The present invention relates to a display apparatus, and more particularly to a display apparatus applied to touch panel and an assembly method of the display apparatus.
Touch panel has been widely used in smart phone, tablet PC, and other electronic products. Users are capable of manipulating the electronic product by touching the touch panel or sliding fingers on the touch panel.
Generally speaking, the touch panel has a plurality of function keys, such as home key, back key, and switching function key. In order that users could manipulate the function keys in dark environment, a backlight module is usually disposed under the function keys to illuminate the function keys.
However, in manufacturing and assembly process of the electronic product, the backlight module is usually pre-manufactured at first and then adhered to a bottom surface of a display module, and then, the touch panel is assembled to the display module. This makes the assembly process to be complicated.
The present invention provides a display apparatus with simple assembly process.
The display apparatus includes a display module and a backlight module. The display module includes a substrate and a display panel. The substrate includes an image region and a control region, and the control region is located at an edge of the substrate. The display panel has a first surface and a second surface opposite to the first surface. The backlight module includes a light guide plate, a circuit board, a first light source unit and a second light source unit. The circuit board has a first portion disposed on the first surface and a second portion disposed on the second surface. The first light source unit is disposed on the first portion and provides lights o an incident surface of the light guide plate. The second light source unit is disposed on the second portion and provides lights to the control region.
The present invention further provides an assembly method of the display apparatus, the method is of a simple process.
The method includes the following steps: providing a display panel having a first surface and a second surface opposite to the first surface; then, providing a first circuit board having a first portion and a second portion extending outwardly from an end of the first portion, wherein the first portion and the second portion are integrally formed into a single piece; then, disposing a first light source unit on the first portion and electrically connecting the first light source unit to the first portion, and disposing a second light source unit on the second portion and electrically connecting the second light source unit to the second portion; and then, disposing the first portion on the first surface and conversely bending the second portion to the second surface.
In the embodiments of the present invention, the first light source unit and the second light source unit are respectively disposed on the first portion and the second portion of the first circuit board. The first portion is disposed on the first surface of the display panel for providing lights to the display panel. The second portion is disposed on the second surface of the display panel for providing lights to the function key. Therefore, the display apparatus of the present invention has simpler structure than the conventional art, and the assembly process of the display apparatus is accordingly simplified.
The present invention will become more readily apparent to those ordinarily skilled in the art after reviewing the following detailed description and accompanying drawings, in which:
The present invention will now be described more specifically with reference to the following embodiments. It is to be noted that the following descriptions of preferred embodiments of this invention are presented herein for purpose of illustration and description only. It is not intended to be exhaustive or to be limited to the precise form disclosed.
In this embodiment, the display panel 114 is a non-self-luminous display panel. The display panel 114 includes but is not limited to liquid crystal display panel. The display panel 114 for example includes a first substrate 115, a second substrate 116 disposed on the first substrate 115, and a liquid crystal layer (not shown) disposed between the first substrate 115 and the second substrate 116. The first substrate 115 is not completely covered by the second substrate 116 and has an exposed portion exposed outside the second substrate 116. In this embodiment, the first surface 114a and the second surface 114b are two opposite surfaces of the display panel 114. The second surface 114b includes a top surface of the second substrate 116, and a top surface of the exposed portion of the first substrate 115. The second portion 124b of the circuit board 124 is disposed on the second surface 114b and located on the exposed portion of the first substrate 115. The first portion 124a of the circuit board 124 corresponds to the second portion 124b of the circuit board 124 and locates below the second portion 124b. The substrate 112 may be a protective board (such as a glass board or a transparent plastic board), or a touch panel. The image region R1 of the substrate 112 locates above a display region of the display panel 114 with an orthographic projection of the image region R1 on the display panel 114 overlaps the display region, and users could see images displayed on the display panel 114 through the image region R1 of the substrate 112. The control region R2 for example corresponds to a non-display region of the display panel 114 with an orthographic projection of the control region R2 on the display panel 114 overlaps the non-display region. The control region R2 is a region for users to manipulate the display apparatus 100. The control region R2 for example includes at least a function key 113 for users to manipulate, and
The incident surface 122a of the light guide plate 122 is located at a lateral side of the light guide plate 122, and the first light source unit 126 is disposed adjacent to the incident surface 122a. The first light source unit 126 for example includes a plurality of first light emitting components for emitting lights L1. The light guide plate 122 transforms the lights L1 to a plane light after the lights L1 entering into the light guide plate 122 through the incident surface 122a. Then, the lights leave the light guide plate 122 from a light exiting surface 122b and enter into the display panel 114. The display panel 114 is disposed above the light exiting surface 122b to receive lights from the plane light source. Furthermore, at least an optical film, such as a brightness enhancement film, and/or a diffuser film, can be disposed between the light exiting surface 122b and the display panel 114.
