This application claims the benefit of Taiwan application Serial No. 102101153, filed Jan. 11, 2013, the subject matter of which is incorporated herein by reference.
1. Field of the Invention
The invention relates in general to a display apparatus, and more particularly to a display apparatus having a haze element.
2. Description of the Related Art
In recent years, with the continual improvement in the manufacturing process and material, the light emitting diode (LED) technology has gained significant improvement in luminous efficiency and has been widely used in the light module of the display apparatus and other fields of application.
The light module of the display apparatus is disposed on one side of the display panel, and can be divided into two types, namely, the direct type and the side type. The side type light module comprises a light source, a light guide plate and a plurality of light guide elements. The light source exemplified by an LED light bar is disposed on one side of the light guide plate for emitting a light which enters the light guide plate via a light-entering surface of the light guide plate. Each of the light guide elements is formed by a bar-shaped scattering material, such as white ink, and is coated on a bottom surface of the light guide plate. The light guide plate guides the light to be quickly transmitted to the center from two sides through total reflection. The light guide elements break the total reflection of the light and guide the light to be emitted from the light emitting surface of the light guide plate and projected on the display panel to display an image frame.
When the light is emitted to the display panel from the light emitting surface of the light guide plate, the shape of the light on the light emitting surface is obliquely straight and with the bright state staggered with the dark state. The display panel comprises a light shielding layer (that is, a light-impermeable black matrix) formed by staggered stripes as indicated in
Therefore, how to provide a light module and a display apparatus which are capable of changing the light shape and breaking interference fringes for improving the display quality of the display apparatus has become a prominent task for the industries.
The invention is directed to a display apparatus having a haze element. The haze element is disposed on one side of the upper surface and lower surface of the display panel for changing the light shape and breaking interference fringes, so as to improve the display quality of the display apparatus.
According to an embodiment the present invention, a display apparatus, comprising a display panel, a light module and a haze element, is provided. The light module is disposed opposite to the display panel, and comprises a light guide plate, a plurality of light guide elements and a first light emitting unit. The light guide plate comprises at least a light-entering surface and two opposite side surfaces. The light guide elements are disposed on at least one of the two side surfaces. The first light emitting unit is disposed on the light-entering surface. The haze element is disposed between the display panel and the light guide plate, and has a haze ranging between 1% and 10%. After the light emitted from the first light emitting unit enters the light guide plate, the light is guided by the light-guiding plate and the light-guiding elements, and the light with the bright state being staggered with the dark state can be guided from one of the two opposite side surfaces of the light guide plate. The light guided off the light guide plate is further dispersed by the haze element.
According to another embodiment the present invention, a display apparatus, comprising a display panel, a light module and a haze element, is provided. The light module is disposed opposite to the display panel, and comprises a light guide plate, a plurality of light guide elements and a first light emitting unit. The light guide plate comprises at least a light-entering surface and two opposite side surfaces. The light guide elements are disposed on at least one side of the two side surfaces. The first light emitting unit is disposed on the light-entering surface. The haze element is disposed on one side of the display panel farther away from the light guide plate. After the light emitted from the first light emitting unit enters the light guide plate, the light is guided by the light-guiding plate and the light-guiding elements, and the light with the bright state being staggered with the dark state can be guided from one of the two opposite side surfaces of the light guide plate.
According to an alternate embodiment the present invention, a display apparatus, comprising a display panel, a light module, a polymer-dispersed liquid crystal layer, is provided. The light module is disposed opposite to the display panel, and comprises a light guide plate, a plurality of light guide elements and a first light emitting unit. The light guide plate comprises at least a light-entering surface and two opposite side surfaces. The light guide elements are disposed on at least one of the two side surfaces. The first light emitting unit is disposed on the light-entering surface. The polymer-dispersed liquid crystal layer is disposed on the side surface of the light guide plate from which the light is guided. Through voltage control, the liquid crystal direction of the polymer-dispersed liquid crystal layer is changed, such that the polymer-dispersed liquid crystal layer comprises a haze ranging between 1% and 40%.
The above and other aspects of the invention will become better understood with regard to the following detailed description of the preferred but non-limiting embodiment(s). The following description is made with reference to the accompanying drawings.
The display apparatus of an embodiment of the invention comprises a display panel, a light module and a haze element. The light module is disposed opposite to the display panel. The light module comprises a light guide plate, a plurality of light guide elements and a first light emitting unit. The light guide plate comprises a light-entering surface and two opposite side surfaces. The light guide elements are disposed on at least one side of the two side surfaces. The haze element is substantially disposed on one side of the upper surface and lower surface of the display panel. In some embodiments, the haze element has a haze ranging between 1% and 10%.
When viewing from a direction perpendicular to two opposite side surfaces, each of the light guide elements can be a straight line, an oblique line, a curve comprises at least an inflection point, or is respectively disposed according to a pixel. Details of the display apparatus are elaborated below in a first embodiment to a fourth embodiment.
In
In the invention, the haze of the haze element is defined as:
Tdiffuse: the transmittance of the display apparatus having a haze element;
Ttotal: the transmittance of the display apparatus not having a haze element.
According to the structure of the test object, the haze can be divided into the internal haze or the external haze. The haze of the invention refers to the total haze of the haze element, and is not limited to the internal haze or the external haze.
