IP Library Granted Patent US 11,022,390
Granted Patent B2
US 11,022,390 · App. 16/369,505 · Granted Jun 1, 2021

Ammunition management device and method

Inventors: Luther Cifers (Amelia, VA); Kenneth P. Green (Lunenburg, VA)
Assignee: MagPump, LLC
F41A9/83
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Quick Facts
Patent No.
US 11,022,390
App. No.
16/369,505
Granted
Jun 1, 2021
Kind
B2
Abstract

An ammunition management device and method are disclosed herein. The ammunition management device, in an embodiment, includes an ammunition receiver, a first structure configured to receive ammunition units from the ammunition receiver, a guide configured to reposition the ammunition units, and a second structure configured to be coupled to an end of a gun magazine. The ammunition management device also includes a drive member configured to force each one of the ammunition units into the end of the gun magazine.

Claims (79)

1. An ammunition management device comprising:

a housing comprises a plurality of housing sides, wherein the housing defines a space between the housing sides, wherein a first portion of the space is configured to hold a plurality of ammunition units, wherein each of the ammunition units extends along a longitudinal ammunition axis, wherein each of the ammunition units comprises a first end and a second end that differs from the first end;

a first structure at least partially positioned within the space of the housing, wherein the first structure is configured to receive each of the ammunition units, wherein, for each of the ammunition units, the first structure is configured to direct the first end to pass through the first structure before the second end passes through the first structure;

a guide at least partially positioned within the space of the housing, wherein the guide is intersected by a vertical plane when the ammunition management device is vertically oriented, wherein:

the guide comprises an upper guide portion and a lower guide portion;

the guide defines a passage extending from the upper guide portion to the lower guide portion;

the passage comprises an upper passage portion and a lower passage portion, wherein the lower passage portion is smaller than the upper passage portion;

the passage is positioned within a second portion of the space of the housing;

the guide comprises first and second ammunition guide surfaces spaced apart from each other, wherein each of the first and second ammunition guide surfaces extends, at least partially, from the upper guide portion to the lower guide portion, wherein the first and second ammunition guide surfaces at least partially define the passage;

for each of the ammunition units, the guide is configured to:

receive the first end of the ammunition unit;

if the first end faces in a first direction, engage the first end with the first ammunition guide surface;

if the first end faces in a second direction, engage the first end with the second ammunition guide surface; and

gradually cause a plurality of repositions of the ammunition unit, wherein each of the repositions results in a decrease in an angular difference between the longitudinal ammunition axis and the vertical plane; and

the repositions occur while the ammunition unit moves downward through the passage;

a second structure coupled to the housing, wherein the second structure defines an opening that at least partially provides access to the space of the housing, wherein the second structure is configured to be coupled to an end of a gun magazine;

a drive member supported by the housing, wherein the drive member is configured to force each one of the ammunition units into the end of the gun magazine;

an electrical element supported by the housing, wherein the electrical element is operatively coupled to the drive member; and

a support coupled to the housing sides, wherein the support is configured to support the first structure, the guide, the second structure, the drive member and the electrical element.

2. The ammunition management device of claim 1 , wherein:

the housing comprises an upper housing portion that defines the first portion of the space; and

the upper housing portion comprises a hopper.

3. The ammunition management device of claim 1 , wherein the first end of each ammunition unit is heavier than the second end of the ammunition unit.

4. The ammunition management device of claim 1 , wherein the first structure comprises an orientation gate.

5. The ammunition management device of claim 1 , wherein:

the first structure defines a first passage configured to receive each of the ammunition units; and

the passage defined by the guide comprises a second passage.

6. The ammunition management device of claim 1 , wherein the first structure is configured to sequentially receive each of the ammunition units.

7. The ammunition management device of claim 1 , wherein the guide comprises a staging gate.

8. The ammunition management device of claim 1 , wherein the guide comprises one of a tapered geometry and a funnel-shaped geometry.

9. The ammunition management device of claim 1 , wherein the second structure comprises a magazine receiver.

10. The ammunition management device of claim 1 , wherein:

the drive member comprises a plunger; and

the electrical element comprises an electrical motor.

