IP Library Granted Patent US 9,955,143
Granted Patent B2
US 9,955,143 · App. 14/247,979 · Granted Apr 24, 2018

Autostereoscopic displays

Inventors: Richard A. Muller (Berkeley, CA); Neal I. Weinstock (Brooklyn, NY)
Assignee: SOLIDDD CORP.
H04N13/0404H04N13/0409H04N13/0422H04N13/0447
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Quick Facts
Patent No.
US 9,955,143
App. No.
14/247,979
Granted
Apr 24, 2018
Kind
B2
Abstract

An aspect provides a method of modifying a display including a plurality of pixels wherein each of the pixels is less than twice as tall as the pixel is wide includes modifying the display to create a plurality of modified pixels wherein each of the modified pixels is at least twice as tall as the modified pixel is wide, comprising at least one of a) masking of at least a portion of the display, b) optically shifting a perceived position of at least one row of sub-pixels of the display, and c) changing the addressing of sub-pixels of the display. Other aspects are described and claimed.

Claims (44)

1. A method of modifying a display including a plurality of pixels wherein each of the pixels is less than twice as tall as the pixel is wide, each pixel comprising a plurality of sub-pixels, the method comprising:

modifying the display to create a plurality of modified vertical pixels comprising a plurality of sub-pixels, wherein each of the modified vertical pixels is at least twice as tall as the modified vertical pixel is wide and wherein the modifying comprises modifying a perceived position of the plurality of sub-pixels within a pixel;

the modifying comprising masking of at least a portion of the display wherein the masking of at least a portion of the display comprises rotating the viewing orientation of the display by 90 degrees, masking at least a portion of each of the plurality of pixels, and offsetting the masked at least a portion of each of the plurality of pixels by a predetermined value.

2. The method of claim 1 further comprising changing the addressing of sub-pixels of the display after the masking at least a portion of the display.

3. The method of claim 1 wherein each of the plurality of modified vertical pixels is formed from sub-pixels of different colors, wherein like-colored sub-pixels are arranged in a vertical stripe pattern.

4. The method of claim 1 wherein each of the plurality of modified vertical pixels is formed from sub-pixels of different colors, wherein like-colored sub-pixels are arranged in a vertical stripe pattern.

5. The method of claim 4 wherein the sub-pixels comprise red sub-pixels, green sub-pixels and blue sub-pixels.

6. The method of claim 1 further comprising optically shifting a perceived position of at least one row of sub-pixels of the display and wherein the perceived position of at least one row of sub-pixels of the display is optically shifted by overlaying a prism strip over the at least one row and wherein the perceived position of the at least one row of sub-pixels comprises a sub-pixel arrangement wherein sub-pixels comprising a same sub-pixel type are arranged in a diagonal grouping.

7. The method of claim 1 further comprising optically shifting a perceived position of at least one row of sub-pixels of the display and wherein the perceived position of a plurality of rows of sub-pixels of the display is optically shifted by overlaying a prism strip over more than one of the plurality of rows of sub-pixels.

8. The method of claim 1 further comprising optically shifting a perceived position of at least one row of sub-pixels of the display and wherein optically shifting a perceived position of the at least one row of sub-pixels of the display is combined with another optical function in a single system.

9. The display of claim 8 wherein optically shifting a perceived position of the at least one row of sub-pixels of the display is combined with view selection in a single optical film.

10. The method of claim 1 further comprising optically shifting a perceived position of at least one row of sub-pixels of the display and wherein a perceived position of a plurality of rows of sub-pixels of the display is optically shifted to cause a display comprising sub-pixels of different colors, wherein like-colored sub-pixels are arranged in a vertical stripe pattern, to be perceived as display wherein like-colored sub-pixels are arranged in a generally diagonal pattern.

11. The method of claim 1 wherein each of the modified vertical pixels includes two or more sub-pixels that are vertically aligned.

12. The method of claim 1 wherein the modified display provides two or more views, each of views comprising one or more modified vertical pixels.

13. The method of claim 12 further comprising providing a view selector in operative connection with the modified display that, for each of two or more viewing perspectives, makes one of the views visible.

14. The method of claim 13 wherein the view selector comprises a lenticular array, parallax barriers or a microlens array.

15. The method of claim 1 wherein each of the modified vertical pixels comprises two or more sub-pixels that are vertically displaced from one another.

16. The method of claim 1 , wherein the sub-pixels comprise sub-pixels of different colors, and wherein the modifying a position of the plurality of sub-pixels comprises modifying the position of the sub-pixels such that the sub-pixels appear on the display to be rows of like colored sub-pixels.

