IP Library Granted Patent US 11,188,124
Granted Patent B2
US 11,188,124 · App. 17/013,348 · Granted Nov 30, 2021

Wearable computing device

Inventors: Curt C. von Badinski (San Francisco, CA); Michael J. Strasser (San Francisco, CA); Peter Twiss (San Francisco, CA)
Assignee: Proxy, Inc.
G06F1/163A61B5/01A61B5/021A61B5/0205A61B5/02416A61B5/1118A61B5/1455A61B5/14532A61B5/332A61B5/349A61B5/681A61B5/6826G01P15/00G02B19/0052G02B19/0061G04G21/02G04G21/025G06F1/1635G06F3/014G06F3/017G06F3/14G06F21/32G06K9/00885G06K9/00892G06K9/6202G08B5/36G08B21/02G08C17/02H02J7/0044H02J7/0047H02J7/35H02S40/22H02S99/00A61B2560/0214A61B2560/0412A61B2562/146A61B2562/164A61B2562/166G02B19/0042G06K2009/00939G08C2201/30Y02E10/52
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 11,188,124
App. No.
17/013,348
Filed
Sep 4, 2020
Granted
Nov 30, 2021
Kind
B2
Art Unit
2689
USPC
726/19
Abstract

A smart ring includes a curved housing having a U-shape interior storing components including: a curved battery approximately conforming to the curved housing, a semi-flexible PCB approximately conforming to the curved housing and having mounted thereon: a motion sensor for generating motion data from physical perturbations of the smart ring, a memory for storing executable instructions, a transceiver for sending data to a client computer, a temperature sensor, and a processor for receiving motion data and performing executable instructions in response thereto, and a potting material disposed in the interior, forming an interior wall of the smart ring, wherein the potting material encapsulates the components and is substantially transparent to visible light, infrared light, and/or ultraviolet light.

Claims (73)

1. A wearable computing device configured to be worn around a finger of a wearer comprising:

an external housing having an outer surface, an interior surface and sidewalls, wherein the interior surface and the sidewalls are characterized by approximately a C-shaped cross section and define an interior space, and wherein the interior space is configured to retain a plurality of components;

wherein the plurality of components comprises:

a curved rechargeable battery disposed within the interior space of the housing, wherein the rechargeable battery is curved to conform to the interior surface;

a printed circuit board disposed within the interior space configured to approximately conform to the interior surface;

one or more sensors disposed upon the printed circuit board, wherein the one or more sensors are selected from a group consisting of: an accelerometer, a gyroscope, and a motion sensor, wherein the one or more sensors are configured to sense physical perturbations and to output sensed data;

a memory disposed upon the printed circuit board, the memory configured to store one or more executable instructions;

a short-range communication module disposed upon the printed circuit board, the short-range communications module configured to communicate a first set of data to a client computing device via a first communications protocol;

a first temperature sensor configured to provide first temperature data associated with a temperature of a wearer of the wearable computing device;

a processor disposed upon the printed circuit board and coupled to the battery, the one or more sensors, the memory, the short-range communication module, and the first temperature sensor, wherein the processor is configured to receive the sensed data, is configured to perform the one or more executable instructions in response to the sensed data, and is configured to direct the short-range communication module to output data to the client computing device; and

a potting material disposed in the interior space encapsulating the plurality of components, wherein the potting material forms an interior wall of the wearable computing device, wherein the potting material is substantially transparent to light selected from a group consisting of: visible light, infrared light, and ultraviolet light.

2. The wearable computing device of claim 1

wherein the printed circuit board comprises a plurality of rigid circuit boards coupled via flexible regions; and

wherein adjacent rigid circuit boards from the plurality of rigid circuit boards form an angle therebetween, enabling the adjacent rigid circuit boards to approximately conform to the interior surface.

3. The wearable computing device of claim 2

wherein the plurality of rigid circuit boards comprises a first rigid circuit board, a second rigid circuit board and a third rigid circuit board, wherein the second rigid circuit board is disposed between the first rigid circuit board and the third rigid circuit;

wherein the computing device further comprising:

an infrared light source disposed upon the first rigid circuit board, wherein the infrared light source is configured to illuminate a portion of skin of the finger with infrared light; and

an imaging device disposed upon the second rigid circuit board, wherein the imaging device is configured to receive reflected light from the portion of the skin in response to the infrared light.

4. The wearable computing device of claim 1 wherein the potting material is selected from a group consisting of: silicone, epoxy, polyester resin, and a polymer.

5. The wearable computing device of claim 4 wherein the housing material comprises a metal is selected from a group consisting of: a metal alloy, stainless steel, tungsten carbide, a titanium alloy, silver, platinum and gold.

