STRUCTURE FOR AFFIXING AN OPTICAL PLATE ON A FRAME IN A PANEL DISPLAY
A structure is to affix an optical plate on a frame in a panel display. The optical plate has a protruding region with a slit. The structure includes a first hook-like member, disposed on one side of the frame and having an extending portion for passing through the slit and hooking the protruding region of the optical plate. A blocking member is disposed on the side of the frame and separated from the first hook-like member, having a sidewall against an edge of the protruding region of the optical plate.
1. Field of Invention
The present invention relates to assembling technology in panel display. More particularly, the present invention relates to a structure for affixing an optical plate, that is, optical film on a frame in a panel display.
2. Description of Related Art
The display is an essential tool to display the information of a graphic image or text image to a viewer. For example, TV shows the image to the user through the display, or the computer system uses the display terminal to show the information in operation. Therefore, the display device is one of the key tools in the daily life to have the information communication. The display device has been developed from the rather conventional cathode-ray tube (CRT) to the panel display, such as liquid crystal display (LCD) device.
The LCD is more and more popular, and the image quality is more and more required. For the LCD device, the optical plate, which is affixed onto a frame, often cause the poor image quality, due to a shift of position. In the currently conventional method, the optical plate is positioned to the plastic frame and then a tape is used to affix it at one side or a clamping piece is used to clamp it to the frame.
In
For the foregoing conventional manners, it has some disadvantages. Due to the limitation of the required size, the region for affixing the optical plate, such as the protrusion portion 102 is quite narrow. And then, during the assembly processes, such as adhering by tape, the tape often cannot firmly affix the optical plate due to the narrow space, and a shift of position may occur, or the optical plate is dropped away. Even, the residue of the glue of the tape may affect the property of the other device element. As result, the image quality is poor. In addition, either by taping or by clamping piece, both the manpower cost and the material cost increase.
SUMMARY OF THE INVENTIONThe invention provides a novel affixing structure on the frame, so that the assembly process for affixing the optical plate is easy without using the tape or the clamping piece.
The invention provides a structure to affix an optical plate on a frame in a display device. The optical plate has a protruding region with a slit. The structure includes a first hook-like member, disposed on one side of the frame and having an extending portion for passing through the slit and hooking the protruding region of the optical plate. A blocking member is disposed on the side of the frame and separated from the first hook-like member, having a sidewall against an edge of the protruding region of the optical plate.
In another aspect of the present invention, the frame with the affixing structure is formed by molding manner, so as to form an integrated body for the frame.
In another aspect of the present invention, a top surface of the blocking member is slant and has an extending portion toward the first hook-like member.
It is to be understood that both the foregoing general description and the following detailed description are exemplary, and are intended to provide further explanation of the invention as claimed.
BRIEF DESCRIPTION OF THE DRAWINGSThe accompanying drawings are included to provide a further understanding of the invention, and are incorporated in and constitute a part of this specification. The drawings illustrate embodiments of the invention and, together with the description, serve to explain the principles of the invention.
In the present invention, a hook-like structure is designed for the frame, so that the assembly process is simplified, and the optical plate can be easily affixed to the frame without using tape or clamping piece.
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Due to both the first hook-like structures 204 and the second hook-like structures 208 having the extending member, the protrusion region 222 of the optical plate 220 can be affixed on the frame. The adapting space between the first hook-like member 204 and the frame 200 and the adapting space between the second hook-like member 208 and the frame 200 are substantially equal to the thickness of the optical plate 220, so as to firmly adapt the optical plate 220. As a result, the optical plate 220 does not drop away. The present invention needs no tapes to affix the optical plate onto the frame. The conventional issues, such as drop or glue residue, caused by the tape manner can be effectively reduced.
In addition, due to the well fit of the distance W, the optical plate 220 can be prevented from shifting along the direction parallel to the slit 224. Also, the width of the slit 224 is mated to the width of the first hook-like member 204. As a result, the optical plate 220 is prevented from shifting along the direction perpendicular to the slit 224. Thus, the optical plate 220 is affixed in three-dimensional directions. This can further reduce the possibility of poor image quality. In other words, the quantities of the distance L and W are the design choice according to the design of the protrusion region 222 of the optical plate 220. The lengths of the extending portions of the two hook-like members 204 and 208 can also be varied, so as to firmly hook the optical plate 220.
