IP Library Granted Patent US 12,624,936
Granted Patent B2
US 12,624,936 · App. 18/378,031 · Granted May 12, 2026

Separating primer cup of a propulsion module for a conducted electrical weapon

Inventors: Steven N.D. Brundula (Sedro-Woolley, WA); Oleg Nemtyshkin (Scottsdale, AZ); Aleksander Petrovic (Phoenix, AZ); Patrick W. Smith (Scottsdale, AZ)
F42C19/12F41A19/58F41H13/0025
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Quick Facts
Patent No.
US 12,624,936
App. No.
18/378,031
Granted
May 12, 2026
Kind
B2
Abstract

A conducted electrical weapon (“CEW”) deploys wire-tethered electrodes after generation of an ignition signal. The ignition signal is provided to a deployment unit. The deployment unit includes a primer material adjacent a conductor. The conductor conducts the ignition signal outside the primer material. A temperature of the conductor increases in response to receiving the ignition signal. The primer material ignites in response to the increase in temperature of the conductor.

Claims (37)

1 . A propulsion module, comprising:

an ignition cap, wherein the ignition cap comprises a base portion opposite an inner receptacle portion, and wherein the base portion comprises a larger radius than the inner receptacle portion;

a primer cup coupled to the inner receptacle portion of the ignition cap;

an ignition pin comprising a first end opposite a second end, wherein the first end is positioned within the primer cup, and wherein the second end extends through the base portion of the ignition cap; and

a primer material positioned within the primer cup, wherein in response to an ignition of the primer material the primer cup is configured to separate from the inner receptacle portion of the ignition cap to permit a motion of the primer cup in a direction away from the ignition cap.

2 . The propulsion module of claim 1 , wherein the motion of the primer cup is configured to translate a propulsion force to a component in the propulsion module.

3 . The propulsion module of claim 2 , wherein the component comprises a projectile or a capsule containing a secondary source of propellant.

4 . The propulsion module of claim 1 , wherein the motion of the primer cup is configured to directly or indirectly cause deployment of a projectile.

5 . The propulsion module of claim 4 , wherein the motion of the primer cup is configured to cause a propulsion force to be applied directly to the projectile to cause deployment of the projectile.

6 . The propulsion module of claim 4 , further comprising a secondary source of propellant proximate the primer cup, wherein the motion of the primer cup is configured to apply a first propulsion force to the secondary source of propellant, and wherein application of the first propulsion force is configured to cause the secondary source of propellant to provide a second propulsion force to cause deployment of the projectile.

7 . The propulsion module of claim 1 , further comprising:

a puncture tip; and

a propellant capsule in proximity with the puncture tip, wherein the motion of the primer cup is configured to apply a first force to the propellant capsule, wherein in response to receiving the first force the propellant capsule is configured to contact the puncture tip, and wherein in response to contacting the puncture tip the propellant capsule is configured to release a propulsion force.

8 . The propulsion module of claim 7 , wherein the propulsion force is configured to cause deployment of a projectile.

9 . The propulsion module of claim 1 , further comprising a conductor configured to ignite the primer material.

10 . The propulsion module of claim 9 , wherein the primer cup comprises a base axially offset from the conductor, and wherein the primer material is positioned within the primer cup between the base of the primer cup and the conductor.

11 . A deployment unit for a projectile launcher comprising:

a projectile; and

a propulsion module configured to cause deployment of the projectile, the propulsion module comprising:

an ignition cap, wherein the ignition cap comprises a base portion opposite an inner receptacle portion, and wherein the base portion comprises a larger radius than the inner receptacle portion;

a primer cup coupled to the inner receptacle portion of the ignition cap;

a primer material positioned within the primer cup, wherein in response to an ignition of the primer material the primer cup is configured to separate from the inner receptacle portion of the ignition cap;

a puncture tip; and

a propellant capsule positioned between the primer cup and puncture tip, wherein separation of the primer cup from the inner receptacle portion of the ignition cap causes the propellant capsule to contact the puncture tip and release a propulsion force, and wherein the propulsion force is configured to cause deployment of the projectile.

12 . The deployment unit of claim 11 , wherein the primer cup comprises walls and a base defining a concave region, wherein the primer material is disposed within the concave region.

13 . The deployment unit of claim 12 , wherein the concave region comprises an opening opposite the base, and wherein the opening is oriented towards the ignition cap.

14 . The deployment unit of claim 12 , wherein the base is oriented towards the projectile.

15 . The deployment unit of claim 11 , wherein the propulsion module further comprises an ignition pin, wherein a first end of the ignition pin is positioned within the primer cup, and wherein a second end of the ignition pin extends through the ignition cap.

16 . A method of deploying a projectile using a propulsion module, the method comprising:

receiving an ignition signal;

igniting a primer material in response to the ignition signal, wherein the primer material is positioned within a primer cup, wherein the primer cup is coupled to an ignition cap, wherein the ignition cap comprises a base portion opposite an inner receptacle portion, wherein the base portion comprises a larger radius than the inner receptacle portion, wherein the inner receptacle portion is coupled to the primer cup, and wherein the primer cup is positioned proximate the projectile;

separating the primer cup from the inner receptacle portion of the ignition cap in response to the igniting of the primer material, wherein the separating of the primer cup transfers a propulsion force generated by the igniting of the primer material directly to the projectile; and

deploying the projectile in response to the primer cup transferring the propulsion force generated by the igniting of the primer material directly to the projectile.

17 . The method of claim 16 , further comprising providing a stimulus signal through the projectile.

18 . The method of claim 16 , wherein the ignition signal is conducted by a conductor outside the primer material and adjacent to a surface of the primer material.

19 . The method of claim 16 , wherein an ignition pin is positioned within the primer cup and through the ignition cap.

20 . The method of claim 19 , wherein the ignition signal is provided through the ignition pin.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 18, 2023
From: BRUNDULA, STEVEN N.D.; NEMTYSHKIN, OLEG; PETROVIC, ALEKSANDER; SMITH, PATRICK W.
To: AXON ENTERPRISE, INC.
Reel/Frame 065271/0069 →
Continuity (3)
Continuation 17011548 · Sep 3, 2020
Continuation 16153640 · Oct 5, 2018
Related Publication 20240035794A1 · Feb 1, 2024
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