IP Library Granted Patent US 11,698,240
Granted Patent B2
US 11,698,240 · App. 17/592,774 · Granted Jul 11, 2023

Gear-based archery limb control system and method having a motion generator

Inventor: Anders P. Thalberg (Greaker, NO)
Assignee: Krysse AS
F41B5/12F41B5/123F41B5/1449F41B5/1469
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Quick Facts
Patent No.
US 11,698,240
App. No.
17/592,774
Granted
Jul 11, 2023
Kind
B2
Abstract

An archery limb control system, method and bow are described herein. The archery limb control system, in an embodiment, includes a motion generator configured to be supported by an archery bow, and the system includes one or more flexible lines configured to be coupled to the limbs of the bow. The system also includes a support configured to support the one or more flexible lines, and the system includes a gear coupled to the support.

Claims (90)

1. An archery limb control system comprising:

a motion generator configured to be supported by an archery bow, wherein:

the motion generator is configured to generate a force based on energy received from an energy resource,

the archery bow comprises a body, a first limb, a second limb, and a draw cord coupled to the first and second limbs,

the draw cord is configured to propel a projectile toward a target;

one or more flexible lines configured to be coupled to the first limb and second limbs; and

a driver operatively coupled to the motion generator, wherein the driver comprises:

a support configured to support the one or more flexible lines; and

a gear,

wherein the driver is configured so that, in response to the force generated by the motion generator, the gear moves relative to the body, causing the one or more flexible lines to move relative to the body, causing the first and second limbs to move relative to the body.

2. The archery limb control system of claim 1 , wherein the motion generator comprises one of a motor, a solenoid, an electromagnetic device, or a pneumatic piston.

3. The archery limb control system of claim 1 , wherein the motion generator is configured to cause the gear to comprise a motion based on the force.

4. The archery limb control system of claim 1 , wherein each of the one or more flexible lines comprises one of a wire, a cable, a string, a band, a belt, a rope, a strap, or a tape.

5. The archery limb control system of claim 1 , wherein the support comprises at least one rotor coupled to the one or more flexible lines.

6. The archery limb control system of claim 5 , wherein the at least one rotor comprises one of a spool, a spindle or a pulley.

7. The archery limb control system of claim 1 , wherein the gear comprises one of: a bevel gear; (b) a worm gear; or (c) a rod that comprises a plurality of threads.

8. The archery limb control system of claim 7 , wherein the motion generator comprises a motor, and the motor comprises an output shaft that is coupled to the rod.

9. The archery limb control system of claim 1 , wherein the archery bow comprises a crossbow, wherein the crossbow comprises the body, a stock, a first rotor coupled to the first limb, and a second rotor coupled to the second limb, wherein the draw cord is coupled to the first and second limbs through the first and second rotors.

10. The archery limb control system of claim 9 , wherein the support is configured to be coupled to and supported by the body of the crossbow.

11. The archery limb control system of claim 9 , wherein the energy resource comprises a battery configured to be coupled to and supported by the stock of the crossbow.

12. A crossbow comprising the archery limb control system of claim 1 .

13. The crossbow of claim 12 , wherein:

the crossbow comprises the body and a stock;

the support is configured to be coupled to and supported by the body;

the energy resource comprises a battery operatively coupled to the motion generator; and

the stock defines a cavity configured to at least partially receive the battery.

14. The archery limb control system of claim 1 , wherein:

the motion generator comprises a motor;

the motor comprises an output shaft; and

the gear comprises a vertical bevel gear coupled to the output shaft.

15. The archery limb control system of claim 1 , comprising an input device operatively coupled to the motion generator, wherein the input device is configured to activate the motion generator, wherein the motion generator is configured to generate the force in response to the motion generator being activated by the input device.

16. A crossbow comprising the archery limb control system of claim 1 , wherein:

the archery bow comprises a grip device that is moveably coupled to the body of the archery bow;

the grip device comprise a graspable surface; and

the grip device is configured to pull the draw cord as a result of the grip device being moved relative to the body.

17. An archery limb control system comprising:

a motion generator configured to be supported by an archery bow, wherein:

the motion generator is configured to be operatively coupled, at least temporarily, to an energy resource,

the archery bow comprises a body, a first limb, a second limb, and a draw cord coupled to the first and second limbs,

the draw cord is configured to propel a projectile toward a target;

one or more flexible lines configured to be coupled to the first limb and second limbs;

a support configured to support the one or more flexible lines; and

a rod comprising a plurality of threads, wherein the rod is supported by the support.