11. The ammunition management device of claim 1 , wherein the support comprises one of a bottom member and the housing.

12. An ammunition management device comprising:

a housing comprises a plurality of sides, wherein the housing defines a space between the sides, wherein a portion of the space is configured to receive a plurality of ammunition units, wherein each of the ammunition units:

(a) extends along a longitudinal ammunition axis; and

(b) comprises a first end and a second end that differs from the first end;

a first structure at least partially positioned within the space, wherein the first structure is configured to receive each of the ammunition units, wherein, for each of the ammunition units, the first structure is configured to cause the first end to pass through the first structure before the second end passes through the first structure;

a guide at least partially positioned within the space, wherein the guide is configured to be intersected by a vertical plane when the ammunition management device is vertically oriented, wherein, for each of the ammunition units, the guide is configured to reposition the ammunition unit, resulting in a decrease in an angular difference between the longitudinal ammunition axis and the vertical plane;

a second structure coupled to at least one of the sides, wherein the second structure is configured to be coupled to an end of a gun magazine;

a drive member supported by the housing, wherein the drive member is configured to force each one of the ammunition units into the end of the gun magazine; and

an electrical element operatively coupled to the drive member.

13. The ammunition management device of claim 12 , wherein:

the portion comprises a first portion;

the space comprises a second portion;

the first portion of the space is configured to hold the plurality of ammunition units; and

the opening of the second structure provides access to the second portion of the space.

14. The ammunition management device of claim 12 , wherein:

the housing comprises an upper housing portion that defines the portion of the space;

the upper housing portion comprises a hopper; and

the first structure comprises an orientation gate.

15. The ammunition management device of claim 12 , wherein the guide comprises a staging gate.

16. The ammunition management device of claim 12 , wherein the guide comprises one of a tapered geometry and a funnel-shaped geometry.

17. The ammunition management device of claim 12 , wherein:

the second structure comprises a magazine receiver;

the drive member comprises a plunger; and

the support comprises one of a bottom member and a housing portion.

18. The ammunition management device of claim 12 , comprising a support coupled to the sides, wherein the support is configured to support the first structure, the guide, the second structure, the drive member, and the electrical element.

19. A method for manufacturing an ammunition management device, the method comprising:

configuring a housing to comprise a plurality of sides so that there is a space between the sides and so that a portion of the space is configured to receive a plurality of ammunition units, wherein each of the ammunition units:

extends along a longitudinal ammunition axis; and

comprises a first end and a second end that differs from the first end;

at least partially positioning a first structure within the space, wherein the first structure is configured to receive each of the ammunition units so that, for each of the ammunition units, the first structure causes the first end to pass through the first structure before the second end passes through the first structure;

at least partially positioning a guide within the space, wherein the guide is configured to be intersected by a vertical plane when the ammunition management device is vertically oriented so that, for each of the ammunition units, the guide repositions the ammunition unit, resulting in a decrease in an angular difference between the longitudinal ammunition axis and the vertical plane;

coupling a second structure to at least one of the sides, wherein the second structure is configured to be coupled to an end of a gun magazine; and

coupling a drive member to the housing, wherein the drive member is configured to force each one of the ammunition units into the end of the gun magazine.

20. The method of claim 19 , comprising operatively coupling an electrical element to the drive member, wherein:

the configuring of the housing comprises configuring a hopper to define the portion of the space;

the at least partial positioning of the first structure comprises at least partially positioning an orientation gate within the space;

the at least partial positioning of the guide comprises at least partially positioning a staging gate within the space;

the coupling of the second structure comprises coupling a magazine receiver to at least one of the sides; and

the coupling of the drive member comprises coupling a plunger to the housing.

21. The ammunition management device of claim 12 , wherein:

the first structure is at least partially positioned within the space;

the guide comprises one of a tapered geometry and a funnel-shaped geometry;

the guide defines a passage; and

the passage is at least partially positioned within the space.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 29, 2019
From: CIFERS, LUTHER; GREEN, KENNETH P.; MITUSA MANUFACTURING INC.
To: MAGPUMP, LLC
Reel/Frame 048743/0328 →
Continuity (5)
Continuation 15662999 · Jul 28, 2017
Continuation 15166269 · May 27, 2016
Continuation In Part 14597054 · Jan 14, 2015
Provisional Application 61927431 · Jan 14, 2014
Related Publication 20190226782A1 · Jul 25, 2019