17. An autostereoscopic display comprising:

a plurality of modified vertical pixels, wherein each modified vertical pixel comprises a plurality of sub-pixels;

two or more views, each of which includes one or more the plurality of modified vertical pixels; and

a view selector that, for each of two or more viewing perspectives, makes one of the views visible;

wherein each of the modified vertical pixels is at least twice as tall as the modified vertical pixel is wide, and wherein the modified vertical pixels are formed by modifying a display including a plurality of pixels wherein each of the plurality of pixels is less than twice as tall as the pixel is wide to create the plurality of modified vertical pixels and wherein the modifying comprises modifying a position of the plurality of sub-pixels within a pixel;

the modifying the display comprising masking of at least a portion of the display wherein the masking of at least a portion of the display comprises rotating the viewing orientation of the display by 90 degrees, masking at least a portion of each of the plurality of pixels, and offsetting the masked at least a portion of each of the plurality of pixels by a predetermined value.

18. The display of claim 17 wherein the addressing of the sub-pixels of the display is changed after the masking of at least a portion of the display.

19. The display of claim 17 wherein each of the plurality of modified vertical pixels is formed from sub-pixels of different colors, and wherein like-colored sub-pixels are arranged in a vertical stripe pattern.

20. The display of claim 17 wherein each of the plurality of modified vertical pixels is formed from sub-pixels of different colors, wherein like-colored sub-pixels are arranged in a vertical stripe pattern.

21. The display of claim 20 wherein the sub-pixels comprise red sub-pixels, green sub-pixels and blue sub-pixels.

22. The display of claim 17 further comprising optically shifting a perceived position of at least one row of sub-pixels of the display and wherein the perceived position of at least one row of sub-pixels of the display is optically shifted by overlaying a prism strip over the at least one row.

23. The display of claim 17 further comprising optically shifting a perceived position of at least one row of sub-pixels of the display and wherein the perceived position of a plurality of rows of sub-pixels of the display is optically shifted by overlaying a prism strip over more than one of the plurality of rows of sub-pixels.

24. The display of claim 22 wherein a system for optically shifting a perceived position of the at least one row of sub-pixels of the display also performs another optical function.

25. The display of claim 22 wherein an optical film optically shifts a perceived position of the at least one row of sub-pixels of the display and also function as the view selector.

26. The display of claim 17 further comprising optically shifting a perceived position of at least one row of sub-pixels of the display and wherein a perceived position of a plurality of rows of sub-pixels of the display is optically shifted to cause a display comprising sub-pixels of different colors, wherein like-colored sub-pixels are arranged in a vertical stripe pattern, to be perceived as display wherein like-colored sub-pixels are arranged in a generally diagonal pattern.

27. The display of claim 17 wherein each of the pixels includes two or more sub-pixels that are vertically aligned.

28. The display of claim 17 wherein the view selector comprises a lenticular array, parallax barriers or a microlens array.

29. The display of claim 17 wherein each of the modified vertical pixels comprises two or more sub-pixels that are vertically displaced from one another.

30. The display of claim 17 , wherein the sub-pixels comprise sub-pixels of different colors, and wherein the modifying a position of the plurality of sub-pixels comprises modifying the position of the sub-pixels such that the sub-pixels appear on the display to be rows of like colored sub-pixels.

31. A display comprising:

a plurality of pixels wherein each of the pixels is less than twice as tall as the pixel is wide; and

at least one mechanism that modifies the display to create a plurality of modified vertical pixels by masking at least a portion of the display, wherein each of the modified vertical pixels is at least twice as tall as the modified vertical pixel is wide, wherein the masking at least a portion of the display comprises rotating the viewing orientation of the display by 90 degrees, masking at least a portion of each of the plurality of pixels, and offsetting the masked at least a portion of each of the plurality of pixels by a predetermined value.

32. A display comprising:

a plurality of pixels wherein each of the pixels is less than twice as tall as the pixel is wide;

at least one mechanism that modifies the display to create a plurality of modified vertical pixels by masking at least a portion of the display, wherein each of the modified vertical pixels is at least twice as tall as the modified vertical pixel is wide, wherein the masking at least a portion of the display comprises rotating the viewing orientation of the display by 90 degrees, masking at least a portion of each of the plurality of pixels, and offsetting the masked at least a portion of each of the plurality of pixels by a predetermined value;

and at least one optical mechanism that modifies the display by shifting a perceived position of at least one row of sub-pixels of the display to create a plurality of modified vertical pixels, wherein each of the modified vertical pixels is at least twice as tall as the modified vertical pixel is wide.

Assignments (2)
SECURITY INTEREST Recorded Aug 2, 2016
From: SOLIDDD CORP
To: GLOBAL CAPITAL GROUP
Reel/Frame 039312/0525 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 8, 2014
From: MULLER, RICHARD A.; WEINSTOCK, NEAL I.
To: SOLIDDD CORP.
Reel/Frame 032629/0419 →
Continuity (2)
Provisional Application 61810250 · Apr 9, 2013
Related Publication 20140300714A1 · Oct 9, 2014