in a first direction in which the light-receiving surface of the light guide plate extends. According to this structure, the arrangement intervals between the light directing portions narrow so that light can be efficiently applied to the light directing portions. Consequently, reduction in display quality can be easily suppressed even if positional deviation of the light guide plate and the light source occurs.
A television set according to a second aspect of the present invention includes a light source, a light guide plate having a side surface constituting a light-receiving surface on which light emitted from the light source is incident, a bottom surface, and a surface constituting a light-emitting surface, a plurality of light directing portions provided on the bottom surface of the light guide plate, directing the light incident on the light guide plate to the light-emitting surface, a display cell arranged on the light-emitting surface of the light guide plate, and a receiving portion receiving television broadcasting, while the plurality of light directing portions provided on the bottom surface of the light guide plate are so arranged that at least either arrangement intervals between the plurality of light directing portions or areas of the plurality of light directing portions are irregular.
In the television set according to the second aspect of the present invention, as hereinabove described, the plurality of light directing portions provided on the bottom surface of the light guide plate are so arranged that at least either the arrangement intervals between the plurality of light directing portions or the areas of the plurality of light directing portions are irregular, whereby the light directing portions may not be arranged on the light guide plate to correspond to the arrangement position of the light source. Thus, variation in the amount of light emitted from the light guide plate in a case where positional deviation of the light guide plate and the light source occurs can be suppressed, and hence in the television set, reduction in display quality can be suppressed even if the positional deviation of the light guide plate and the light source occurs.
In the aforementioned television set according to the second aspect, the plurality of light directing portions are preferably so arranged that density of the plurality of light directing portions increases with distance from the light source while at least either arrangement intervals between the plurality of light directing portions or areas of the plurality of light directing portions are irregular. According to this structure, in a portion of the light guide plate having a small amount of incident light from the light source, far from the light source, the densely arranged light directing portions can efficiently direct light to the light-emitting surface of the light guide plate so that a sufficient amount of emitted light can be ensured over the entire light-emitting surface of the light guide plate, while the irregularly arranged light directing portions suppress reduction in display quality even if the positional deviation of the light guide plate and the light source occurs.
In the aforementioned television set according to the second aspect, the plurality of light directing portions are preferably so configured that at least either arrangement intervals between the plurality of light directing portions or areas of the plurality of light directing portions are irregular in at least a prescribed region of the light guide plate in a vicinity of the light-receiving surface. According to this structure, variation in the amount of light emitted from the light guide plate resulting from positional deviation of the light guide plate and the light source can be suppressed in the region of the light guide plate in the vicinity of the light-receiving surface, where difference in brightness due to the amount of incident light easily appears because of a small distance from the light source. Thus, reduction in display quality can be effectively suppressed in the region of the light guide plate in the vicinity of the light-receiving surface.
In this case, a plurality of light sources are preferably provided to be spaced from each other by a distance D along a direction in which the light-receiving surface extends, and the prescribed region preferably includes a region where a ratio L/D of a distance L in a direction toward a side surface opposite to the light-receiving surface from the light-receiving surface of the light guide plate to the distance D between the adjacent light sources is less than or equal to 1. According to this structure, reduction in display quality can be easily suppressed in the region of L/D≦1 of the light guide plate in the vicinity of the light-receiving surface, where a difference in the amount of light between a region of the light guide plate having a large amount of incident light and a region thereof having a small amount of incident light easily appears.
A liquid crystal television set according to a third aspect of the present invention includes a light source, a light guide plate having a side surface constituting a light-receiving surface on which light emitted from the light source is incident, a bottom surface, and a surface constituting a light-emitting surface, a plurality of light directing portions provided on the bottom surface of the light guide plate, directing the light incident on the light guide plate to the light-emitting surface, a liquid crystal cell arranged on the light-emitting surface of the light guide plate, and a receiving portion receiving television broadcasting, while the plurality of light directing portions provided on the bottom surface of the light guide plate are so arranged that at least either arrangement intervals between the plurality of light directing portions or areas of the plurality of light directing portions are irregular.
In the liquid crystal television set according to the third aspect of the present invention, as hereinabove described, the plurality of light directing portions provided on the bottom surface of the light guide plate are so arranged that at least either the arrangement intervals between the plurality of light directing portions or the areas of the plurality of light directing portions are irregular, whereby the light directing portions may not be arranged on the light guide plate to correspond to the arrangement position of the light source. Thus, variation in the amount of light emitted from the light guide plate in a case where positional deviation of the light guide plate and the light source occurs can be suppressed, and hence in the liquid crystal television set, reduction in display quality can be suppressed even if the positional deviation of the light guide plate and the light source occurs.
