The invention relates to a liquid crystal display and a manufacturing method thereof; in particular, the invention relates to a method for manufacturing a liquid crystal display that can enhance the utilization efficiency of its manufacturing mold.
Recently, liquid crystal displays have become an increasingly popular choice for use as displays of personal computers. Liquid crystal panels, however, come in several sizes and are manufactured by several companies. Thus, assembling liquid crystal panels of different sizes using a standard size frame is problematic.
The conventional solutions to the above problem are described in the following. One method is to design different molds to manufacture different sized frames for different sized liquid crystal panels. The disadvantage of such a method, however, is increased cost due to the increased number of molds.
Another method provides several change cores of different sizes for one mold. To assemble a specific panel in the liquid crystal display, the change core is selected and assembled in the mold to manufacture the specified frame for such panel. That is, when one specific frame is manufactured, one specific change core is assembled in the mold for manufacturing the frame. The disadvantage of this method, however, is that the mold is easily damaged as the change core is frequently changed, requiring repeated assembly and disassembly in the mold. Furthermore, changing cores in the mold can only be performed at the point of manufacture. As a result, the utilization efficiency of the mold decreases.
In view of this, the invention provides a liquid crystal display that can be easily assembled with various liquid crystal display modules therein.
Another purpose of the invention is to provide a method for manufacturing a liquid crystal display that can enhance the utilization efficiency of its manufacturing mold and decrease the cost thereof.
Accordingly, the invention provides a liquid crystal display including a frame, a liquid crystal display module, and an adjusting member. The liquid crystal display module is disposed within the frame. The adjusting member is disposed between the frame and the liquid crystal display module so that the liquid crystal display module can be positioned at a predetermined position within the frame.
In a preferred embodiment, the frame includes a support with a through hole and a slot connected to the through hole. The adjusting member includes an engaging portion abutted by the support, and a positioning portion is integrally formed with the engaging portion. The engaging portion includes a hook and a guiding block. The adjusting member is fixed on the support while the hook passes through the through hole and then is secured to the support. The positioning portion is abutted by the support and the liquid crystal display module respectively. The guiding block is moved along the slot so as to position the adjusting member is positioned on the support.
In another preferred embodiment, the thickness of the adjusting member is varied according to the size of the liquid crystal display module so that the liquid crystal display module is securely disposed within the frame.
In the invention, a method for manufacturing a liquid crystal display is provided. The method includes the following steps. A frame, a liquid crystal display module, and an adjusting member are provided. Then, the adjusting member is disposed on the frame, and the liquid crystal display module is disposed on the frame. The liquid crystal display module is positioned at a predetermined position within the frame such that the liquid crystal display module is abutted by the adjusting member.
In another preferred embodiment, the frame includes a first side, a second side opposing the first side, a third side connected to the first side, and a fourth side opposing the third side. The frame is provided with a plurality of supports at the first side, the second side, the third side, and the fourth side respectively. The method further includes the following steps. The size of the liquid crystal display module is measured, and the adjusting member is selected based on the size of the liquid crystal display module. The adjusting member is assembled on the support at the first side, the second side, the third side, or the fourth side based on the size of the liquid crystal display module.
The present invention can be more fully understood by reading the subsequent detailed description and examples with references made to the accompanying drawings, wherein:
a is a perspective view of an adjusting member in
b is a front view of the adjusting member;
c is a side view of the adjusting member;
d is a bottom view of the adjusting member;
a is a partially enlarged view of a frame in
b is a schematic view of the adjusting member assembled on a support of the frame;
c is a partially enlarged view of
Referring to
The liquid crystal display module 20 is used as a display unit of the liquid crystal display 1, and is disposed within the frame 10. Each adjusting member 30 is disposed on the support 11 of the frame 10 respectively, and is located between the frame 10 and the liquid crystal display module 20 so that the liquid crystal display module 20 can be positioned at a predetermined position within the frame 10. Specifically, as shown in
Each adjusting member 30 is provided with a specific thickness D respectively. As shown in
For example, the sizes of the common-utilized liquid crystal display modules 20 are illustrated in the following table.
To determine the size of the frame 10, the distance from a center of the opening of the frame 10 to the support at the first side 12 (the top side) is 149 mm, the distance from the center thereof to the support at the second side 13 (the bottom side) is 148.25 mm, the distance from the center thereof to the support at the fourth side 15 (the left side) is 179.25 mm, and the distance from the center thereof to the support at the third side 14 (the right side) is 179.25 mm. When the module 1 in the table is assembled in the frame 10, the adjusting members 30 are disposed on the supports 11 at the first side 12, and the specific thickness D of the adjusting member 30 is 0.75 mm (149-148.25). In addition, when the module 3 in the table is assembled in the frame 10, the adjusting members 30 are disposed on the supports 11 at the second side 13, and the specific thickness D of the adjusting member 30 is 0.75 mm (148.25-147.5).
The structure of the liquid crystal display of the invention is described as above, and the manufacturing method thereof is described in the following.
Referring to
As stated above, by additionally assembling the adjusting member in the invention, the liquid crystal display module can be precisely positioned in the frame. Thus, unlike the conventional manufacturing method, there is no need to manufacture different molds for different liquid crystal modules, or change the change core in the mold. As a result, the utilization efficiency of the mold can be increased, and the cost of the mold can be reduced. Additionally, the entire process of the manufacturing method can be modularized.
While the invention has been described by way of example and in terms of the preferred embodiments, it is to be understood that the invention is not limited to the disclosed embodiments. To the contrary, it is intended to flipper various modifications and similar arrangements (as would be apparent to those skilled in the art). Therefore, the scope of the appended claims should be accorded the broadest interpretation so as to encompass all such modifications and similar arrangements.
Number | Date | Country | Kind |
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TW92120492 | Jul 2003 | TW | national |