IP Library › Granted Patent US 11,971,743
Granted Patent B2
US 11,971,743 · App. 17/545,909 · Granted Apr 30, 2024

Deformable electronic device with deformation estimation system and corresponding methods

Inventors: Vivek K Tyagi (Chicago, IL); Chao Ma (Evanston, IL); Joseph V Nasti (Chicago, IL); Kevin Dao (Skokie, IL); Nikhil Ambha Madhusudhana (Chicago, IL)
Assignee: Motorola Mobility LLC
G06F1/1616G06F1/1652G06F1/1681
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Quick Facts
Patent No.
US 11,971,743
App. No.
17/545,909
Granted
Apr 30, 2024
Kind
B2
Abstract

A deformable electronic device includes a flexible display, one or more sensors, at least one imager, and one or more processors. The one or more sensors detect deformation of the deformable electronic device. The at least one imager, which is disposed beneath the flexible display, captures one or more images of an identifiable marker of the flexible display in response to the one or more sensors detecting the deformation of the deformable electronic device. The one or more processors estimate an amount of the deformation of the deformable electronic device as a function of how far the identifiable marker of the flexible display translates across the at least one imager during the deformation of the deformable electronic device.

Claims (41)

1. A deformable electronic device, comprising:

a flexible display;

a housing spanning an entire major face of the flexible display without borders that picture frame the flexible display;

one or more sensors detecting deformation of the deformable electronic device;

at least one imager, disposed beneath the flexible display and capturing one or more images of an identifiable marker of the flexible display in response to the one or more sensors detecting the deformation of the deformable electronic device; and

one or more processors estimating an amount of the deformation of the deformable electronic device as a function of how far the identifiable marker of the flexible display translates across the at least one imager during the deformation of the deformable electronic device;

wherein:

the at least one imager comprises two imagers each positioned beneath the flexible display;

flexible display comprises a first pixel portion situated above a first imager of the two imagers and a second pixel portion situated at areas other than those positioned above the first imager;

the first pixel portion comprises a combination of transparent organic light emitting diode pixels and reflective organic light emitting diode pixels; and

the first pixel portion is centrally situated atop the first imager when the deformable electronic device is undeformed and is offset toward an edge of the first imager when the deformable electronic device is fully deformed.

2. The deformable electronic device of claim 1 , wherein the identifiable marker comprises a hardware component of the flexible display.

3. The deformable electronic device of claim 1 , wherein the identifiable marker comprises content presented on the flexible display in response to instructions from the one or more processors.

4. The deformable electronic device of claim 1 , the at least one imager capturing the one or more images of the identifiable marker while operating in a low-light mode of operation.

5. The deformable electronic device of claim 1 , the at least one imager ceasing capture of the one or more images in response to the one or more sensors detecting cessation of the deformation of the deformable electronic device.

6. The deformable electronic device of claim 5 , the at least one imager capturing the one or more images of the identifiable marker only during the deformation of the deformable electronic device.

7. The deformable electronic device of claim 5 , the at least one imager also capturing other images of the identifiable marker when the deformable electronic device is configured in a predefined geometry.

8. The deformable electronic device of claim 1 , wherein the flexible display is exposed both when the deformable electronic device is in an axially displaced open position and when the deformable electronic device is in a fully deformed configuration.

9. The deformable electronic device of claim 1 , wherein the identifiable marker comprises a group of three light emitting components recognizable by the first imager.

10. The deformable electronic device of claim 1 , the one or more processors estimating the amount of the deformation of the deformable electronic device by comparing least one image captured by the at least one imager to at least one other image to determine how far the identifiable marker of the flexible display has moved during the deformation of the deformable electronic device.

11. The deformable electronic device of claim 1 , wherein the second pixel portion comprises only the reflective organic light emitting diode pixels.

12. The deformable electronic device of claim 1 , wherein the one or more processors are configured to cause the transparent organic light emitting diode pixels of the first pixel portion to cease emitting light while the one or more images are captured.

13. The deformable electronic device of claim 1 , wherein the housing comprises a first device housing separated from a second device housing by a hinge.

14. The deformable electronic device of claim 13 , wherein the first device housing is pivotable about the hinge relative to the second device housing between an axially displaced open position and a closed position.

15. A deformable electronic device, comprising:

a flexible display;

a housing spanning an entire major face of the flexible display without borders that picture frame the flexible display;

one or more sensors detecting deformation of the deformable electronic device;

at least one imager, disposed beneath the flexible display and capturing one or more images of an identifiable marker of the flexible display in response to the one or more sensors detecting the deformation of the deformable electronic device; and

one or more processors estimating an amount of the deformation of the deformable electronic device as a function of how far the identifiable marker of the flexible display translates across the at least one imager during the deformation of the deformable electronic device;

wherein:

the at least one imager comprises two imagers each positioned beneath the flexible display;

flexible display comprises a first pixel portion situated above a first imager of the two imagers and a second pixel portion situated at areas other than those positioned above the first imager;

the first pixel portion comprises a combination of transparent organic light emitting diode pixels and reflective organic light emitting diode pixels;

the first pixel portion is centrally situated atop the first imager when the deformable electronic device is undeformed and is offset toward an edge of the first imager when the deformable electronic device is fully deformed; and

the identifiable marker comprises is recognizable by the first imager.

16. The deformable electronic device of claim 15 , wherein the housing comprises a first device housing separated from a second device housing by a hinge.

17. The deformable electronic device of claim 16 , wherein the first device housing is pivotable about the hinge relative to the second device housing between an axially displaced open position and a closed position.

18. The deformable electronic device of claim 17 , wherein the identifiable marker translates across the at least one imager when the first device housing pivots about the hinge relative to the second device housing.

19. The deformable electronic device of claim 15 , wherein the identifiable marker comprises content being presented on the flexible display.

20. The deformable electronic device of claim 15 , wherein the device housing comprises a hinge that defines a service loop for the flexible display with the deformable electronic device is deformed.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 16, 2021
From: TYAGI, VIVEK K; MA, CHAO; NASTI, JOSEPH V; DAO, KEVIN; AMBHA MADHUSUDHANA, NIKHIL
To: MOTOROLA MOBILITY LLC
Reel/Frame 058406/0258 →
Continuity (1)
Related Publication 20230176612A1 · Jun 8, 2023
Cited By (1)
US 12,442,630