During assembly process, after the optical plate is engaged into the foregoing affixing structure, the assembly piece may be moved to other place for the subsequent assembly process. In this stage, the optical plate may drop due to external force in transporting or shipment, the present invention provide another embodiment to improving the affixing capability.
Due to the design of the present invention, the affixing structure is a part of the frame 200 and can be formed by for example molding manner. In other words, the manufacturer can modify the molding structure for forming the frame 200, and the affixing structure can be easily formed as an integrated single body. The frame 200 can be a rectangular or square shape as shown in
Generally, the affixing structure of the present invention can be applied to the display device, for example, an LCD device. The display device comprises a liquid crystal display panel for displaying image and a backlight for providing light to the liquid crystal display panel. The backlight at least comprises an optical plate assembled onto a frame. The frame preferably has affixing structure as described above of the present invention. Then, the flexible optical plate is affixed onto the frame using the affixing structure. The affixing structure of the present invention can be used together with another conventional affixing manner.
The present invention provides the hooking manner design for simultaneously affixing the optical pate and positioning the optical plate. The fabrication method for the frame is compatible with the conventional molding manner. The present invention can be easily applied. The fabrication cost is further reduced.
It will be apparent to those skilled in the art that various modifications and variations can be made to the structure of the present invention without departing from the scope or spirit of the invention. In view of the foregoing descriptions, it is intended that the present invention covers modifications and variations of this invention if they fall within the scope of the following claims and their equivalents.
Claims
1. A structure for affixing an optical plate on a frame in a panel display, wherein the optical plate has at least one protruding region with a slit, the structure comprising:
- a first hook-like member, disposed on one side of the frame, having an extending portion for passing through the slit and hooking the protruding region of the optical plate; and
- a blocking member, disposed on the side of the frame and separated from the first hook-like member, having a sidewall against an edge of the protruding region of the optical plate.
2. The structure of claim 1, wherein an adapting space is between the extending portion of the first hook-like member and the frame and is substantially equal to a thickness of the optical plate.
3. The structure of claim 1, wherein the blocking member has a slant top surface.
4. The structure of claim 1, wherein a top surface of the blocking member has an extending portion toward the first hook-like member.
5. The structure of claim 1 further comprises a second hook-like member, and the first hook-like member is positioned between the blocking member and the second hook-like member.
6. The structure of claim 1, wherein the optical plate comprises an optical diffusion plate, a prism plate, or a functional optical plate used in the panel display.
7. The structure of claim 1, wherein the optical plate is stacked with at least two flexible layers.
8. The structure of claim 5, wherein the second hook-like member has an extending portion toward the first hook-like member.
9. The structure of claim 8, wherein an adapting space is between the extending portion of the second hook-like member and the frame and is substantially equal to a thickness of the optical plate.
10. A display device, comprising:
- a liquid crystal display panel; and
- a backlight, providing light to the liquid crystal display panel,
- wherein the backlight at least comprises:
- an optical plate, having at least one protruding region with a slit;
- a frame, for holding the optical plate in assembly; and
- a structure, having a first hook-like member and a blocking member disposed on one side of the frame for affixing the optical plate on the frame.
11. The display device of claim 10, wherein the first hook-like member has an extending portion for passing through the slit and hooking the protruding region of the optical plate.
12. The display device of claim 10, wherein the blocking member having a sidewall against an edge of the protruding region of the optical plate.
13. The display device of claim 11, wherein an adapting space is between the extending portion of the first hook-like member and the frame and is substantially equal to a thickness of the optical plate.
14. The display device of claim 10, wherein the blocking member has a slant top surface.
15. The display device of claim 10, wherein atop surface of the blocking member has an extending portion toward the first hook-like member.
16. The display device of claim 10, wherein the structure further comprises a second hook-like member, and the first hook-like member is positioned between the blocking member and the second hook-lice member.
17. The display device of claim 10, wherein the optical plate comprises an optical diffusion plate, a prism plate, or a functional optical plate used in the display device.
18. The display device of claim 10, wherein the optical plate is stacked with at least two flexible layers.
19. The display device of claim 16, wherein the second hook-like member has an extending portion toward the first hook-like member.
20. The display device of claim 10, wherein an adapting space is between the extending portion of the second hook-like member and the frame and is substantially equal to a thickness of the optical plate.
Type: Application
Filed: Mar 21, 2005
Publication Date: Sep 21, 2006
Inventor: Ying-Pei Kao (Taoyuan County)
Application Number: 10/907,104
International Classification: G06F 17/00 (20060101);