IP Library Granted Patent US 10,282,034
Granted Patent B2
US 10,282,034 · App. 15/588,646 · Granted May 7, 2019

Touch sensitive curved and flexible displays

Inventors: Thomas Eriksson (Stockholm, SE); Alexander Jubner (Spånga, SE); Rozita Teymourzadeh (Upplands Väsby, SE); Stefan Holmgren (Sollentuna, SE); Lars Sparf (Vällingby, SE); Bengt Henry Hjalmar Edlund (Segeltorp, SE); Richard Berglind (Älvsjö, SE)
Assignee: Neonode Inc.
G06F3/0421G06F3/017G06F3/041G06F3/0412G06F3/0416G06F2203/04102G06F2203/04103G06F2203/04104G09G2380/02
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Quick Facts
Patent No.
US 10,282,034
App. No.
15/588,646
Granted
May 7, 2019
Kind
B2
Abstract

A touch system with a curved touch surface, including light emitters projecting light beams over and across the curved surface, such that at least some of the light beams are incident upon and reflected by the curved surface, light detectors detecting reflections, by a reflective object touching the curved surface, lenses mounted such that (i) there is a particular angle of entry at which each light detector receives a maximal light intensity, and (ii) there are target positions, associated with emitter-detector pairs, on the curved surface, whereby light beams emitted by the light emitter of that pair are reflected by the object into the lens corresponding to the light detector of that pair at the particular angle of entry, and a processor calculating a location of the object touching the curved surface by determining an emitter-detector pair that detects a maximal amount of light, and identifying the associated target position.

Claims (25)

1. A touch system with a curved touch surface, comprising:

a housing;

a curved surface near said housing, the curved surface being connected to a flat surface that separates the curved surface from said housing;

light emitters mounted in said housing projecting light beams out of said housing over and across said curved surface, such that at least some of the light beams are incident upon and reflected by said curved surface when crossing over said curved surface;

light detectors mounted in said housing detecting reflections, by a reflective object touching said curved surface, of the light beams projected by said light emitters;

lenses mounted and oriented in said housing relative to said light emitters and to said light detectors such that (i) there is a particular angle of entry at which each light detector receives a maximal light intensity when light beams enter a lens corresponding to the light detector at the particular angle of entry, and (ii) there are target positions, associated with emitter-detector pairs, on said curved surface, whereby for each emitter-detector pair, when the object is located at the target position associated with the emitter-detector pair, then light beams emitted by the light emitter of that pair are reflected by the object into the lens corresponding to the light detector of that pair at the particular angle of entry; and

a processor connected to said light emitters and to said light detectors, synchronously co-activating emitter-detector pairs, and calculating a location of the object touching said curved surface by determining an emitter-detector pair among the co-activated emitter-detector pairs, for which the light detector of the pair detects a maximal amount of light, and by identifying the target position associated with the pair.

2. The touch system of claim 1 , wherein said curved surface is retractable into said housing.

3. The touch system of claim 1 , wherein at least some of the light beams reflected by the object are incident upon and reflected by said curved surface while passing over said curved surface toward said light detectors.

4. The touch system of claim 1 , wherein said processor calculates the location of the object by determining additional target positions associated with co-activated emitter-detector pairs that neighbor the target position identified by said processor, and by calculating a weighted average of the target position and the additional target positions, wherein the target position and the additional target positions' weights in the average are based on the intensities of the reflected light beams detected by the light detectors of the pairs to which the positions are associated.

5. The touch system of claim 1 , wherein said curved surface is the upper surface of a display device.

6. The touch system of claim 1 , wherein said flat surface and said curved surface form a single object.

7. The touch system of claim 1 , wherein said flat surface is the upper surface of a display device.

8. A touch system with a flexible touch surface, comprising:

a housing;

a surface near said housing, comprising:

a first portion that is flexible; and

a second portion that is flat, the second portion being nearer to said housing that said first portion;

light emitters mounted in said housing projecting light beams out of said housing over and across said surface such that, when said first portion of said surface is concavely flexed, at least some of the light beams are incident upon and reflected by said first portion of said surface as they cross over said surface;

light detectors mounted in said housing detecting reflections, by a reflective object touching said surface, of the light beams projected by said emitters;

lenses mounted and oriented in said housing relative to said light emitters and to said light detectors such that (i) there is a particular angle of entry at which each light detector receives a maximal light intensity when light beams enter a lens corresponding to the light detector at the particular angle of entry, and (ii) there are target positions, associated with emitter-detector pairs, on said flexible surface, whereby for each emitter-detector pair, when the object is located at the target position associated with the emitter-detector pair, then light beams emitted by the light emitter of that pair are reflected by the object into the lens corresponding to the light detector of that pair at the particular angle of entry; and

a processor connected to said light emitters and to said light detectors, synchronously co-activating emitter-detector pairs, and calculating a location of the object touching said flexible surface by determining an emitter-detector pair among the co-activated emitter-detector pairs, for which the light detector of the pair detects a maximal amount of light, and by identifying the target position associated with the pair.

9. The touch system of claim 8 , wherein said surface is retractable into said housing.

10. The touch system of claim 8 , wherein said processor calculates the location of the object by determining additional target positions associated with co-activated emitter-detector pairs that neighbor the target position identified by said processor, and by calculating a weighted average of the target position and the additional target positions, wherein the target position and the additional target positions' weights in the average are based on the intensities of the reflected light beams detected by the light detectors of the pairs to which the positions are associated.

11. The touch system of claim 8 , wherein said surface is the upper surface of a display device.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 31, 2017
From: ERIKSSON, THOMAS; JUBNER, ALEXANDER; TEYMOURZADEH, ROZITA; HOLMGREN, STEFAN; SPARF, LARS; EDLUND, BENGT HENRY HJALMAR; BERGLIND, RICHARD
To: NEONODE INC.
Reel/Frame 042643/0609 →
Continuity (29)
Continuation In Part 15000815 · Jan 19, 2016
Continuation In Part 14960369 · Dec 5, 2015
Continuation In Part 14880231 · Oct 11, 2015
Continuation In Part 14791414 · Jul 4, 2015
Continuation In Part 14726533 · May 31, 2015
Continuation In Part 14630737 · Feb 25, 2015
Continuation 14588462 · Jan 2, 2015
Continuation In Part 14555731 · Nov 28, 2014
Division 14312787 · Jun 24, 2014
Continuation 14311366 · Jun 23, 2014
Continuation PCTUS2014040579 · Jun 3, 2014
Continuation PCTUS2014040112 · May 30, 2014
Continuation 14140635 · Dec 26, 2013
Continuation In Part 13775269 · Feb 25, 2013
Continuation 13732456 · Jan 2, 2013
Provisional Application 62462034 · Feb 22, 2017
Provisional Application 62425087 · Nov 22, 2016
Provisional Application 62266011 · Dec 11, 2015
Provisional Application 62197813 · Jul 28, 2015
Provisional Application 62107536 · Jan 26, 2015
Provisional Application 62054353 · Sep 23, 2014
Provisional Application 61986341 · Apr 30, 2014
Provisional Application 61972435 · Mar 31, 2014
Provisional Application 61929992 · Jan 22, 2014
Provisional Application 61846089 · Jul 15, 2013
Provisional Application 61838296 · Jun 23, 2013
Provisional Application 61828713 · May 30, 2013
Provisional Application 61713546 · Oct 14, 2012
Related Publication 20170262134A1 · Sep 14, 2017
Cited By (2)
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