IP Library Granted Patent US 8,499,251
Granted Patent B2
US 8,499,251 · App. 12/350,049 · Granted Jul 30, 2013

Virtual page turn

Inventors: Georg Petschnigg (Seattle, WA); Jonathan Reed Harris (Redmond, WA); Joshua J. Hinds (Duvall, WA); Sabrina Boler (Seattle, WA)
Assignee: Microsoft Corporation
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Quick Facts
Patent No.
US 8,499,251
App. No.
12/350,049
Granted
Jul 30, 2013
Kind
B2
Abstract

One or more pages are displayed on a touch display. A page-turning gesture directed to a displayed page is recognized. Responsive to such recognition, a virtual page turn is displayed on the touch display. The virtual page turn actively follows the page-turning gesture. The virtual page turn curls a lifted portion of the page to progressively reveal a back side of the page while progressively revealing a front side of a subsequent page. A lifted portion of the page is given an increased transparency that allows the back side of the page to be viewed through the front side of the page. A page-flipping gesture quickly flips two or more pages.

Claims (45)

1. A digital reading device, comprising:

a touch display;

a logic subsystem operatively coupled to the touch display; and

a data-holding subsystem holding instructions executable by the logic subsystem to:

display a front side of a page on the touch display;

recognize a page-turning gesture directed to the page on the touch display; and

display a virtual page turn that actively follows the page-turning gesture, the virtual page turn curling a lifted portion of the page to progressively reveal a back side of the page while progressively revealing a front side of a subsequent page, the lifted portion of the page having an increased transparency that allows the back side of the page to be viewed through the front side of the page.

2. The digital reading device of claim 1 , were a corner of the page tracks an object performing the page-turning gesture as the object moves across the touch display.

3. The digital reading device of claim 1 , where the virtual page turn further curls the lifted portion of the page to progressively cover a back side of an opposing page.

4. The digital reading device of claim 3 , where the lifted portion of the page progressively covers the back side of the opposing page responsive to an object performing the page-turning gesture moving over a portion of the touch display that was displaying the opposing page.

5. The digital reading device of claim 3 , where the virtual page turn substantially fully covers a back side of the opposing page and substantially fully reveals the subsequent page if the page-turning gesture advances to completion.

6. The digital reading device of claim 1 , where the data-holding subsystem further holds instructions executable by the logic subsystem to:

recognize a reversal in the page-turning gesture; and

responsive to the reversal in the page-turning gesture, display a virtual page return that actively follows the page-turning gesture, the virtual page return uncurling a lifted portion of the page to progressively conceal a back side of the page while progressively concealing a front side of the subsequent page.

7. The digital reading device of claim 1 , where the data-holding subsystem further holds instructions executable by the logic subsystem to:

recognize a page-flipping gesture directed along an outer edge of the touch display; and

display, responsive to advancement of the page-flipping gesture, an accelerated flipping of pages.

8. The digital reading device of claim 1 , where the data-holding subsystem further holds instructions executable by the logic subsystem to:

recognize a shortcut in the page-turning gesture; and

responsive to the shortcut in the page-turning gesture, accelerating the virtual page turn ahead of an object performing the page-turning gesture to quickly complete the virtual page turn.

9. The digital reading device of claim 1 , where the increased transparency of the lifted portion of the page further allows the front side of the page to be viewed through the back side of the page.

10. A method of operating a computing device having a touch display with a first touch display region and a second touch display region, the method comprising:

displaying a back side of a first page on the first touch display region and a front side of a second page on the second touch display region;

recognizing a page-turning gesture directed to an outer corner of the second page; and

displaying, responsive to the page-turning gesture, a virtual page turn that actively follows the page-turning gesture, the virtual page turn curling a lifted portion of the second page to progressively reveal a back side of the second page while progressively revealing a front side of a third page and while progressively covering the back side of the first page, the lifted portion of the second page having an increased transparency that allows the back side of the second page to be viewed through the front side of the second page.

11. The method of claim 10 , were the outer corner of the second page tracks an object performing the page-turning gesture as the object moves across the first touch display region and the second touch display region.

12. The method of claim 10 , where the lifted portion of the second page progressively covers the back side of the first page responsive to an object performing the page-turning gesture moving over a portion of the second touch display region that was displaying the first page.

13. The method of claim 10 , where the virtual page turn substantially fully covers a back side of the first page with the second page and substantially fully reveals the third page if the page-turning gesture advances to completion.

14. The method of claim 10 , further comprising:

recognizing a reversal in the page-turning gesture; and

responsive to the reversal in the page-turning gesture, displaying a virtual page return that actively follows the page-turning gesture, the virtual page return uncurling a lifted portion of the second page to progressively conceal a back side of the second page while progressively concealing a front side of the third page.

15. The method of claim 10 , further comprising:

recognizing a shortcut in the page-turning gesture; and

responsive to the shortcut in the page-turning gesture, accelerating the virtual page turn ahead of an object performing the page-turning gesture to quickly complete the virtual page turn.

16. A digital reading device, comprising:

a touch display;

a logic subsystem operatively coupled to the touch display; and

a data-holding subsystem holding instructions executable by the logic subsystem to:

display a front side of a page on the touch display;

recognize a page-turning gesture directed to the page on the touch display; and

display a virtual page turn that actively follows the page-turning gesture, the virtual page turn curling a lifted portion of the page to progressively reveal a back side of the page while progressively revealing a front side of a subsequent page, the lifted portion of the page having an increased transparency that allows the front side of the page to be viewed through the back side of the page.

17. The digital reading device of claim 16 , were a corner of the page tracks an object performing the page-turning gesture as the object moves across the touch display.

18. The digital reading device of claim 16 , where the virtual page turn further curls the lifted portion of the page to progressively cover a back side of an opposing page.

19. The digital reading device of claim 18 , where the lifted portion of the page progressively covers the back side of the opposing page responsive to an object performing the page-turning gesture moving over a portion of the touch display that was displaying the opposing page.

20. The digital reading device of claim 18 , where the virtual page turn substantially fully covers a back side of the opposing page and substantially fully reveals the subsequent page if the page-turning gesture advances to completion.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 9, 2014
From: MICROSOFT CORPORATION
To: MICROSOFT TECHNOLOGY LICENSING, LLC
Reel/Frame 034564/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 9, 2009
From: PETSCHNIGG, GEORG; HARRIS, JONATHAN REED; HINDS, JOSHUA J.; BOLER, SABRINA
To: MICROSOFT CORPORATION
Reel/Frame 022524/0267 →
Continuity (1)
Related Publication 20100175018A1 · Jul 8, 2010