The foregoing and other objects, features, aspects and advantages of the present invention will become more apparent from the following detailed description of the present invention when taken in conjunction with the accompanying drawings.
First, the structure of a liquid crystal television set 300 according to a first embodiment of the present invention is described with reference to
The liquid crystal television set 300 according to the first embodiment includes a front cabinet 10, a rear cabinet 20, a liquid crystal module 30, and a tuner 40, as shown in
The front cabinet 10 is arranged on the front side (along arrow Z1) of the liquid crystal television set 300. The front cabinet 10 engages with the mold frame 80 of the liquid crystal module 30 from the front side (along arrow Z1) of the liquid crystal television set 300.
The rear cabinet 20 is arranged on the rear side (along arrow Z2) of the liquid crystal television set 300. The rear cabinet 20 engages with the mold frame 80 of the liquid crystal module 30 from the rear side (along arrow Z2) of the liquid crystal television set 300.
The tuner 40 is stored in a space surrounded by the front cabinet 10 and the rear cabinet 20.
The liquid crystal module 30 is fixed by the mold frame 80, and stored in a space surrounded by the front cabinet 10 and the rear cabinet 20.
The LEDs 50 are mounted on the LED substrate 60, and these LEDs 50 and LED substrate 60 are provided in the vicinity of a lower portion (along arrow Y2) of the light guide plate 70. The LEDs 50 emit light toward the light guide plate 70.
According to the first embodiment, the LEDs 50 are arranged in a direction X at constant arrangement intervals (pitches) D, as shown in
The light guide plate 70 is in the form of a substantially rectangular flat plate, and includes the side surface 71 constituting a light-receiving surface on which the light emitted from the LEDs 50 is incident, a bottom surface 72, and a surface 73 constituting a light-emitting surface, as shown in
A plurality of light directing portions 100 are provided over the overall bottom surface 72 of the light guide plate 70 to protrude from the bottom surface 72, as shown in
Next, a pattern of the light directing portions 100 is described. As shown in
As shown in
In other words, a border between brightness and darkness of the light guide plate 70 causing difference in brightness of the liquid crystal cell 130 and color unevenness thereof becomes blurred, whereby color unevenness of the liquid crystal cell 130 can be suppressed. Furthermore, even if positional deviation of the light guide plate 70 and the LEDs 50 occurs, the light directing portions 100 are irregularly arranged so that unevenness of the amount of light emitted from the light guide plate can be suppressed.
The plurality of light directing portions 100 are so configured that arrangement intervals therebetween have regularity in the regions 76 to 78 of the light guide plate 70. Specifically, in the regions 76 to 78 (corresponding to regions of L/D>1), the adjacent light directing portions 100 are arranged at constant intervals P in the first direction (direction X) in which the LEDs 50 are arranged to be substantially parallel to the side surface 71 of the light guide plate 70. On the other hand, the adjacent light directing portions 100 are so arranged that intervals therebetween in the second direction (direction Y) orthogonal to the first direction gradually decreases along arrow Y1. In other words, the light directing portions 100 are so configured that the arrangement intervals therebetween decrease with distance from the LEDs 50. In these regions, the light emitted from the plurality of LEDs 50 sufficiently overlaps, so that a difference in the amount of light between regions of the light guide plate opposed to the LEDs 50 and regions of the light guide plate opposed to the positions between the LEDs 50 is not enough to emerge as a difference in brightness of the liquid crystal cell 130. Therefore, the adjacent light directing portions 100 are arranged at the substantially constant intervals P in the first direction (direction X). The arrangement intervals between the light directing portions 100 each have a width smaller than the width of each of the LEDs 50 in the first direction (direction X) in which the side surface 71 constituting the light-receiving surface of the light guide plate 70 extends.
The light directing portions 100 are so configured on the light guide plate 70 that the intervals between the adjacent light directing portions 100 decrease along arrow Y1, as shown in
The diffusion sheet 110 is arranged on the surface 73 (along arrow Z1) of the light guide plate 70, as shown in
The liquid crystal cell 130 is fixed on the side of the mold frame 80 along arrow Z1, as shown in
According to the first embodiment, as hereinabove described, the plurality of light directing portions 100 are so arranged that the arrangement intervals therebetween are irregular, whereby the light directing portions 100 may not be arranged on the light guide plate 70 to correspond to the arrangement of the LEDs 50. Thus, variation in the amount of light emitted from the light guide plate 70 in a case where positional deviation of the light guide plate 70 and the LEDs 50 occurs can be suppressed, and hence reduction in display quality can be suppressed even if the positional deviation of the light guide plate 70 and the LEDs 50 occurs.
