IP Library Granted Patent US 11,853,030
Granted Patent B2
US 11,853,030 · App. 16/927,394 · Granted Dec 26, 2023

Soft smart ring and method of manufacture

Inventor: Kenneth Jason Sanchez (San Francisco, CA)
Assignee: BLUEOWL, LLC
G05B19/4099B29C64/10B29C64/20B29C64/393B33Y10/00B33Y30/00B33Y50/02B33Y80/00A44C9/0053B29L2031/7096G05B2219/49007
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Quick Facts
Patent No.
US 11,853,030
App. No.
16/927,394
Granted
Dec 26, 2023
Kind
B2
Abstract

A smart ring includes a body including flexible material, a first part, a second part removably connected to the first part, and at least one pair of break-away portions disposed within the body separate from the first part and the second part. One or more of a battery, a charging unit, a processor unit, a user input unit, a communication unit, a memory unit, at least one sensor unit, an output unit or a user input unit is disposed in or on one of the first part and the second part. Each of the break-away portions of the pair of break-away portions is removable from the other break-away portion upon movement of one break-away portion in a direction away from the other break-away portion.

Claims (49)

1. A smart ring comprising:

a body including a first part, a second part removably and azimuthally connected to the first part, a first pair of break-away portions disposed within the body including a first break-away portion connected to a first end of the first part and a second break-away portion connected to a first end of the second part, a second pair of break-away portions disposed within the body including a third break-away portion connected to a second end of the first part and a fourth break-away portion connected to a second end of the second part;

wherein:

the body comprises a flexible material;

at least one selected from a group consisting of a battery, a charging unit, a processor unit, a user input unit, a communication unit, a memory unit, a sensor unit, and an output unit, is disposed in or on one of the first part and the second part;

the first part of the body includes at least a part of the sensor unit;

the second part of the body includes at least a part of the output unit; and

the first break-away portion of the first pair of break-away portions is removable from the second break-away portion of the first pair of break-away portions.

2. The smart ring of claim 1 , wherein the body further comprises an inside surface adapted to contact a finger of a user during use, wherein the sensor unit or the output unit is disposed on the inside surface.

3. The smart ring of claim 1 , wherein at least a portion of the body comprises an electric sensor fabric material.

4. The smart ring of claim 1 , wherein a portion of the body includes a silicone material adapted to function as part of one of an artificial muscle and a nerve, wherein the silicone material is configured to generate electricity or sense pressure.

5. The smart ring of claim 1 , wherein the body further comprises an outside surface, wherein at least one selected from a group consisting of a sensor and an output element is disposed on the outside surface.

6. The smart ring of claim 1 , wherein the first break-away portion includes a first magnet and the second break-away portion includes a second magnet.

7. The smart ring of claim 1 , wherein the sensor unit includes at least one selected from a group consisting of a touch sensor, a biometric sensor, a temperature sensor, an electronic sensor, an acceleration sensor, a sound sensor, and a light sensor.

8. The smart ring of claim 1 , further comprising a housing, wherein the at least one selected from a group consisting of the battery, the charging unit, the processing unit, the user input unit, the communication unit, the memory unit, the sensor unit, and the output unit is disposed within the housing, and the body is coupled to the housing.

9. The smart ring of claim 1 , wherein the processor unit or the output unit is coupled to an output device, the output device including a display or a speaker.

10. The smart ring of claim 1 , where the first part of the body is a front part of the body including a recess, and the second part of the body is a rear part of the body including a tab adapted to be disposed within the recess when the first part of the body and the second part of the body are connected to each other, and the first break-away portion is disposed adjacent to the recess and the second break-away portion is disposed on or attached to the tab, such that the first break-away portion and the second break-away portion are adjacent to each other when the tab is disposed within the recess.

11. The smart ring of claim 1 , where the first part of the body is a top body part, and the second part of the body is a bottom body part, and the first break-away portion is attached to the top body part, and the second break-away portion is attached to the bottom body part, such that the first break-away portion and the second break-away portion are adjacent to and in contact with each other when the bottom body part is connected to the top body part.

