IP Library › Granted Patent US 11,928,944
Granted Patent B2
US 11,928,944 · App. 18/172,025 · Granted Mar 12, 2024

Sensor arrangement

Inventors: Devlyn Kornegay (Richmond, VA); Michael Jou (Philadelphia, PA); Zhe Zhang (Wood Ridge, NJ); Henry Homza (Philadelphia, PA); Nicholas Stefano (Haddon Heights, NJ)
Assignee: Comcast Cable Communications, LLC
G08B13/2491E06B5/11G08B13/08
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Quick Facts
Patent No.
US 11,928,944
App. No.
18/172,025
Granted
Mar 12, 2024
Kind
B2
Abstract

Disclosures relate to a sensor system and arrangements having different sized removable spacers. The spacers may be mixed and matched as needed or desired to compensate for misalignment conditions. Further, different spacer combinations and adjustments may be guided by a security management computing device. Variations in configurations of mounting surfaces, such as door and window assemblies, may be accommodated. Alignment of a transmitter or a receiving device, e.g., a magnetic device, with respect to a transmitter or receiving device despite misalignment of the components due to, for example, uneven surfaces of a door or a window, or a respective frame may be achieved.

Claims (46)

1. One or more non-transitory computer-readable media storing instructions that, when executed, configure a computing device to:

guide a selection of a first combination of spacers, for installation of a first sensor component, based on misalignment between a first member and a second member;

receive a first sensor measurement of a magnetic field sensed by a second sensor component positioned on one of the first member or the second member;

determine that the first sensor measurement fails to satisfy a predetermined threshold; and

send a notification to one or more user devices to select a second combination of spacers, different from the first combination, for installation of the first sensor component.

2. The one or more non-transitory computer-readable media of claim 1 , wherein the instructions, when executed, further configure the computing device to:

determine that a second sensor measurement satisfies the predetermined threshold; and

send, to the one or more user devices based on the second sensor measurement, a notification of successful installation to the one or more user devices.

3. The one or more non-transitory computer-readable media of claim 1 , wherein the instructions, when executed, further configure the computing device to receive the first sensor measurement by receiving an output value that corresponds with a measurement of one or more of uniformity of the magnetic field, magnitude of the magnetic field, or intensity of the magnetic field sensed by the second sensor component.

4. The one or more non-transitory computer-readable media of claim 1 , wherein the instructions, when executed, further configure the computing device to request information of the misalignment between the first member and the second member.

5. One or more non-transitory computer-readable media storing instructions that, when executed, configure a computing device to:

receive information indicating a misalignment between a first member and a second member;

guide selection of a combination of spacers, comprising a first spacer and a second spacer, based on the misalignment between the first member and the second member, to form a first sensor component, for alignment with a second sensor component, based on attaching the first spacer to a device housing and attaching the second spacer to the first spacer; and

send verification of proper installation of the first sensor component.

6. The one or more non-transitory computer-readable media of claim 5 , wherein the instructions, when executed, further configure the computing device to output information for forming the first sensor component by sliding or snapping together the device housing, the first spacer, and the second spacer.

7. The one or more non-transitory computer-readable media of claim 5 , wherein the instructions, when executed, further configure the computing device to output information for:

positioning the first sensor component on the first member; and

positioning the second sensor component on the second member, such that the second sensor component is adjacent to the first sensor component.

8. The one or more non-transitory computer-readable media of claim 5 , wherein the instructions, when executed, further configure the computing device to output information for:

positioning the first sensor component on a moveable member; and

positioning the second sensor component on a stationary member.

9. The one or more non-transitory computer-readable media of claim 5 , wherein the instructions, when executed, further configure the computing device to output information for:

adjusting a magnet disposed in the device housing of the first sensor component.

10. A system comprising:

a computing device and a first combination of spacers,

wherein the computing device is configured to:

guide a selection of the first combination of spacers, for installation of a first sensor component, based on misalignment between a first member and a second member;

receive a first sensor measurement of a magnetic field sensed by a second sensor component positioned on one of the first member or the second member;

determine that the first sensor measurement fails to satisfy a predetermined threshold; and

send a notification to one or more user devices to select a second combination of spacers, different from the first combination, for installation of the first sensor component.

11. The system of claim 10 , wherein the computing device is further configured to:

determine that a second sensor measurement satisfies the predetermined threshold; and

send, to the one or more user devices based on the second sensor measurement, a notification of successful installation to the one or more user devices.

12. The system of claim 10 , wherein the computing device is configured to receive the first sensor measurement by receiving an output value that corresponds with a measurement of one or more of uniformity of the magnetic field, magnitude of the magnetic field, or intensity of the magnetic field sensed by the second sensor component.

13. The system of claim 10 , wherein the computing device is further configured to request information of the misalignment between the first member and the second member.

14. The system of claim 10 , wherein the computing device is further configured to measure the misalignment between the first member and the second member.

15. The system of claim 10 , wherein the computing device is further configured to output instructions for forming the first combination of spacers by attaching a first spacer to a device housing and attaching a second spacer to the first spacer.

16. The system of claim 10 , wherein the computing device is further configured to output instructions for sliding or snapping together the first combination of spacers and a device housing.

17. The system of claim 10 , wherein the computing device is further configured to output instructions for:

positioning the first sensor component on the first member; and

positioning the second sensor component on the second member, such that the second sensor component is adjacent to the first sensor component.

18. The system of claim 10 , wherein the computing device is further configured to output instructions for:

positioning the first sensor component on a moveable member; and

positioning the second sensor component on a stationary member.

19. The system of claim 10 , wherein the computing device is further configured to output instructions for adjusting a magnet disposed in a device housing of the first sensor component.

20. The system of claim 10 , wherein the first combination of spacers comprises a plurality of differently-sized spacers.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 23, 2023
From: KORNEGAY, DEVLYN; JOU, MICHAEL; ZHANG, ZHE; HOMZA, HENRY; STEFANO, NICHOLAS
To: COMCAST CABLE COMMUNICATIONS, LLC
Reel/Frame 063070/0359 →
Continuity (2)
Continuation 17323428 · May 18, 2021
Related Publication 20230351875A1 · Nov 2, 2023