IP Library Granted Patent US 8,317,100
Granted Patent B2
US 8,317,100 · App. 13/225,946 · Granted Nov 27, 2012

Optical sighting system

Assignee: AOSS, LLC
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Quick Facts
Patent No.
US 8,317,100
App. No.
13/225,946
Granted
Nov 27, 2012
Kind
B2
Abstract

An automatic optical sighting system generates at least one adjustment for an adjustable optical system based on at least one detected condition, an appropriate dynamic model of a projectile in flight, and a solution of the equations of motion in flight, so that the projectile will have a trajectory between an origin and a selected target that helps the projectile to hit the target.

Claims (37)

1. An automatic optical sighting system, comprising:

an adjustable optical system comprising at least one prism having an adjustable position;

at least one sensor detecting a condition that affects a trajectory of a projectile between an origin and a selected target and generating an indication of the detected condition; and

a processor receiving information related to each detected condition and information related to a position of the at least one prism, the processor determining at least one position adjustment to the at least one prism based on at least one detected condition and the position of the at least one prism so that the projectile will have a trajectory between the origin and the selected target that helps the projectile to hit the target.

2. The automatic optical sighting system according to claim 1 , wherein position adjustment comprises an elevation adjustment, a windage adjustment or a parallax adjustment.

3. The automatic optical sighting system according to claim 1 , wherein the processor generates a control signal that controls at least one position adjustment of the at least one prism.

4. The automatic optical sighting system according to claim 3 , further comprising:

at least one actuator corresponding to each position adjustment of the adjustable optical system, each actuator being mechanically coupled to the corresponding position adjustment; and

an actuator controller corresponding to each actuator, each actuator controller controlling the corresponding actuator in response to a corresponding control signal generated by the processor for the position adjustment.

5. The automatic optical sighting system according to claim 1 , wherein the processor further determines at least one position adjustment for the adjustable optical system that is based on a secondary factor that affects the trajectory of the projectile between the origin and the selected target, the secondary factor being related to a Coriolis effect or a gyroscopic effect, or a combination thereof.

6. The automatic optical sighting system according to claim 1 , wherein the adjustable optical system comprises an optical pathway, the optical pathway comprising a first portion extending along a first longitudinal axis of the automatic optical sighting system and a second portion extending along a second longitudinal axis of the automatic sighting system, the first and second longitudinal axes being parallel and different from each other.

7. The automatic optical sighting system according to claim 1 , further comprising a housing comprising at least one actuator corresponding to a position adjustment of the optical system, the actuator being responsive to the determination of the processor by adjusting the position adjustment based on the determination, and the actuator being located internal to the housing.

8. An optical sighting system, comprising:

an adjustable optical system comprising an optical pathway, the optical pathway comprising a first portion extending along a first longitudinal axis of the automatic sighting system and a second portion extending along a second longitudinal axis of the automatic sighting system, the first and second longitudinal axes being parallel and different from each other; and

at least one prism that is part of the optical pathway and having an adjustable position.

9. The optical sighting system according to claim 8 , further comprising:

at least one sensor detecting a condition that affects a trajectory of a projectile between an origin and a selected target and generating an indication of the detected condition; and

a processor receiving information related to each detected condition and information related to a position of the at least one prism, the processor determining at least one position adjustment to the at least one prism based on at least one detected condition and the position of the at least one prism so that the projectile will have a trajectory between the origin and the selected target that helps the projectile to hit the target.

10. The optical sighting system according to claim 9 , wherein position adjustment comprises an elevation adjustment, a windage adjustment or a parallax adjustment.

11. The optical sighting system according to claim 9 , wherein the processor generates a control signal that controls at least one position adjustment of the at least one prism.

12. The optical sighting system according to claim 11 , further comprising:

at least one actuator corresponding to each position adjustment of the adjustable optical system, each actuator being mechanically coupled to the corresponding position adjustment; and

an actuator controller corresponding to each actuator, each actuator controller controlling the corresponding actuator in response to a corresponding control signal generated by the processor for the position adjustment.

13. The optical sighting system according to claim 9 , wherein the processor further determines at least one position adjustment for the adjustable optical system that is based on a secondary factor that affects the trajectory of the projectile between the origin and the selected target, the secondary factor being related to a Coriolis effect or a gyroscopic effect, or a combination thereof.

14. The optical sighting system according to claim 9 , further comprising a housing comprising at least one actuator corresponding to a position adjustment of the optical system, the actuator being responsive to the determination of the processor by adjusting the position adjustment based on the determination, and the actuator being located internal to the housing.

15. An automatic optical sighting system, comprising:

an adjustable optical system comprising at least one internal optical adjustment;

at least one sensor detecting a condition that affects a trajectory of a projectile between an origin and a selected target and generating an indication of the detected condition;

a processor receiving information related to each detected condition and information related to a state of the at least one internal optical adjustment, the processor determining at least one internal adjustment for the adjustable optical system based on at least one detected condition so that the projectile will have a trajectory between the origin and the selected target that helps the projectile to hit the target, and

a housing containing at least one actuator corresponding to an optical adjustment of the optical system, the actuator being responsive to the determination of the processor by adjusting the optical adjustment based on the determination, and the actuator being located internal to the housing.

16. The automatic optical sighting system according to claim 15 , wherein position adjustment comprises an elevation adjustment, a windage adjustment or a parallax adjustment.

17. The automatic optical sighting system according to claim 15 , wherein the processor generates a control signal that controls at least one position adjustment of the at least one prism.

18. The automatic optical sighting system according to claim 17 , further comprising:

at least one actuator corresponding to each position adjustment of the adjustable optical system, each actuator being mechanically coupled to the corresponding position adjustment; and

an actuator controller corresponding to each actuator, each actuator controller controlling the corresponding actuator in response to a corresponding control signal generated by the processor for the position adjustment.

19. The automatic optical sighting system according to claim 15 , wherein the processor further determines at least one position adjustment for the adjustable optical system that is based on a secondary factor that affects the trajectory of the projectile between the origin and the selected target, the secondary factor being related to a Coriolis effect or a gyroscopic effect, or a combination thereof.

20. The automatic optical sighting system according to claim 15 , wherein the adjustable optical system comprises an optical pathway, the optical pathway comprising a first portion extending along a first longitudinal axis of the automatic optical sighting system and a second portion extending along a second longitudinal axis of the automatic sighting system, the first and second longitudinal axes being parallel and different from each other.

Assignments (3)
LETTERS TESTAMENTARY Recorded Mar 30, 2021
From: WINDAUER, BERNARD THOMAS
To: WINDAUER, LESLIE ANN
Reel/Frame 055780/0095 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 13, 2016
From: ALMGREN, TED C.; CURTIN, JOSEPH P.; MCDONALD, WILLIAM T.
To: WINDAUER, BERNARD T.
Reel/Frame 039722/0489 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 14, 2013
From: AOSS, LLC
To: WINDAUER, BERNARD T.; ALMGREN, TED C.; MCDONALD, WILLIAM T.; CURTIN, JOSEPH P.
Reel/Frame 031605/0876 →
Continuity (5)
Continuation 12807118 · Aug 27, 2010
Continuation 11720426
Provisional Application 60638561 · Dec 22, 2004
Provisional Application 60632331 · Nov 30, 2004
Related Publication 20120053878A1 · Mar 1, 2012