IP Library Granted Patent US 10,816,293
Granted Patent B2
US 10,816,293 · App. 16/436,150 · Granted Oct 27, 2020

Apparatus, system and method for reducing gun violence

Inventors: Chun-Liang Nieh (Boston, MA); Delson Faria Dasilva (Natick, MA); Codrin Cobzaru (Iasi, RO)
Assignee: Truss Technologies, Inc.
F41A17/08F41A17/06F41A17/46
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Quick Facts
Patent No.
US 10,816,293
App. No.
16/436,150
Granted
Oct 27, 2020
Kind
B2
Abstract

A firearms operating mechanism included in a firearm. The firearms operating mechanism including a trigger bar and a compliant mechanism coupled to the trigger bar, the compliant mechanism operable in at least a first state and a second state. When the compliant mechanism is in the first state the trigger bar is positioned to operate as a part of the firearms operating mechanism to fire the firearm in response to a trigger pull. When the compliant mechanism is in the second state the trigger bar is modified such that the trigger pull is incapable of firing the firearm.

Claims (28)

1. A locking mechanism configured to render a firearm inoperable, the firearm including a firearm operating mechanism that couples a trigger to firing pin included in the firearm, the locking mechanism comprising:

a compliant mechanism coupled to the firearm operating mechanism, the compliant mechanism operable in at least a first state and a second state when coupled to the firearm operating mechanism,

wherein with the compliant mechanism in the first state, the compliant mechanism is positioned in an aligned position to travel axially as a part of the firearm operating mechanism such that the firearm will fire in response to a trigger pull; and

wherein with the compliant mechanism in the second state the compliant mechanism is displaced to an unaligned position when the trigger is pulled such that the trigger pull is incapable of firing the firearm with the compliant mechanism in the second state.

2. The locking mechanism of claim 1 , wherein the firearm operating mechanism includes a trigger bar, and

wherein the compliant mechanism is included in the trigger bar.

3. The locking mechanism of claim 1 , further comprising an electronic system coupled to the compliant mechanism and configured to respond to a wireless signal, wherein the electronic system operates to place the compliant mechanism in the second state in response to the wireless signal indicting that the firearm should be rendered inoperable.

4. The locking mechanism of claim 3 , wherein the electronic system includes at least one of an inertial navigation system, a system in communication with a satellite-based positioning system and a system for triangulation via a cellular network, and

wherein the wireless signal is received as a result of geographic location of the firearm.

5. The locking mechanism of claim 1 , wherein the compliant mechanism is included in an element of the firearm operating mechanism that travels in a first direction, and

wherein the compliant mechanism includes a rigid member configured to operate in a direction orthogonal to the first direction.

6. The locking mechanism of claim 5 , further comprising a plurality of flexible members coupling the rigid member to the firearm operating mechanism.

7. The locking member of claim 5 , wherein the rigid member is configured to travel in a plane common to a plane in which the element of the firearm operating mechanism travels.

8. The locking member of claim 5 , further comprising a traveling member moveable between a first position configured to prevent a movement of the rigid member and a second position in which the rigid member is free to operate in the direction orthogonal to the first direction.

9. The locking member of claim 8 , further comprising an actuator configured to move the traveling member from the first position to the second position.

10. The locking member of claim 9 , wherein the actuator includes at least one of a linear actuator, a rotary actuator, a solenoid, a motor and a MEMS device.

11. The locking mechanism of claim 8 , wherein an operation of the actuator is controlled in response to location-based information.

12. The locking mechanism of claim 3 , wherein the electronic system includes:

a processor configured to process information provided by the wireless signal; and

a locking mechanism controller coupled to the processor.

13. The locking mechanism of claim 12 , further comprising a location positioning system configured to provide information employed to identify a location of the firearm, the location positioning system in communication with the processor,

wherein the wireless signal includes a locking signal, and

wherein the locking mechanism controller operates to place the compliant mechanism in the second state following a processing of the locking signal by the processor.

14. The locking mechanism of claim 13 , wherein the compliant mechanism is included in an element of the firearm operating mechanism that travels in a first direction, and

wherein the compliant mechanism includes a rigid member configured to operate in a direction orthogonal to the first direction.

15. The locking mechanism of claim 14 , further comprising at least one flexible member coupling the rigid member to the firearm operating mechanism.

16. The locking member of claim 15 , wherein the rigid member is configured to travel in a plane common to a plane in which the element of the firearm operating mechanism travels.

17. The locking member of claim 16 , further comprising a traveling member moveable between a first position configured to prevent a movement of the rigid member and a second position in which the rigid member is free to operate in the direction orthogonal to the first direction.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 9, 2019
From: NIEH, CHUN-LIANG; DASILVA, DELSON FARIA; COBZARU, CODRIN
To: TRUSS TECHNOLOGIES, INC.
Reel/Frame 049702/0186 →
Continuity (2)
Provisional Application 62682400 · Jun 8, 2018
Related Publication 20190376756A1 · Dec 12, 2019
Cited By (1)
US 12,398,968