IP Library › Granted Patent US 10,712,110
Granted Patent B2
US 10,712,110 · App. 16/274,765 · Granted Jul 14, 2020

Smart-gun locking and unlocking systems and methods

Inventor: John Hafen (Woodinville, WA)
F41A17/063F41A17/64
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Quick Facts
Patent No.
US 10,712,110
App. No.
16/274,765
Granted
Jul 14, 2020
Kind
B2
Abstract

One aspect includes a smart-gun configured to communicate with user device via a communication network. The smart-gun can be configured from an unlocked configuration where the smart-gun is operable to fire, to a locked configuration where the smart-gun is inoperable to fire, the configuring to the locked configuration in response to a locking signal; and configured from the locked configuration where the smart-gun is inoperable to fire, to the unlocked configuration where the smart-gun is operable to fire, the configuring to the unlocked configuration in response to an unlocking signal.

Claims (61)

1. A smart-gun system comprising:

a smart-gun server; and

a plurality of device-smart-gun pairs, that each include:

a first user device that communicates with the smart-gun server; and

a first smart-gun that communicates with the first user device via a wireless network, the first smart-gun configured to be:

configured from an unlocked configuration where the first smart-gun is operable to fire, to a locked configuration where the first smart-gun is inoperable to fire, the configuring to the locked configuration in response to a locking signal;

maintained in the locked configuration where the first smart-gun is inoperable to fire in response to a lock-maintained signal;

configured from the locked configuration where the first smart-gun is inoperable to fire, to the unlocked configuration where the first smart-gun is operable to fire, the configuring to the unlocked configuration in response to an unlocking signal; and

maintained in the unlocked configuration where the first smart-gun is operable to fire in response to an unlock-maintained signal,

wherein a first locking signal is generated based at least in part on a determination that the first smart-gun and first user device are connected to different communication networks;

wherein a first unlocking signal is generated based at least in part on a first determination that the first smart-gun and first user device are connected to the same communication network;

wherein a first unlock-maintained signal is generated based at least in part on a second determination that the first smart-gun and first user device are connected to the same communication network;

wherein a second locking signal is generated based at least in part on a determination that the first smart-gun and first user device are more than a maximum defined distance apart;

wherein a second unlocking signal is generated based at least in part on a first determination that the first smart-gun and first user device are less than the maximum defined distance apart;

wherein a second unlock-maintained signal is generated based at least in part on a second determination that the first smart-gun and first user device are less than the maximum defined distance apart;

wherein a third locking signal is generated based at least in part on a determination that the first smart-gun is outside a defined physical boundary; and

wherein a third unlocking signal is generated based at least in part on a determination that the first smart-gun is inside the defined physical boundary.

2. The smart-gun system of claim 1 , wherein the different communication networks and the same communication network are wireless networks, including one or more of a cellular network and a Wi-Fi network.

3. The smart-gun system of claim 1 , wherein the determination that the first smart-gun and first user device are more than the maximum defined distance apart and the first and second determination that the first smart-gun and first user device are less than the maximum defined distance apart are based at least in part on:

determining a first and second wireless network that the first smart gun and first user device are respectively connected to;

determining a first distance between the first and second wireless network; and

determining whether the first distance is greater than or less than the maximum defined distance apart.

4. The smart-gun system of claim 1 , wherein the determination that the first smart-gun and first user device are more than the maximum defined distance apart and the first and second determination that the first smart-gun and first user device are less than the maximum defined distance apart are based at least in part on:

determining a respective location of the first smart gun and first user device;

determining a first distance corresponding to the respective locations of the first smart gun and first user device; and

determining whether the first distance is greater than or less than the maximum defined distance apart.

