IP Library Granted Patent US 9,435,598
Granted Patent B2
US 9,435,598 · App. 14/476,924 · Granted Sep 6, 2016

Wireless dual module system for sensing and indicating the ammunition capacity of a firearm magazine

Inventor: Randall Seckman (Alexandria, VA)
F41A19/01F41A9/62
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Quick Facts
Patent No.
US 9,435,598
App. No.
14/476,924
Granted
Sep 6, 2016
Kind
B2
Abstract

This invention is to a wireless dual module system for sensing and indicating the remaining rounds contained within a detachable or integrated firearm magazine. The dual module system, one containing a display (display module) and one more round sensing modules (magazine module) may be implemented with no significant modifications to the firearm or magazine. The display module and one or more magazine modules wirelessly linked together are referred to as the system. The system is configured to provide the number of rounds remaining in a magazine, if a magazine is seated properly in the magazine, to indicate an empty magazine, or to indicate that the number of rounds remaining in the magazine is above or below a predetermined range. The system is able to provide an immediate indication of the remaining rounds in a magazine, regardless of the amount of rounds discharged or supplemented by the user.

Claims (23)

1. An ammunition count system for a firearm having an ammunition container with a pusher plate for pushing a number of rounds of ammunition from the container to the firearm, said system comprising:

a target attached to the pusher plate, wherein said target comprises a resonator;

said resonator including a ferrite core wound with a coil connected to a capacitor to form said resonator;

a printed circuit board containing patterned coils that are resonantly coupled to the target across an air gap, wherein the patterned coils are shaped to detect the target's movement and position relative to the ammunition container;

a resonant inductive sensing circuit electrically connected to the patterned coils that calculates and digitally outputs scaled numerical values by generating a waveform to inductively power the resonator and to measure the amplitude of return signals relative to the target's position above the patterned coils;

a microcontroller that is electrically connected to the resonant inductive sensing circuit that receives the outputted scaled numerical values and designates said values via firmware of the microcontroller to numerical ranges that correspond with a stationary position of the target in relation to an amount of rounds in the ammunition container to determine the number of rounds of ammunition within the container;

a primary or rechargeable battery electrically connected to the ammunition count system to provide power to the system.

2. The ammunition count system of claim 1 , further comprising an accelerometer electrically connected to the microcontroller for providing movement data and system wakeup functioning for the ammunition count system in response to movement, absence of movement, axis of the firearm, or recoil level at programmed thresholds of movement.

3. The ammunition count system of claim 2 , wherein said accelerometer further comprises an electrically connected load switch that is controlled through a logic or electrical output from the accelerometer for functioning as a motion-activated switch for the ammunition count system.

4. The ammunition count system of claims 1 , further comprising a radio frequency (RF) transceiver with an RF antenna electrically connected to the microcontroller to wirelessly transmit the ammunition count from said microcontroller to a remote RF transceiver having an electrically connected embedded microcontroller and matching RF antenna that are electrically interfaced to a display for viewing said ammunition count.

5. A contactless ammunition count system for a firearm having an ammunition container with a pusher plate pushing a number of rounds of ammunition from the container to the firearm, said system comprising:

said pusher plate having a maximum length of travel along a first pusher plate path from a first full position with a maximum number of rounds inserted into the container to a second empty position with no rounds inserted into the container;

a target attached to the pusher plate, wherein said target comprises a resonator,

said resonator including a core wound with a coil connected to a capacitor to form said resonator;

a printed circuit board containing patterned coils that are resonantly coupled to the target across an air gap, wherein the patterned coils are shaped to detect the target's movement and position relative to the ammunition container from the target's first full position to the target's second empty position.

a resonant inductive sensing circuit electrically connected to the patterned coils that calculates scaled numerical values by generating a waveform to inductively power the resonator and to measure the amplitude of return signals relative to the target's current position above the patterned coils to calculate the distance from a baseline to the target's current position;

a microcontroller for determining the current number of rounds of ammunition within the container based on the target's current position;

a display for displaying the determined, current number of rounds of ammunition within the container.

6. The ammunition count system of claim 5 , further comprising an accelerometer electrically connected to the microcontroller that provides movement data and system wakeup functioning for the ammunition count system in response to movement, absence of movement, axis of the firearm, or recoil level, at programmed thresholds.

7. The ammunition count system of claim 6 , wherein said accelerometer further comprises an electrically connected load switch that is controlled through a logic or electrical output from the accelerometer which functions as a motion-activated switch for the ammunition count system.

8. The ammunition count system of claim 5 , further comprising a radio frequency (RF) transceiver (transmitter) with an RF antenna electrically connected to the microcontroller to wirelessly transmit the ammunition count from said microcontroller to a remote RF transceiver (receiver) having an electrically connected embedded microcontroller and matching RF antenna that are electrically interfaced to the display for viewing said ammunition count.

9. The ammunition count system of claim 5 , wherein said printed circuit board is curvilinear and includes a shape that follows the first pusher plate path.

10. The ammunition count system of claim 5 , wherein said printed circuit board has curved shape that follows the first pusher plate path.

Continuity (1)
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