IP Library Granted Patent US 6,922,006
Granted Patent B2
US 6,922,006 · App. 10/492,383 · Granted Jul 26, 2005

Geared motor for a window regulator and method for operating the window regulator

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Quick Facts
Patent No.
US 6,922,006
App. No.
10/492,383
Granted
Jul 26, 2005
Kind
B2
Abstract

A window regulator includes an electric motor having a drive shaft, a window slider, a transmission having an input driven by a drive shaft and an output driving the slider. A geared motor includes a drive shaft, a reduction gear coupled to the drive shaft and having a transmission ratio less than 1 , and a piezoelectric element selectively locking the drive shaft. The window regulator can be used to prevent fraudulent opening of a window and to reduce the jamming force of an object between the window and the window frame.

Claims (38)

1. A window regulator comprising:

an electric motor having a drive shaft;

a window slider;

a transmission having an input driven by the drive shaft and an output driving the window slider;

a split bearing; and

a piezoelectric element that selectively locks a position of the window slider by locking the drive shaft using the split bearing, and the split bearing is adjacent the piezoelectric element.

2. The window regulator according to claim 1 , wherein the piezoelectric element has a friction surface to lock the position of the window slider.

3. The window regulator according to claim 2 , wherein the friction surface has a coefficient of friction on the drive shaft greater than 0.15.

4. The window regulator according to claim 2 , wherein the transmission has a reduction gear with a speed reduction ratio between a gear input and a gear output of the reduction gear greater than 1.

5. The window regulator according to claim 4 , wherein the reduction gear comprises a worm wheel system, and a worm is provided on the drive shaft.

6. The window regulator according to claim 1 , wherein the piezoelectric element forms a journal of the drive shaft.

7. The window regulator according to claim 1 , wherein:

the electric motor has a housing with a journal; and

the piezoelectric element has an outer surface permanently housed in the journal and an inner surface acting upon the split bearing.

8. The window regulator according to claim 1 , wherein the piezoelectric element is piezostrictive.

9. The window regulator according to claim 1 , wherein the piezoelectric element selectively brakes movement of the window slider.

10. A geared motor comprising:

a drive shaft;

a reduction gear coupled to the drive shaft and having a transmission ratio lower than 1;

a split bearing; and

a piezoelectric element that selectively locks the drive shaft using the split bearing, and the split bearing is adjacent the piezoelectric element.

11. The geared motor according to claim 10 , wherein the piezoelectric element has a friction surface to lock the drive shaft, the friction surface having a coefficient of friction with the drive shaft greater than 0.15.

12. The geared motor according to claim 10 , wherein the reduction gear has a worm wheel system, and a worm is provided on the drive shaft.

13. The geared motor according to claim 10 , wherein the piezoelectric element forms a journal of the drive shaft.

14. The geared motor according to claim 10 , further comprising a housing with a journal, wherein the piezoelectric element has an outer surface permanently housed in the journal and an inner surface acting on the split bearing.

15. The geared motor according to claim 10 , wherein the piezoelectric element is piezostrictive.

16. The geared motor according to claim 10 , wherein the piezoelectric element selectively brakes the drive shaft.

17. A method for operating a window regulator comprising the steps of:

providing an electric motor having a drive shaft, a window slider, a transmission having an input driven by the drive shaft and an output driving the window slider, and a piezoelectric element that selectively locks a position of the window slider by locking the drive shaft using a split bearing;

locking the position of the window slider by the piezoelectric element when the electric motor is switched off; and

unlocking the position of the window slider when the electric motor is supplied with power.

18. The method according to claim 17 , wherein the piezoelectric element has two terminals and is piezostrictive, and wherein the piezoelectric element is not supplied with power during the step of locking the position of the window slider.

19. A method for operating a window regulator comprising the steps of:

providing an electric motor having a drive shaft, a window slider, a transmission having an input driven by the drive shaft and an output driving the window slider, and a piezoelectric element that selectively locks a position of the window slider by locking the drive shaft using a split bearing;

driving the window slider by the electric motor;

detecting an obstruction; and

braking movement of the window slider by the piezoelectric element.

20. The method according to claim 19 , further comprising a step of short-circuiting a power supply to the electric motor after the step of detecting the obstruction.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 4, 2022
From: INTEVA PRODUCTS FRANCE SAS
To: INTEVA FRANCE
Reel/Frame 060723/0802 →
CHANGE OF NAME Recorded Sep 17, 2014
From: ARVINMERITOR LIGHT VEHICLE SYSTEMS FRANCE
To: INTEVA PRODUCTS FRANCE SAS
Reel/Frame 033762/0980 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 3, 2004
From: NOMERANGE, HERVE
To: ARVINMERITOR LIGHT VEHICLE SYSTEMS-FRANCE
Reel/Frame 015802/0280 →