6. The wearable computing device of claim 1 wherein the first temperature sensor is selected from a group consisting of: a thermistor, a positive temperature coefficient thermistor, a negative temperature coefficient thermistor, and an infrared sensor.

7. The wearable computing device of claim 6 further comprising a second temperature sensor configured to provide second temperature data associated with an ambient temperature.

8. The wearable computing device of claim 1 further comprising:

a module disposed upon the printed circuit board and coupled to the curved rechargeable battery and to the processor, wherein the module is configured to manage power to and from the curved rechargeable battery.

9. The wearable computing device of claim 8 further comprising:

an external electromagnetic inducting charging mechanism configured to output a magnetic field; and

wherein the plurality of components also comprises an electromagnetic induction charging coil configured to be disposed proximate to the external electromagnetic inducting charging mechanism, wherein the electromagnetic induction charging coil is configured to receive the magnetic field in a direction normal to the interior surface of the external housing.

10. The wearable computing device of claim 1

wherein a width of the external housing is within a range of 3 mm to 8 mm; and

wherein a thickness of the wearable computing device is within a range of 1.5 to 3 mm.

11. The wearable computing device of claim 1

wherein the short-range communication module is selected from a group consisting of near field communication (NFC), and Bluetooth; and

wherein the output data comprises authentication data associated with the client computing device.

12. The wearable computing device of claim 1

wherein the one or more sensors are configured to sense the physical perturbations at a first detection frequency or a second detection frequency; and

wherein the processor is configured to direct the one or more sensors to change detection frequency from the first detection frequency to the second detection frequency in response to the sensed data.

13. The wearable computing device of claim 12

wherein the processor is configured to determine a plurality of temperatures associated with the wearer with respect to time in response to the first temperature data; and

wherein the processor is configured to direct the short-range communication module to output the plurality of temperatures associated with the wearer with respect to time to the client computing device.

14. A wearable computing device configured to be worn around a finger of a wearer comprising:

an external housing having an outer surface forming an exterior wall of the wearable computing device, an interior surface and sidewalls, wherein the external housing is characterized by approximately a C-shaped cross section and define an interior space, and wherein the interior space is configured store a plurality of components;

wherein the plurality of components comprises:

a curved rechargeable battery disposed within the interior space of the housing, wherein the rechargeable battery is curved to conform to a curvature of the interior surface;

a printed circuit board comprising a plurality of rigid circuit boards coupled via flexible regions, wherein the printed circuit board is disposed within the interior space and piecewise linearly conforms to the curvature of the interior surface;

one or more sensors disposed upon the printed circuit board, wherein the one or more sensors are selected from a group consisting of: an accelerometer, a gyroscope, and a motion sensor, wherein the one or more sensors are configured to sense physical perturbations and to output sensed data;

a memory disposed upon the printed circuit board, the memory configured to store one or more executable instructions;

a short-range communication module disposed upon the printed circuit board, the short-range communications module configured to communicate a first set of data to a client computing device via a first communications protocol;

a first temperature sensor configured to provide first temperature data associated with a temperature of a wearer of the wearable computing device;

a processor disposed upon the printed circuit board and coupled to the battery, the one or more sensors, the memory, the short-range communication module, and the first temperature sensor, wherein the processor is configured to receive the sensed data, is configured to perform the one or more executable instructions in response to the sensed data, and is configured to direct the short-range communication module to output data to the client computing device; and

a potting material disposed in the interior space encapsulating the plurality of components, wherein the potting material forms an interior wall of the wearable computing device, wherein the potting material is substantially transparent to light selected from a group consisting of: visible light, infrared light, and ultraviolet light.

15. The wearable computing device of claim 14

wherein adjacent rigid circuit boards from the plurality of rigid circuit boards form an angle therebetween, enabling the adjacent rigid circuit boards to approximately conform to the curvature of the interior surface;

wherein the plurality of rigid circuit boards comprises a first rigid circuit board, a second rigid circuit board and a third rigid circuit board, wherein the second rigid circuit board is disposed between the first rigid circuit board and the third rigid circuit;

wherein the wearable computing device further comprises:

a first infrared light source disposed upon the first rigid circuit board, wherein the first infrared light source is configured to illuminate a first portion of skin of the finger with infrared light;

a second infrared light source disposed upon the third rigid circuit board, wherein the second infrared light source is configured to illuminate a second portion of skin of the finger with infrared light; and

an imaging device disposed upon the second rigid circuit board, wherein the imaging device is configured to receive reflected light from the first portion of the skin and the second portion of the skin.

