1. Field of the Invention
This invention generally relates to a back plate for use with a backlight module, a backlight module using the same, and the manufacturing method thereof.
2. Description of the Prior Art
Recently, the demand of LCD displays increases rapidly due to their thin thickness, light weight, high portability, and low radiation with respect to CRT displays. Backlight modules are one of the key components for LCD display panels. With the progress of LCD display manufacturing technique, backlight modules tend to be thinner, higher brightness, and less cost. Developing better backlight modules to make LCD displays with greater competitiveness is a future work trend.
As shown in
Specifications of backlight modules need to be modified in accordance with the size requirement of the final products. More particularly, the thickness of the metallic back plate is decreasing due to the consideration of appearance design and the minimization of product. However, the structure strength of the metallic back plate is also reduced with the decreasing thickness.
It is an object of the present invention to provide a back plate for use with a backlight module, wherein the side wall of the back plate has greater structure strength.
It is another object of the present invention to provide a backlight module having greater structure strength.
It is another object of the present invention to provide a backlight module back plate manufacturing method, wherein the back plate has greater structure strength.
The back plate of the present invention includes a plate body and a side wall. The side wall extends out from the edge of the plate body. The side wall includes a wall body and a bending part, wherein the thickness of the wall body is less than or equal to 0.12 mm. The bending part is formed by bending outward from the top of the wall body to form a plurality of bending sheets. Each bending sheet overlaps and is parallel to the wall body, wherein the thickness of each bending sheet is less than or equal to 0.12 mm.
The bending part is formed by bending outward from the top of the wall body in the same direction to form the plurality of bending sheets. The bending part is formed by bending outward from the top of the wall body in different directions to form the plurality of bending sheets. A gap is formed between the adjacent bending sheets, wherein the width of the gap is in the range of 0.0125 mm to 0.033 mm.
The side wall is a continuous wall surrounding the plate body. The side wall is a non-continuous wall disposed on at least one side of the plate body. The side wall is a non-continuous wall disposed in pairs on opposite sides of the plate body.
The back plate of the present invention includes a plate body and a side wall extending out from the edge of the plate body. The side wall includes an inner wall body, an outer wall body, and a sandwich layer. The outer wall body is formed by bending the wall body outward from the top of the inner wall body. The sandwich layer is formed by bending the outer wall inward from the other end of the outer wall opposite to the end connected to the inner wall body and is between the inner wall body and the outer wall body. The inner wall body, the sandwich layer, and the outer wall body overlap each other in parallel and respectively have a thickness less than or equal to 0.12 mm.
Gaps are respectively formed between the sandwich layer and the inner wall body and between the sandwich layer and the outer wall body, wherein the width of the gap is in the range of 0.0125 mm to 0.033 mm. The side wall is a continuous wall surrounding the plate body. The side wall is a non-continuous wall disposed on the side of the plate body. The side wall is a non-continuous wall disposed in pairs on opposite sides of the plate body.
The backlight module includes the above mentioned back plate and a light source module. The light source module is disposed on the plate body and is adjacent to the inner side of the side wall.
The backlight module back plate manufacturing method of the present invention includes: forming a side wall at the edge of a plate body, wherein the side wall includes a wall body, wherein the thickness of the side wall is less than or equal to 0.12 mm; and bending the side wall outward to form a bending part overlapping and being parallel to the wall body, wherein the bending part includes a plurality of bending sheets bending outward from the top of the wall body; each bending sheet overlaps and is parallel to the wall body; the thickness of each bending sheet is less than or equal to 0.12 mm.
The bending part can be formed by bending outward from the top of the wall body in the same direction to form the plurality of bending sheets. The bending part also can be formed by bending outward from the top of the wall body in different directions to form the plurality of bending sheets. The bending part can be formed by stamping or rolling up to form the plurality of bending sheets.
The present invention provides a back plate for use with a backlight module, a backlight module using the same, and the manufacturing method thereof. In the preferred embodiment, the backlight module is for use with LCD display devices. In different embodiments, however, the backlight module is also available for use with keyboards, mobile phone button panels, billboards, and other devices using flat light source.
As the preferred embodiment shown in
As the preferred embodiment shown in
As the preferred embodiment shown in
As the preferred embodiment shown in
As a preferred embodiment shown in
Step 1010 involves forming a side wall at the edge of a plate body, wherein the side wall includes a wall body, wherein the thickness of the side wall is less than or equal to 0.12 mm. More particularly, the plate body 100 having the side wall 300 at the edge as shown in
Step 1030 involves bending the top of the side wall outward to form a bending part overlapping and being parallel to the wall body, wherein the bending part includes a plurality of bending sheets that are formed by bending outward from the top of the wall body. Each bending sheet overlaps and is parallel to the wall body, wherein the thickness of each bending sheet is less than or equal to 0.12 mm. More particularly, the top end of the wall body 310 of the side wall 300 as shown in
Although the preferred embodiments of the present invention have been described herein, the above description is merely illustrative. Further modification of the invention herein disclosed will occur to those skilled in the respective arts and all such modifications are deemed to be within the scope of the invention as defined by the appended claims.
Number | Date | Country | Kind |
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101110544 A | Mar 2012 | TW | national |
Number | Name | Date | Kind |
---|---|---|---|
7864260 | Lee et al. | Jan 2011 | B2 |
7911774 | Nakanishi et al. | Mar 2011 | B2 |
20080303971 | Lee et al. | Dec 2008 | A1 |
20090004408 | Nakanishi et al. | Jan 2009 | A1 |
Number | Date | Country |
---|---|---|
201636705 | Nov 2010 | CN |
102436085 | May 2012 | CN |
200909928 | Mar 2009 | TW |
M364392 | Sep 2009 | TW |
M379080 | Apr 2010 | TW |
M401627 | Apr 2011 | TW |
Entry |
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Taiwan Office Action dated Jul. 25, 2014. |
China Office Action dated May 14, 2014. |
English translation of abstract of TW M364392 (Sep. 1, 2009). |
English translation of abstract of TW M401627 (Apr. 11, 2011). |
English translation of abstract of TW M379080 (Apr. 21, 2010). |
English translation of abstract of CN 102436085 A (May 2, 2012). |
English translation of abstract of CN 201636705 (published Nov. 17, 2010). |
China Office Action dated Sep. 3, 2013. |
Number | Date | Country | |
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20130258642 A1 | Oct 2013 | US |