The present disclosure claims priority to Chinese Patent Application No. 201721022169.2 filed to State Intellectual Property Office of the Republic of China on Aug. 16, 2017, titled “Display Assembly”, the disclosure of which is hereby incorporated by reference in its entirety.
The present disclosure relates to the field of splicing display technology, in particular, to a display assembly.
In conference rooms, public places, command centers, etc., large-area displays (displays having an area much larger than that of conventional displays) are often used. The large-area displays are generally in the form of splicing displays. A spliced display device is formed by splicing a plurality of conventional displays, and an image to be displayed is split into several sub-images by an image splitter, then the several sub-images are transmitted to the plurality of conventional displays for display, respectively.
Currently, relatively practical conventional displays are mostly liquid crystal displays (LCDs), etc., and such a display inevitably has a bezel with a certain width in addition to a display area. Therefore, when the plurality of conventional displays are spliced together into one spliced display device, their bezels are placed closely adjacent to one another to form splicing seams. The splicing seams cannot be used for display, affect the picture quality, and reduce the viewer's comfort.
The present disclosure at least partially solves the problem that there are splicing seams in the prior splicing display device and the display quality is affected, and provides a display assembly which can avoid the influence of the splicing seams on the display quality.
The technical solution of the present disclosure for solving the above technical problem is a display assembly which includes a plurality of first displays provided with side walls spliced together, each of the plurality of first displays including a first display area and a first bezel surrounding the first display area, the first display area facing a display side, and a region between two adjacent first display areas being a splicing seam; the splicing seam on the display side is covered by a second displays, and a type of the second display is different from that of the first displays.
In some embodiments, the second display is a flexible display or a curved display, and includes a second display area and a second bezel surrounding the second display area; and the second bezel is bent towards the splicing seam with respect to the second display area.
In some embodiments, the second bezel is bent to be perpendicular to the second display area.
In some embodiments, the first display is a liquid crystal display.
In some embodiments, the second display is an organic light emitting diode display.
In some embodiments, the second display is a micro light emitting diode display.
In some embodiments, the second display is adhered to the first bezel.
In some embodiments, the display assembly further includes: a transparent outer frame provided at the plurality of first displays on the display side, the second display being adhered to the transparent outer frame.
In some embodiments, adjacent second displays are connected by bonding.
In some embodiments, all of the second displays cover all the splicing seams.
The present disclosure will be further described below with reference to specific implementations and in conjunction with the drawings in order that those skilled in the art can understand technical solutions of the present disclosure better.
An embodiment of the present disclosure provides a display assembly which includes a plurality of first displays 1 with side walls thereof placed closely adjacent to one another and spliced together and second displays 2 with a different type from the first displays 1. The second displays 2 are provided at the positions for splicing the first displays 1 such that the display assembly achieves an overall seamless display.
As shown in
In order to achieve an overall seamless display of the display assembly, second displays 2 with a different type from the first displays 1 are provided at the splicing seams 9 on the display side so as to achieve displaying at the splicing seams 9. The number, size, shape, etc. of the second displays 2 may be determined according to the situation concerning the splicing seams 9. For example, as shown in
It will be appreciated that, after the second displays 2 are provided, when splitting the image, sub-images to be displayed by the second displays 2, that is, sub-images corresponding to the positions of the splicing seams 9 (i.e., the positions of the second displays 2), should be also included. In this case, a sub-image of a first display 1 is continuous with sub-images of the adjacent second displays 2 instead of with sub-images of the adjacent first displays 1.
In the display assembly of the present embodiment, as shown in
In some embodiments, the second displays 2 cover all the splicing seams 9.
In some embodiments, in order to minimize the influence of the splicing seams 9 on the display effect, all the splicing seams 9 should be provided with the second displays 2. Moreover, it will be appreciated that only a part of the splicing seams 9 are provided with the second displays 2.
In some embodiments, as shown in
In some embodiments, as shown in
As shown in
In some embodiments, the first displays 1 are liquid crystal displays.
The liquid crystal display (LCD) is one of the most commonly used display types at present, which has the advantages of low cost, high yield, and the like, so that it is easy to realize large area display, and is suitable for use as the first display 1.
In some embodiments, the second displays 2 are organic light emitting diode displays.
The organic light emitting diode (OLED) display is easy to achieve a flexible and curved display, and has a relatively small bezel size. However, since it has a high cost and a low yield, it is difficult for the OLED display to be used for large area display. Accordingly, the OLED display is just suitable for use as the second display 2 provided at the splicing seam 9 having a small size.
In some embodiments, the second displays 2 are micro light emitting diode displays 5. As shown in
The micro light emitting diode displays 5 have advantages of simple structure, low cost, and so on. Although the display quality is relatively low, it is completely acceptable because they are used only for the splicing seams 9 which have a small area.
Moreover, it will be appreciated that the first displays 1 and the second displays 2 can be used for both 2D display and 3D display, can be used for both single-sided display and double-sided display, and can be used for both non-transparent display and transparent display, and so on. In the case of double-sided display, the display assembly has two display sides opposite to each other and each first display 1 has two first display areas opposite to each other each being surrounded by a respective first bezel, and thus the slicing seams 9 on the two display sides should be provided with the respective second displays 2,
In some embodiments, the second displays 2 are bonded on the first bezels 12. As shown in
In some embodiments, as shown in
In some embodiments, as shown in
Further, it will be appreciated that, the second displays 2 may be respectively disposed at (e.g., bonded to) the splicing seams of different positions after the first displays 1 are spliced together.
It will be appreciated that the above implementations are only exemplary implementations for illustrating the principle of the present disclosure. However, the present disclosure is not limited thereto. An ordinary person skilled in the art can make various modifications and improvements to the present disclosure without departing from the essence of the present disclosure. These modifications and improvements should be also considered as the protective scope of the present disclosure.
Number | Date | Country | Kind |
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201721022169.2 | Aug 2017 | CN | national |
Filing Document | Filing Date | Country | Kind |
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PCT/CN2018/089780 | 6/4/2018 | WO | 00 |