IP Library › Granted Patent US 12,161,867
Granted Patent B2
US 12,161,867 · App. 18/129,876 · Granted Dec 10, 2024

Biometric sensor

Inventor: Steven Wayne Goldstein (Delray Beach, FL)
Assignee: Intellishot Holdings Inc.
A61N1/36028A61B5/0533A61N1/0456A61N1/0476A61N1/36031A61N1/36034G06F3/041G07C9/00563G06F2203/04101
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Quick Facts
Patent No.
US 12,161,867
App. No.
18/129,876
Granted
Dec 10, 2024
Kind
B2
Abstract

An access control unit having a novel structure and arrangement, including a first layer comprising an electrostimulation contact interface, a second layer including a biometric sensor coupled to the electrostimulation contact interface, and a third layer including a microprocessor unit in communication with the electrostimulation contact interface. The second layer is sandwiched between the first layer and the third layer. The electrostimulation contact interface comprises one or more anode/cathode arrays configured to deliver neurostimulative excitations to the electrostimulation contact interface to elicit behavior modification.

Claims (35)

1. A self-contained fully intergraded access control unit comprising:

a first layer comprising an electrostimulation contact interface;

a second layer comprising a biometric sensor coupled to the electrostimulation contact interface; and

a third layer comprising a microprocessor unit in communication with the electrostimulation contact interface, wherein

the second layer is sandwiched between the first layer and the third layer of said access control unit,

the electrostimulation contact interface comprises one or more anode-cathode arrays, and

the one or more anode-cathode arrays are configured to deliver neurostimulative excitations to the electrostimulation contact interface when a received biometric data by the biometric sensor does not match with a prestored biometric data.

2. The self-contained fully intergraded access control unit of claim 1 , wherein magnitude and type of the neurostimulative excitations delivered to the electrostimulation contact interface are based on a dynamic changing environmental factor.

3. The self-contained fully intergraded access control unit of claim 2 , wherein the dynamic changing environmental factor is at least one of time of day, weather, and location.

4. The self-contained fully intergraded access control unit of claim 1 , wherein

the biometric sensor is activated when a user is in close proximity to said access control unit, and

the one or more anode-cathode arrays are configured to deliver neurostimulative excitations to the electrostimulation contact interface depending on a result of a comparison of a received biometric data by the biometric sensor with prestored biometric data.

5. The self-contained fully intergraded access control unit of claim 4 , wherein the close proximity is up to ¼ inch distance.

6. The self-contained fully intergraded access control unit of claim 5 , wherein the variable neurostimulative excitations sequentially increase or decrease in magnitude when a user remains in close proximity to the access control unit.

7. The self-contained fully intergraded access control unit of claim 1 , wherein the biometric sensor is a biometric fingerprint sensor.

8. The self-contained fully integrated access control unit according to claim 1 , wherein the anode-cathode arrays are configured to deliver neurostimulative excitations to the electrostimulation contact interface to dissuade a non-authorized user from taking any further action to gain access via the access control unit.

9. The access control unit according to claim 1 , wherein a portion of the biometric sensor is positioned below the electrostimulation contact surface.

10. The self-contained fully intergraded access control unit of claim 1 , wherein the access control unit is integrated into a target object.

11. The self-contained fully intergraded access control unit of claim 10 , wherein the target object is a door fixture, door handle, container handle or enclosure handle.

12. The self-contained fully intergraded access control unit of claim 10 , wherein the access control unit is integrated into a target object and a magnitude of the variable neurostimulative excitations delivered increases based on an increased interaction with the target object.

13. The self-contained fully intergraded access control unit of claim 12 , wherein the increased excitation is a function of amount of interaction for rotation of the target object.

14. The self-contained fully intergraded access control unit of claim 1 , further comprising a high voltage generator operatively coupled to the anode-cathode arrays.

15. The self-contained fully intergraded access control unit of claim 1 , wherein each of the anode-cathode arrays has a rounded shape.

16. The self-contained fully intergraded access control unit of claim 1 , further comprising:

authentication electronics incorporated in the biometric sensor, wherein

the authentication electronics configured to operatively communicate with an authentication engine and to store authorized and non-authorized user interactions with the access control unit.

17. The self-contained fully intergraded access control unit of claim 16 , wherein the authentication engine uses an artificial intelligence-based implementation configured to continuously learn and update an optimal profile for each user that interacts with the access control unit based in part on input received from the biometric sensor, wherein the optimal profile refers to the magnitude and type of the electrical neurostimulus delivered to the user in the event of a non-authorized user interaction with the access control unit.

18. The self-contained fully intergraded access control unit of claim 17 , wherein after a subsequent interaction attempt by the same non-authorized user, the same optimal profile is applied to the user at the outset.

19. A self-contained fully integrated access control unit, comprising:

a first section on a front side of said control unit, the first section comprising an electrostimulation contact interface and a biometric sensor;

a second section on a back side of said control unit, the second section comprising a microprocessor unit in communication with the electrostimulation contact interface; and

a biometric sensor located within said control unit, the biometric sensor in communication with the microprocessor unit and the electrostimulation contact surface, wherein

the first section is connected to the second section to form said control unit,

the electrostimulation contact interface comprises one or more anode-cathode arrays, and

the one or more anode-cathode arrays are configured to deliver neurostimulative excitations to the electrostimulation contact interface when a received biometric data by the biometric sensor does not match with a prestored biometric data.

Assignments (2)
SECURITY INTEREST Recorded Feb 9, 2026
From: MYTI, INC.
To: GOMES, TIM; GAIA HOLDINGS, LLC
Reel/Frame 073727/0731 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 2, 2023
From: GOLDSTEIN, STEVEN WAYNE
To: INTELLISHOT HOLDINGS INC.
Reel/Frame 063199/0260 →
Continuity (5)
Continuation 17407570 · Aug 20, 2021
Continuation 17151573 · Jan 18, 2021
Provisional Application 62963107 · Jan 19, 2020
Provisional Application 62963110 · Jan 19, 2020
Related Publication 20230248971A1 · Aug 10, 2023