This application claims priority from Korean Patent Application No. 10-2009-0032280, filed on Apr. 14, 2009 in the Korean Intellectual Property Office, the disclosure of which is incorporated herein by reference in its entirety.
1. Field
Apparatuses consistent with exemplary embodiments relate to a display apparatus, and more particularly, to a display apparatus which displays broadcast contents or other video contents so that a user may view the displayed contents.
2. Description of the Related Art
Liquid crystal displays (LCDs) are one of the most common display types available. Because LCDs are not capable of emitting light by themselves, LCD panels include backlight units (BLUs) to project backlight onto LCDs.
BLUs comprise light sources which emit backlight, and driving elements which drive the light sources. Light sources are arranged to efficiently project backlight onto LCDs, and a plurality of driving elements are required to smoothly drive the light sources.
Recently, LCDs are gradually becoming larger. This seems to be desirable and necessary, but a change in design of BLUs resulting from large-sized LCDs causes inconveniences to developers. Therefore, there is a need for methods to more easily change the design of BLUs.
Additionally, there is also a need for methods to reduce manufacturing costs of BLUs increased due to large-sized LCDs.
Exemplary embodiments may overcome the above disadvantages and other disadvantages not described above. Also, the exemplary embodiments are not required to overcome the disadvantages described above, and an exemplary embodiment may not overcome any of the problems described above.
Exemplary embodiments provide a light source module, a backlight unit (BLU) and a display apparatus, which enable easy change of a design of the BLU.
Exemplary embodiments also provide a light source module, a BLU and a display apparatus, which could reduce the manufacturing costs of the BLU so as to reduce the total manufacturing costs of the display apparatus.
According to an aspect an exemplary embodiment, there is provided a display apparatus including a display which displays a video, and a BLU which provides backlight to the display. The BLU may include a first light source module which includes a plurality of light sources, a second light source module which includes a plurality of light sources, a light source driving unit which drives the first light source module and second light source module, and a first connector through which the first light source module and second light source module are connectable.
The first connector may be detachably connected to the first light source module and the second light source module.
The plurality of light sources in the first light source module are connected in series to the plurality of light sources in the second light source module by the first connector.
A terminal on a first end of the first light source module may be connected to the light source driving unit, a terminal on a second end of the first light source module may be connected to a first end of the second light source module via the first connector, and a terminal on a second end of the second light source module may be short-circuited, so that the plurality of light sources in the first light source module may be connected in series to the plurality of light sources in the second light source module.
The display apparatus may further include a second connector which short-circuits terminals. The second connector may be connected to the second end of the second light source module, to short-circuit the terminal on the second end of the second light source module.
The display apparatus may further include a third light source module in which a plurality of light sources are arranged, a fourth light source module in which a plurality of light sources are arranged, a fifth light source module in which a plurality of light sources are arranged, and a sixth light source module in which a plurality of light sources are arranged, wherein the third light source module and fourth light source module are connected to each other by a third connector, and the fifth light source module and sixth light source module are connected to each other by a fourth connector.
A part of the first connector, third connector and fourth connector may be a linear type connector, and the other part may be a non-linear type connector.
The first to sixth light source modules may be disposed outside the display apparatus.
The display apparatus may further include a seventh light source module in which a plurality of light sources are arranged. The second light source module and seventh light source module may be connected to each other by a fifth connector.
The plurality of light sources may comprise white light sources.
According to an aspect of another exemplary embodiment, there is provided a BLU including a first light source module which includes a plurality of light sources, a second light source module which includes a plurality of light sources, a light source driving unit which drives the first light source module and the second light source module, and a first connector through which the first light source module and second light source module are connectable.
According to an aspect of another exemplary embodiment, there is provided a light source module including a plurality of light sources, a first terminal which is disposed on a first end of the light source module and is connectable to one of at least two external elements, and a second terminal which is disposed on a second end of the light source module and is connectable the other on of at least two external elements. In this situation, the external elements may be one of an element for driving the light source module, another light source module, or a connector.
The above and/or other aspects will be more apparent by describing certain exemplary embodiments with reference to the accompanying drawings, in which:
Certain exemplary embodiments will now be described in greater detail with reference to the accompanying drawings.
In the following description, like reference numerals refer to like elements, even in different drawings. The matters defined in the description, such as detailed construction and elements, are provided to assist in a comprehensive understanding of the invention. Thus, it is apparent that the exemplary embodiments can be carried out without those specifically defined matters. Also, well-known functions or constructions are not described in detail since they would obscure the invention with unnecessary detail.
