IP Library Granted Patent US 9,885,459
Granted Patent B2
US 9,885,459 · App. 13/931,935 · Granted Feb 6, 2018

Pattern projection using micro-lenses

Inventors: Barak Freedman (Binyamina, IL); Alexander Shpunt (Tel Aviv, IL); Meir Machlin (Ashdod, IL); Yoel Arieli (Jerusalem, IL)
Assignee: APPLE INC.
F21V5/04G01B11/25G06K9/2036G06T7/521G06K2209/40H04N13/04
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Quick Facts
Patent No.
US 9,885,459
App. No.
13/931,935
Granted
Feb 6, 2018
Kind
B2
Abstract

An illumination assembly includes a light source, which is configured to emit optical radiation. A transparency containing a plurality of micro-lenses, which are arranged in a non-uniform pattern and are configured to focus the optical radiation to form, at a focal plane, respective focal spots in the non-uniform pattern. Optics are configured to project the non-uniform pattern of the focal spots from the focal plane onto an object.

Claims (27)

1. An illumination assembly, comprising:

a light source, which is configured to emit optical radiation;

a transparency containing a plurality of micro-lenses, which are arranged in a non-uniform pattern and are configured to focus the optical radiation to form, at a focal plane, respective bright focal spots interspersed with dark areas in the non-uniform pattern, such that each of the micro-lenses forms a corresponding one of the bright focal spots at the focal plane; and

optics configured to project the non-uniform pattern of the bright focal spots interspersed with dark areas from the focal plane onto an object, wherein the projected pattern has a duty cycle, given by a density of the micro-lenses per unit area, that is less than 1/e.

2. The assembly according to claim 1 , wherein the non-uniform pattern in which the micro-lenses are arranged is an uncorrelated pattern.

3. The assembly according to claim 2 , wherein the uncorrelated pattern is a random or pseudo-random pattern.

4. The assembly according to claim 1 , wherein at least some of the micro-lenses have non-uniform focal lengths.

5. The assembly according to claim 4 , wherein the at least some of the micro-lenses have different focal lengths, and wherein the optics are configured to project the non-uniform pattern of the focal spots so that the pattern that is projected on the object varies with distance from the illumination assembly.

6. A method for illumination, comprising:

transilluminating a transparency containing a plurality of micro-lenses arranged in a non-uniform pattern,

wherein the micro-lenses are configured to focus the optical radiation so as to form, at a focal plane, respective bright focal spots interspersed with dark areas in the non-uniform pattern, such that each of the micro-lenses forms a corresponding one of the bright focal spots at the focal plane; and

projecting the non-uniform pattern of the bright focal spots interspersed with dark areas from the focal plane onto an object, wherein the projected pattern has a duty cycle, given by a density of the micro-lenses per unit area, that is less than 1/e.

7. The method according to claim 6 , wherein the non-uniform pattern in which the micro-lenses are arranged is an uncorrelated pattern.

8. The method according to claim 7 , wherein the uncorrelated pattern is a random or pseudo-random pattern.

9. The method according to claim 6 , wherein at least some of the micro-lenses have non-uniform focal lengths.

10. The method according to claim 9 , wherein the at least some of the micro-lenses have different focal lengths, and wherein projecting the non-uniform pattern comprises projecting the focal spots so that the pattern that is projected on the object varies with distance from the transparency.

11. An illumination assembly, comprising:

a diffuser;

a light source, which is configured to transilluminate the diffuser with optical radiation;

a transparency containing an array of micro-lenses, which are arranged to focus the optical radiation transmitted through the diffuser, thereby generating a pattern of bright spots interspersed with dark areas, such that each of the micro-lenses forms a corresponding one of the bright focal spots at a focal plane; and

projection optics, which are arranged to project the pattern of bright spots interspersed with dark areas onto an object, wherein the projected pattern has a duty cycle, given by a density of the micro-lenses per unit area, that is less than 1/e.

12. The assembly according to claim 11 , wherein the projection optics are configured to project the pattern so that the pattern varies with distance from the illumination assembly.

13. A method for illumination, comprising:

transilluminating a diffuser with optical radiation;

focusing the optical radiation transmitted through the diffuser using an array of micro-lenses, thereby generating a pattern of bright spots interspersed with dark areas, such that each of the micro-lenses forms a corresponding one of the bright focal spots at a focal plane; and

projecting the pattern of bright spots interspersed with dark areas onto an object, wherein the projected pattern has a duty cycle, (liven by a density of the micro-lenses per unit area, that is less than 1/e.

14. The method according to claim 13 , wherein the projected pattern varies with distance from the array of micro-lenses.

Assignments (3)
CORRECTIVE ASSIGNMENT TO CORRECT THE APPLICATION # 13840451 AND REPLACE IT WITH CORRECT APPLICATION # 13810451 PREVIOUSLY RECORDED ON REEL 034293 FRAME 0092. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded May 11, 2015
From: PRIMESENSE LTD.
To: APPLE INC.
Reel/Frame 035624/0091 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 19, 2014
From: PRIMESENSE LTD.
To: APPLE INC.
Reel/Frame 034293/0092 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 30, 2013
From: FREEDMAN, BARAK; SHPUNT, ALEXANDER; MACHLIN, MEIR; ARIELI, YOEL
To: PRIMESENSE LTD.
Reel/Frame 030716/0185 →
Continuity (3)
Continuation 12522171
Provisional Application 61016832 · Dec 27, 2007
Related Publication 20130294089A1 · Nov 7, 2013