The disclosure is related to an electronic device, and particularly related to an electronic device with a display panel which can display multiple-view images.
Recently, the electronic device which can have multiple-view image has been proposed. For example, the dual-view display panel may display two images at the same time for two users, and each user can see his own image. However, the interference between two images still exists.
The disclosure has proposed a parallax barrier used with a display panel for multiple views, in which the interference may be reduced.
In an embodiment, the disclosure provides an electronic device including a display panel and a parallax barrier. The display panel includes a plurality of color sub-pixels of a first color, a second color, and a third color. The parallax barrier overlaps the display panel in a normal direction of the display panel, wherein the parallax barrier includes a plurality of barrier units. A barrier unit of the first color overlaps at least a color sub-pixel of the second color and a color sub-pixel of the third color in a top view.
In an embodiment, the disclosure also provides an electronic device. The electronic device includes a display panel and a parallax barrier, the display panel includes a plurality of color sub-pixels of a first color, a second color, a third color, and a fourth color. The four colors are sequentially designated to the color sub-pixels. The parallax barrier is overlapping the display panel in a normal direction of the display panel. The parallax barrier includes a plurality of barrier units. A barrier unit of the first color overlaps three adjacent sub-pixels in the top view. And the color of the barrier unit is the same as a color of the middle sub-pixel.
The accompanying drawings are included to provide a further understanding of the disclosure, and are incorporated in and constitute a part of this specification. The drawings illustrate embodiments of the disclosure and the description serve to explain the principles of the disclosure.
The electronic device of the present disclosure is described in detail in the following description. In the following detailed description, for purposes of explanation, numerous specific details and embodiments are set forth in order to provide a thorough understanding of the present disclosure. The specific elements and configurations described in the following detailed description are set forth in order to clearly describe the present disclosure. It will be apparent, however, that the exemplary embodiments set forth herein are used merely for the purpose of illustration, and the inventive concept may be embodied in various forms without being limited to those exemplary embodiments.
In addition, the drawings of different embodiments may use similar and/or corresponding numerals to denote similar and/or corresponding elements in order to clearly describe the present disclosure. However, the use of similar and/or corresponding numerals in the drawings of different embodiments does not suggest any correlation between different embodiments. In addition, in this specification, expressions such as “first material layer disposed on/over a second material layer”, may indicate the direct contact of the first material layer and the second material layer, or it may indicate a non-contact state with one or more intermediate layers between the first material layer and the second material layer. In the above situation, the first material layer may not be in direct contact with the second material layer.
In addition, in this specification, relative expressions are used. For example, “lower”, “bottom”, “higher” or “top” are used to describe the position of one element relative to another. It should be appreciated that if a device is flipped upside down, an element that is “lower” will become an element that is “higher”.
It should be understood that, although the terms first, second, third etc. may be used herein to describe various elements, components, regions, layers, portions and/or sections, these elements, components, regions, layers, portions and/or sections should not be limited by these terms. These terms are only used to distinguish one element, component, region, layer, portion or section from another element, component, region, layer or section. Thus, a first element, component, region, layer, portion or section discussed below could be termed a second element, component, region, layer, portion or section without departing from the teachings of the present disclosure.
It should be understood that this description of the exemplary embodiments is intended to be read in conjunction with the accompanying drawings, which are to be considered part of the entire written description. The drawings are not drawn to scale. In addition, structures and devices are shown schematically in order to simplify the drawing.
The terms “about” and “substantially” typically mean +/−20% of the stated value, or +/−10% of the stated value, or +/−5% of the stated value, or +/−3% of the stated value, or +/−2% of the stated value, or +/−1% of the stated value and even or +/−0.5% of the stated value. The stated value of the present disclosure is an approximate value. When there is no specific description, the stated value includes the meaning of “about” or “substantially”.
Unless defined otherwise, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this disclosure belongs. It should be appreciated that, in each case, the term, which is defined in a commonly used dictionary, should be interpreted as having a meaning that conforms to the relative skills of the present disclosure and the background or the context of the present disclosure, and should not be interpreted in an idealized or overly formal manner unless so defined.
In addition, in some embodiments of the present disclosure, terms concerning attachments, coupling and the like, such as “connected” and “interconnected,” refer to a relationship wherein structures are secured or attached to one another either directly or indirectly through intervening structures, as well as both movable or rigid attachments or relationships, unless expressly described otherwise.
The disclosures provide a structure of an electronic device in which a parallax barrier is used with a display panel for multiple views. The parallax barrier includes a plurality of barrier units. The interference of two images for adjacent two views may be effectively reduced.
Multiple embodiments are provided for description but the disclosure is not just limited to the embodiments as provided. In addition, a suitable modification or combination between the embodiments may be done.
