IP Library Granted Patent US 7,268,950
Granted Patent B2
US 7,268,950 · App. 10/993,423 · Granted Sep 11, 2007

Variable optical arrays and variable manufacturing methods

Assignee: Merlin Technology Limited Liability Company
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Quick Facts
Patent No.
US 7,268,950
App. No.
10/993,423
Granted
Sep 11, 2007
Kind
B2
Abstract

The invention divides the lens focusing process into two or more surfaces that incorporate multiple curved axial optic elements on each surface. The axial optics may be manufactured by molding, machining, or by suspended film. If suspended film is used, then both sides of an optic may have a suspended film that is transparent. Alternatively, one side of the suspend film optic may use a reflective film.

Claims (42)

1. An array of independent axial optical elements, comprising:

a film having a shape which conforms to the shape of an array of optical elements, said film comprised of a flexible sheet of material displaced into said shape; and

solidified fill material affixed to said film

wherein said fill material secures said film in said shape.

2. An array of independent axial optical elements according to claim 1 , wherein said array of independent axial optical elements has a profile selected from the following group: sinusoidal; curved; baffled; flat; apex-forming; and non-uniform curved.

3. An array of independent axial optical elements according to claim 1 , wherein:

said film is a reflective film.

4. An array of independent axial optical elements according to claim 3 , wherein said array of independent axial optical elements has a profile selected from the following group: sinusoidal; curved; baffled; flat; apex-forming; and non-uniform curved.

5. A method of manufacturing an optical array, comprising:

suspending a film on a tool;

applying a differential pressure to said film, said differential pressure moving portions of said film into a shape which conforms to the shape of an array of axial optical elements; and

applying a filler material to one side of said film to form an optical array having said shape.

6. A method of manufacturing an optical array according to claim 5 , wherein said optical array has a profile selected from the following group: sinusoidal, curved; baffled; flat; apex-forming; and non-uniform curved.

7. A method of manufacturing an optical array according to claim 5 , wherein said film suspended on said tool is transparent.

8. A method of manufacturing an optical array according to claim 7 , wherein said optical array has a profile selected from the following group: sinusoidal; curved; baffled; flat; apex-forming; and non-uniform curved.

9. A method of manufacturing an optical array according to claim 5 , wherein said film suspended on said tool is reflective.

10. A method of manufacturing an optical array according to claim 9 , wherein said optical array has a profile selected from the following group: sinusoidal; curved; baffled; flat; baffled; flat; apex-forming; and non-uniform curved.

11. An array of independent axial optical elements according to claim 1 , wherein:

said film is a transparent film.

12. An array of independent axial optical elements according to claim 11 , wherein said array of independent axial optical elements has a profile selected from the following group: sinusoidal; curved; baffled; flat; apex-forming; and non-uniform curved.

13. An array of independent axial optical elements, comprising:

a flexible sheet of material displaced into a shape which conforms to the shape of a curved axial optic by application of a differential pressure to said flexible sheet of material; and

a fill material applied to one side of said displaced sheet of flexible material, said fill material solidifying to permanently secure said sheet of flexible material displaced into said shape, thereby forming an array of independent axial optical elements.

14. An array of independent axial optical elements according to claim 13 , wherein said array of independent axial optical elements has a profile selected from the following group: sinusoidal; curved; baffled; flat; apex-forming; and non-uniform curved.

15. An array of independent axial optical elements according to claim 14 , wherein said flexible sheet of material is a reflective film.

16. An array of independent axial optical elements according to claim 14 , wherein said flexible sheet of material is a transparent film.

17. A method of manufacturing an optical array, comprising:

suspending a sheet of flexible material on a tool;

applying a differential pressure to said sheet of flexible material to move portions of said sheet of flexible material into a curved position relative to said tool; and

applying a filler material to one side of said sheet of flexible material to form an optical array comprised of an array of axial optical elements.

18. A method of manufacturing an optical array according to claim 17 , and further comprising:

selecting a profile from the following group: sinusoidal; curved; baffled; flat; apex-forming and non-uniform curved; and

applying said differential pressure such that said sheet of flexible material is moved into said selected profile relative to said tool.

19. A method of manufacturing an optical array according to claim 18 , wherein said sheet of flexible material suspended on said tool is a transparent film.

20. A method of manufacturing an optical array according to claim 19 , wherein said sheet of flexible material suspended on said tool is a reflective film.

21. A method of manufacturing an optical array, comprising:

suspending a film on a tool;

applying a differential pressure to said film to move a portion of said film into a desired shape, said desired shape conforming to the shape of an array of axial optical elements; and

securing said film in said desired shape by applying a filler material to one side of said film;

wherein said film secured in said desired shape and said solidified material securing said film in said desired shape collectively form an optical array comprised of an array of axial optical elements.

22. A method of manufacturing an optical array according to claim 21 , wherein said film is a sheet of transparent material.

23. A method of manufacturing an optical array according to claim 21 , wherein said film is a sheet of reflective material.

Assignments (4)
SECURITY INTEREST Recorded Mar 3, 2015
From: TEMEKU TECHNOLOGIES, INC.
To: THE PATTON FAMILY TRUST; PATTON FAMILY L.P.
Reel/Frame 035077/0718 →
CHANGE OF ADDRESS Recorded Mar 2, 2015
From: TEMEKU TECHNOLOGIES, INC.
To: TEMEKU TECHNOLOGIES, INC.
Reel/Frame 035116/0142 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 19, 2015
From: MERLIN TECHNOLOGY LIMITED LIABILITY COMPANY
To: TEMEKU TECHNOLOGIES, INC.
Reel/Frame 035048/0793 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 13, 2005
From: POULSEN, PETER D
To: MERLIN TECHNOLOGY LIMITED LIABILITY COMPANY
Reel/Frame 015895/0515 →
Continuity (2)
Provisional Application 6052307600 · Nov 18, 2003
Related Publication 20050134965A1 · Jun 23, 2005