IP Library Granted Patent US 11,029,140
Granted Patent B2
US 11,029,140 · App. 16/373,755 · Granted Jun 8, 2021

Distance measurement sensor based on magnetic signal triangulation

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Quick Facts
Patent No.
US 11,029,140
App. No.
16/373,755
Granted
Jun 8, 2021
Kind
B2
Abstract

The subject invention reveals a distance measuring device comprising: a sensing module, a target module, and an evaluating module, wherein the sensing module and the target module are mountable so as to execute a movement with respect to each other along a movement trajectory, wherein the target module comprises a magnetic field generating element having a magnetic pole axis, wherein the sensing module comprises a first magnetic field sensing array being arranged distant to the movement trajectory. The sensing module and the target module can advantageously be situated within the pressurizable chamber of an air spring which is defined by (contained within) a first mounting plate, a second mounting plate, and a flexible member of the air spring.

Claims (53)

1. A distance measuring device comprising:

a target module;

an evaluating module;

a first directional magnetic field sensing array; and

a second directional magnetic field sensing array,

wherein the first directional magnetic field sensing array and the second directional magnetic field sensing array are separated by a predetermined horizontal distance forming a horizontal axis,

wherein the second directional magnetic field sensing array and the first directional magnetic field sensing array do not move relative to each other and wherein the target module move along a movement trajectory that is along a vertical axis that is perpendicular to the horizontal axis between first directional magnetic field sensing array and the second directional magnetic field sensing array,

wherein an angle between the movement trajectory and the horizontal axis is substantially orthogonal,

wherein the first directional magnetic field sensing array and the second directional magnetic field sensing array sense signals from the target module, the signals being transferred to the evaluating module, and

wherein the evaluating module is adapted to determine the distance the target module is from the horizontal axis by determining a directional angle of the first magnetic field sensing array with respect to the target module based on the signals from the first magnetic field sensing array, the second magnetic field sensing array, and the predetermined distance.

2. The distance measuring device of claim 1 , wherein the target module is a permanent magnet.

3. The distance measuring device of claim 1 , wherein the distance measuring device is coupled to an air spring, wherein the air spring comprises a first mounting plate and a second mounting plate, wherein the first directional magnetic field sensing array and the second directional magnetic field sensing array are mountable to the first mounting plate, and wherein the target module is mountable to the second mounting plate.

4. The distance measuring device of claim 3 , wherein the air spring further comprises a flexible member, wherein the first mounting plate, the second mounting plate and the flexible member define a pressurizable chamber, and wherein the first directional magnetic field sensing array, the second directional magnetic field sensing array, and the target module are positioned within the pressurizable chamber.

5. The distance measuring device of claim 1 , wherein the first directional magnetic field sensing array comprises a first magnetic field sensor and a second magnetic field sensor, and wherein a main sensing direction of the first magnetic field sensor is angled with respect to a main sensing direction of the second magnetic field sensor.

6. The distance measuring device of claim 5 , wherein the main sensing direction of the first magnetic field sensor is substantially orthogonal to the main sensing direction of the second magnetic field sensor, wherein the main sensing direction of the first magnetic field sensor is substantially parallel to the movement trajectory, and wherein the main sensing direction of the second magnetic field sensor is substantially orthogonal to the movement trajectory.

7. The distance measuring device of claim 1 , wherein the second directional magnetic field sensing array comprises a third magnetic field sensor and a fourth magnetic field sensor, and wherein a main sensing direction of the third magnetic field sensor is angled with respect to a main sensing direction of the fourth magnetic field sensor.

8. The distance measuring device of claim 7 , wherein the main sensing direction of the third magnetic field sensor is substantially orthogonal to the main sensing direction of the fourth magnetic field sensor, wherein the main sensing direction of the third magnetic field sensor is substantially parallel to the movement trajectory, wherein the main sensing direction of the fourth magnetic field sensor is substantially orthogonal to the movement trajectory.