In this embodiment of the present invention, the first light source unit 126 and the second light source unit 128 are respectively disposed on the first portion 124a and the second portion 124b of the circuit board 124, the first portion 124a is disposed on the first surface 114a of the display panel 114 for providing lights L1 toward the light guide plate 122 and further providing plane light source for the display panel 114, the second portion 124b is disposed on the second surface 114b of the display panel 114 for providing lights L2 toward the control region R2 to illuminate the function key 113. As compared to the conventional art, this embodiment integrates the first light source unit 126 for providing lights L1 toward the light guide plate 112 together with the second light source unit 128 for providing lights L2 toward the control region R2 into a single circuit board 124. This not only simplifies the structure and decreases the cost of the display apparatus 100, but also simplifies the assembly process and accordingly increases assembly efficiency of the display apparatus 100.
In this embodiment, an orthographic projection of the second light source unit 128 on the first portion 124a of the circuit board 124 overlaps the first light source unit 126 on the first portion 124a of the circuit board 124. That is to say, the second light emitting components of the second light source unit 128 are disposed right above the first light emitting components of the first light source unit 126. Alternatively, in another embodiment, the orthographic projection of the second light source unit 128 on the first portion 124a of the circuit board may be non-overlap with the first light source unit 126. For example, the second light emitting components of the second light source unit 128 may align with gaps formed between the first light emitting components of the first light source unit 126. That is to say, the first light source unit 126 are alternately arranged with the orthographic projection of the second light source unit 128 on the first portion 124a. By means of this arrangement, wirings of the first light emitting components of the first light source unit 126 could be arranged at positions corresponding to orthographic projections of the second light emitting components of the second light source unit 128 on the first portion 124a of the circuit board 124, and wirings of the second light emitting components of the second light source unit 128 could be arranged at positions corresponding to orthographic projections of the first light emitting components of the first light source unit 126 on the second portion 124b of the circuit board 24. This arrangement efficiently utilizes wiring area of the circuit board 124 and decreases distances between the light emitting components of the first light source unit 126 or the second light source unit 128, and further increases a capable arrangement number of the light emitting components of the first light source unit 126 or the second light source unit 128, and therefore reaches the requirement of improving whole brightness of the display apparatus 100.
The back plate 10 has a bottom wall 11 and a sidewall 12 upwardly extending from a periphery edge of the bottom wall 11. An accommodating space 13 is defined between the bottom wall 11 and the sidewall 12. The reflector board 14, the light guide plate 20, the optical films 30 and the display panel 40 are disposed in the accommodating space 13 in that order. The light guide plate 20 is disposed between the back plate 10 and the display panel 40. The optical films 30 are disposed between the light guide plate 20 and the display panel 40. The reflector board 14 is disposed between the bottom wall 11 of the back plate 10 and the light guide plate 20, and is disposed under the light guide plate 20 at a side remote from the optical films 30. More concretely, the optical films 30 may be but not limited to brightness enhancement film, or diffuser film.
The display panel 40 has a first surface 41 and a second surface 42 opposite to the first surface 42. The first surface 41 faces to the optical films 30, and the second surface 42 opposite to the optical films 30. In this embodiment, the display panel 40 may be but not limited to liquid crystal display panel, which has two substrates stacked together and a liquid crystal display layer disposed between the substrates.