The broadcast receiver 110 receives broadcast content from a broadcast station, a satellite or an external input device, via wire or wirelessly, and demodulates the received broadcast content.
The video processor 120 performs signal processing, such as video decoding, video scaling or frame rate conversion (FRC), with respect to the broadcast content output from the broadcast receiver 110.
The LCD panel 130 comprises an LCD 140 and a BLU 150. The LCD 140 displays the broadcast content processed by the video processor 120.
The BLU 150 projects a backlight onto the LCD 140 because the LCD 140 is not able to emit light by itself. Hereinafter, the BLU 150 is described in detail with reference to
The six LED modules 159-11, 159-12, 159-21, 159-22, 159-31, 159-32 are light modules for emitting backlight supplied to the LCD 140. Referring to
While ten LEDs are modularized in a single LED module in this exemplary embodiment, this is merely exemplary. Accordingly, there is no limitation to the number of LEDs modularized in a single LED module.
The LED driving board 151 includes the three LED driving units 153-1, 153-2, 153-3, and the six driving terminals 155-11, 155-12, 155-21, 155-22, 155-31, 155-32. Additionally, the LED driving board 151 requires electronic wirings, which are formed to connect the three LED driving units 153-1, 153-2, 153-3 to the six driving terminals 155-11, 155-12, 155-21, 155-22, 155-31, 155-32.
As shown in
The six connection cables 157-11, 157-12, 157-21, 157-22, 157-31, 157-32 electrically connect the six driving terminals 155-11, 155-12, 155-21, 155-22, 155-31, 155-32 to the six LED modules 159-11, 159-12, 159-21, 159-22, 159-31, 159-32. In other words, the LED modules 159-11, 159-12, 159-21, 159-22, 159-31, 159-32 are connected to the LED driving units 153-1, 153-2, 153-3.
The LED driving unit-1153-1 drives the LED module 159-11 and LED module 159-12. The electronic wirings formed on the LED driving board 151 function as connectors to enable LEDs contained in the LED module 159-11 to be connected in series to LEDs contained in the LED module 159-12. Accordingly, the LED driving unit-1153-1 may drive the LED module 159-11 and the LED module 159-12 in series.
Likewise, the LED driving unit-2153-2 may drive the LED module 159-21 and the LED module 159-22 in series, and the LED driving unit-3153-3 may drive the LED module 159-31 and the LED module 159-32 in series.
As described above, a single LED driving unit drives two LED modules in this exemplary embodiment, but this is merely exemplary. In other words, it is possible to reduce the number of LED modules driven by a single LED driving unit. For example, a single LED driving unit may drive three or more LED modules.
As shown in
Likewise, the LED driving unit-2153-2 may drive the LED module 159-21 and LED module 159-22 in parallel, and the LED driving unit-3153-3 may drive the LED module 159-31 and LED module 159-32 in parallel.
In other words, in the BLU 150-2 shown in
In this exemplary embodiment, a single LED driving unit drives two LED modules in parallel, but this is merely exemplary. Accordingly, it is possible for a single LED driving unit to drive three or more LED modules in parallel to reduce the number of LED driving units required.
However, the BLU 150-3 of
Additionally, electronic wirings formed on an LED driving board 151 of the BLU 150-3 shown in
The electronic wirings formed on the LED driving board 151 shown in
Accordingly, it is possible to drive the six LED modules 159-11, 159-12, 159-21, 159-22, 159-31, 159-32, in series and/or parallel, with a single LED driving unit 153.
The top row of
The LED module 160 of
Since the LED array 162 comprises the first terminal 161 and second terminal 163 on both ends thereof, the LED module 160 may be connected to other LED modules in series. Thus, the LED module 160 differs from the LED modules shown in
The LED module 160 may be used independently without being connected to any other LED module, and a process of independently using only the LED module 160 is now described with reference to
Additionally, the second terminal 163 of the LED module 160 is connected to a termination connector 170. The termination connector 170 may be detachably connected to either the first terminal 161 or the second terminal 163, but in the exemplary embodiment, the termination connector 170 is connected to the second terminal 163 because the first terminal 161 is connected to the connection cable 157.
The termination connector 170 short-circuits the second terminal 163 of the LED module 160. Additionally, the termination connector 170 enables LEDs arranged in the LED array 162 to be connected in series to the LED driving unit 153. Accordingly, the LED driving unit 153 may drive the LEDs contained in the LED module 160 in series.
