IP Library › Granted Patent US 12,201,736
Granted Patent B2
US 12,201,736 · App. 17/277,022 · Granted Jan 21, 2025

Automatic sterilization and charging of wearable device

Inventors: Andrew Lentvorski (San Diego, CA); James Kamke (Irvine, CA)
Assignee: THIRDWAYV, INC.
A61L2/10A61B5/6801A61L2/24H02J50/80A61L2202/122
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Quick Facts
Patent No.
US 12,201,736
App. No.
17/277,022
Granted
Jan 21, 2025
Kind
B2
Abstract

Methods, systems, devices and apparatuses for sterilizing and charging a wearable device. The sterilizing and charging apparatus includes one or more light sources. The one or more light sources are configured to detect or sterilize the wearable device. The sterilizing and charging apparatus includes a wireless charging device. The wireless charging device is configured to charge the wearable device. The sterilization and charging apparatus includes a controller coupled to the one or more light sources and the wireless charging device. The controller is configured to determine, using the one or more light sources, that the wearable device is within an enclosure. The controller is configured to sterilize the wearable device using the one or more light sources and/or wirelessly charge the wearable device using the wireless charging device.

Claims (42)

1. An apparatus for sterilizing and charging a wearable device, comprising:

one or more light sources;

a wireless charging device configured to charge the wearable device; and

a controller coupled to the one or more light sources and the wireless charging device and configured to:

determine, using the one or more light sources, that the wearable device is within an enclosure; and

sterilize the wearable device using the one or more light sources; or

wirelessly charge the wearable device using the wireless charging device, and

wherein the controller is further configured to:

determine a baseline level of an ultraviolet light within the enclosure;

determine a current level of the ultraviolet light within the enclosure; and

determine that the wearable device is within the enclosure when the current level is different than the baseline level due to interference within the enclosure from introduction of the wearable device.

2. An apparatus for sterilizing and charging a wearable device, comprising:

one or more light sources;

a wireless charging device configured to charge the wearable device;

a controller coupled to the one or more light sources and the wireless charging device and configured to:

determine, using the one or more light sources, that the wearable device is within an enclosure;

sterilize the wearable device using the one or more light sources; and

wirelessly charge the wearable device using the wireless charging device; and

a plurality of light detectors, wherein the one or more light sources or the plurality of light detectors are positioned around and within a cavity of the enclosure to surround the wearable device to optimize exposure of the wearable device to emitted light.

3. An apparatus for sterilizing and charging a wearable device inside an enclosure, the apparatus comprising:

an ultraviolet light source configured to detect and sterilize the wearable device inside the enclosure, the enclosure configured to hold the wearable device during the detecting and during the sterilizing;

a wireless charging device configured to charge the wearable device inside the enclosure; and

a controller coupled to the ultraviolet light source and the wireless charging device and configured to:

determine, using the ultraviolet light source emitting light at a first intensity, that the wearable device is within the enclosure, and

sterilize the wearable device using the ultraviolet light source emitting light at a second intensity, the second intensity being greater than or equal to the first intensity, and

wirelessly charge the wearable device using the wireless charging device simultaneously with the sterilizing;

a memory configured to store a profile for each category of a plurality of categories of different wearable devices, wherein the profile indicates a level of intensity for the ultraviolet light source and a level of power of the wireless charging device;

wherein the controller is further configured to:

determine light characteristics of the wearable device using the ultraviolet light source wherein the light characteristics comprise a direction or an amount of ultraviolet light that is reflected by the wearable device,

determine a category of the wearable device based on comparing the light characteristics to stored profiles of different wearable devices, the stored profiles including a geometry of surfaces of the wearable device, and

sterilize and wirelessly charge the wearable device based at least partially on the profile.

4. An apparatus for sterilizing and charging a wearable device, comprising:

one or more light sources;

a wireless charging device configured to charge the wearable device; and

a controller coupled to the one or more light sources and the wireless charging device and configured to:

determine, using the one or more light sources, that the wearable device is within an enclosure; and

sterilize the wearable device using the one or more light sources; or

wirelessly charge the wearable device using the wireless charging device; and

a power source for providing power, wherein the wireless charging device is a wireless transmitter that wirelessly transmits a wireless charging signal, wherein to wirelessly charge the wearable device the controller is configured to:

determine a level of power of the wireless charging signal;

determine a spatial direction of the wireless charging signal to direct the wireless charging signal toward the wearable device; and

emit the wirelessly charging signal to wirelessly charge a battery of the wearable device or operate the wearable device.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 17, 2021
From: LENTVORSKI, ANDREW; KAMKE, JAMES
To: THIRDWAYV, INC.
Reel/Frame 056069/0245 →
Continuity (2)
Provisional Application 62743702 · Oct 10, 2018
Related Publication 20220023463A1 · Jan 27, 2022
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