The first circuit board 50 may be a strip-like flexible circuit board, and includes a first portion 51 and a second portion 52 having substantially the same length as the first portion 51. The first portion 51 is located under the display panel 40, and the second portion 52 extends outwardly from an end of the first portion 51. The first light source unit 60 includes a plurality of first light emitting components 61. The first light emitting components 61 are disposed on the first portion 51 with spaces formed between adjacent components. The first light emitting components 61 are electrically connected to the first portion 51, for providing lights to the incident surface to the light guide plate 20. The second light source unit 70 includes a plurality of second light emitting components 71. The second light emitting components 71 are disposed on the second portion 52 with spaces formed between adjacent components. The second light emitting components 71 are electrically connected to the second portion 52, for providing lights to the function keys of the touch panel.
In the present invention, the first light source unit 60 and the second light source unit 70 are respectively disposed on the integrally formed portions of the first circuit board 50, i.e., the first portion 51 and the second portion 52 of the first circuit board 50, and the first portion 51 is disposed on the first surface 41 of the display panel 40. Therefore, the first light source unit 60 is capable of providing lights to the light guide plate 20 and functioning as light source of the backlight module. The second portion 52 is conversely bent and adhered to the second surface 40 of the display panel 42, and the second light source unit 70 is therefore capable of providing lights to the function keys of the touch panel and functioning as light source of the function keys. As compare to the conventional art, the present invention effectively simplifies the assembly process of the display apparatus.
Referring to
First of all, a display panel 40 is provided. The display panel 40 has a first surface 41 and a second surface 42 opposite to the first surface 41. Next, a first circuit board 50 is provided, a first light source unit 60 is disposed on a first portion 51 of the first circuit board 60 and electrically connects to the first portion 51, and a second light source unit 70 is disposed on a second portion 52 of the first circuit board 50 and electrically connects to the second portion 52. Then, the first portion 51 of the first circuit board 50 is disposed on the first surface 41 of the display panel 40. Furthermore, a second circuit board 80 is electrically connected to the display panel 40, and the first portion 51 of the first circuit board 50 is electrically connected to the second circuit board 80 by the first wire 81.
Then, the display panel 40 is assembled to the accommodating space 13 of the back plate 10 with a reflector board 14, a light guide plate 20 and a plurality of optical films 30 disposed therein. In the accommodating space 13, the light guide plate 20 is disposed at the first surface side of the display panel 40. The optical films 30 are disposed between the light guide plate 20 and the display panel 40. The reflector board 14 is disposed below the light guide plate 20 at an edge remote from the optical film 30. The light guide plate 20 has an incident surface facing to the first light emitting components 61 of the first light source unit. Lights emitted from the first light emitting components enter into the light guide plate through the incident surface.
Then, the second portion 52 of the first circuit board 50 is conversely bent and adhered to the second surface 42 of the display panel 40, and the display apparatus of the present invention is accordingly obtained. Furthermore, in the embodiment shown in
It should be mentioned that the function keys in the forgoing embodiments of the present invention may be but not limited to actual press keys or decorative patterns formed on the touch panel.
For the forgoing descriptions, in the embodiments of the present invention, the first light source unit and the second light source unit are respectively disposed on the first portion and the second portion of the first circuit board. The first portion is disposed on the first surface of the display panel for providing lights to the display panel. The second portion is disposed on the second surface of the display panel for providing lights to the function key. Therefore, the display apparatus of the present invention has simpler structure than the conventional art, and the assembly process of the display apparatus is accordingly simplified.
While the invention has been described in terms of what is presently considered to be the most practical and preferred embodiments, it is to be understood that the invention needs not be limited to the disclosed embodiment. On the contrary, it is intended to cover various modifications and similar arrangements included within the spirit and scope of the appended claims which are to be accorded with the broadest interpretation so as to encompass all such modifications and similar structures.
Number | Date | Country | Kind |
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102122753 | Jun 2013 | TW | national |