IP Library › Granted Patent US 10,239,375
Granted Patent B2
US 10,239,375 · App. 15/549,082 · Granted Mar 26, 2019

Vehicle chassis level sensor

Inventor: David Shinozaki (Lake Orion, MI)
Assignee: Bourns, Inc.
B60G11/14B60G3/06B60G11/16B60G15/063B60G15/067B60G17/019F16F1/12F16F9/32B60G2200/142B60G2202/12B60G2204/11B60G2204/124B60G2401/172
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Quick Facts
Patent No.
US 10,239,375
App. No.
15/549,082
Granted
Mar 26, 2019
Kind
B2
Abstract

A damper assembly for a vehicle having a chassis and a control arm moveably coupled to the chassis includes a first spring seat configured to be fixed to the chassis, a second spring seat configured to be supported by the control arm, a coil spring extending between the first spring seat and the second spring seat, and a sensor module supported by the first spring seat or the second spring seat. The sensor module is operable to determine a state of compression of the coil spring.

Claims (45)

1. A damper assembly for a vehicle, the vehicle having a chassis and a control arm moveably coupled to the chassis, the damper assembly comprising:

a first spring seat configured to be fixed to the chassis;

a second spring seat configured to be supported by the control arm;

a coil spring extending between the first spring seat and the second spring seat; and

a sensor module supported by the first spring seat or the second spring seat, the sensor module being operable to determine a state of compression of the coil spring;

wherein the sensor module includes a Hall effect sensor and a permanent magnet, and

wherein the permanent magnet interacts with a coil of the coil spring.

2. The damper assembly of claim 1 , wherein the sensor module measures a gap between a first coil of the coil spring and the sensor module.

3. The damper assembly of claim 2 , wherein the permanent magnet faces the first coil of the coil spring, and wherein the sensor module senses a magnetic field generated by the permanent magnet to measure the gap.

4. The damper assembly of claim 3 , wherein the sensor module senses a first magnetic flux when the gap is a first size, and wherein the sensor module senses a second magnetic flux that is greater than the first magnetic flux when the gap is a second size that is less than the first size.

5. The damper assembly of claim 1 , wherein at least a portion of the sensor module is molded into the first spring seat or the second spring seat.

6. The damper assembly of claim 1 , wherein the permanent magnet is embedded in the first spring seat or the second spring seat.

7. The damper assembly of claim 1 , further comprising a strut configured to be supported by the control arm, wherein the second spring seat is fixed to the strut.

8. The damper assembly of claim 7 , wherein the coil spring is positioned around the strut.

9. The damper assembly of claim 1 , wherein the second spring seat is configured to be fixed to an axle that is supported by the control arm.

10. A suspension system for a vehicle, the suspension system comprising:

a first control arm configured to be pivotally coupled to a chassis of the vehicle;

a second control arm configured to be pivotally coupled to the chassis of the vehicle;

a first wheel hub supported by the first control arm;

a second wheel hub supported by the second control arm; and

a damper assembly including

a first spring seat configured to be fixed to the chassis of the vehicle,

a second spring seat supported by the control arm,

a coil spring extending between the first spring seat and the second spring seat, and

a sensor module supported by the first spring seat or the second spring seat, the sensor module being operable to determine a state of compression of the coil spring;

wherein the sensor module measures a gap between a first coil of the coil spring and the sensor module.

11. The suspension system of claim 10 , wherein the sensor module includes a magnet facing the first coil of the coil spring, and wherein the sensor module senses a magnetic field generated by the magnet to measure the gap.

12. The suspension system of claim 11 , wherein the sensor module senses a first magnetic flux when the gap is a first size, and wherein the sensor module senses a second magnetic flux that is greater than the first magnetic flux when the gap is a second size that is less than the first size.

13. The suspension system of claim 10 , wherein at least a portion of the sensor module is molded into the first spring seat or the second spring seat.

14. The suspension system of claim 10 , wherein the damper assembly further includes a strut supported by the control arm, wherein the coil spring is positioned around the strut, and wherein the second spring seat is fixed to the strut.

15. The suspension system of claim 10 , further comprising an axle supported by the first and second control arms and supporting the first and second wheel hubs, wherein the second spring seat is fixed to the axle.

16. A sensing system that measures compression of a vehicle coil spring, the sensing system comprising:

a housing configured to be coupled to an end of the coil spring;

a permanent magnet supported by the housing, the permanent magnet having a magnetic field that interacts with a coil of the coil spring; and

a magnetic sensor supported by the housing, the magnetic sensor being operable to sense the magnetic field from the permanent magnet;

wherein the magnetic field at the magnetic sensor changes when the compression of the coil spring changes.

17. The sensing system of claim 16 , wherein the magnetic sensor senses an increased magnetic flux as a gap between the permanent magnet and a coil of the coil spring decreases, and wherein the magnetic sensor senses a decreased magnetic flux as the gap between the permanent magnet and the coil of the coil spring increases.

18. A damper assembly for a vehicle, the vehicle having a chassis and a control arm moveably coupled to the chassis, the damper assembly comprising:

a first spring seat configured to be fixed to the chassis;

a second spring seat configured to be supported by the control arm;

a coil spring extending between the first spring seat and the second spring seat; and

a sensor module supported by the first spring seat or the second spring seat, the sensor module being operable to determine a state of compression of the coil spring;

wherein the sensor module measures a gap between a first coil of the coil spring and the sensor module.

19. The damper assembly of claim 18 , wherein the sensor module includes a magnet facing the first coil of the coil spring, and wherein the sensor module senses a magnetic field generated by the magnet to measure the gap.

20. The damper assembly of claim 19 , wherein the sensor module senses a first magnetic flux when the gap is a first size, and wherein the sensor module senses a second magnetic flux that is greater than the first magnetic flux when the gap is a second size that is less than the first size.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 25, 2018
From: SHINOZAKI, DAVID
To: BOURNS, INC.
Reel/Frame 044726/0390 →
Continuity (2)
Provisional Application 62112743 · Feb 6, 2015
Related Publication 20180037078A1 · Feb 8, 2018