9. An air spring comprising:

a pressurized chamber;

a first mounting plate;

a second mounting plate; and

a distance measuring device contained within the pressurized chamber, wherein the distance measuring device comprises:

an evaluating module,

a first directional magnetic field sensing array, and

a target module,

wherein the first magnetic field sensing array is mountable to the first mounting plate and

the target module is mountable to the second mounting plate so as to execute a movement with respect to each other along a movement trajectory,

wherein the first magnetic field sensing array is offset from the movement trajectory by a predetermined distance between a reference point on the movement trajectory and

the first directional magnetic field sensing array that forms a horizontal axis,

wherein an angle at the first directional magnetic field sensing array between the horizontal axis a vector from the first directional magnetic field sensing array and the target module is substantially orthogonal,

wherein the first magnetic field sensing array senses signals from the target module, the signals being transferred to the evaluating module, and

wherein the evaluating module is adapted to determine the distance from the first plate to the second plate by determining the angle of the first magnetic field sensing array with respect to the target module based on the signals from the first magnetic field sensing array and the predetermined distance.

10. The air spring of claim 9 , further comprising a flexible member, wherein the first mounting plate, the second mounting plate and the flexible member define the pressurizable chamber.

11. The air spring of claim 9 , wherein the first directional magnetic field sensing array comprises a first magnetic field sensor and a second magnetic field sensor, and wherein a main sensing direction of the first magnetic field sensor is angled with respect to a main sensing direction of the second magnetic field sensor.

12. The air spring of claim 11 , wherein the main sensing direction of the first magnetic field sensor is substantially orthogonal to the main sensing direction of the second magnetic field sensor, wherein the main sensing direction of the first magnetic field sensor is substantially parallel to the movement trajectory, and wherein the main sensing direction of the second magnetic field sensor is substantially orthogonal to the movement trajectory.

13. The air spring of claim 9 , wherein the distance measuring device further comprises a second directional magnetic field sensing array that senses signals from the target module, and wherein the second directional magnetic field sensing array is located at the reference point.

14. The air spring of claim 9 , wherein the distance measuring device further comprises a second directional magnetic field sensing array that senses signals from the target module, wherein the signals are transferred to the evaluating module, and wherein the evaluating module is further adapted to use the signals sensed by the second directional magnetic field sensing array to correct for effects of stray magnetic fields.

15. The air spring of claim 14 , wherein the second directional magnetic field sensing array comprises a third magnetic field sensor and a fourth magnetic field sensor, wherein a main sensing direction of the third magnetic field sensor is angled with respect to a main sensing direction of the fourth magnetic field sensor, wherein the main sensing direction of the third magnetic field sensor is substantially orthogonal to the main sensing direction of the fourth magnetic field sensor, wherein the main sensing direction of the third magnetic field sensor is substantially parallel to the movement trajectory, and wherein the main sensing direction of the fourth magnetic field sensor is substantially orthogonal to the movement trajectory.

16. An air spring comprising:

a first mounting plate;

a second mounting plate; and

a distance measuring device, wherein the distance measuring device comprises:

an evaluating module,

a first magnetic field sensing array, and

a target module,

wherein the first magnetic field sensing array is mountable to the first mounting plate and the target module is mountable to the second mounting plate so as to execute a movement with respect to each other along a movement trajectory,

wherein the first magnetic field sensing array is offset from the movement trajectory by a predetermined distance from a reference point on the movement point wherein the predetermined distance forms a horizontal axis between the reference point and the first magnetic field sensing array, and wherein the movement trajectory is along a vertical axis that is substantially perpendicular to the horizontal axis,

wherein the first magnetic field sensing array sense signals from the target module which are transferred from the first magnetic field sensing array to the evaluating module, and

wherein the evaluating module is adapted to determine the distance from the first plate to the second plate based on the signals, an orientation of a main sensing direction of the first magnetic field sensor, and an orientation of a main sensing direction of the second magnetic field sensor.

17. The air spring of claim 16 , further comprising a flexible member, wherein the first mounting plate, the second mounting plate and the flexible member define a pressurizable chamber, and wherein the first magnetic field sensing array and the target module are positioned within the pressurizable chamber.

18. The air spring of claim 16 , wherein the main sensing direction of the first magnetic field sensor is angled with respect to the main sensing direction of the second magnetic field sensor, wherein the main sensing direction of the first magnetic field sensor is substantially orthogonal to the main sensing direction of the second magnetic field sensor, wherein the main sensing direction of the first magnetic field sensor is substantially parallel to the movement trajectory, and wherein the main sensing direction of the second magnetic field sensor is substantially orthogonal to the movement trajectory.

19. The air spring of claim 16 , wherein the distance measuring device further comprises a second magnetic field sensing array that senses signals from the target module, wherein the second magnetic field sensing array is located at the reference point, wherein the signals sensed by the second magnetic field sensing array are transferred to the evaluating module, and wherein the evaluating module is further adapted to use the signals sensed by the second magnetic field sensing array to correct for effects of stray magnetic fields.

