The present disclosure relates to the technical field of display, in particular to 3D glasses, a curved surface display and a 3D display apparatus.
A curved surface display is provided with a screen having a curved surface. In this display, each pixel on the screen is equally distanced from human eyes, so that it can vividly restore real visual perception of the human eyes. Therefore, the curved surface display is more competitive than a traditional flat panel display. Meanwhile, when the curved surface screen is used for 3D display, the feeling of reality of images displayed may be enhanced. 3D display can be realized by means of film patterned retarder (FPR for short), which has the advantages of no flicker, high brightness, high refresh rate and the like. Consequently, FPR has been frequently used in the field of 3D display already.
The arc center of the curved surface display is a position with the best view angle, which is taken as an example for illustration herein. As shown in
The present disclosure aims to provide 3D glasses, a curved surface display and a 3D display apparatus, for the purpose of solving the technical problem that the display effect of 3D display is affected due to mutual interference between left and right eyes in the prior art.
The present disclosure provides 3D glasses for use with a curved surface display to realize 3D display, including a film patterned retarder. The film patterned retarder is configured in such a way that, the ratios of the distances that light paths from different points on the curved surface display to a set point pass through the film patterned retarder to the distances that said light paths pass through a film patterned retarder of the curved surface display are identical or approximately identical.
In an embodiment, the film patterned retarder of the 3D glasses is curved, and the thickness of the film patterned retarder is uniform.
In another embodiment, the film patterned retarder of the 3D glasses is planar, and the thickness of the film patterned retarder is gradually increased from both ends to the middle thereof.
In a further embodiment, the film patterned retarder of the 3D glasses is curved, and the thickness of the film patterned retarder is gradually increased from both ends to the middle thereof.
Preferably, the set point is located on a normal plane where the central point of the curved surface display is located.
Further, the set point is located at the arc center of the curved surface display.
Further, the 3D glasses further include a polarizer laminated with the film patterned retarder.
The present disclosure further provides a 3D display apparatus, including a curved surface display and the above-mentioned 3D glasses, wherein the curved surface display includes a film patterned retarder having a curved surface.
The present disclosure further provides a curved surface display for use with 3D glasses to realize 3D display, including a film patterned retarder having a curved surface. The film patterned retarder is configured in such a way that, the ratios of the distances that light paths from different points on the curved surface display to a set point pass through the film patterned retarder to the distances that said light paths pass through a film patterned retarder in the 3D glasses are identical or approximately identical.
Preferably, the thickness of the film patterned retarder in the curved surface display is reduced from both ends to the middle thereof.
Preferably, the set point is located on a normal plane where the central point of the curved surface display is located.
Further, the set point is located at the arc center of the curved surface display.
Further, the curved surface display further includes a polarizer laminated with the film patterned retarder.
The present disclosure further provides another 3D display apparatus, including 3D glasses and the above-mentioned curved surface display, wherein the 3D glasses include a film patterned retarder.
One or more embodiments of the present disclosure at least generate the following advantages. When the 3D glasses according to the present disclosure are cooperatively used with a curved surface display, the ratios of the distances that the light paths from different points on the curved surface display to the set point (where human eyes are located) pass through the film patterned retarder in the 3D glasses to the distances that said light paths pass through the film patterned retarder in the curved surface display are identical or approximately identical. Therefore, the technical problem of mutual interference between left and right eyes can be solved, and the display effect of 3D display can be improved.
When the curved surface display according to the present disclosure is cooperatively used with the 3D glasses, the ratios of the distances that the light paths from different points on the curved surface display to the set point (where human eyes are located) pass through the film patterned retarder in the curved surface display to the distances that said light paths pass through the film patterned retarder in the 3D glasses are identical or approximately identical. Therefore, the technical problem of mutual interference between left and right eyes can be solved, and the display effect of 3D display can be improved.
Other features and advantages of the present disclosure will be set forth in the following description, and in part will be made obvious from the description, or be self-evident by implementing the present disclosure. The objectives and other advantages of the present disclosure may be achieved and obtained by structures particularly pointed out in the description, the claims and the accompanying drawings.
To illustrate the technical solutions in the embodiments of the present disclosure or in the prior art more clearly, a brief introduction on the accompanying drawings which are necessary for illustrating the embodiments or the prior art is provided below.
A detailed description of the implementation modes of the present disclosure will be given below, in combination with the accompanying drawings and embodiments, whereby an implementation process of how to use technical means of the present disclosure to solve the technical problems and achieve a technical effect may be fully understood and then implemented accordingly. It should be noted that, as long as no conflict is generated, various embodiments of the present disclosure and various features of the embodiments may be combined with each other, and the formed technical solutions are all within the protection scope of the present disclosure.
An embodiment of the present disclosure provides 3D glasses for use with a curved surface display to realize 3D display, including a film patterned retarder. The film patterned retarder is configured in such a way that, the ratios of the distances that light paths from different points on the curved surface display to a set point pass through the film patterned retarder to the distances that said light paths pass through a film patterned retarder of the curved surface display are identical or approximately identical.
When the 3D glasses according to the present disclosure are cooperatively used with the curved surface display, the ratios of the distances that the light paths from different points on the curved surface display to the set point (where human eyes are located) pass through the film patterned retarder in the 3D glasses to the distances that said light paths pass through the film patterned retarder in the curved surface display are identical or approximately identical. Therefore, the technical problem of mutual interference between left and right eyes can be solved, and the display effect of 3D display can be improved.