According to the first embodiment, as hereinabove described, the plurality of light directing portions 100 are so arranged that the density thereof increases with distance from the LEDs 50 while the arrangement intervals therebetween are irregular. Thus, in the portion of the light guide plate 70 having a small amount of incident light from the LEDs 50, the densely arranged light directing portions 100 can efficiently direct light to the surface 73 of the light guide plate 70 so that a sufficient amount of emitted light can be ensured over the entire surface 73 of the light guide plate 70, while the irregularly arranged light directing portions 100 suppress reduction in display quality even if the positional deviation of the light guide plate 70 and the LEDs 50 occurs.
According to the first embodiment, as hereinabove described, the plurality of light directing portions 100 are so configured that the arrangement intervals therebetween are irregular in the prescribed region 75 where the ratio L/D of the distance L along arrow Y1 from the light-receiving surface of the light guide plate 70 to the distance D between the adjacent LEDs 50 is less than or equal to 1. Thus, reduction in display quality can be easily suppressed more effectively in the region of L/D≦1 of the light guide plate 70 in the vicinity of the light-receiving surface, where the effect of difference in brightness due to the amount of incident light easily appears.
According to the first embodiment, as hereinabove described, the plurality of light directing portions 100 are so configured that the arrangement intervals therebetween and the areas thereof have regularity in the regions 76 to 78 of the light guide plate 70, whereby the light directing portions 100 having regularity in the regions 76 to 78 of the light guide plate 70 can direct light uniformly to the light-emitting surface of the light guide plate 70 while reduction in display quality is effectively suppressed in the region of the light guide plate 70 in the vicinity of the light-receiving surface.
According to the first embodiment, as hereinabove described, the plurality of light directing portions 100 are so arranged that the arrangement intervals therebetween decrease with distance from the LEDs 50. Thus, the light directing portions 100 can be densely arranged in the portion of the light guide plate 70 having a small amount of incident light from the LEDs 50, far from the LEDs 50, and hence a sufficient amount of emitted light can be ensured over the entire light-emitting surface of the light guide plate 70.
According to the first embodiment, as hereinabove described, the plurality of light directing portions 100 are formed in substantially the same shape, whereby reduction in display quality can be easily suppressed simply by varying the arrangement intervals between the light directing portions 100, even if positional deviation of the light guide plate 70 and the LEDs 50 occurs.
According to the first embodiment, as hereinabove described, the plurality of light directing portions 100 are so arranged that the arrangement intervals therebetween are irregular in the first direction in which the LEDs 50 are arranged, whereby the regions A1 having a large amount of incident light and the regions A2 having a small amount of incident light easily emerge along the first direction in which the LEDs 50 are arranged so that the effect of positional deviation in the first direction can be effectively suppressed.
According to the first embodiment, as hereinabove described, the plurality of light directing portions 100 so arranged that the arrangement intervals therebetween are irregular are configured to direct the light emitted from the LEDs 50 to the surface 73 of the light guide plate 70. Thus, light is radially emitted so that reduction in display quality resulting from positional deviation of the light guide plate 70 and the LEDs 50 can be suppressed by the irregularly arranged light directing portions 100, even if the LEDs 50 that are point light sources likely to form the regions A1 having a large amount of incident light and the regions A2 having a small amount of incident light in the light guide plate 70 are employed.
According to the first embodiment, as hereinabove described, the plurality of LEDs 50 are arranged while the plurality of light directing portions 100 each are configured to have the width smaller than the width of each of the LEDs 50 in the direction X in which the light-receiving surface of the light guide plate 70 extends. Thus, the more numerous light directing portions 100 can be arranged so that light can be efficiently applied to the light directing portions 100. Consequently, reduction in display quality can be easily suppressed even if positional deviation of the light guide plate 70 and the LEDs 50 occurs.
According to the first embodiment, as hereinabove described, the plurality of light directing portions 100 are so configured that each of the arrangement intervals therebetween is smaller than the width of each of the LEDs 50 in the direction X in which the light-receiving surface of the light guide plate 70 extends. Thus, the arrangement intervals between the light directing portions 100 narrow so that light can be efficiently applied to the light directing portions 100. Consequently, reduction in display quality can be easily suppressed even if positional deviation of the light guide plate 70 and the LEDs 50 occurs.
The structure of a liquid crystal television set 400 (see
In this second embodiment, arrangement intervals between light directing portions 100 in regions 76 to 78 are set to be irregular in a first direction (direction X), dissimilarly to the first embodiment in which the arrangement intervals between the light directing portions 100 in the regions 76 to 78 are set to be regular in the first direction (direction X).
As shown in
In the second embodiment, the adjacent light directing portions 100 are arranged at irregular intervals in the first direction (direction X) also in the regions 76 to 78 similarly to the prescribed region 75. Therefore, the arrangement intervals between the light directing portions 100 are irregular in the first direction (direction X) over the entire region of the light guide plate 170.
