This Non-provisional application claims priority under 35 U.S.C. ยง119(a) on Patent Application No(s). 096219747 filed in Taiwan, Republic of China on Nov. 22, 2007, the entire contents of which are hereby incorporated by reference.
1. Field of Invention
The invention relates to a backlight module and, in particular, to a side-edge type backlight module.
2. Related Art
In comparison with the conventional cathode ray tubes (CRT) displays, the liquid crystal display (LCD) has the advantages of compact size, low power consumption, low radiation and involving manufacturing techniques that are compatible with semiconductor manufacturing processes. Therefore, the LCD has gradually replaced the CRT displays and become the mainstream in the display industry.
The conventional LCD mainly includes an LCD unit and a backlight module. The backlight module can be categorized into the direct type backlight module and the side-edge type backlight module. In either type of backlight module, they all require at least one driving circuit board to drive the light-emitting units therein. The most common light-emitting unit is the cold cathode fluorescent lamp (CCFL). It is driven by the high-voltage driving signal provided by the driving circuit board.
As described hereinabove, each of the lamps requires two high-voltage connecting terminals and two high-voltage wires. When more lamps are used in the backlight module, the number of the above-mentioned elements is doubled or tripled and so is the cost.
In view of the foregoing, the invention is to provide a side-edge type backlight module that requires fewer connecting elements and saves the production cost.
To achieve the above, the invention discloses a side-edge type backlight module including a first light-emitting unit, a second light-emitting unit, a first high-voltage connector unit and a second high-voltage connector unit. The first light-emitting unit has a first electrode and a second electrode. The second light-emitting unit has a third electrode and a fourth electrode, which is electrically connected to the second electrode. The first high-voltage connector unit is electrically connected to the first electrode of the first light-emitting unit. The second high-voltage connector unit is electrically connected to the third electrode of the second light-emitting unit.
As mentioned above, the side-edge type backlight module of the present invention utilizes the terminals, lead, or welding technique to electrically connect the second electrode of the first light-emitting unit and the fourth electrode of the second light-emitting unit. Compared with the prior art, the side-edge type backlight module of the present invention only requires one high-voltage connecting terminal and one high-voltage wire for one light-emitting unit. Therefore, the amount of connecting components and the production cost can be reduced.
The present invention will become more fully understood from the detailed description given herein below and the accompanying drawings which are given by way of illustration only, and thus are not limitative of the present invention, and wherein:
The present invention will be apparent from the following detailed description, which proceeds with reference to the accompanying drawings, wherein the same references relate to the same elements.
As shown in
With reference to
The light source 21 includes a plurality of light-emitting units. In this embodiment, the light source 21 has a first light-emitting unit 211 and a second light-emitting unit 212. They are either a cold cathode fluorescent lamp (CCFL) or an external electrode fluorescent lamp (EEFL).
The first light-emitting unit 211 has a first electrode E1 and a second electrode E2. The second light-emitting unit 212 has a third electrode E3 and a fourth electrode E4. The second and fourth electrodes E2, E4 are electrically connected to each other.
The side-edge type backlight module utilizes terminals, leads, metal soldering or welding technique to electrically connect the second electrode E2 of the first light-emitting unit 211 with the fourth electrode E4 of the second light-emitting unit 212. However, the invention is not limited to these examples. The welding technique includes electric welding and gas welding.
In this embodiment, the second electrode E2 has a first metal wire 271, and the fourth electrode E4 has a second metal wire 272. The first metal wire 271 is connected to the second metal wire 272 by soldering or welding so that the fourth electrode E4 can be electrically connected to the second electrode E2. In this case, the welding technique includes electric welding and gas welding. As shown in
The first and second metal wires 271, 272 can also be electrically connected via a terminal.
The first metal wire 271 of the second electrode E2 and the second metal wire 272 of the fourth electrode E4 are electrically connected via a lead 28. Such a connection of the lead 28 with the second electrode E2 and the fourth electrode E4, as shown in
In addition to the above-mentioned connection methods, the lead 28 can also be replaced by a metal sleeve 29, as shown in
Referring to
The driving circuit board 26 includes a driving unit 261, a third high-voltage connecting terminal 262 and a fourth high-voltage connecting terminal 263. The third high-voltage connecting terminal 262 is electrically connected to a positive high-voltage end of the driving unit 261 and the first high-voltage connecting terminal 242. The fourth high-voltage connecting terminal 263 is electrically connected to a negative high-voltage end of the driving unit 261 and the second high-voltage connecting terminal 252.
Referring to
As forementioned before, the driving signals shown in
It is to be noted that when used in the double-lamp structure, the side-edge type backlight module 2 only requires two high-voltage connecting terminals (the first high-voltage connecting terminal 242 and the second high-voltage connecting terminal 252) and two high-voltage wires (the first high-voltage wire 241 and the second high-voltage wire 251) to drive both of the first light-emitting unit 211 and the second light-emitting unit 212. In other words, a set of double-lamp structure only requires two high-voltage connecting terminals and two high-voltage wires. When the backlight module requires more double-lamp structures, the number of required high-voltage connecting components and the cost can be greatly reduced.
In summary, the side-edge type backlight module of the present invention utilizes the terminals, lead, or welding technique to electrically connect the second electrode of the first light-emitting unit and the fourth electrode of the second light-emitting unit. Compared with the prior art, which requires two high-voltage connecting terminals and two high-voltage wires for one light-emitting unit, the side-edge type backlight module of the invention only requires one high-voltage connecting terminal and one high-voltage wire for one light-emitting unit. Therefore, the present invention can reduce the amount of connecting components and thus the production cost.
Although the invention has been described with reference to specific embodiments, this description is not meant to be construed in a limiting sense. Various modifications of the disclosed embodiments, as well as alternative embodiments, will be apparent to persons skilled in the art. It is, therefore, contemplated that the appended claims will cover all modifications that fall within the true scope of the invention.
| Number | Date | Country | Kind |
|---|---|---|---|
| 096219747 | Nov 2007 | TW | national |