IP Library › Granted Patent US 12,344,051
Granted Patent B2
US 12,344,051 · App. 16/671,105 · Granted Jul 1, 2025

Sensor assemblies and systems for monitoring a dynamic object

Inventor: Keith George Ferry (Burbank, CA)
Assignee: Cerebrum Sensor Technologies, Inc.
B60C23/0493B29D30/0061G01K1/14G01L19/147G01P1/023G01S19/14B29D2030/0083
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Quick Facts
Patent No.
US 12,344,051
App. No.
16/671,105
Granted
Jul 1, 2025
Kind
B2
Abstract

Sensor assemblies and systems comprise a housing configured to accommodate an electrical sensor device therein, mechanically retain the same, and provide a protective surrounding thereto. The housing may include display indicia relating to some aspect of the sensor assembly. The electrical sensor device include electrical components useful for the purpose of monitoring and transmitting desired data relating to operating parameters/conditions of the dynamic article that the sensor assembly is attached with, e.g., a vehicle tire. The data is transmitted wirelessly from the electrical sensor device. The housing is removably attached with a retaining member that is also attached with the dynamic article. A receiver external from the dynamic article receives the data for the purpose of determine such operating parameter/or conditions, when the dynamic article is a vehicle tire, as tire tread depth, tire pressure, vehicle camber and toe alignment variations, and tire/vehicle location, which may be stored.

Claims (74)

1. A sensor assembly configured for connection with a vulcanized rubber article, the sensor assembly comprising:

a housing comprising a structure having an internal cavity therein; and

an electrical sensor device that is disposed within the internal cavity and surrounded by a housing wall structure, wherein the housing comprises one or more surface features that are configured to contact the electrical sensor device to prevent movement of the electrical sensor device within the internal cavity, wherein the electrical sensor device is configured to sense, transmit and/or receive information regarding surrounding conditions, orientation and/or location when the sensor assembly is connected with a vulcanized rubber article.

2. The sensor assembly as recited in claim 1 , wherein the housing comprises an outer surface that includes one or more display features or indicia that are viewable to a user when the sensor assembly housing is connected with the vulcanized rubber article.

3. The sensor assembly as recited in claim 1 , wherein the housing comprises a top cover, the wall structure, and a base section that define the internal cavity, and wherein the top cover, wall structure and base section are each formed from materials that are the same or different from one another, and wherein one or more of the top cover, wall section, and base section is separate or integral with one another.

4. The sensor assembly as recited in claim 3 , wherein one of the top cover or base section is removably attached with the wall structure to facilitate installation and/or removal of the electrical sensor device from the internal cavity.

5. The sensor assembly as recited in claim 1 , wherein the internal cavity includes an unfilled open space inside the housing.

6. The sensor assembly as recited in claim 1 , wherein the electrical sensor device is encapsulated by the inner cavity of the housing during a process of making the housing that operates to retain the position of the electrical sensor device within the housing.

7. The sensor assembly as recited in claim 1 further comprising a retaining member, wherein at least one of the housing and retaining member are configured to facilitate attachment of the housing with the retaining member.

8. The sensor assembly as recited in claim 7 , wherein the housing comprises a wall structure that surrounds the internal cavity, and wherein the retaining member comprises a wall structure having an open chamber that is configured to accommodate the housing wall structure therein to provide attachment therewith.

9. The sensor assembly as recited in claim 1 further comprising a retaining member configured to attach with the housing, wherein the retaining member is formed from an elastomeric material that mitigates transmission of shock forces from the vulcanized rubber article to the housing when the retaining member is attached to the vulcanized rubber article and the housing is attached to the retaining member.

10. The sensor assembly as recited in claim 1 , wherein the housing includes an opening extending from an outer surface of the housing to the internal cavity.

11. The sensor assembly as recited in claim 10 , wherein the electrical sensor device comprises one or both of a storage element and a processor.

12. The sensor assembly as recited in claim 10 , wherein the housing further comprises a filter that is positioned to filter air passing into the internal cavity before reaching the electrical sensor device.

13. A sensing system comprising the sensor assembly as recited in claim 1 , wherein the sensing system comprises a receiver that is external from the vulcanized rubber article and that is configured to receive data from the electrical sensor device by wireless communication.

14. The sensing system as recited in claim 13 , wherein the electrical sensor device comprises an accelerometer sensor connected therewith and is configured to send data from the accelerometer sensor wirelessly to the external receiver.

15. The sensing system as recited in claim 14 , wherein the vulcanized rubber article is a vehicle tire and information from the accelerometer is used to determine one or more of tire alignment, tire orientation, road surface conditions surrounding the tire, traction, rotational speed of the tire at a given vehicle velocity, and tread depth of the tire.

