IP Library Granted Patent US 12,352,549
Granted Patent B2
US 12,352,549 · App. 18/446,962 · Granted Jul 8, 2025

Non-pyrotechnic diversionary device

Inventors: Curtis E. Graber (Woodburn, IN); Jonathan S. Willson (Cecil, OH)
Assignee: PavaShot, Inc.
F42B8/26F42B12/36
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Quick Facts
Patent No.
US 12,352,549
App. No.
18/446,962
Granted
Jul 8, 2025
Kind
B2
Abstract

A diversionary device including a triggering mechanism, a payload and a compressed gas container containing a compressed gas. The compressed gas is non-flammable. The triggering mechanism is coupled to the compressed gas container, and conveys at least some of the gas from the compressed gas container to the payload after a predetermined delay after the triggering mechanism is activated. The gas conveyed to the payload causes the payload to produce a diversionary acoustic effect.

Claims (30)

1. A diversionary device, comprising:

a triggering mechanism;

a payload including a first and a second envelope, the first envelope being inside the second envelope, the second envelope having a predetermined failure pattern; and

a compressed gas container containing a compressed gas, the compressed gas being non-flammable, the triggering mechanism being coupled to the compressed gas container, the triggering mechanism conveying at least some of the gas from the compressed gas container to the first envelope after a predetermined delay after the triggering mechanism is activated, the gas conveyed to the payload causing the payload to produce a diversionary acoustic effect.

2. The diversionary device of claim 1 , wherein the triggering mechanism has a restricted flow passage for some of the gas to traverse, a rate of flow of the gas in the restricted flow passage determining the predetermined delay of the triggering mechanism.

3. The diversionary device of claim 2 , wherein the triggering mechanism includes a piston biased to puncture the compressed gas container when the triggering mechanism is activated.

4. The diversionary device of claim 3 , wherein the piston is at a first position prior to the triggering mechanism being activated and the piston moves to a second position when the triggering mechanism is activated where the piston punctures the compressed gas container, an initial flow of the compressed gas causes the piston to move to a third position until the predetermined delay has expired causing the piston to move to a fourth position.

5. The diversionary device of claim 3 , wherein the piston performs multiple functions.

6. The diversionary device of claim 5 , wherein the multiple functions include at least three of the following:

(1) puncturing the compressed gas container;

(2) establishing a pathway for the compressed gas to enter a timing chamber;

(3) establishing a pathway for the compressed gas to inflate the payload; and

(4) metered-timing of a gas transfer process of the compressed gas.

7. The diversionary device of claim 1 , wherein the second envelope is a non-expanding fabric envelope and the first envelope is an expandable envelope, the compressed gas released within the first envelope rapidly expands the first envelope reaching the constraints of the second envelope and causing the second envelope to fail along the predetermined failure pattern thereby causing an acoustic wave that is the diversionary acoustic effect.

8. The diversionary device of claim 7 , wherein the payload further includes a dispersal compound located within the first and/or the second envelope, the dispersal compound being dispersed upon the failure of at least the second envelope.

9. The diversionary device of claim 1 , wherein the diversionary device does not include a flammable gas, nor does the device include a chemical exothermic compound.

10. A method of operating a diversionary device, comprising the steps of:

activating a triggering mechanism coupled to a payload, the payload including a first envelope inside a second envelope, the second envelope having a predetermined failure pattern; and

conveying at least some gas from a compressed gas container to the first envelope after a predetermined delay after the triggering mechanism is activated in the activating step, the gas conveyed to the first envelope causing the payload to produce a diversionary acoustic effect, the diversionary acoustic effect being a rapid overpressure rise time shockwave.

11. The method of operating the diversionary device of claim 10 , wherein the triggering mechanism has a restricted flow passage for some of the gas to traverse, a rate of flow of the gas in the restricted flow passage determining the predetermined delay of the triggering mechanism.

12. The method of operating the diversionary device of claim 11 , wherein the triggering mechanism includes a piston biased to puncture the compressed gas container when the triggering mechanism is activated.

13. The method of operating the diversionary device of claim 12 , wherein the piston is at a first position prior to the triggering mechanism being activated and the piston moving to a second position when the triggering mechanism is activated where the piston punctures the compressed gas container, an initial flow of the compressed gas causing the piston to move to a third position until the predetermined delay has expired causing the piston to then move to a fourth position.

14. The method of operating the diversionary device of claim 12 , wherein the piston performs at least three functions.

15. The method of operating the diversionary device of claim 14 , wherein the at least three functions include at least three of the following:

(1) puncturing the compressed gas container;

(2) establishing a pathway for the compressed gas to enter a timing chamber;

(3) establishing a pathway for the compressed gas to inflate the payload; and

(4) metered-timing of a gas transfer process of the compressed gas.

16. The method of operating the diversionary device of claim 10 , wherein the second envelope fails along the predetermined failure pattern thereby causing an acoustic wave that is the diversionary acoustic effect, the rapid overpressure rise time shockwave produces no less than 150 db or 630 pascals of overpressure within 0.25 ms.

17. The method of operating the diversionary device of claim 10 , wherein the diversionary device does not include a flammable gas, nor does the device include a chemical exothermic compound.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 9, 2023
From: GRABER, CURTIS E.; WILLSON, JONATHAN S.
To: PAVASHOT, INC.
Reel/Frame 064540/0217 →
Continuity (1)
Related Publication 20250052551A1 · Feb 13, 2025
References Cited (5)
US 8117966B1 · Graber · 2012 [cited by examiner]
US 8485101B2 · Frank · 2013 [cited by examiner]
US 8904940B1 · Pann · 2014 [cited by examiner]
US 8925538B2 · Chong · 2015 [cited by examiner]
US 10443992B2 · Cayer · 2019 [cited by examiner]