As described above, a single LED driving unit drives a single LED module in the exemplary embodiment, but this is merely exemplary for convenience of description. The number of LED driving units and the number of LED modules may be changed as required, and a single LED driving unit may drive a plurality of LED modules in series and/or in parallel.
The BLU of
Both ends of the connection connector 180 are detachably connected to the terminals of two LED modules 160-11 and 160-12, and thus the connection connector 180 may be used to connect the two LED modules 160-11 and 160-12 in series. As shown in
Additionally, a first terminal of the LED module 160-11 is connected to the driving terminal 155-1 via the connection cable 157-1, and as a result is connected to the LED driving unit-1153-1 in the LED driving board 151. Furthermore, a second terminal of the LED module 160-12 is connected to a termination connector 170-1.
Accordingly, LEDs contained in the LED module 160-11 and LEDs contained in the LED module 160-12 are connected in series to the LED driving unit-1153-1. Therefore, the LED driving unit-1153-1 may drive the LEDs in series.
The LED module 160-21 is connected in series to the LED module 160-22 through the connection cable 157-4. Additionally, a first terminal of the LED module 160-21 is connected to the driving terminal 155-2 via the connection cable 157-2, and as a result is connected to the LED driving unit-2153-2 in the LED driving board 151. In addition, a second terminal of the LED module 160-22 is connected to a termination connector 170-2.
Accordingly, LEDs contained in the LED module 160-21 and LEDs contained in the LED module 160-22 are connected in series to the LED driving unit-2153-2. Therefore, the LED driving unit-2153-2 may drive the LEDs in series.
Likewise, the LED module 160-31 is connected in series to the LED module 160-32 through the connection cable 157-5. Additionally, a first terminal of the LED module 160-31 is connected to the driving terminal 155-3 via the connection cable 157-3, and as a result is connected to the LED driving unit-3153-3. In addition, a second terminal of the LED module 160-32 is connected to a termination connector 170-3.
Accordingly, LEDs contained in the LED module 160-31 and LEDs contained in the LED module 160-32 are connected in series to the LED driving unit-3153-3. Therefore, the LED driving unit-3153-3 may drive the LEDs in series.
The LED module 160-21 and LED module 160-22 are connected via the connection cable 157-4, which is bendable, and are arranged on a right end and lower end of the display panel, respectively.
The LED module 160-31 and LED module 160-32 are connected via the connection cable 157-5, and are arranged on a left end and lower end of the display panel, respectively.
As shown in
Additionally, the connection cable my be replaced by a bent connection connector. In other words, the connection connector is divided into a linear type connector and a non-linear type connector. A non-linear type connector may be selected according to the shape of display panel.
While the LED modules are disposed outside the display panel in the exemplary embodiments, this is merely exemplary. Accordingly, the exemplary embodiments are also applicable to a situation in which LED modules are disposed on areas other than the outside of the display panel.
Additionally, two LED modules are connected through the connection connector in the exemplary embodiment, but this is merely exemplary for convenience of description. Accordingly, the exemplary embodiment is also applicable to a situation in which three LED modules are connected using two or more connection connectors.
In addition, the LED modules are connected to the driving terminals through the connection connector in the exemplary embodiment, but this is merely exemplary for convenience of description. Accordingly, the exemplary embodiments are also applicable to a situation in which LED modules are connected directly to the driving terminals.
Furthermore, the LCD described in the exemplary embodiments is an example of a display which requires backlight. Accordingly, the exemplary embodiments are also applicable to any displays requiring backlight.
Moreover, the exemplary embodiments are also applicable to not only apparatuses capable of displaying videos other than broadcasts, but also apparatuses comprising only BLUs or only light source modules.
As described above, according to the exemplary embodiments, it is possible to more easily and variously change a design of a BLU using a light module capable of being connected to other light source modules via a connector and a cable.
Additionally, it is possible to reduce the number of light source driving elements, and also possible to reduce the size of a board in which light source driving elements are to be installed. Therefore, it is possible to reduce manufacturing costs of the BLU and display apparatus.
The foregoing exemplary embodiments and advantages are merely exemplary and are not to be construed as limiting the present invention. The present teaching can be readily applied to other types of apparatuses. Also, the description of the exemplary embodiments is intended to be illustrative, and not to limit the scope of the claims, and many alternatives, modifications, and variations will be apparent to those skilled in the art.
Number | Date | Country | Kind |
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10-2009-0032280 | Apr 2009 | KR | national |