IP Library Granted Patent US 11,185,285
Granted Patent B2
US 11,185,285 · App. 16/232,292 · Granted Nov 30, 2021

Systems and methods for integrating electronics into a mouth guard

Inventors: Braxton Lathrop (Lake Oswego, OR); Cody Gabriel (Beaverton, OR); James Hall (Woodstock, CT); Michael Rosen (San Jose, CA); Nathan Stebor (Portland, OR); Philip Muse (Folsom, CA); Rita Brugarolas Brufau (Hillsboro, OR); Shea Dillon (Beaverton, OR); Stephanie Moyerman (Phoenix, AZ); Steven Xing (San Francisco, CA); Tyler Fetters (Hillsboro, OR)
Assignee: INTEL CORPORATION
A61B5/682A61B5/0028A61B5/02416A61B5/02438A63B71/085H01M8/16H01M16/003H04R1/028H04R1/46A61B5/14551A61B5/14552A61B2503/10A61B2560/0214A61B2560/0219A61B2562/164A61B2562/166A63B2220/40H01M2250/30H02J7/345
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Quick Facts
Patent No.
US 11,185,285
App. No.
16/232,292
Granted
Nov 30, 2021
Kind
B2
Abstract

Mouth guard that includes a flexible printed circuit board encapsulated within a base member is provided. The flexible printed circuit board includes multiple separate stiff sections spaced apart from each other within the base member. One or more electronic devices are disposed within the base member. In particular, the one or more electronics are disposed on the base member.

Claims (24)

1. A mouth guard, comprising:

a base member configured to fit inside a mouth of a user; and

at least one electronic device disposed within the base member, wherein at least one electronic device is disposed on a flexible printed circuit board encapsulated within base member, and wherein the flexible printed circuit board comprises a plurality of separate stiff sections laterally spaced apart from each other within the base member, and the plurality of separate stiff sections are physically and directly interconnected within the base member via the at least one electronic device, additional electronic devices, or electrical connections disposed on the plurality of separate stiff sections;

wherein the base member comprises a labial-buccal portion configured to be disposed in front of the user's teeth and a lingual portion configured to be disposed behind the user's teeth, and the flexible printed circuit board is encapsulated within the labial-buccal portion, wherein the at least one electronic device comprises at least one energy harvesting microbial fuel cell configured to power another electronic device, and wherein the at least one energy harvesting microbial fuel cell is coupled to an energy harvesting circuit comprising a rectifier, a supercapacitor, and a buck converter.

2. The mouth guard of claim 1 , wherein each separate stiff section of the plurality of separate stiff sections comprises a plurality of layers.

3. The mouth guard of claim 2 , wherein the plurality of layers comprises a stiffener layer closest to the user's teeth.

4. The mouth guard of claim 3 , wherein the stiffener layer comprises a glass-reinforced epoxy laminate material.

5. The mouth guard of claim 3 , wherein the plurality of layers comprises one or more polyamide layers and one or more adhesive layers disposed on the stiffener layer.

6. The mouth guard of claim 1 , wherein the at least one electronic device comprises a bone conducting device configured to receive a remote communication and to conduct the communication to the user's ear via the user's teeth and skull.

7. The mouth guard of claim 1 , wherein the at least one electronic device comprises a heart rate monitoring device.

8. The mouth guard of claim 7 , wherein the heart rate monitoring device is disposed within the base member at a location configured to be adjacent an artery of the user's face.

9. The mouth guard of claim 1 , wherein the at least one energy harvesting microbial fuel cell comprises an anode disposed outside the base member, while a remainder of the microbial fuel cell is disposed within the base member.

10. The mouth guard of claim 1 , wherein the plurality of separate stiff sections are physically and directly interconnected within the base member in a serial manner.

11. A mouth guard, comprising:

a base member configured to fit inside a mouth of a user;

a bone conducting device disposed within the base member and configured to receive a remote audible communication and to conduct the remote audible communication to the user's ear via the user's teeth and skull;

an energy harvesting microbial fuel cell disposed within the base member and configured to power the bone conducting device, wherein energy harvesting microbial fuel cell is coupled to an energy harvesting circuit comprising a rectifier, a supercapacitor, and a buck converter; and

a flexible printed circuit board encapsulated within a labial-buccal portion of the base member, wherein the flexible printed circuit board comprises a plurality of separate stiff sections disposed along the labial-buccal portion, and wherein components of the bone conducting device and the energy harvesting microbial fuel cell are both disposed on the plurality of stiff sections within the base member and directly and physically interconnect at least some stiff sections of the plurality of stiff sections within the base member.

12. The mouth guard of claim 11 , wherein each separate stiff section of the plurality of separate stiff sections comprises a plurality of layers.

13. The mouth guard of claim 12 , wherein the plurality of layers comprises a stiffener layer closest to the user's teeth, and wherein the plurality of layers comprises one or more polyamide layers and one or more adhesive layers disposed on the stiffener layer.

14. A mouth guard, comprising:

a base member configured to fit inside a mouth of a user; and

at least one energy harvesting microbial fuel cell disposed within the base member and configured to power another electronic device within the base member, wherein the at least one energy harvesting microbial fuel cell comprises an anode disposed outside the base member, while a remainder of the microbial fuel cell is disposed within the base member.

15. The mouth guard of claim 14 , comprising a flexible printed circuit board encapsulated within a labial-buccal portion of the base member, wherein the flexible printed circuit board comprises a plurality of separate stiff sections disposed within the labial-buccal portion laterally spaced apart from each other, and wherein remainder of the microbial fuel cell is disposed on the plurality of stiff sections within the base member and directly and physically interconnect at least some stiff sections of the plurality of stiff sections within the base member.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 15, 2026
From: INTEL CORPORATION
To: INTEL PRODUCTS IP LLC
Reel/Frame 076025/0681 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 23, 2019
From: LATHROP, BRAXTON; GABRIEL, CODY; HALL, JAMES; ROSEN, MICHAEL; STREBOR, NATHAN; MUSE, PHILIP; BRUFAU, RITA BRUGAROLAS; DILLON, SHEA; MOYERMAN, STEPHANIE; XING, STEVEN; FETTERS, TYLER
To: INTEL CORPORATION
Reel/Frame 049836/0933 →
Continuity (1)
Related Publication 20190125261A1 · May 2, 2019