IP Library › Granted Patent US 10,291,742
Granted Patent B2
US 10,291,742 · App. 15/201,173 · Granted May 14, 2019

Damage sensors for a mobile computing device

Inventor: Adam Ruxton (Mountain View, CA)
Assignee: GOOGLE LLC
H04L67/32G06F11/0748G06F11/0766G06F11/3013G06F11/3058H04L43/10
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Quick Facts
Patent No.
US 10,291,742
App. No.
15/201,173
Filed
Jul 1, 2016
Granted
May 14, 2019
Kind
B2
Art Unit
2443
USPC
709/219
Abstract

In general, this disclosure is directed to techniques for utilizing sensors within a computing device to detect a hazardous event and notify a central server that the computing device is potentially damaged. One or more sensors of a computing device may detect the hazardous event to the computing device. Responsive to detecting the hazardous event, the sensors may measure a magnitude of a damage measurand associated with the hazardous event to the computing device. The computing device may determine that the magnitude of the damage measurand exceeds a threshold damage value for the computing device. Responsive to determining that the magnitude of the damage measurand exceeds the threshold damage value, the computing device may send, to a server device, a message indicating the computing device is potentially damaged.

Claims (58)

1. A method comprising:

detecting, by one or more sensors of a computing device, a hazardous event to the computing device;

responsive to detecting the hazardous event, measuring, by the one or more sensors of the computing device, a magnitude of a damage measurand associated with the potentially damaging event, wherein the damage measurand comprises a presence of smoke, a concentration of carbon dioxide, or a volume of water;

determining, by the computing device, a duration of the hazardous event;

adjusting, by the computing device and based at least in part on the duration of the hazardous event, a threshold damage value for the computing device;

after adjusting the threshold damage value for the computing device based at least in part on the duration of the hazardous event, determining, by the computing device, that the magnitude of the damage measurand exceeds the threshold damage value for the computing device; and

responsive to determining that the magnitude of the damage measurand exceeds the threshold damage value, sending, by the computing device and to a server device, a message indicating the computing device is potentially damaged.

2. The method of claim 1 , wherein determining that the magnitude of the damage measurand exceeds the threshold damage value comprises:

determining, by the computing device and based at least in part on a structural component of the computing device, the threshold damage value, wherein the threshold damage value comprises a predetermined value above which a probability of the hazardous event damaging the computing device is greater than a threshold probability of the hazardous event damaging the computing device;

comparing, by the computing device, the magnitude of the damage measurand and the threshold damage value; and

determining, by the computing device, that the magnitude of the damage measurand exceeds the threshold damage value in response to the magnitude of the damage measurand being greater than or equal to the threshold damage value.

3. The method of claim 2 , further comprising:

responsive to determining that the magnitude of the damage measurand exceeds the threshold damage value, determining, by the computing device, that the structural component of the computing device is potentially damaged.

4. The method of claim 3 , wherein the structural component of the computing device comprises a display component of the computing device or an internal circuitry of the computing device.

5. The method of claim 1 , wherein adjusting the threshold damage value comprises:

determining, by the computing device, that the duration of the hazardous event exceeds a threshold duration; and

decreasing, by the computing device, the threshold damage value based at least in part on a difference between the duration of the hazardous event and the threshold duration.

6. The method of claim 1 , further comprising:

responsive to sending the message to the server device, receiving, via a user account associated with the computing device and from the server device, information about repairing the computing device that is potentially damaged.

7. The method of claim 1 , wherein the magnitude of the damage measurand is measured in one of volts (V), light intensity (lx), parts per million (PPM), or volume (ml).

8. A computing device comprising:

one or more sensors configured to:

detect a hazardous event to the computing device; and

responsive to detecting the hazardous event, measure a magnitude of a damage measurand associated with the potentially damaging event;

at least one processor, wherein the damage measurand comprises a presence of smoke, a concentration of carbon dioxide, or a volume of water; and

at least one non-transitory computer-readable storage medium storing instructions that are executable by the at least one processor to:

determine a duration of the hazardous event

adjust, based at least in part on the duration of the hazardous event, a threshold damage value for the computing device;

after adjusting the threshold damage value for the computing device based at least in part on the duration of the hazardous event, determine that the magnitude of the damage measurand exceeds the threshold damage value for the computing device; and

responsive to determining that the magnitude of the damage measurand exceeds the threshold damage value, send, to a server device, a message indicating the computing device is potentially damaged.