In the regions 76 to 78, the light directing portions 100 are so configured on the light guide plate 170 that the intervals between the adjacent light directing portions 100 gradually decrease along arrow Y1, as shown in
The remaining structure of the second embodiment is similar to that of the aforementioned first embodiment.
According to the second embodiment, as hereinabove described, the plurality of light directing portions 100 are so configured that the arrangement intervals therebetween are irregular over the overall light guide plate 170. Thus, variation in the amount of light emitted from the light guide plate 170 can be suppressed over the overall light guide plate 170 if positional deviation of the light guide plate 170 and LEDs 50 occurs, and hence reduction in display quality can be suppressed over the entire display region of a liquid crystal cell 130 even if the positional deviation of the light guide plate 170 and the LEDs 50 occurs.
The remaining effects of the second embodiment are similar to those of the aforementioned first embodiment.
Although the present invention has been described and illustrated in detail, it is clearly understood that the same is by way of illustration and example only and is not to be taken by way of limitation, the spirit and scope of the present invention being limited only by the terms of the appended claims.
While the present invention is applied to the liquid crystal television set in each of the aforementioned first and second embodiments, the present invention is not restricted to this. The present invention may alternatively be applied to a liquid crystal display, a display, and a television set other than the liquid crystal television set.
While the arrangement intervals between the plurality of light directing portions 100 provided on the light guide plate are irregular in each of the aforementioned first and second embodiments, the present invention is not restricted to this. As in a modification shown in
While the plurality of light directing portions are so configured that the arrangement intervals therebetween are irregular in the prescribed region 75 where the ratio L/D of the distance L to the distance D is less than or equal to 1 in the aforementioned first embodiment, and the plurality of light directing portions are so configured that the arrangement intervals therebetween are irregular in all the prescribed region 75 and regions 76 to 78 of L/D>1 in the aforementioned second embodiment, the present invention is not restricted to this. The plurality of light directing portions may alternatively be so configured that the arrangement intervals therebetween are irregular in the regions satisfying L/D>1.
While the arrangement intervals between the light directing portions are irregular in the first direction (direction X) in which the LEDs are arranged in each of the aforementioned first and second embodiments, the present invention is not restricted to this. The arrangement intervals between the light directing portions may alternatively be irregular in the second direction (direction Y) orthogonal to the first direction. Furthermore, the arrangement intervals between the light directing portions may alternatively be irregular in both the first direction (direction X) in which the light sources are arranged and the second direction (direction Y) orthogonal to the first direction.
While the density of the light directing portions increases with distance from the LEDs in each of the aforementioned first and second embodiments, the present invention is not restricted to this. The density of the light directing portions may alternatively be constant regardless of a distance from the LEDs.
While each of the light directing portions is in the circular shape in each of the aforementioned first and second embodiments, the present invention is not restricted to this. As in the modification shown in
While each of the light directing portions protrudes in the convex shape from the bottom surface of the light guide plate, as viewed from the side of the side surface of the light guide plate in each of the aforementioned first and second embodiments, the present invention is not restricted to this. The light directing portions may alternatively be concaved with respect to the bottom surface of the light guide plate, as viewed from the side of the side surface of the light guide plate. For example, each of the light directing portions may alternatively be concaved in a rectangular shape or a triangular shape.
While the LEDs are arranged in the direction X at the constant arrangement intervals (pitches) D in each of the aforementioned first and second embodiments, the present invention is not restricted to this. The arrangement intervals (pitches) between the light sources may not be constant.
While the light directing portions are integrally formed on the bottom surface of the light guide plate by the injection molding method in each of the aforementioned first and second embodiments, the present invention is not restricted to this. The light directing portions may alternatively be arranged on the light guide plate by screen printing or the like.
While the LEDs are provided in the vicinity of the lower portion (along arrow Y2) of the light guide plate in each of the aforementioned first and second embodiments, the present invention is not restricted to this. The light sources may alternatively be provided on the upper surface side (side of a side surface 74) of the light guide plate or the side of a side surface of the light guide plate in a short-side direction.
While the LEDs are provided as the light sources in each of the aforementioned first and second embodiments, the present invention is not restricted to this. A halogen lamp or a metal hydro lamp may alternatively be provided as a light source.
While both the areas of the light directing portions and the arrangement intervals therebetween have regularity in the regions 76 to 78 of the light guide plate in the aforementioned first embodiment, the present invention is not restricted to this. Either the areas of the light directing portions or the arrangement intervals therebetween may alternatively have regularity.
Number | Date | Country | Kind |
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2011-107358 | May 2011 | JP | national |