16. The sensing system as recited in claim 13 , wherein the sensor assembly comprises a RFID element.

17. The sensing system as recited in claim 13 , wherein the electrical sensor device comprises a global positioning device.

18. The sensing system as recited in claim 17 , wherein the vulcanized rubber article is a vehicle tire and a location of the vehicle tire is determined from information provided by the global positioning device.

19. The sensing system as recited in claim 13 , wherein the electrical sensor device comprises a gyroscope.

20. The sensing system as recited in claim 19 , wherein the vulcanized rubber article is a vehicle tire and information from the gyroscope is used to determine one or more of tire alignment, tire orientation, road conditions surrounding the tire, tire geometry, slip angle, and a tread depth of the tire.

21. The sensor assembly as recited in claim 1 , wherein the electrical sensor device comprises:

a printed circuit board comprising electrical circuitry;

a portable power source for providing power to the electrical sensor device;

at least one sensor element; and

an antenna for receiving and/or transmitting information from the electrical sensor device.

22. The sensor assembly as recited in claim 21 , wherein the electrical sensor device comprises one or more of an accelerometer sensor, a global positioning device, and a gyroscope.

23. The sensor assembly as recited in claim 21 , wherein the sensor element is configured to sense one or more variables selected from the group consisting of air pressure, temperature, acceleration, tire information, wheel information, vehicle information, or orientation or location of the environment, the sensor assembly, or the vulcanized rubber article.

24. The sensor assembly as recited in claim 1 further comprising a retaining member configured to attach with the housing, wherein the vulcanized rubber article is a vehicle tire, and wherein the retaining member is configured for attachment with an inside surface of the vehicle tire.

25. The sensor assembly as recited in claim 24 , wherein the retaining member is attached to the inside surface of the vehicle tire by an adhesive layer after the vehicle tire has been vulcanized.

26. A sensor assembly and sensing system for use with a vulcanized vehicle tire comprising:

a housing comprising an outer structure that defines an internal cavity therein,

an electrical sensor device disposed within the internal cavity, wherein the internal cavity includes an unfilled open space above or below the electrical sensor device inside the housing, wherein the electrical sensor device is configured to monitor and transmit and/or receive information regarding surrounding conditions, orientation and/or location, wherein the electrical sensor device comprises:

a portable power source;

a sensor; and

an antenna for transmitting and/or receiving information relating to an operating parameter being monitored by the sensor;

a retaining member configured for attaching with the vulcanized vehicle tire, wherein the retaining member is configured to accommodate attachment with the housing; and

a receiver external from the vehicle tire that is configured to receive information from the electrical sensor device wirelessly.

27. The sensor assembly and sensing system as recited in claim 26 , comprising an external transmitter for sending information wirelessly to the electrical sensor device.

28. The sensor assembly and sensing system as recited in claim 26 , wherein the housing includes a wall structure having a top cover at a first axial end of the wall structure and a base section at an opposed second axial of the wall structure, wherein the retaining member has a wall structure and an open chamber defined therein that is configured to complement the housing wall structure to accept placement of the housing within the retaining member and attachment therewith.

29. The sensor assembly and sensing system as recited in claim 26 , wherein one of the top cover or the bottom section are made separately from the wall section and are attached to the wall section after the electrical sensor device has been installed within the housing internal cavity.

30. The sensor assembly and sensing system as recited in claim 26 , wherein the electrical sensor device is securely attached inside the internal cavity by surface features of the housing that are configured to connect with the electrical sensor device to fix placement of the electrical sensor device therein.

31. The sensor assembly and sensing system as recited in claim 26 , wherein the retaining member is formed from an elastomeric material that mitigates transmission of shock forces received from the vehicle tire before reaching the housing attached with the retaining member.

32. The sensor assembly and sensing system as recited in claim 26 , wherein the electrical sensor device comprises an accelerometer sensor and is configured to send data from the accelerometer sensor wirelessly to the external receiver.

33. The sensor assembly and sensing system as recited in claim 32 , wherein the system is configured to use information from the accelerometer to determine one or more of tire alignment, tire orientation, road surface conditions surrounding the tire, traction, rotational speed of the tire at a given vehicle velocity, and tread depth of the tire.

34. The sensor assembly and sensing system as recited in claim 26 , wherein the sensor assembly comprises a RFID element.

35. The sensor assembly and sensing system as recited in claim 26 , wherein the electrical sensor device comprises a global positioning device.

36. The sensor assembly and sensing system as recited in claim 35 , wherein the system is configured to determine a location of the vehicle tire from information provided by the global positioning device.

37. The sensor assembly and sensing system as recited in claim 26 , wherein the electrical sensor device comprises a gyroscope.

38. The sensing system as recited in claim 37 , wherein information from the gyroscope is used to determine one or more of tire alignment, tire orientation, road conditions surrounding the tire, tire geometry, slip angle, and tread depth of the vehicle tire.

