IP Library Granted Patent US 7,768,686
Granted Patent B2
US 7,768,686 · App. 11/702,689 · Granted Aug 3, 2010

Light-beam-scanning system utilizing counter-rotating prism wheels

View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 7,768,686
App. No.
11/702,689
Granted
Aug 3, 2010
Kind
B2
Abstract

A light-beam-scanning system includes two counter-rotating prism wheels. Each prism wheel has a set of prisms at its periphery, selected so that prisms of equal half-angle deflections are sequentially aligned. A light transceiver structure directs a light beam parallel to the rotational axes of the prism wheels and at a distance from the rotational axes so that the light beam passes through the aligned prisms. A prism-wheel drive is operable to drive the prism wheels in opposite rotational directions.

Claims (31)

1. A beam scanning system for use with a light source for providing a beam of light energy comprising:

a first prism wheel rotatable in a first rotational direction about a first rotational axis;

plural first prisms, each first prism constructed and mounted on said first wheel for deflecting said beam by a respective first predetermined angle;

a second prism wheel rotatable in a second rotational direction opposite to the first rotational direction about a second rotational axis that is parallel to the first rotational axis;

plural second prisms, each second prism constructed and mounted on said second wheel to deflect said beam by a respective second predetermined angle, whereby in relative alignment a respective one of said first prisms and a respective one of said second prisms deflect said beam to at a discrete angle in elevation and azimuth relative to a point of interest;

a prism-wheel drive operable to drive the first prism wheel in the first rotational direction about the first rotational axis and the second prism wheel in the second rotational direction about the second rotational axis; and

means for controlling said drive to effect selective illumination of said respective one of said first prisms and said respective one of said second prisms and thereby scan said beam in a predetermined direction at said discrete angle in azimuth and elevation relative to said point of interest.

2. The invention of claim 1 wherein said first prism deflects said beam in azimuth.

3. The invention of claim 1 wherein said second prism deflects said beam in elevation.

4. The invention of claim 1 wherein each of said first prisms is designed and mounted to effect a unique deflection of said beam when paired with a respective second prism.

5. The invention of claim 4 wherein at a predetermined position of said first wheel and a predetermined position of said second wheel no deflection of said beam is effected.

6. The invention of claim 1 wherein said means for controlling includes means for driving said first wheel and said second wheel to effect a nonlinear scan of said beam.

7. The invention of claim 1 wherein the rotation of said wheels by said drive is synchronized.

8. The invention of claim 7 wherein the rotation of said wheels is continuous.

9. The invention of claim 1 wherein said prisms are addressable.

10. The invention of claim 9 wherein said prism wheels are non-interlinked.

11. The invention of claim 10 wherein said drive is noncontinuous.

12. A beam scanning system comprising:

a light source for providing a beam of light energy;

a first prism wheel rotatable in a first rotational direction about a first rotational axis;

plural first prisms mounted on said first wheel for deflecting said beam by a first predetermined angle;

a second prism wheel rotatable in a second rotational direction opposite to the first rotational direction about a second rotational axis that is parallel to the first rotational axis;

plural second prisms mounted on said second wheel to deflect said beam by a second predetermined angle, wherein each of said second prisms is designed and mounted to effect a unique deflection of said beam when paired with a respective first prism;

a prism-wheel drive operable to drive the first prism wheel in the first rotational direction about the first rotational axis and the second prism wheel in the second rotational direction about the second rotational axis; and

means for controlling said drive to effect selective illumination of said prisms and thereby scan said beam in a predetermined direction at a discrete angle relative to a point of interest.

13. The invention of claim 12 wherein said means for controlling includes means for driving said first wheel and said second wheel to effect a nonlinear scan of said beam.

14. The invention of claim 12 wherein the rotation of said wheels by said drive is synchronized.

15. The invention of claim 12 wherein the rotation of said wheels is continuous.

16. The invention of claim 12 wherein said prisms are addressable.

17. The invention of claim 12 wherein said prism wheels are non-interlinked.

18. The invention of claim 12 wherein said drive is noncontinuous.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 19, 2012
From: RAYTHEON COMPANY
To: RAYTHEON CANADA LIMITED
Reel/Frame 027558/0411 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 5, 2007
From: STENTON, CONRAD
To: RAYTHEON COMPANY
Reel/Frame 018955/0031 →