9. The computing device of claim 8 , wherein the instructions that are executable by the at least one processor to determine that the magnitude of the damage measurand exceeds the threshold damage value comprise instructions that are executable by the at least one processor to:

determine, based at least in part on a structural component of the computing device, the threshold damage value, wherein the threshold damage value comprises a predetermined value above which a probability of the hazardous event damaging the computing device is greater than a threshold probability of the hazardous event damaging the computing device;

compare the magnitude of the damage measurand and the threshold damage value; and

determine that the magnitude of the damage measurand exceeds the threshold damage value in response to the magnitude of the damage measurand being greater than or equal to the threshold damage value.

10. The computing device of claim 9 , wherein the instructions are further executable by the at least one processor to:

responsive to determining that the magnitude of the damage measurand exceeds the threshold damage value, determine that the structural component of the computing device is potentially damaged.

11. The computing device of claim 8 , wherein the instructions are further executable by the at least one processor to:

responsive to sending the message to the server device, receive, via a user account associated with the computing device and from the server device, information about repairing the computing device that is potentially damaged.

12. The computing device of claim 8 , wherein the instructions that are executable by the at least one processor to adjust the threshold damage value comprise instructions that are executable by the at least one processor to:

determine that the duration of the hazardous event exceeds a threshold duration; and

decrease the threshold damage value based at least in part on a difference between the duration of the hazardous event and the threshold duration.

13. A non-transitory computer-readable storage medium encoded with instructions that, when executed, cause at least one processor of a computing device to:

detect, using one or more sensors of the computing device, a hazardous event to the computing device;

responsive to detecting the hazardous event, measure, using the one or more sensors of the computing device, a magnitude of a damage measurand associated with the potentially damaging event, wherein the damage measurand comprises a presence of smoke, a concentration of carbon dioxide, or a volume of water;

determine a duration of the hazardous event;

adjust, based at least in part on the duration of the hazardous event, a threshold damage value for the computing device;

after adjusting the threshold damage value for the computing device based at least in part on the duration of the hazardous event, determine that the magnitude of the damage measurand exceeds the threshold damage value for the computing device; and

responsive to determining that the magnitude of the damage measurand exceeds the threshold damage value, send, to a server device, a message indicating the computing device is potentially damaged.

14. The non-transitory computer-readable storage medium of claim 13 , wherein the instructions that cause the at least one processor to determine that the magnitude of the damage measurand exceeds the threshold damage value comprise instructions that, when executed, cause the at least one processor to:

determine, based at least in part on a structural component of the computing device, the threshold damage value, wherein the threshold damage value comprises a predetermined value above which a probability of the hazardous event damaging the computing device is greater than a threshold probability of the hazardous event damaging the computing device;

compare the magnitude of the damage measurand and the threshold damage value; and

determine that the magnitude of the damage measurand exceeds the threshold damage value in response to the magnitude of the damage measurand being greater than or equal to the threshold damage value.

15. The non-transitory computer-readable storage medium of claim 13 , wherein the instructions, when executed, further cause the at least one processor to:

responsive to sending the message to the server device, receive, via a user account associated with the computing device and from the server device, information about repairing the computing device that is potentially damaged.

16. The non-transitory computer-readable storage medium of claim 13 ,

wherein the instructions that cause the at least one processor to adjust the threshold damage value comprise instructions that, when executed, further cause the at least one processor to:

determine that the duration of the hazardous event exceeds a threshold duration; and

decrease the threshold damage value based at least in part on a difference between the duration of the hazardous event and the threshold duration.

Assignments (2)
CHANGE OF NAME Recorded Oct 20, 2017
From: GOOGLE INC.
To: GOOGLE LLC
Reel/Frame 044567/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 1, 2016
From: RUXTON, ADAM
To: GOOGLE INC.
Reel/Frame 039067/0773 →
Continuity (1)
Related Publication 20180007164A1 · Jan 4, 2018
Cited By (2)
US 12,417,086 US 12,664,065