12. A method of manufacturing a smart ring, the method comprising:

creating a first part of a body with a flexible material by a process being at least one process selected from a group consisting of heat molding, injection molding, ink printing, stamping, metal forming, machining, and additive manufacturing;

creating a second part of the body with a flexible material by the process, the second part configured to azimuthally connect to the first part;

providing a first pair of break-away portions including a first break-away portion and a second break-away portion, the first break-away portion being removable from the second break-away portion;

providing a second pair of break-away portions including a third break-away portion and a fourth break-away portion;

coupling the first break-away portion to a first end of the first part and the third break-away portion to a second end of the first part;

coupling the second break-away portion to a first end of the second part and the fourth break-away portion to a second end of the second part; and

disposing at least one selected from a group consisting of a battery, a charging unit, a processor unit, a user input unit, a communication unit, a memory unit, a sensor unit, and an output unit, in or on one of the first part of the body, the second part of the body;

wherein:

the first part of the body includes at least a part of the sensor unit; and

the second part of the body includes at least a part of the output unit.

13. The method of claim 12 , wherein the first pair of break-way portions include a pair of magnetic break-away portions.

14. The method of claim 12 , further comprising disposing a sensor or an output element on an inside surface of the body.

15. The method of claim 12 , further comprising disposing a sensor or an output element on an outside surface of the body.

16. The method of claim 15 , wherein the output element includes at least one selected from a group consisting of an LCD display, an OLEO display, one or more e-ink displays, one or more LED pixels, and a speaker.

17. A system for additively manufacturing a smart ring, the system comprising:

a communication network;

a scanning device communicatively coupled to the communication network and includes:

a memory configured to store a scanning module, and

at least one processor configured to execute the scanning module to create a user-specific scan; and

a computing device communicatively coupled to the communication network, the scanning device, and a 3D printer, the computing device having a memory, at least one processor, a transmitter, and a receiver;

wherein when a module stored in the memory of the computing device is executed by the at least one processor of the computing device, the computing device is configured to:

receive data from the scanning device relating to the user-specific scan; and

create a user-specific smart ring profile based at least in part on the data received from the scanning device, the user-specific smart ring profile adapted to be transmitted to the 3D printer to implement the user-specific smart ring profile;

wherein the 3D printer is configured to receive the user-specific smart ring profile from the computing device and implement the user-specific smart ring profile to additively manufacture a smart ring comprising a body including a first part, a second part removably and azimuthally connected to the first part, a first pair of break-away portions disposed within the body including a first break-away portion connected to a first end of the first part and a second break-away portion connected to a second end of the second part, and a second pair of break-away portions disposed within the body including a third break-away portion connected to a first end of the first part and a fourth break-away portion connected to a second end of the second part, the body comprises a flexible material;

wherein:

the first part of the body includes at least a part of a sensor unit; and

the second part of the body includes at least a part of an output unit.

18. The system of claim 17 , wherein the body further comprises an inside surface adapted to contact a finger of a user during use, wherein at least one selected from a group consisting of a sensor and an output element is disposed on the inside surface.

19. The system of claim 17 , wherein the at least a portion of the body comprises an electric sensor fabric material.

20. The system of claim 17 , where the scanning device includes a volumetric capture sensor.

Assignments (2)
CHANGE OF NAME Recorded May 29, 2024
From: BLUEOWL, LLC
To: QUANATA, LLC
Reel/Frame 067558/0600 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 26, 2023
From: SANCHEZ, KENNETH JASON
To: BLUEOWL, LLC
Reel/Frame 065354/0682 →
Continuity (3)
Provisional Application 62988065 · Mar 11, 2020
Provisional Application 62877391 · Jul 23, 2019
Related Publication 20230205170A1 · Jun 29, 2023
Cited By (1)
US 12,611,806