The disclosure relates to an electronic display device and element thereof, and in particular it relates to a curved electronic display device and a rear chassis assembly thereof.
An electronic display device is an optoelectronic device able to transfer electric signals into visible images so that human beings can see the information contained in the electronic signals. LCDs (Liquid-Crystal displays), PDP (plasma display panel) displays, EL (electro luminescence) displays, FEDs (field emission displays), and DMD (deformable mirror device) displays have gained great popularity. Because of their slimness, low power consumption and low radiation, these image-display devices have been widely used in portable electronic devices such as desktop computers, notebook computers, personal digital assistants (PDAs), and mobile phones, and are even gradually replacing cathode ray tube (CRT) monitors and conventional TVs.
Recently, market trends have led to the size of the electronic display device increasing over time. As the size of the flat panel liquid-crystal display is increased, a difference in views is experienced between different viewing angles. Normally, for a flat electronic display device, the position head on with the central line of the electronic display device is the best view position. The viewers at other positions may feel different viewing experience compared with the viewer in the position that is head-on with the center. For example, a trapezoidal distortion problem may occur as the viewer watches the electronic display device with a relatively large viewing angle.
One solution is to use an electronic display device with a curved display surface. The curved electronic display device not only provides multiple viewing angles for watching but eliminates the trapezoidal distortion problem. Although the curved electronic display device has already existed in the market for some time, in order to maintain the desired curvature a bulky and large enforcing bracket is usually used for enhancing the structural strength. However this does not fulfill the requirements of being slim and having an attractive appearance of today's electronic display devices.
In light of the foregoing problem, one objective of the disclosure is to provide an electronic display device with a curved display surface. The electronic display device utilizes a sheet with relatively small size to maintain the desired curvature of the electronic display device. As a result, the thickness of the electronic display device is decreased, and the electronic display device has a beautiful exterior look. In addition, since the desired curvature of the electronic display device is maintained, the other elements (such as wiring lines and exterior housing member) of the electronic display device can be assembled efficiently, and the product yield is also improved.
According to one embodiment, the electronic display device includes an electronic display panel and a rear chassis assembly. The electronic display panel has a display surface. The rear chassis assembly includes a substrate, a first side wall, a second side wall, a first sheet, and a second sheet. The substrate has a curvature. The first side wall and the second side wall are respectively disposed on two opposite sides of the substrate. A space is defined by the first and second side walls and the substrate for the position of the electronic display panel. The first sheet is fixed on the first side wall, and the curvature of the first sheet substantially corresponds to the curvature of the first side wall. The second sheet is fixed on the second side wall, and the curvature of the second sheet substantially corresponds to the curvature of the second side wall.
In some embodiments, each of the first side wall and second side wall has a setting surface. Each of the setting surfaces is substantially perpendicular to the display surface. The first sheet is disposed on the setting surface of the first side wall, and the second sheet is disposed on the setting surface of the second side wall.
In the above-mentioned embodiments, the substrate has a through hole, and the rear chassis assembly further includes a bracket and a third sheet. The bracket includes a main portion arranged on a front surface of the substrate which faces the electronic display panel and includes an extending portion protruding from the main portion in a direction away from the electronic display panel and passing through the through hole. The third sheet is connected to the extending portion, and the curvature of the third sheet substantially corresponds to the curvature of the substrate. In some embodiments, the substrate includes a flange arranged adjacent to the through hole, and the flange is clamped between the extending portion and the third sheet.
In the above-mentioned embodiments, the electronic display device further includes a light source member, wherein the main portion of the bracket extends from the second side wall to the first side wall, and the light source member is arranged adjacent to the second side wall and disposed on the bracket for dissipating heat from the light source member via the bracket. Alternatively, the electronic display device further includes two heat dissipation plates respectively connected to two sides of the bracket and includes two light source members respectively disposed on the two dissipation plates for dissipating heat from the two light source members via the two heat dissipation plates and the bracket.
In some other embodiments, the substrate includes a back surface which is away from the electronic display panel and includes a supporting surface connected to the back surface, wherein the supporting surface protrudes from the back surface in a direction away from the electronic display panel, and the third sheet is disposed on the supporting surface.
In any of the above-mentioned embodiments, each of the first sheet, the second sheet, and the third sheet has a flat configuration.
In any of the above-mentioned embodiments, the display surface is a curved surface.
In any of the above-mentioned embodiments, the ratio of the thickness of each of the first sheet and the second sheet and the thickness of one of the corresponding first and second side walls is in a range from 1 to 3.
According to one embodiment, the display device includes a display panel, an optical film unit, a first light source member, and a rear chassis assembly. The optical film unit and the first light source member are disposed corresponding to the display panel. The rear chassis assembly includes a substrate, a first side wall, a second side wall, and a bracket. The substrate has a front surface. The first side wall and the second side wall are respectively disposed on opposite sides of the substrate, and the second side wall has substantially the same curvature as the first side wall. A space is defined by the first side wall, the second side wall, and the substrate for the position of the display panel, the optical film, and the first light source member. The bracket is disposed on the front surface of the substrate and has substantially the same curvature as the substrate. The bracket is disposed between the front surface of the substrate and the optical film unit, and the bracket includes metal.
According to one embodiment, the display device includes a display panel, an optical film unit, a first light source member, and a rear chassis assembly. The optical film unit and the first light source member are disposed corresponding to the display panel. The rear chassis assembly includes a substrate, a first side wall, a second side wall, and a sheet. The substrate has a back surface. The first side wall and the second side wall are respectively disposed on opposite sides of the substrate, and the second side wall has substantially the same curvature as the first side wall. A space is defined by the first side wall, the second side wall, and the substrate for the position of the display panel, the optical film, and the first light source member. The sheet is disposed on the back surface of the substrate and has substantially the same curvature as the substrate.
