IP Library Granted Patent US 7,549,327
Granted Patent B2
US 7,549,327 · App. 11/382,091 · Granted Jun 23, 2009

Tire-mounted energy generator and monitor

Assignee: Automotive Technologies International, Inc.
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 7,549,327
App. No.
11/382,091
Granted
Jun 23, 2009
Kind
B2
Abstract

Tire monitoring arrangement including at least one tire condition sensor arranged on the tire to measure a condition of the tire and an energy generating mechanism or device arranged on the tread of the tire for generating electricity upon rotation of the tire. The energy generating mechanism is connected in a circuit with each tire condition sensor and powers the circuit and thus provides energy for the tire condition sensor(s). The tire condition sensor(s) and energy generating mechanism may be part of a tire monitor assembly which is affixed to an interior surface of the tire opposite the tread or inserted into the tire opposite the tread. Various tire condition sensors may be used including accelerometers, tire pressure sensors and tire temperature sensors. Various energy generating mechanisms may be used including a piezoelectric device, a polyvinylidene fluoride (PVDF) piezoelectric polymer, and a flexible material whose flexure causes energy generation.

Claims (38)

1. In a tire having a tread and sidewalls, a monitoring arrangement comprising:

at least one tire condition sensor arranged on the tire to measure a condition of the tire, said at least one tire condition sensor requiring electricity to function and measure the condition of the tire; and

electricity generating means arranged on the tread of the tire for generating electricity upon rotation of the tire,

said electricity generating means being connected in a circuit with said at least one tire condition sensor whereby said electricity generating means generate electricity and power said circuit and thus provide electricity for said at least one tire condition sensor to measure the condition of the tire.

2. The arrangement of claim 1 , wherein said at least one tire condition sensor and said electricity generating means are part of a tire monitor assembly.

3. The arrangement of claim 2 , wherein said tire monitor assembly is affixed to an interior surface of the tire opposite the tread or inserted into the tire opposite the tread.

4. The arrangement of claim 1 , wherein said at least one tire condition sensor comprises at least one accelerometer arranged to measure at least one of tangential and radial acceleration of the tire.

5. The arrangement of claim 1 , wherein said at least one tire condition sensor comprises at least one tire pressure sensor arranged to measure pressure in the interior of the tire.

6. The arrangement of claim 1 , wherein said at least one tire condition sensor comprises at least one tire temperature sensor arranged to measure temperature of the interior of the tire.

7. The arrangement of claim 1 , wherein said electricity generating means comprises a piezoelectric device.

8. The arrangement of claim 1 , wherein said electricity generating means comprises a polyvinylidene fluoride (PVDF) piezoelectric polymer.

9. The arrangement of claim 1 , wherein said electricity generating means are arranged to flex whereby flexure causes electricity generation.

10. The arrangement of claim 1 , further comprising electricity storage devices arranged in said circuit for storing electricity generated by said electricity generating means.

11. The arrangement of claim 1 , wherein said electricity generating means are arranged to generate electricity based on flexure of the tire.

12. In a tire having a tread and sidewalls, a monitoring arrangement comprising:

at least one accelerometer arranged on the tire to measure at least one of tangential and radial acceleration of the tire, said at least one accelerometer requiring electricity to function and measure the at least one of the tangential and radial acceleration of the tire; and

electricity generating means for generating electricity upon rotation of the tire,

said electricity generating means being connected in a circuit with said at least one accelerometer whereby said electricity generating means generate electricity and power said circuit and thus provide electricity for said at least one accelerometer to measure the at least one of the tangential and radial acceleration of the tire.

13. The arrangement of claim 12 , wherein said at least one tire condition sensor and said generating means are part of a tire monitor assembly.

14. The arrangement of claim 13 , wherein said tire monitor assembly is affixed to an interior surface of the tire opposite the tread or inserted into the tire opposite the tread.

15. The arrangement of claim 13 , wherein said tire monitor assembly includes at least one tire pressure or temperature sensor in said circuit and arranged to measure pressure or temperature in the interior of the tire.

16. The arrangement of claim 12 , wherein said electricity generating means comprises a piezoelectric device or a polyvinylidene fluoride (PVDF) piezoelectric polymer.

17. The arrangement of claim 12 , wherein said electricity generating means are arranged to flex whereby flexure causes electricity generation.

18. The arrangement of claim 12 , further comprising electricity storage devices arranged in said circuit for storing electricity generated by said generating means.

19. The arrangement of claim 12 , wherein said electricity generating means are arranged on the tread of the tire.

20. The arrangement of claim 12 , wherein said electricity generating means are arranged to generate electricity based on flexure of the tire.

21. A method for monitoring a tire, comprising:

arranging at least one tire condition sensor on the tire;

measuring a condition of the tire via the at least one tire condition sensor, the at least one tire condition sensor requiring electricity to function and measure the condition of the tire;

generating electricity upon rotation of the tire via an electricity generating mechanism arranged on a tread of the tire; and

connecting the at least one tire condition sensor and the electricity generating mechanism in a circuit such that the electricity generating mechanism generates electricity and powers the circuit upon rotation of the tire and thus provides electricity for the at least one tire condition sensor to measure the condition of the tire.

22. The method of claim 21 , further comprising constructing the electricity generating mechanism to generate electricity based on flexure of the tire.

23. A method for monitoring a tire, comprising:

arranging at least one accelerometer on the tire;

measuring at least one of tangential and radial acceleration of the tire via the at least one accelerometer, the at least one accelerometer requiring electricity to function and measure the at least one of the tangential and radial acceleration of the tire;

generating electricity upon rotation of the tire via an electricity generating mechanism; and

connecting the at least one accelerometer and the electricity generating mechanism in a circuit such that the electricity generating mechanism generates electricity and powers the circuit upon rotation of the tire and thus provides electricity for the at least one accelerometer to measure the at least one of the tangential and radial acceleration of the tire.

24. The method of claim 23 , further comprising constructing the electricity generating mechanism to generate electricity based on flexure of the tire.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 10, 2012
From: AUTOMOTIVE TECHNOLOGIES INTERNATIONAL, INC.
To: AMERICAN VEHICULAR SCIENCES LLC
Reel/Frame 028023/0087 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 8, 2006
From: BREED, DAVID S.
To: AUTOMOTIVE TECHNOLOGIES INTERNATIONAL, INC.
Reel/Frame 017594/0328 →
Continuity (18)
Continuation In Part 1064202800 · Aug 15, 2003
Continuation In Part 1138209100
Continuation In Part 1108273900 · Mar 17, 2005
Continuation In Part 1070136100 · Nov 4, 2003
Continuation In Part 1064202800 · Aug 15, 2003
Continuation In Part 1007906500 · Feb 19, 2002
Continuation In Part 1138209100
Continuation In Part 1122013900 · Sep 6, 2005
Continuation In Part 1112006500 · May 2, 2005
Continuation In Part 1108273900 · Mar 17, 2005
Continuation In Part 1138209100
Continuation In Part 1137907800 · Apr 18, 2006
Continuation In Part 1122013900 · Sep 6, 2005
Provisional Application 6041586200 · Oct 3, 2002
Provisional Application 6030401300 · Jul 9, 2001
Provisional Application 6029151100 · May 16, 2001
Provisional Application 6026941500 · Feb 16, 2001
Related Publication 20060243043A1 · Nov 2, 2006