18. The archery limb control system of claim 17 , wherein, based on energy supplied by the energy resource to the motion generator, the motion generator is configured to cause the rod to move relative to the body, causing the one or more flexible lines to move relative to the body, causing the first and second limbs to move relative to the body.

19. The archery limb control system of claim 17 , wherein:

the motion generator comprises one of a motor, a solenoid, an electromagnetic device, or a pneumatic piston; and

the motion generator is configured to cause a force; and

the motion generator is configured to cause the rod to comprise a motion based on the force.

20. The archery limb control system of claim 17 , wherein each of the one or more flexible lines comprises one of a wire, a cable, a string, a band, a belt, a rope, a strap, or a tape.

21. A crossbow comprising the archery limb control system of claim 17 , wherein:

the crossbow comprises the body, a stock, a first rotor coupled to the first limb, and a second rotor coupled to the second limb;

the draw cord is coupled to the first and second limbs through the first and second rotors;

the support is configured to be coupled to and supported by the body;

the energy resource comprises a battery operatively coupled to the motion generator; and

the crossbow is configured to hold the battery.

22. The archery limb control system of claim 17 , wherein:

the motion generator comprises a motor;

the motor comprises an output shaft; and

the rod is coupled to the output shaft.

23. A crossbow comprising the archery limb control system of claim 17 , wherein:

the archery limb control system comprises an input device operatively coupled to the motion generator;

the input device is configured to activate the motion generator; and

the motion generator is configured to cause the rod to move relative to the body in response to the motion generator being activated by the input device,

wherein the movement of the rod causes the first and second limbs to move relative to the body,

wherein the movement of the first and second limbs causes a tension of the draw cord to increase,

wherein the movement of the first and second limbs begins before the tension increases.

24. A crossbow comprising the archery limb control system of claim 17 , wherein:

the archery bow comprises a grip device that is moveably coupled to the body of the archery bow;

the grip device comprise a graspable surface; and

the grip device is configured to pull the draw cord as a result of the grip device being moved relative to the body.

25. A method for manufacturing an archery limb control system, the method comprising:

configuring a motion generator to be supported by an archery bow, wherein:

the motion generator is configured to be operatively coupled, at least temporarily, to an energy resource,

the archery bow comprises a body, a first limb, a second limb, and a draw cord coupled to the first and second limbs,

the draw cord is configured to propel a projectile toward a target;

obtaining one or more flexible lines that are configured to be coupled to the first limb and second limbs;

configuring a support to support the one or more flexible lines; and

coupling a gear to the support.

26. The method of claim 25 , comprising configuring the motion generator so that, based on energy supplied by the energy resource to the motion generator, the motion generator is operable to cause the gear to move relative to the body, causing the one or more flexible lines to move relative to the body, causing the first and second limbs to move relative to the body.

27. The method of claim 25 , wherein the motion generator comprises a motor, and the support comprises at least one rotatable member, wherein the method comprises:

coupling the gear to the motor; and

coupling the at least one rotatable member to the one or more flexible lines.

28. The method of claim 25 , wherein the coupling of the gear to the support comprises coupling the gear to an element, wherein the element is coupled to the support through one of a direct coupling or an indirect coupling.

29. A method of manufacturing a crossbow comprising the method of claim 25 , wherein the method of manufacturing the crossbow comprises:

configuring an input device to control an activation of the motion generator;

operatively coupling the input device to the motion generator; and

configuring the motion generator to cause the gear to move relative to the body in response to the motion generator being activated by the input device,

wherein the movement of the gear causes the first and second limbs to move relative to the body,

wherein the movement of the first and second limbs causes a tension of the draw cord to increase,

wherein the movement of the first and second limbs begins before the tension increases.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 7, 2022
From: THALBERG, ANDERS P.
To: BAKKE INVEST AS
Reel/Frame 061015/0303 →
CHANGE OF NAME Recorded Sep 7, 2022
From: BAKKE INVEST AS
To: KRYSSE AS
Reel/Frame 061015/0427 →
Continuity (7)
Continuation 17174781 · Feb 12, 2021
Continuation 16595852 · Oct 8, 2019
Continuation 16550697 · Aug 26, 2019
Continuation 16037047 · Jul 17, 2018
Provisional Application 62578640 · Oct 30, 2017
Provisional Application 62533739 · Jul 18, 2017
Related Publication 20220155037A1 · May 19, 2022
Cited By (5)
US 12,435,947 US 12,460,892 US 12,460,893 US 12,546,555 US 12,571,607