This application claims priority under 35 U.S.C. § 119(a) from Korean Patent Application No. 2007-127120, filed on Dec. 7, 2007, in the Korean Intellectual Property Office, the disclosure of which is incorporated herein by reference.
1. Field of the Invention
The present general inventive concept relates to a flat panel display, and more particularly to a backlight unit improved to save the number of parts and a flat panel display having the backlight unit, and method of manufacturing the same.
2. Description of the Related Art
Generally, a flat panel display is classified as an emissive display or a non-emissive display. The emissive display, which actively emits light, includes a cathode-ray tube (CRT), a plasma display panel (PDP) and so on. The non-emissive display cannot actively emit light. A liquid crystal display (LCD) is a representative example of the non-emissive display.
The non-emissive flat panel display is able to display an image by receiving light from the outside. Owing to this characteristic, the non-emissive flat panel display needs a backlight unit, besides a display panel, to emit light to the display panel.
The backlight unit is divided into a direct light type and an edge light type according to a mounting position of a light source thereof. In the direct light type, the light source is disposed at a rear side of the display panel, thereby emitting light directly toward the display panel. The light source of the edge light type is disposed at lateral edges of a light guide panel to emit the light toward the display panel through the light guide panel. The light source used for the backlight unit includes a linear light source and a point light source. A cold cathode fluorescent lamp (CCFL) is a typical linear light source. A light emitting diode (LED) is a typical point light source.
As illustrated in
Referring to
However, those conventional backlight units include a number of component parts, that is, the base chassis, the light guide panel, the reflection sheet and the light source cover which are to be assembled after being separately manufactured. Also, connection units are required to assemble the parts, thereby complicating the assembling work. Accordingly, the manufacturing cost and time increase.
The present general inventive concept addresses one or more of the above problems with the related art. The present general inventive concept provides a backlight unit capable of saving the manufacturing cost and time by simplifying the structure thereof and reducing the number of parts, and a flat panel display having the same. The present general inventive concept also provides a method of manufacturing the backlight unit and the display unit having the same.
Additional aspects and/or utilities of the present general inventive concept will be set forth in part in the description which follows and, in part, will be obvious from the description, or may be learned by practice of the general inventive concept.
The foregoing and/or other aspects and utilities of the general inventive concept may be achieved by providing a flat panel display, the display including a front cover having a first surface and a second surface, a liquid crystal display (LCD) panel disposed at the rear of the front cover, a light source emitting light, a reflection plate having a first surface and a second surface, the reflection plate including a reflection part to reflect the light emitted from the light source and a light guide part to guide the light emitted from the light source toward the LCD panel, which are integrally formed with each other, such that the light source is disposed at a first side surface of the light guide part, and a rear cover disposed at the second surface of the reflection plate.
The reflection plate may be a double injection molded object in which the reflection part and the light guide part are integrally formed.
The reflection plate may include a reflective resin and a light-transmissive resin.
The material for the reflection part is a compound of polycarbonate and 10-20% of glass fiber.
The reflection part may include at least one sidewall extended from a first surface of the reflection part, and the light source is disposed between the at least one sidewall and the first side surface of the light guide part.
The at least one sidewall may include a sidewall contacting a second side surface of the light guide part.
The reflection part may include a reflection pattern to reflect the light emitted from the light source toward the LCD panel.
The light guide part may include a reflection pattern to reflect the light emitted from the light source toward the LCD panel.
The thickness of the light guide part may decrease in a direction of being distanced from the light source such that a second surface of the light guide part that contacts the reflection part is depressed toward a first surface of the light guide part, and the reflection part is curved to contact the second surface of the light guide part.
The flat panel display may further include a reflection sheet which covers an opened part formed between the sidewall of the reflection part and the first side surface of the light guide part.
The foregoing and/or other aspects and utilities of the general inventive concept may also be achieved by providing a backlight unit including a light source emitting light, and a reflection plate including a reflection part to reflect the light emitted from the light source and a light guide part to guide the light reflected from the reflection part, which are integrally formed with each other.
The foregoing and/or other aspects and utilities of the general inventive concept may also be achieved by providing a display including a panel, a light source to emit light, a light guide plate to guide the light toward the panel, a front cover, and a rear cover coupled to the front cover, to form a first space to accommodate the panel, a second space to accommodate the light source, and a third space to accommodate the light guide plate, and having a reflection part to reflect light toward the panel through the light guide plate, where the reflection part is formed with the rear cover in a single monolithic body.
These and/or other aspects and utilities of the exemplary embodiments of the present general inventive concept will become apparent and more readily appreciated from the following description of the embodiments, taken in conjunction with the accompanying drawings, of which:
Reference will now be made in detail to exemplary embodiments of the present general inventive concept, examples of which are illustrated in the accompanying drawings, wherein like reference numerals refer to like elements throughout. The embodiments are described below to explain the present general inventive concept by referring to the figures.
As illustrated in
A front cover 35 is disposed on a first side (e.g., a front side) of the top chassis 34. A rear cover 36 may be disposed behind the backlight unit 40 (e.g., adjacent to surface S2) to be connected with the front cover 35.
