IP Library Granted Patent US 10,408,558
Granted Patent B2
US 10,408,558 · App. 16/037,047 · Granted Sep 10, 2019

Crossbow having an energizer

Inventor: Anders P. Thalberg (Greaker, NO)
Assignee: Bakke Invest AS
F41B5/12
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Quick Facts
Patent No.
US 10,408,558
App. No.
16/037,047
Granted
Sep 10, 2019
Kind
B2
Abstract

A crossbow having an energizer is described herein. The crossbow, in an embodiment, includes a stock, a body coupled to the stock, and a plurality of limbs. Each of the limbs has a coupled limb end and an uncoupled limb end. The energizer, which includes an electrical power source, is operatively coupled to the limbs.

Claims (93)

1. A crossbow comprising:

a stock comprising a butt configured to face in a rearward direction along a longitudinal axis;

a body coupled to the stock, wherein the body comprises a trigger housing portion and a limb mount portion;

a foregrip supported by the body, wherein the foregrip is positioned at least partially forward of the limb mount portion;

a track supported by the body;

a trigger supported by the body;

a cord holder operatively coupled to the trigger;

a plurality of limbs moveably coupled to the body, wherein each of the limbs comprises:

a coupled limb end that is coupled to the limb mount portion, wherein a first lateral plane extends through the coupled limb end, and the first lateral plane intersects with the longitudinal axis; and

an uncoupled limb end, wherein a second lateral plane extends through the uncoupled limb end, and the second lateral plane intersects with the longitudinal axis, wherein the second lateral plane is positioned forward of the first lateral plane;

a draw cord coupled to the uncoupled limb ends, wherein the draw cord is configured to be engaged with a projectile; and

an energizer operatively coupled to the limbs, wherein the energizer comprises an electrical power source;

wherein each of the limbs comprises an elastic characteristic,

wherein the crossbow is configured to be transitioned from an undrawn condition to a drawn condition in response to a manual force applied to the draw cord,

wherein the crossbow is configured to be transitioned from the drawn condition to an energized condition in response to a driving force transmitted by the energizer, wherein the driving force bends each of the limbs into an at least partial arc shape associated with a spring force,

wherein, in response to a manipulation of the trigger, the cord holder is configured to release the draw cord so that the draw cord launches the projectile toward a target based on the the spring force,

wherein the spring force comprises a magnitude that is sufficient to propel the projectile to the target without depending upon an increase in a distance between the uncoupled limb ends during a transition from the drawn condition to the energized condition.

2. The crossbow of claim 1 , wherein the crossbow is configured so that, during the transition from the drawn condition to the energized condition, the distance between the uncoupled limb ends comprises a change that is one of: (a) the increase in the distance between the uncoupled limb ends; and (b) a decrease in the distance between the uncoupled limb ends.

3. The crossbow of claim 1 , wherein the energizer comprises:

a motion generator operatively coupled to the electrical power source;

at least one driver operatively coupled to the motion generator; and

an input device operatively coupled to the motion generator,

wherein at least one portion of the energizer is positioned at least partially rearward of the foregrip, wherein the portion of the energizer comprises one of the electrical power source and the motion generator,

wherein the positions of the limb mount portion and the at least one portion of the energizer are associated with a weight distribution that facilitates holding of the crossbow during firing.

4. The crossbow of claim 3 , comprising a plurality of limb retainers, wherein each of the limb retainers is coupled to one of the coupled limb ends, wherein the at least one driver comprises a drive shaft, a rotor coupled to the drive shaft, and a belt engaged with the rotor, wherein the belt is coupled to the limb retainers.

5. The crossbow of claim 1 , wherein: (a) there is an undrawn distance between the uncoupled limbs ends in the undrawn condition; (b) there is a drawn distance between the uncoupled limbs ends in the drawn condition; and (c) there is an energized distance between the uncoupled limbs ends in the energized condition; and (d) any variation between the undrawn, drawn and energized distances is less than ten percent.

6. The crossbow of claim 5 , wherein: (a) there is a drawn distance between the uncoupled limbs ends in the drawn condition; (b) there is an energized distance between the uncoupled limbs ends in the energized condition; and (c) the energized distance is one of equal to and substantially equal to the drawn distance.

7. A crossbow comprising:

a stock comprising a butt configured to face in a rearward direction along a longitudinal axis;

a body coupled to the stock, wherein the body comprises a trigger housing portion and a limb mount portion; and

a plurality of limbs moveably coupled to the body, wherein each of the limbs comprises:

a coupled limb end that is coupled to the limb mount portion; and

an uncoupled limb end that is positioned forward of the coupled limb end; and

an energizer operatively coupled to the limbs, wherein the energizer comprises an electrical power source.

8. The crossbow of claim 7 , comprising:

a foregrip supported by the body, wherein the foregrip is positioned at least partially forward of the limb mount portion;

a track supported by the body;

a trigger supported by the body;

a cord holder operatively coupled to the trigger; and

a draw cord coupled to the uncoupled limb ends, wherein the draw cord is configured to be engaged with a projectile, wherein:

each of the limbs comprises an elastic characteristic;

the crossbow is configured to be transitioned from an undrawn condition to a drawn condition in response to a manual force applied to the draw cord;

the crossbow is configured to be transitioned from the drawn condition to an energized condition in response to a driving force transmitted by the energizer, wherein the driving force bends each of the limbs into an at least partial arc shape associated with a spring force; and

in response to a manipulation of the trigger, the cord holder is configured to release the draw cord so that the draw cord launches the projectile toward a target based on the the spring force; and

the spring force comprises a magnitude that is sufficient to cause the projectile to reach the target without requiring the uncoupled limb ends to laterally move away from the track during a transition from the drawn condition to the energized condition.