The present invention can be more fully understood by reading the subsequent detailed description and examples with references made to the accompanying drawings, wherein:
Several exemplary embodiments of the application are described with reference to
The chassis body 110a includes a substrate 115a and a number of side walls, such as first side wall 111, second side wall 113, third side wall 112, and fourth side wall 114. The substrate 115a has a configuration with a thin, curved plate which has a curvature on the horizontal plane. In some embodiments, the substrate 115a includes a first portion 1151, a second portion 1152, and a connecting portion 1153. The first and second portions 1151 and 1152 extend along a vertical direction. The connecting portion 1153 extends along a horizontal direction. The first and second portions 1151 and 1152 are connected to one another via the connecting portion 1153. The first side wall 111, the second side wall 113, the third side wall 112, and the fourth side wall 114 protrude from the upper edge 1154, lower edge 1155, left edge, and right edge along a direction away from the electronic display panel 50 (
The auxiliary unit 130 includes a number of sheets for maintaining the structure of the chassis body 110a. In some embodiments, the auxiliary unit 130 includes a first sheet 131, a second sheet 132, and third sheet 133. Each of the first sheet 131, the second sheet 132, and the third sheet 133 has a flat configuration and extends in a horizontal direction. In addition, each of the first sheet 131, the second sheet 132, and the third sheet 133 has a curvature which is the same as the curvature of the substrate 115a. In some other embodiments, the auxiliary unit 130 merely includes the first sheet 131 and the second sheet 132.
In some embodiments, the thickness of the first sheet 131 is greater than the thickness of the first side wall 111, and the thickness of the second sheet 132 is greater than the thickness of the second side wall 113. For example, the ratio of the thickness of each of the first sheet and the second sheet and the thickness of one of the corresponding first and second side walls is in a range from 1 to 3 so that the curvature of the chassis body 110a is maintained.
In some embodiments, the first sheet 131, the second sheet 132, and the third sheet 133 are made of the same or different materials as those of the chassis body 110a. Each of the first sheet 131, the second sheet 132, and the third sheet 133 has less deformation than the chassis body 110a as an external thrust is applied. For example, the first sheet 131, the second sheet 132, and the third sheet 133 are made of material selected from iron or stainless steel. The chassis body 110a is made of aluminium or alloy.
In the above-mentioned embodiments, with the arrangement of the auxiliary unit 130, a change in the curvature of the substrate 115a of the chassis body 110a can be prevented. Moreover, since the chassis body 110a has a fixed curvature, the assembly efficiency and the production yield are improved accordingly. In addition, since the auxiliary unit 130 has a flat configuration, the thickness of the electronic display device 1a is not increased due to the use of the auxiliary unit 130. As a result, the entire thickness of chassis body 110a is less than the thickness of a rear chassis assembly in which a āCā-shaped reinforcing bracket is used, and the chassis body 110a has a beautiful look.
It should be noted that while the auxiliary unit 130 includes three sheets, the disclosure should not be limited thereto. The number of sheets and the positions of the sheets can be varied according to demand.
Differences between the rear chassis assembly 10a and the rear chassis assembly 10 further includes the rear chassis assembly 10b having a bracket 120. The bracket 120 has a curvature that is the same as that of the substrate 115b and includes a main portion 121 and an extending portion 127. The main portion 121 extends from the lower edge 1155 of the substrate 115b and toward the upper edge 1154. In addition, the main portion 121 is fixed on the front surface 1156, and the main portion 121 has a shape that is compatible with the shape of the front surface 1156 of substrate 115b. The extending portion 127 is protruding backwardly from the main portion 121 in a direction away from the electronic display panel 50 and passing through the through hole 119. The third sheet 133 is positioned on a portion of the extending portion 127 that is exposed by the through hole 119 via one or more fixing elements 70 (such as screws or bolts). The bracket 120 is made of the same or different materials as those of the chassis body 110b. In some embodiments, the material of the bracket 120 is a metal with high heat conductivity (such as aluminium).
In the above-mentioned embodiment, with the arrangements of the bracket 120 and the auxiliary unit 130, a change in the curvature of the substrate 115b of the chassis body 110b can be prevented. In addition, the bracket 120 also serves a function of dissipating the heat. The details will be discussed in the descriptions relating to
In the above-mentioned embodiment, with the arrangements of the bracket 120 and the auxiliary unit 130, a change in the curvature of the substrate 115c of the chassis body 110c can be prevented. In addition, since the third sheet 133 is fixed on the bracket 120 and the flange 1158 of the substrate 115c, the curvature of the bracket 120 and the curvature of the flange 1158 can be regulated by the third sheet 133 so as to facilitate maintaining the curvature of the overall rear chassis assembly 10c.
The rear chassis assembly of the disclosure can be applied to a number of different electronic display devices. For example, as shown in
Alternatively, as shown in
While the invention has been described by way of example and in terms of the described embodiments, it is to be understood that the invention is not limited thereto. On the contrary, it is intended to cover 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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103216319 | Sep 2014 | TW | national |
This application is a continuation of application Ser. No. 15/641,623, filed on Jul. 5, 2017, which is a continuation of application Ser. No. 14/845,040, filed on Sep. 3, 2015, now U.S. Pat. No. 9,733,416, issued on Aug. 15, 2017, which claims the priority of Taiwan Patent Application No. 103216319, filed on Sep. 15, 2014, the disclosure of which is hereby incorporated by reference herein in its entirety.
Number | Date | Country | |
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Parent | 15641623 | Jul 2017 | US |
Child | 16255905 | US | |
Parent | 14845040 | Sep 2015 | US |
Child | 15641623 | US |