39. The sensor assembly and sensing system as recited in claim 26 , wherein the unfilled open space is above the electrical sensor device.

40. The sensor assembly and sensing system as recited in claim 26 , wherein the unfilled open space is below the electrical sensor device.

41. The sensor assembly and sensing system as recited in claim 26 , wherein the unfilled open space is above and below the electrical sensor device.

42. A method for using a pressure sensor assembly and sensing system with a vulcanized rubber article comprising the steps of:

installing an electrical sensor device within an internal cavity of a housing, wherein the housing comprises an opening extending from an outer surface of the housing to the internal cavity, and wherein the electrical sensor device comprises a sensor, a portable power source, an antenna, a printed circuit board, and related electrical circuitry;

attaching the housing after the step of installing to a retaining member, wherein the retaining member is configured to accommodate attachment with the housing, wherein the retaining member is attached with the vulcanized rubber article before or after formation of the vulcanized rubber article; and

monitoring an operating parameter through the use of the electrical sensing device, wherein information related to the operating parameter is wirelessly transmitted from the electrical sensing device to a receiver that is external from the sensor assembly.

43. The method as recited in claim 42 , wherein during the step of installing, the housing includes a wall structure having an opening through which the electrical sensor device is installed and, after the step of installing, the opening is closed by attaching a top cover or bottom section to the opening.

44. The method as recited in claim 42 , wherein during the step of installing, one or more surface features of the housing inside the internal cavity are configured to connect with the electrical sensor device to fix placement of the electrical sensor device inside the housing within the internal cavity.

45. The method as recited in claim 42 , wherein before the step of attaching, the retaining member is attached to the vulcanized rubber article after the vulcanized rubber article has been formed by an adhesive layer interposed between a surface of the vulcanized rubber article and the retaining member.

46. The method as recited in claim 42 , wherein the retaining member is attached to the vulcanized rubber article after the step of attaching the housing to the retaining member.

47. The method as recited in claim 42 , wherein the retaining member is attached to the vulcanized rubber article by applying pressure onto the retaining member once placed into contact with the surface of the vulcanized rubber article to cause the adhesive layer to form an attachment therebetween.

48. The method as recited in claim 42 , wherein the vulcanized rubber article is a vehicle tire, and wherein the retaining member is attached to a surface that is inside of the vehicle tire.

49. The method as recited in claim 48 , wherein the sensor assembly electrical sensor device comprises an accelerometer sensor.

50. The method as recited in claim 49 , wherein during the step of monitoring at least one or more of tire alignment, tire orientation, road surface conditions surrounding the tire, traction, rotational speed of the tire at a given vehicle velocity, and tread depth of the tire is determined from information sent wirelessly from the sensor assembly.

51. The method as recited in claim 42 , wherein during the step of attaching, the housing is positioned relative to the retaining member according to a display feature that is positioned on the housing.

52. The method as recited in claim 42 , wherein during the step of monitoring, the sensor monitors operating parameters comprising one or more of operating conditions, orientation, and location and transmits by use of the antenna information related to the monitored operating parameter to the receiver, and wherein the electrical sensor device is configured to receive information transmitted from an external device to change one or more feature of the electrical sensor device.

53. The method as recited in claim 48 , wherein the electrical sensor device comprises a global positioning device, and wherein the step of monitoring a location of the vehicle tire is determined from information provided by the global positioning device.

54. The method as recited in claim 48 , wherein the electrical sensor device comprises a gyroscope.

55. The sensing system as recited in claim 54 , wherein information from the gyroscope is used to determine one or more of tire alignment, tire orientation, road conditions surrounding the tire, tire geometry, slip angle, and tread depth of the vehicle tire.

56. A sensor assembly configured for connection with a vulcanized rubber article, the sensor assembly comprising:

a housing comprising a structure having an internal cavity therein; and

an electrical sensor device that is disposed within the internal cavity, wherein the housing comprises one or more surface features that are configured to contact the electrical sensor device to prevent movement of the electrical sensor device within the internal cavity, wherein the electrical sensor device is configured to sense, transmit and/or receive information regarding surrounding conditions, orientation and/or location when the sensor assembly is connected with a vulcanized rubber article, and wherein the internal cavity includes an unfilled open space inside the housing.

Assignments (2)
ADDENDUM TO PATENT ASSIGNMENT AGREEMENT Recorded Feb 27, 2024
From: FERRY, KEITH GEORGE
To: CEREBRUM SENSOR TECHNOLOGIES, INC.
Reel/Frame 066698/0146 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 6, 2024
From: FERRY, KEITH GEORGE
To: CEREBRUM SENSOR TECHNOLOGIES, INC.
Reel/Frame 066397/0114 →
Continuity (1)
Related Publication 20210129601A1 · May 6, 2021
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Cited By (1)
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