9. The crossbow of claim 8 , wherein, in the drawn condition, each one of the limbs extends along a limb axis without the arc shape, wherein each of the limbs comprises one of: (a) a substantially straight shape; and (b) a straight shape.

10. The crossbow of claim 9 , wherein, in the energized condition, the draw cord comprises a tension poundage over one hundred pounds.

11. The crossbow of claim 8 , comprising a plurality of limb retainers, wherein each of the limb retainers is coupled to one of the coupled limb ends, wherein the energizer comprises a motion generator supported by the body, wherein the motion generator is operatively coupled to the electrical power source and the limb retainers.

12. The crossbow of claim 11 , wherein:

the body defines one or more cavities; and

the electrical power source and the motion generator are housed within the one or more cavities.

13. The crossbow of claim 8 , wherein: (a) there is an undrawn distance between the uncoupled limbs ends in the undrawn condition; (b) there is a drawn distance between the uncoupled limbs ends in the drawn condition; and (c) there is an energized distance between the uncoupled limbs ends in the energized condition; and (d) any variation between the undrawn, drawn and energized distances is less than ten percent.

14. The crossbow of claim 8 , wherein: (a) there is a drawn distance between the uncoupled limbs ends in the drawn condition; (b) there is an energized distance between the uncoupled limbs ends in the energized condition; and (c) the energized distance is substantially equal to the drawn distance.

15. The crossbow of claim 8 , wherein: (a) there is a drawn distance between the uncoupled limbs ends in the drawn condition; (b) there is an energized distance between the uncoupled limbs ends in the energized condition; and (c) the energized distance is equal to the drawn distance.

16. The crossbow of claim 8 , comprising a plurality of limb retainers, wherein each of the limb retainers is coupled to one of the coupled limb ends, wherein the energizer comprises at least one driver comprising a drive shaft, a rotor coupled to the drive shaft, and a belt engaged with the rotor, wherein the belt is coupled to the limb retainers.

17. A method for manufacturing a crossbow, wherein the method comprises:

providing a stock that comprises a butt configured to face in a rearward direction along a longitudinal axis;

structuring a body to comprise a trigger housing portion and a limb mount portion;

coupling a foregrip to the body so that the foregrip is positioned at least partially forward of the limb mount portion;

coupling the body to the stock;

structuring a plurality of limbs so that each of the limbs comprises:

a coupled limb end that is moveably coupled to the limb mount portion; and

an uncoupled limb end that is positioned forward of the coupled limb end;

providing an energizer comprising an electrical power source; and

operatively coupling the energizer to the limbs.

18. The method of claim 17 , comprising:

coupling the foregrip to the body so that the foregrip is positioned entirely forward of the limb mount portion;

coupling a track to the body;

operatively coupling a trigger to the body;

operatively coupling a cord holder to the trigger;

coupling a draw cord to the uncoupled limb ends, wherein the draw cord is configured to be engaged with a projectile; and

structuring the crossbow so that:

each of the limbs comprises an elastic characteristic;

the crossbow is configured to be transitioned from an undrawn condition to a drawn condition in response to a manual force applied to the draw cord;

the crossbow is configured to be transitioned from the drawn condition to an energized condition in response to a driving force transmitted by the energizer, wherein the driving force bends each of the limbs into an at least partial arc shape associated with a spring force; and

in response to a manipulation of the trigger, the cord holder is configured to release the draw cord so that the draw cord launches the projectile toward a target based on the the spring force; and

the spring force comprises a magnitude that is sufficient to cause the projectile to reach the target without requiring the uncoupled limb ends to move away from the track during a transition from the drawn condition to the energized condition.

19. The method of claim 18 , comprising structuring the crossbow so that:

in the drawn condition, the draw cord comprises a tension poundage of less than one pound;

in the drawn condition, each one of the limbs extends along a limb axis without the arc shape, wherein each of the limbs comprises a shape that is one of substantially straight and straight;

in the energized condition, the draw cord comprises a tension poundage over one hundred pounds;

there is a drawn distance between the uncoupled limbs ends in the drawn condition;

there is an energized distance between the uncoupled limbs ends in the energized condition; and

the energized distance is one of: (a) substantially equal to the drawn distance; and (b) equal to the drawn distance.

20. The method of claim 18 , comprising:

structuring the energizer to comprise:

a motion generator operatively coupled to the electrical power source;

a drive shaft operatively coupled to the motion generator;

a rotor operatively coupled to the drive shaft;

a belt coupled to the rotor; and

coupling the belt to a plurality of limb retainers, wherein:

each one of the limb retainers is pivotally coupled to the body; and

each one of the coupled limb ends is coupled to one of the limb retainers.

Assignments (2)
CHANGE OF NAME Recorded Oct 10, 2019
From: BAKKE INVEST AS
To: KRYSSE AS
Reel/Frame 050699/0426 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 17, 2018
From: THALBERG, ANDERS P.
To: BAKKE INVEST AS
Reel/Frame 046366/0774 →
Continuity (3)
Provisional Application 62578640 · Oct 30, 2017
Provisional Application 62533739 · Jul 18, 2017
Related Publication 20190025004A1 · Jan 24, 2019
Cited By (4)
US 12,460,892 US 12,460,893 US 12,546,555 US 12,571,607