The LCD panel 31 displays the image by receiving an image signal from the outside. Since the structure and the operation principle of the LCD panel 31 are generally known in the art, detailed description thereof will be omitted. Instead of the LCD panel 31 displaying the image, the flat panel display 30 according to an embodiment of the present general inventive concept may adopt a transparent or translucent panel to display an image.
The backlight unit 40 comprises a reflection plate 40a having a reflection part 41 and a light guide part 48, and first and second light sources 42 and 45 each generating light. A first light source 42 may include one or more lamps 43 to generate light, and a lamp holder 44 to support the one or more lamps 43 in connection with the reflection part 41 and the light guide part 48. A second light source 45 may include one or more lamps 46 to generate light, and a lamp holder 47 to support the one or more lamps 46 in connection with reflection part 41 and the light guide part 48.
The reflection part 41 reflects the light emitted from the first and second light sources 42 and 45. The light guide part 48 guides the light reflected from the reflection part 41 toward the LCD panel 31. In addition, a circuit board to drive the flat panel display 30 may be mounted to a rear surface of the reflection plate 40a.
The reflection part 41 has a square casing form comprising four sidewalls 41a, 41b, 41c and 41d. First and second mounting grooves 41e and 41f each to mount the first and second light sources 42 and 45 therein are formed at upper and lower parts of the reflection part 41, respectively. The reflection part 41 is formed of resin, by double injection molding to be integrally formed with the light guide part 48. More specifically, since the resin forming the reflection part 41 has reflectivity, an inner surface of the reflection part 41 constitutes a reflection surface. The reflection part 41 may also be formed with the rear cover 36 in a single monolithic body.
As the resin has a higher reflectivity, brightness of the light emitted toward the LCD panel 31 through the light guide part 48 (e.g., of surface S1) is increased. Therefore, the reflection part 41 preferably has a bright color, such as white. Polycarbonate (PC) is one material that may be used for the bright-colored resin. However, any other resin may be selected for the reflection part 41.
In this embodiment, the reflection part 41 is made of a compound of the PC and 10-20% of glass fiber. If the compound of the PC and 10-20% of glass fiber is used for the material of the reflection part 41, while reflectivity of the reflection part 41 is maintained over a predetermined degree, strength of the reflection part 41 can be increased whereas thermal expansion rate can be reduced. Therefore, deformation of the reflection part 41 caused by an external force or heat generated from the lamps 53 can be considerably reduced.
As illustrated in
As illustrated in
The light guide part 48 that guides the light of the first and second light sources 42 and 45 toward the LCD panel 31 is formed of a transparent resin, being integrally formed with the reflection part 41 by double injection molding. The order between the light guide part 48 and the reflection part 41 in the double injection molding does not matter. In other words, the light guide part 48 may be injection-molded later after injection-molding the reflection part 41, and vice versa.
As illustrated in
However, the reflection patterns 49 do not need to be on both the reflection part 41 and the light guide part 48. For example, just the front surface of the light guide part 48 includes reflection patterns 49c as illustrated in
A backlight unit 50 illustrated in
The reflection sheet 56 covers an exposed part of the light source 52 not covered with the light guide part 55, such that the light emitting beyond the light guide part 55 can be reflected toward the light guide part 55. By the operation of the reflection sheet 56, luminosity of the light incident to the light guide part 55 and the light emitted to the LCD panel 31 through the light guide part 55 can be increased.
In a backlight unit 60 illustrated in
A reflection part 64 is curved at the middle part (P1) thereof toward the front (S4) of the light guide part 63 so that the middle part (P1) contacts the depressed rear surface (S3) of the light guide part 63.
Similarly with the backlight unit 60 of
By thus decreasing the volume of the light guide parts 63 and 73, the backlight units 60 and 70 illustrated in
As can be appreciated from the above description of the flat panel display according to the embodiments of the present general inventive concept, since the light guide part and the reflection part are integrally formed by double injection molding, the number of parts is reduced, accordingly saving the manufacturing cost and time.
Although the flat panel display having the LCD panel to display an image has been explained concerning according to the embodiment, the flat panel display according to the present general inventive concept may include a transparent panel or translucent panel printed with pictures, such that the flat panel display of the present general inventive concept is also applicable to an LCD device or an advertisement board.
In addition, although the backlight unit according to the various embodiments of the present general inventive concept includes lamps as a linear light source, a point light source may be adopted instead of the linear light source.
According to the above description, in the flat panel display according to an embodiment of the present general inventive concept, a reflection sheet can be omitted since an inner surface of a reflection plate comprises a reflection surface. Accordingly, the number of parts can be reduced while the structure is simplified.
Furthermore, according to an embodiment of the present general inventive concept, since a reflection part and a light guide part of the flat panel display are integrally formed with each other by double injection molding, manufacturing time can be saved.
Although embodiments of the present general inventive concept have been illustrated and described, it would be appreciated by those skilled in the art that changes may be made in this embodiment without departing from the principles and spirit of the general inventive concept, the scope of which is defined in the claims and their equivalents.
Number | Date | Country | Kind |
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2007-127120 | Dec 2007 | KR | national |