As shown in
The arc center of the curved surface display is a position with the best view angle, and this embodiment will be illustrated by taking this condition as an example. As shown in
When the relative position between the 3D glasses 1 and the curved surface display 2 changes, the distances that the light passes through the film patterned retarder 10 and that passes through the film patterned retarder 20 will slightly change. However, the ratios of the distances that the light passes through the film patterned retarder 10 and that passes through the film patterned retarder 20 may still be kept approximately identical. Therefore, the phenomenon of mutual interference between the left and right eyes is eliminated.
It should be noted that, in other implementation modes, the position of the set point may also be changed. Generally, the set point may be located on a normal plane where the central point of the curved surface display is located. In this case, when the curvature of the film patterned retarder in the 3D glasses is appropriately adjusted, the technical problem of mutual interference between the left and right eyes can be solved, and the display effect of 3D display can be improved.
As shown in
The arc center of the curved surface display is a position with the best view angle, and this embodiment will be illustrated by taking this condition as an example. As shown in
When the relative position between the 3D glasses 1 and the curved surface display 2 changes, the distances that the light passes through the film patterned retarder 10 and that passes through the film patterned retarder 20 will slightly change. However, the ratios of the distances that the light passes through the film patterned retarder 10 and that passes through the film patterned retarder 20 may still be kept approximately identical. Therefore, the phenomenon of mutual interference between the left and right eyes is eliminated.
It should be noted that, in other implementation modes, the position of the set point may also be changed. Generally, the set point may be located on a normal plane where the central point of the curved surface display is located. In this case, when the curvature of the film patterned retarder in the 3D glasses is appropriately adjusted, the technical problem of mutual interference between the left and right eyes can be solved, and the display effect of 3D display can be improved.
In addition to the above-mentioned implementation mode, Embodiment I may also be combined with Embodiment II, so that the film patterned retarder in the 3D glasses has a certain curvature, with the thickness thereof being gradually increased from both ends to the middle thereof. In this case, however, the changing rates of the curvature and thickness of the film patterned retarder should be appropriately reduced.
The embodiment of the present disclosure further provides a curved surface display for use with 3D glasses to realize 3D display, including a film patterned retarder having a curved surface. The film patterned retarder is configured in such a way that, the ratios of the distances that light paths from different points on the curved surface display to a set point pass through the film patterned retarder to the distances that said light paths pass through a film patterned retarder in the 3D glasses are identical or approximately identical.
When the curved surface display according to the present disclosure is cooperatively used with the 3D glasses, the ratios of the distances that the light paths from different points on the curved surface display to the set point (where human eyes are located) pass through the film patterned retarder in the curved surface display to the distances that said light paths pass through the film patterned retarder in the 3D glasses are identical or approximately identical. Therefore, the technical problem of mutual interference between left and right eyes can be solved, and the display effect of 3D display can be improved.
As shown in
The arc center of the curved surface display is a position with the best view angle, and this embodiment is illustrated by taking this condition as an example. As shown in
When the relative position between the 3D glasses 1 and the curved surface display 2 changes, the distances that the light passes through the film patterned retarder 10 and that passes through the film patterned retarder 20 will slightly change. However, the ratios of the distances that the light passes through the film patterned retarder 10 and that passes through the film patterned retarder 20 may still be kept approximately identical. Therefore, the phenomenon of mutual interference between the left and right eyes is eliminated.
It should be noted that, in other implementation modes, the position of the set point may also be changed. Generally, the set point may be located on a normal plane where the central point of the curved surface display is located. In this case, when the curvature of the film patterned retarder in the 3D glasses is appropriately adjusted, the technical problem of mutual interference between the left and right eyes can be solved, and the display effect of 3D display can be improved.
This embodiment of the present disclosure provides a 3D display apparatus, which may include a curved surface display and the 3D glasses according to Embodiment I or Embodiment II. The curved surface display may be a traditional curved surface display, which is provided with a curved film patterned retarder with uniform thickness.
The 3D display apparatus provided by the embodiment of the present disclosure may also include 3D glasses and the curved surface display according to Embodiment III. The 3D glasses may be traditional 3D glasses, which are provided with a planar film patterned retarder with uniform thickness.
The 3D display apparatus provided by the embodiment of the present disclosure may also include the 3D glasses according to Embodiment I or Embodiment II, and the curved surface display according to Embodiment III. Of course, the curvature and thickness of the film patterned retarder in the 3D glasses and the thickness of the film patterned retarder in the curved surface display should be adjusted correspondingly, so that the ratios of the distances that light in different angles passes through the two film patterned retarders are identical or approximately identical.
The 3D display apparatus provided by this embodiment of the present disclosure possesses the same technical features as the 3D glasses provided by Embodiment I or Embodiment II or the curved surface display provided by Embodiment III. Therefore, the same technical problem can be solved, and the same technical effect can be achieved.
Although the implementation modes provided by the present disclosure are described above, they are those merely adopted to facilitate understanding of the present disclosure, rather than limiting the present disclosure. Any skilled in the art to which the present disclosure pertains may make any modifications and variations on implementation forms and details without departing from the disclosed spirit and scope of the present disclosure. The scope of the present disclosure shall be subject to the scope defined by the appended claims.
Number | Date | Country | Kind |
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2014101138756.2 | Apr 2014 | CN | national |
Filing Document | Filing Date | Country | Kind |
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PCT/CN2014/076624 | 4/30/2014 | WO | 00 |