5. A smart-gun system comprising:

a first user device; and

a first smart-gun that communicates with the first user device via a communication network, the first smart-gun configured to be:

configured from an unlocked configuration where the first smart-gun is operable to fire, to a locked configuration where the first smart-gun is inoperable to fire, the configuring to the locked configuration in response to a locking signal; and

configured from the locked configuration where the first smart-gun is inoperable to fire, to the unlocked configuration where the first smart-gun is operable to fire, the configuring to the unlocked configuration in response to an unlocking signal,

wherein the locking signal is generated based at least in part on a determination that the first smart-gun and first user device are connected to different communication networks; and

wherein the unlocking signal is generated based at least in part on a first determination that the first smart-gun and first user device are connected to the same communication network.

6. The smart-gun system of claim 5 , wherein the different communication networks and the same communication network are wireless networks, including one of a cellular network and a Wi-Fi network.

7. The smart-gun system of claim 5 , wherein the locking signal is generated based at least in part on a determination that the first smart-gun and first user device are more than a maximum defined distance apart; and

wherein the unlocking signal is generated based at least in part on a first determination that the first smart-gun and first user device are less than the maximum defined distance apart.

8. The smart-gun system of claim 7 , wherein the determination that the first smart-gun and first user device are more than the maximum defined distance apart and the first determination that the first smart-gun and first user device are less than the maximum defined distance apart are based at least in part on:

determining a first and second wireless network that the first smart gun and first user device are respectively connected to;

determining a first distance between the first and second wireless network; and

determining whether the first distance is greater than or less than the maximum defined distance apart.

9. The smart-gun system of claim 7 , wherein the determination that the first smart-gun and first user device are more than the maximum defined distance apart and the first determination that the first smart-gun and first user device are less than the maximum defined distance apart are based at least in part on:

determining a respective location of the first smart gun and first user device;

determining a first distance corresponding to the respective locations of the first smart gun and first user device; and

determining whether the first distance is greater than or less than the maximum defined distance apart.

10. The smart-gun system of claim 5 , wherein the locking signal is generated based at least in part on a determination that the first smart-gun is outside a defined physical boundary; and

wherein the unlocking signal is generated based at least in part on a determination that the first smart-gun is inside the defined physical boundary.

11. The smart-gun system of claim 10 , wherein the defined physical boundary is defined by one of a room of a building, an interior of a building or a city block.

12. A smart-gun configured to communicate with user device via a communication network, the smart-gun configured to be:

configured from an unlocked configuration where the smart-gun is operable to fire, to a locked configuration where the smart-gun is inoperable to fire, the configuring to the locked configuration in response to a locking signal; and

configured from the locked configuration where the smart-gun is inoperable to fire, to the unlocked configuration where the smart-gun is operable to fire, the configuring to the unlocked configuration in response to an unlocking signal, wherein the locking signal is generated based at least in part on a determination that the smart-gun and user device are connected to different communication networks.

13. The smart-gun of claim 12 , wherein the different communication networks are different wireless networks, including one or more of a cellular network and a Wi-Fi network.

14. The smart-gun of claim 12 , wherein the locking signal is generated based at least in part on a determination that the smart-gun and user device are more than a maximum defined distance apart.

15. The smart-gun of claim 14 , wherein the determination that the smart-gun and user device are more than the maximum defined distance apart is based at least in part on:

determining a first and second network that the smart gun and user device are respectively connected to;

determining a first distance between the first and second network; and

determining whether the first distance is greater than or less than the maximum defined distance apart.

16. The smart-gun of claim 14 , wherein the determination that the smart-gun and user device are more than the maximum defined distance apart is based at least in part on:

determining a respective location of the smart gun and user device;

determining a first distance corresponding to the respective locations of the smart gun and user device; and

determining whether the first distance is greater than or less than the maximum defined distance apart.

17. The smart-gun of claim 12 , wherein the locking signal is generated based at least in part on a determination that the smart-gun is outside a defined physical boundary.

Continuity (3)
Continuation 15430354 · Feb 10, 2017
Provisional Application 62294171 · Feb 11, 2016
Related Publication 20190178596A1 · Jun 13, 2019