IP Library › Granted Patent US 10,258,026
Granted Patent B2
US 10,258,026 · App. 14/821,169 · Granted Apr 16, 2019

Rod holder assembly and method of using the same

Inventor: Jeffrey Scott Thomas (Dunn, NC)
A01K97/10F16C11/10F16M11/10F16M11/2014F16M13/02F16M2200/024
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Quick Facts
Patent No.
US 10,258,026
App. No.
14/821,169
Granted
Apr 16, 2019
Kind
B2
Abstract

Herein described is a rod holder assembly for holding a rod in a desired orientation that is manually adjustable about the horizontal and vertical axes (singlehandedly and substantially synchronously) and is capable of a variety of tension settings allowing for a degree of rotational movement about the horizontal and/or vertical axes in response to external forces or substantially no rotational movement. Also described is a rod holder assembly that may be easily and conveniently converted to a mount for other objects. A method for using the rod holder assembly is also described.

Claims (47)

1. A rod holder assembly comprising:

a rod receiver for supporting a fishing rod;

a first gear assembly engaged to the rod receiver and governing rotational movement of the rod receiver about a horizontal axis comprising a first housing element, a second housing element, a first resilient member, and a first resilient member retention element;

wherein the first housing element comprises a first protrusion array affixed to a lateral face of the first housing element and wherein the second housing element comprises a first depression array affixed to a lateral face of the second housing element;

a second gear assembly governing rotational movement of the rod receiver about a vertical axis comprising a platform engaged to and supporting at least one of said housing elements of the first gear assembly, a second resilient member, a second resilient member retention element, a second protrusion array, and a second depression array; and

a locking mechanism comprising at least a first lock setting and a second lock setting whereby said first lock setting allows rotational movement about the horizontal axis in response to an external force and said second lock setting substantially prohibits rotational movement about the horizontal axis in response to an external force.

2. The rod holder assembly of claim 1 wherein said second gear assembly allows for a degree of rotation about the vertical axis in response to an external force.

3. The rod holder assembly of claim 1 wherein said first and second protrusion arrays and said first and second depression arrays form a substantially circular pattern.

4. The rod holder assembly of claim 1 wherein said first gear assembly further comprises a shock dampening element.

5. The rod holder assembly of claim 4 wherein said shock dampening element comprises a third depression array comprising a plurality of depressions and a third protrusion array comprising a plurality of protrusions.

6. The rod holder assembly of claim 5 wherein the first protrusion array comprises a plurality of protrusions that mate with the plurality of depressions on the third depression array.

7. The rod holder assembly of claim 6 wherein the first depression array comprises a plurality of depressions that mate with the plurality of protrusions on the third depression array of the shock dampening element.

8. The rod holder assembly of claim 1 wherein said first and second resilient members are springs.

9. The rod holder assembly of claim 1 wherein said locking mechanism comprises a shaft comprising locking protrusions and a channeled locking receptacle for receiving said shaft.

10. The rod holder assembly of claim 9 wherein said locking mechanism substantially prohibits rotation about the horizontal axis through a combination of first resilient member compression and substantial engagement between locking receptacle and first resilient member retention element.

11. The rod holder assembly of claim 9 wherein said locking mechanism substantially prohibits rotation about the horizontal axis through first resilient member compression.

12. The rod holder assembly of claim 9 wherein said locking mechanism substantially prohibits rotation about the horizontal axis through substantial engagement between locking receptacle and first resilient member retention element.

13. The rod holder assembly of claim 1 wherein said locking mechanism comprises a ball detent and ball detent receiver.

14. The rod holder assembly of claim 1 wherein said locking mechanism secures first gear assembly alone.

15. The rod holder assembly of claim 1 further comprising a mounting mechanism.

16. The rod holder assembly of claim 15 wherein said mounting mechanism comprises a threaded shaft affixed to a bottom surface of the platform and a nut for securing to said threaded shaft.

17. The rod holder assembly of claim 1 further comprising a first housing element release mechanism wherein said first housing element may be fully detached from rod holder assembly and replaced with a substitute housing element.

18. The rod holder assembly of claim 1 wherein the locking mechanism further comprises a cam follower assembly.

19. The rod holder assembly of claim 18 wherein the cam further comprises a sloped locking channel comprising one or more slots at one or more positions along the locking channel.

20. The rod holder assembly of claim 19 wherein the follower further comprises a pin for engaging said locking channel and one or more slots.

21. A rod holder assembly comprising:

a rod receiver for supporting a fishing rod;

a first gear assembly engaged to the rod receiver and governing rotational movement of the rod receiver about a horizontal axis comprising a first protrusion array, a first depression array, a first resilient member, and a first resilient member retention element;

a second gear assembly governing rotational movement of the rod receiver about a vertical axis comprising a platform engaged to and supporting at least one of said housing elements of the first gear assembly, a second protrusion array and a second depression array a second resilient member, and a second resilient member retention element;

wherein said first and second protrusion and said first and second depression arrays form a substantially circular pattern; and

a locking mechanism comprising at least a first lock setting with base torque resistance and base tension between the first depression array and the first protrusion array due to compression of first resilient member, and a second lock setting with elevated torque resistance and elevated tension between the first depression array and the first protrusion array.

22. The rod holder assembly of claim 21 wherein said first protrusion array is positioned on said resilient member retention element.

23. The rod holder assembly of claim 21 wherein said first and second resilient members are springs.

24. The rod holder assembly of claim 21 wherein the locking mechanism further comprises a cam follower assembly.

25. The rod holder assembly of claim 24 wherein the cam further comprises a sloped locking channel comprising one or more slots at one or more positions along the locking channel.

26. The rod holder assembly of claim 25 wherein the follower further comprises a pin for engaging said locking channel and one or more slots.

27. A method of adjusting a rod holder assembly comprising the steps of:

providing a rod holder assembly comprising a rod receiver for supporting a fishing rod;

a first gear assembly engaged to the rod receiver and governing rotational movement of the rod receiver about a horizontal axis comprising a first housing element, a second housing element, a first resilient member, and a first resilient member retention element;

wherein the first housing element comprises a first protrusion array affixed to a lateral face of the first housing element and wherein the second housing element comprises a first depression array affixed to a lateral face of the second housing element;

a second gear assembly governing rotational movement of the rod receiver about a vertical axis comprising a platform engaged to and supporting at least one of said housing elements of the first gear assembly, a second resilient member, a second resilient member retention element, a second protrusion array, and a second depression array; and

a locking mechanism comprising at least a first lock setting and a second lock setting whereby said first lock setting allows rotational movement about the horizontal axis in response to an external force and said second lock setting substantially prohibits rotational movement about the horizontal axis in response to an external force;

gripping the rod holder receiver and pulling said receiver along the horizontal axis to disengage said first housing element from said second housing element;

simultaneously pulling said receiver upward along the vertical axis to disengage said second housing element from said platform;

pushing said rod receiver forward or backward to adjust the rod receiver's angle in relation to the horizontal plane;

twisting said rod receiver about a 360 degree vertical axis to adjust the rod receiver's directional orientation; and

releasing said rod holder receiver to reengage first housing element with second housing element and second housing element with platform.

Continuity (2)
Provisional Application 62035154 · Aug 8, 2014
Related Publication 20160037762A1 · Feb 11, 2016
Cited By (6)
US 1,131,708 US 12,320,467 US 12,607,298 US 12,612,806 US 12,622,425 US 12,680,646