IP Library › Granted Patent US 10,362,779
Granted Patent B2
US 10,362,779 · App. 15/437,577 · Granted Jul 30, 2019

Fowl decoy movement simulator

Inventor: Samuel D. Cagle (Mequon, WI)
A01M31/06G08C17/02
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Quick Facts
Patent No.
US 10,362,779
App. No.
15/437,577
Granted
Jul 30, 2019
Kind
B2
Abstract

A decoy may include a ground support comprising a ground engaging portion and an upstanding post, a powered actuator operably coupled to the decoy and a wireless communications device. The wireless communications device may include a transmitter to transmit signals to a receiver in communication with the powered actuator, wherein the powered actuator selectively raises and lowers the decoy in response to receipt of the signals received by the receiver.

Claims (30)

1. A decoy support for supporting a wild fowl decoy, the decoy support comprising:

a ground support comprising a ground engaging portion and an upstanding linear post extending along an axis thereof from the ground engaging portion;

a decoy support member movably guided by the upstanding linear post between a raised position and a lowered position;

a compression spring coaxial with the upstanding linear post, the compression spring resiliently biasing the decoy support member towards the raised position;

a powered actuator coupled to the decoy support member to selectively compress the compression spring to lower the decoy support member vertically along the axis of the upstanding linear post while simultaneously rotating the decoy support member around the axis of the upstanding linear post; and

a communications system having a receiver coupled to the powered actuator and a remote transmitter in communication with the receiver in a wired or wireless fashion, wherein signals transmitted from the remote transmitter to the receiver cause the powered actuator to selectively compress the compression spring.

2. The decoy support of claim 1 , wherein compression of the compression spring by the powered actuator vertically lowers and simultaneously rotates the decoy support member in a first rotational direction around the axis of the upstanding linear post, the decoy support further comprising:

a second powered actuator coupled to the decoy support member to selectively compress the compression spring to lower the decoy support member vertically along the axis of the upstanding post while simultaneously rotating the decoy support member in a second rotational direction, opposite the first rotational direction, around the axis of the upstanding post.

3. The decoy support of claim 2 , wherein the powered actuator and the second powered actuator are coupled to the decoy support member by being independently connected to the decoy support member by first and second flexible lines, respectively.

4. The decoy support of claim 1 , wherein the powered actuator is coupled to the decoy support member so as to compress the compression spring to vertically lower the decoy support member along the axis of the upstanding post while maintaining an angular orientation of the decoy support member about the axis without rotating the decoy support member around the axis of the upstanding post after the decoy support member has reached the angular orientation about the axis of the upstanding post due to rotation of the decoy support member via the powered actuator.

5. The decoy support of claim 1 , wherein the powered actuator is coupled to the decoy support member so as to rotate the decoy support member around the axis of the upstanding post while maintaining a height of the decoy support member without further compressing the compression spring and without further vertical lowering of the decoy support member when the decoy support member is at a lowest height defining the lowered position.

6. The decoy support of claim 1 , wherein the powered actuator is coupled to the decoy support member by being connected to the decoy support member by a flexible line and wherein the powered actuator comprises a motor and a spool about which the flexible line is wound.

7. The decoy support of claim 1 , further comprising a torsion spring resiliently biasing the decoy support member to a selected angular orientation about the axis of the upstanding post, wherein the powered actuator simultaneously compresses the compression spring and winds the torsion spring.

8. A decoy system comprising:

a decoy;

a ground support comprising a ground engaging portion and an upstanding linear post extending along an axis thereof from the ground engaging portion;

a decoy support member movably guided by the upstanding linear post between a raised position and a lowered position, the decoy being supported and mounted to the decoy support member so as to be vertically movable therewith;

a compression spring coaxial with the upstanding linear post, the compression spring resiliently biasing the decoy support member towards the raised position;

a powered actuator coupled to the decoy support member to selectively compress the compression spring to lower the decoy support member vertically along the axis of the upstanding linear post while simultaneously rotating the decoy support member around the axis of the upstanding linear post; and

a communications system having a receiver coupled to the powered actuator and a remote transmitter in communication with the receiver in a wired or wireless fashion, wherein signals transmitted from the remote transmitter to the receiver cause the powered actuator to selectively compress the compression spring.

9. The decoy system of claim 8 , wherein the decoy is vertically movable through a distance of at least 4 inches.

10. The decoy system of claim 9 , wherein the decoy is vertically movable through a maximum distance of 8 inches.

11. The decoy system of claim 8 , wherein the upstanding post guides the decoy support member along an outer surface of the upstanding post which opposes an interior surface of the decoy.

12. The decoy system of claim 8 , wherein compression of the compression spring by the powered actuator vertically lowers and simultaneously rotates the decoy support member in a first rotational direction around the axis of the upstanding linear post, the decoy support further comprising:

a second powered actuator coupled to the decoy support member to selectively compress the compression spring to lower the decoy support member vertically along the axis of the upstanding post while simultaneously rotating the decoy support member in a second rotational direction, opposite the first rotational direction, around the axis of the upstanding post.

13. The decoy system of claim 12 , wherein the powered actuator and the second powered actuator are coupled to the decoy support member by being independently connected to the decoy support member by first and second flexible lines, respectively.

14. The decoy system of claim 8 , wherein the powered actuator is coupled to the decoy support member so as to compress the compression spring to vertically lower the decoy support member along the axis of the upstanding post while maintaining an angular orientation of the decoy support member about the axis without rotating the decoy support member around the axis of the upstanding post after the decoy support member has reached the angular orientation about the axis of the upstanding post due to rotation of the decoy support member via the powered actuator.

15. The decoy system of claim 8 , wherein the powered actuator is coupled to the decoy support member so as to rotate the decoy support member around the axis of the upstanding post while maintaining a height of the decoy support member without further compressing the compression spring and without further vertical lowering of the decoy support member when the decoy support member is at a lowest height defining the lowered position.

16. The decoy system of claim 8 , wherein the powered actuator is coupled to the decoy support member by being connected to the decoy support member by a flexible line and wherein the powered actuator comprises a motor and a spool about which the flexible line is wound.

17. The decoy system of claim 8 further comprising a torsion spring resiliently biasing the decoy support member to a selected angular orientation about the axis of the upstanding post, wherein the powered actuator is to simultaneously compresses the compression spring and winds the torsion spring.

Continuity (2)
Provisional Application 62297939 · Feb 21, 2016
Related Publication 20170238530A1 · Aug 24, 2017
Cited By (2)
US 12,329,145 US 12,568,957