IP Library Granted Patent US 8,210,694
Granted Patent B1
US 8,210,694 · App. 12/167,757 · Granted Jul 3, 2012

Pair of concave mirrors for projecting non-inverted real images

Assignee: University of South Florida
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Quick Facts
Patent No.
US 8,210,694
App. No.
12/167,757
Granted
Jul 3, 2012
Kind
B1
Abstract

The optical device projects a three dimensional image into free space. A series of minors are aligned thereby allowing an image reflect three times between the two minors. The distance between the mirrors may be altered, changing the size and orientation of the final image. In other arrangements, the minors are aligned to permit an image to reflect five times. The minors of the device are concave, may be spherical or parabolic, and may be fragments of a spherical or parabolic minor.

Claims (28)

1. An optical device consisting essentially of:

a first concave mirror with a focal point on an optical axis;

a second concave mirror aligned on the same optical axis as the first concave mirror, such that the reflective surface of the first concave mirror faces the reflective surface of the second concave mirror;

whereby the second concave mirror is disposed in relation to the first concave mirror such that the first concave mirror and second concave mirror produce a non-inverted image; and

an object disposed beyond the focal point on the first concave mirror.

2. The device of claim 1 , wherein the first mirror and the second mirror are disposed between one and two focal lengths.

3. The device of claim 1 , wherein the distance between the mirrors is equivalent to the radius of at least one mirror.

4. The device of claim 1 , wherein the first mirror is a fragment of the group consisting of a sphere and a parabola.

5. The device of claim 1 , wherein the second mirror is a fragment of the group consisting of a sphere and a parabola.

6. The device of claim 1 , wherein the first mirror and second mirror are disposed to reflect an image three times before projecting the image.

7. The device of claim 1 , wherein the position and size of the non-inverted image is adjusted by altering the distance between the first mirror and the second mirror.

8. The device of claim 1 , wherein the first mirror and second mirror are disposed to reflect an image five times before projecting the image.

9. The device of claim 1 , wherein the first concave mirror and second concave mirror are selected from the group consisting of spherical mirrors and parabolic mirrors.

10. The device of claim 1 , wherein the first mirror and second mirror are disposed to reflect an image three times before projecting the image.

11. The device of claim 1 , wherein the first mirror and second mirror are disposed to reflect an image five times before projecting the image.

12. The device of claim 1 , wherein the first mirror and second mirror have different focal lengths.

13. A method of projecting a three dimensional reflective image consisting essentially of:

providing a first concave mirror on an optical axis;

providing a second concave mirror aligned on the optical axis, such that the reflective surface of the first concave mirror faces the reflective surface of the second concave mirror;

placing an object beyond the focal point of the first concave mirror; and

adjusting the second concave mirror in relation to the first concave mirror such that the first concave mirror and second concave mirror produce a non-inverted image of the object.

14. The method of claim 13 , wherein the second mirror is adjusted such that the vertex of the second mirror is disposed in proximity to the focal point of the first mirror.

15. The device of claim 13 , wherein the position and size of the non-inverted image is adjusted by altering the distance between the first mirror and the second mirror.

16. The device of claim 13 , wherein the first concave mirror and second concave mirror are selected from the group consisting of spherical mirrors and parabolic mirrors.

17. The device of claim 13 , wherein the first mirror and the second mirror are disposed between one and two focal lengths.

18. The device of claim 17 , wherein the distance between the mirrors is equivalent to the radius of the mirrors.

19. The device of claim 13 , wherein the first mirror is a fragment of the group consisting of a sphere and a parabola.

20. The device of claim 13 , wherein the second mirror is a fragment of the group consisting of a sphere and a parabola.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 31, 2008
From: MCCLANAHAN, STEPHEN
To: UNIVERSITY OF SOUTH FLORIDA
Reel/Frame 021766/0844 →
Continuity (2)
Provisional Application 60947790 · Jul 3, 2007
Provisional Application 60949668 · Jul 13, 2007