In the embodiment of LCD panel, the display panel 80 in detail may include a substrate 104 to implement a sub-pixel layer 106 disposed on one side of the substrate 104. The sub-pixel layer 106 includes a plurality of sub-pixels 106A to form a sub-pixel array with a plurality of sub-pixel rows. The sub-pixels 106A of the sub-pixel layer 106 in one of the sub-pixel rows are arranged to alternately display a first-view image such as left-view image (Lt) and a second-view image such as right-view image (Rt). It should be noted that in this embodiment, the sub-pixels 106A are arranged to alternately display a first-view image and a second-view image. But the disclosure is not limited thereto.
Since the embodiment is taking the LCD panel as an example, the CF layer 110 includes a plurality of color filter (CF) elements 1101. A color filter (CF) elements 1101 in a CF layer 110 corresponding to the sub-pixels 106A of the sub-pixel layer 106 are disposed on another substrate 108, but in some embodiments, the CF layer 110 and the sub-pixel layer are disposed on the same substrate 104. In the display panel 80, a color sub-pixel 200 includes one CF element 1101 of the CF layer 110 and one corresponding sub-pixel 106A of the sub-pixel layer 106. The black matrix, indicated by black area may be formed between the color sub-pixels 200. Similarly, the display panel 80 includes multiple color sub-pixels 200 to form a color sub-pixel array with a plurality of color sub-pixel rows.
It should be noted that the structure of the display panel 80 may be modified according to the actual design. The disclosure is not limited to a specific structure.
The parallax barrier 90 of the disclosure includes a CF parallax layer 114 disposed on a substrate 112. A polarizer layer 116 can be disposed on an opposite side of the substrate 112, but the position of the polarizer layer 116 is not limited thereto. The CF parallax layer 114 has multiple CF rows corresponding to the color sub-pixel rows of the display panel 80. The distance d between the CF parallax layer 114 and the CF layer 110 is the shortest distance between a surface of a CF parallax layer 114 to a surface of the CF layer 110. In the embodiment of the disclosure, the distance d between the CF parallax layer 114 and the CF layer 110 may be between 60 micrometers and 180 micrometers (60 micrometers≤d≤180 micrometers). In the parallax barrier 90, the CF parallax layer 114 includes a plurality of color filter (CF) rows, and a CF row has a plurality of barrier units 114A with colors of red (indicated by R), blue (indicated by B), and green (indicated by G) in a sequence, but the disclosure is not limited thereto.
As noted, a barrier unit 114A overlaps at least two adjacent color sub-pixels 200 in a normal direction DR1 of the display panel 80, wherein the at least two adjacent color sub-pixels 200 respectively correspond to the first-view image and the second-view image, and the barrier unit 114A and the two adjacent color sub-pixels 200 correspond to different colors respectively. For example, a red barrier unit 114A in a CF row overlaps a green color sub-pixel 200 and an adjacent blue color sub-pixel 200, and the two color sub-pixels 200 display a right-view image (Rt) and a left-view image (Lt) respectively. Likewise, the blue barrier unit 114A overlaps the red sub-pixels 200 and green color sub-pixels 200, and the green barrier unit 114A overlaps the blue sub-pixels 200 and red color sub-pixels 200.
The parallax barrier 90 overlaps the display panel 80 in a normal direction DR1 of the display panel 80. However, in order to show the arrangement of the color, the figure that parallax barrier 90 is shifted from display panel 80 in plane is just for easily understanding.
The rule as previously stated is applied to designate the color for the barrier units 114A, and it is not repeated herein.
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The filtering effect of the parallax barrier relates to the amount of light leakage. Theoretically, the transmittance of a light emitted from one color sub-pixel 200 to the barrier unit 114A of a different color may be less than 0.3 or may be even down to 0.05 in some embodiments.
The arrangement of the sub-pixels of the display panel and the barrier units 114A of the parallax barrier in
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As previously stated, the embodiments as provided may have suitable combination therebetween. The disclosure is not just limited to the embodiments as provided.
Further to the display panel based on the LED panel, the CF parallax layer 114 may be applied as well.
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The CF parallax layer 312 includes barrier units 312A with the designated color. The function of the CF parallax layer 312 may be similar to previous embodiments.
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In an embodiment, a parallax barrier 90 includes a CF parallax layer 410 which is disposed on another substrate 408. A polarizer layer 412 may also be disposed on the opposite side of the substrate 408 but not the limitation. In an embodiment, a CF parallax layer 410 includes barrier units 410A with the designated color. The function of the CF parallax layer 410 may be similar to previous embodiments.
The disclosure provides an electronic device in which the parallax barrier includes a CF parallax layer. The barrier units of the CF parallax layer are designated with proper colors. A barrier unit overlaps at least two adjacent sub-pixels in a normal direction of the display panel, and the barrier unit may filter the lights of different colors and keep the light of the same color to transmit.
It will be apparent to those skilled in the art that various modifications, combinations and variations can be made to the structure of the present disclosure without departing from the scope or spirit of the disclosure. In view of the foregoing, it is intended that the present disclosure covers combinations, modifications and variations of this disclosure are still in the scope of the following claims and their equivalents.