20. The air spring of claim 19 , wherein the second magnetic field sensing array is mountable to the first mounting plate, wherein the air spring further comprises a flexible member, wherein the first mounting plate, the second mounting plate and the flexible member define a pressurizable chamber, and wherein the first magnetic field sensing array, the second magnetic field sensing array, and the target module are positioned within the pressurizable chamber.

Assignments (14)
SECURITY INTEREST Recorded Dec 18, 2025
From: INFINITY ENGINEERED PRODUCTS, LLC
To: MGG INVESTMENT GROUP LP, AS NOTES COLLATERAL AGENT
Reel/Frame 073265/0302 →
RELEASE OF SECURITY INTEREST Recorded Sep 29, 2025
From: FGI WORLDWIDE LLC
To: INFINITY ENGINEERED PRODUCTS, LLC
Reel/Frame 072411/0048 →
RELEASE OF SECURITY INTEREST Recorded Sep 29, 2025
From: BACKCAST CREDIT OPPORTUNITIES FUND I, L.P.
To: INFINITY ENGINEERED PRODUCTS, LLC; INFINITY PRODUCTS INTERMEDIATE HOLDINGS LLC; AIR SPRINGS MEXICO HOLDCO LLC; AIR SPRINGS CANADA HOLDCO LLC
Reel/Frame 072411/0889 →
SECURITY INTEREST Recorded Sep 29, 2025
From: INFINITY ENGINEERED PRODUCTS LLC
To: MGG INVESTMENT GROUP LP, AS COLLATERAL AGENT
Reel/Frame 072408/0447 →
TERMINATION OF SECURITY INTEREST Recorded Dec 20, 2022
From: PNC BANK, NATIONAL ASSOCIATION
To: INFINITY ENGINEERED PRODUCTS, LLC
Reel/Frame 062172/0272 →
GRANT OF SECURITY INTEREST IN UNITED STATES TRADEMARKS Recorded Dec 19, 2022
From: INFINITY ENGINEERED PRODUCTS, LLC; INFINITY PRODUCTS INTERMEDIATE HOLDINGS LLC; AIR SPRINGS MEXICO HOLDCO LLC; AIR SPRINGS CANADA HOLDCO, LLC
To: FGI WORLDWIDE LLC, AS AGENT
Reel/Frame 062163/0307 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 26, 2020
From: STEMCO PRODUCTS, INC.
To: INFINITY ENGINEERED PRODUCTS, LLC
Reel/Frame 054476/0061 →
GRANT OF SECURITY INTEREST IN UNITED STATES PATENT Recorded Nov 23, 2020
From: INFINITY ENGINEERED PRODUCTS, LLC; INFINITY PRODUCTS INTERMEDIATE HOLDINGS LLC; AIR SPRINGS MEXICO HOLDCO LLC; AIR SPRINGS CANADA HOLDCO, LLC
To: PNC BANK, NATIONAL ASSOCIATION, AS AGENT
Reel/Frame 054585/0854 →
TERMINATION AND RELEASE OF SECURITY INTEREST IN PATENTS Recorded Nov 20, 2020
From: BANK OF AMERICA, N.A., AS ADMINISTRATIVE AGENT
To: STEMCO PRODUCTS, INC.
Reel/Frame 054485/0609 →
NOTICE OF GRANT OF SECURITY INTEREST IN PATENTS Recorded Sep 25, 2019
From: STEMCO PRODUCTS, INC.
To: BANK OF AMERICA, N.A., AS ADMINISTRATIVE AGENT
Reel/Frame 050485/0154 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 3, 2019
From: MAY, LUTZ
To: TORQUE AND MORE (TAM) GMBH
Reel/Frame 048781/0704 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 3, 2019
From: TORQUE AND MORE (TAM) GMBH
To: VEYANCE TECHNOLOGIES, INC.
Reel/Frame 048781/0821 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 3, 2019
From: VEYANCE TECHNOLOGIES, INC.
To: STEMCO KAISER INCORPORATED
Reel/Frame 048781/0961 →
MERGER Recorded Apr 3, 2019
From: STEMCO KAISER INCORPORATED
To: STEMCO PRODUCTS, INC.
Reel/Frame 048782/0092 →