16. The wearable computing device of claim 14

wherein the potting material is selected from a group consisting of: silicone, epoxy, polyester resin, and a polymer; and

wherein the housing material comprises a metal is selected from a group consisting of: a metal alloy, stainless steel, tungsten carbide, a titanium alloy, silver, platinum and gold.

17. The wearable computing device of claim 14

wherein the first temperature sensor is selected from a group consisting of: a thermistor, a positive temperature coefficient thermistor, a negative temperature coefficient thermistor, and an infrared sensor.

18. The wearable computing device of claim 14 further comprising:

an external electromagnetic inducting charging mechanism configured to output a magnetic field;

wherein wearable computing device is removably coupled to the external electromagnetic inducting charging mechanism; and

wherein the plurality of components also comprises an electromagnetic induction charging coil configured to be disposed proximate to the external electromagnetic inducting charging mechanism, wherein the electromagnetic induction charging coil is configured to receive the magnetic field in a direction normal to the interior surface of the external housing.

19. The wearable computing device of claim 14

wherein the short-range communication module is selected from a group consisting of near field communication (NFC), and Bluetooth; and

wherein the output data comprises authentication data associated with the client computing device.

20. The wearable computing device of claim 14

wherein the one or more sensors are configured to sense the physical perturbations at a first detection frequency or a second detection frequency; and

wherein the processor is configured to direct the one or more sensors to change detection frequency from the first detection frequency to the second detection frequency in response to the sensed data.

Assignments (11)
SECURITY INTEREST Recorded May 16, 2025
From: OURA HEALTH OY; OURARING INC.
To: JPMORGAN CHASE BANK, N.A., AS ADMINISTRATIVE AGENT
Reel/Frame 071302/0800 →
RELEASE OF SECURITY INTERESTS IN PATENTS AND TRADEMARKS AT REEL/FRAME NO. 64235/0575 Recorded May 16, 2025
From: CRG SERVICING LLC, AS ADMINISTRATIVE AGENT
To: OURA HEALTH OY (AS SUCCESSOR IN INTEREST TO TWIN MERGER SUB II, LLC)
Reel/Frame 071293/0721 →
RELEASE OF SECURITY INTERESTS IN PATENTS AND TRADEMARKS AT REEL/FRAME NO. 66986/0101 Recorded May 16, 2025
From: CRG SERVICING LLC, AS ADMINISTRATIVE AGENT
To: OURA HEALTH OY
Reel/Frame 071297/0305 →
SECURITY INTEREST Recorded Apr 2, 2024
From: OURA HEALTH OY
To: CRG SERVICING LLC, AS ADMINISTRATIVE AGENT
Reel/Frame 066986/0101 →
SECURITY INTEREST Recorded Jul 9, 2023
From: TWIN MERGER SUB II, LLC
To: CRG SERVICING LLC, AS ADMINISTRATIVE AGENT
Reel/Frame 064235/0575 →
CHANGE OF NAME Recorded Jun 23, 2023
From: MECHIO INC.
To: MOTIV INC.
Reel/Frame 064090/0122 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 23, 2023
From: VON BADINSKI, CURT C.; STRASSER, MICHAEL J.; TWISS, PETER
To: MECHIO INC.
Reel/Frame 064046/0801 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 23, 2023
From: MOTIV INC.
To: MOTIV (ABC), LLC
Reel/Frame 064047/0512 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 23, 2023
From: MOTIV (ABC), LLC
To: PROXY, INC.
Reel/Frame 064047/0837 →
MERGER AND CHANGE OF NAME Recorded May 31, 2023
From: PROXY, INC.; TWIN MERGER SUB II, LLC
To: TWIN MERGER SUB II, LLC
Reel/Frame 063805/0053 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 30, 2023
From: TWIN MERGER SUB II, LLC
To: OURARING INC.
Reel/Frame 063803/0600 →
Cited By (41)
US 12,210,381 US 12,222,758 US 12,222,759 US 12,228,968 US 12,235,679 US 12,306,669 US 12,332,688 US 12,332,689 US 12,346,160 US 12,387,078 US 12,393,227 US 12,393,228 US 12,393,229 US 12,399,530 US 12,399,531 US 12,405,211 US 12,422,889 US 12,429,908 US 12,429,909 US 12,429,910 US 12,429,911 US 12,436,566 US 12,443,228 US 12,443,229 US 12,443,230 US 12,443,231 US 12,449,843 US 12,449,844 US 12,449,845 US 12,449,846 US 12,449,847 US 12,449,848 US 12,449,849 US 12,461,560 US 12,461,561 US 12,468,342 US 12,484,815 US 12,493,321 US 12,498,756 US 12,530,050 US 12,653,461