For convenience of elaboration, the following description is exemplified by the structure of the embodiment of
Since the light L passes through the haze element 30 before entering the display panel 10, the light shape has already been changed by the haze element 30, hence avoiding generating interference fringes with the light shielding layer (not illustrated) having staggered stripes on the display panel 10 so as to effectively resolve the moiré phenomenon. In addition, the haze element 30 of the first embodiment has a haze ranging between 1% and 10%, and the light L still can be guided off with the bright state being staggered with the dark state. Therefore, the display apparatus 1 of the first embodiment of the invention effectively increases the display quality of the display apparatus. In an embodiment, the haze element 30 can be such as a diffusing film disposed on side surface 2102. The thickness of the fog film ranges between 5˜20 μm and the fog film can be formed by such as PET, PC and so on. Chemical process, mechanical process or other processes can be used to make the haze ranging between 1% and 10%.
When viewing from a direction parallel to the side surface 2102 or 2103, each of the light guide elements 220 is a recess or a protrusion. When viewing from a direction perpendicular to the side surface 2102 or 2103, each of the light guide elements 220 is a stripe, but the invention is not limited thereto. The light guide elements 220 can respectively have a reflective material disposed thereon for reflecting the light.
To put it in greater details, the light module 20 of an embodiment of the invention is a parallax barrier element of the display apparatus 10 for guiding the light L with the bright state being staggered with the dark state from the side surface 2102 of the light guide plate 210 to form a 3D image.
As indicated in
When the display apparatus 1 displays a 3D image, the backlight module 40 is turned off. As indicated in
In the first embodiment, the light module 20 comprises a first light emitting unit 230. However, the invention is not limited thereto, and the light module 20 may comprise a second light emitting unit disposed on another light-entering surface opposite to the light-entering surface 2101.
As indicated in
In comparison to the method of disposing a diffusing film to from a haze element, the haze element 31 of the second embodiment of the invention directly applies surface treatment on the side surface 2102′ of the light guide plate 210′, not only saving the use of material but also reducing the thickness of the display apparatus.
As indicated in
In the present embodiment, the haze element can be formed by attaching a fog film on the polarizer or by applying surface treatment on an existing hard film. In
In another embodiment, the first polarizer 110 further comprises a surface protection film 1104 attached on the haze element 32. The haze element may obtain a haze ranging between 1% and 10% by applying a surface coating process on the hard film of the surface protection film 1104. The surface coating process, such as hard resin coating (HC) process, antiglare coating (AG) process, an anti-reflection coating (AR) process, antistatic coating (AS) process, and wide viewing angle improving coating (WV) process, can be applied on the surface protection film 1104 for forming the haze element thereon.
In
Similarly, the second polarizer 120 may further comprises a surface protection film 1204 attached on the haze element 32. The haze element may obtain a haze ranging between 1% and 10% by applying the surface coating process applied on the hard film of the surface protection film 1204.
As indicated in
To put it in greater details, the light module 20 of an embodiment of the invention is a parallax barrier element of the display apparatus 10. After the light L emitted from the first light emitting unit 230 enters the light guide plate 210, the light is guided by the light-guiding plate 210 and the light guide elements 220, such that the light L with the bright state being staggered with the dark state is guided from the side surface 2102. The light L guided from the side surface 2102 passes through the polymer-dispersed liquid crystal layer 33, such that the light L is diffused and guided to the display panel 10 to form a 3D image.
As indicated in
When the display apparatus 4 displays a 3D image, the backlight module 40 is turned off. As indicated in
When the display apparatus 4 displays a 2D image, the backlight module 40 is turned on and the first light emitting unit 230 is turned off. As indicated in
When the display apparatus 4 of the fourth embodiment of the invention displays a 2D image, since the light guide elements 220 comprises a reflective material, after the light is emitted from the backlight module 40, a part of the light will be reflected by the light guide elements 220. Therefore, by increasing the haze of the polymer-dispersed liquid crystal layer 33 to be between 20% and 40%, the non-uniformity distribution of the light which occurs when the light is guided from the light guide plate 210 can be improved, and the viewable angle of the display apparatus 4 can be effectively increased. In an embodiment, when a voltage is applied to the polymer-dispersed liquid crystal layer 33, a plurality of patterned regions can be generated for increasing the light emitting angle of the light.
In the fourth embodiment, the light module 20 comprises a first light emitting unit 230. However, the invention is not limited thereto, and the light module 20 may comprise a second light emitting unit disposed on another light-entering surface opposite to the light-entering surface 2101.
According to the display panel disclosed in the above embodiments of the invention, a haze element is disposed on one side of the upper surface and lower surface of the display panel for changing the light shape and breaking the interference fringes so as to resolve the moiré phenomenon of the panel. Apart from improving the moiré phenomenon, the display panel of the invention further increases the viewable angle when displaying a 2D image, hence effectively increasing the display quality of the display apparatus.
While the invention has been described by way of example and in terms of the preferred embodiment(s), 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 and procedures, and the scope of the appended claims therefore should be accorded the broadest interpretation so as to encompass all such modifications and similar arrangements and procedures.
Number | Date | Country | Kind |
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102101153 | Jan 2013 | TW | national |