IP Library › Granted Patent US 9,346,402
Granted Patent B2
US 9,346,402 · App. 14/699,402 · Granted May 24, 2016

Vehicular rearview mirror elements and assemblies incorporating these elements

Inventors: William L. Tonar (Holland, MI); David J. Cammenga (Zeeland, MI); John S. Anderson (Holland, MI); David L. Poll (Holland, MI); George A. Neuman (Holland, MI); Joel A. Stray (Hudsonville, MI); Bradley L. Busscher (Grand Rapids, MI); Kenton J. Ypma (Hudsonville, MI)
Assignee: GENTEX CORPORATION
B60R1/088B32B17/06B32B17/10036B32B17/10174B32B17/10321B32B17/10513B60R1/04B60R1/06B60R1/12G02F1/153G02F1/157B32B2255/205B32B2307/202B32B2307/40B32B2307/412B32B2307/728B32B2307/73B32B2605/00B32B2605/006B60R2001/1215C23C14/086C23C14/34Y10T29/49002
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Quick Facts
Patent No.
US 9,346,402
App. No.
14/699,402
Granted
May 24, 2016
Kind
B2
Abstract

The present invention relates to improved electro-optic rearview mirror elements and assemblies incorporating the same, including processes for making such elements and assemblies.

Claims (43)

1. A vehicular rearview assembly prepared by a process comprising the steps:

providing a first substrate comprising a first surface and a second surface;

providing a second substrate comprising a third surface and a fourth surface;

applying an electrically conductive coating to at least a portion of the second surface;

applying an electrically conductive coating to at least a portion of the third surface;

ablating by a laser a portion of the electrically conductive coating on the second surface forming an isolation area that is substantially devoid of the electrically conductive coating and a plurality of non-ablated portions of the electrically conductive coating;

applying a perimeter seal to the second surface and the third surface to define a cavity;

filling the cavity with an electro-optic medium to form an electro-optic element; and

connecting the electro-optic element to a housing structure having an aperture corresponding to a front of the assembly, wherein the housing structure is configured to support the electro-optic element.

2. The vehicular rearview assembly prepared by a process according to claim 1 , wherein the isolation area comprises an isolation line having a width of about 0.005 inches to about 0.010 inches.

3. The vehicular rearview assembly prepared by a process according to claim 1 , wherein the isolation area comprises an isolation line having a width of about 0.002 inches to about 0.004 inches.

4. The vehicular rearview assembly prepared by a process according to claim 1 , wherein the isolation area comprises an isolation line having a width of less than or equal to about 0.002 inches.

5. The vehicular rearview assembly prepared by a process according to claim 1 , wherein the isolation area comprises an isolation line having a width of less than or equal to about 1 um.

6. The vehicular rearview assembly prepared by a process according to claim 1 , wherein the isolation area comprises an isolation line configured such that the electrical resistance between the plurality of non-ablated portions of the electrically conductive coating is greater than 30 ohms.

7. The vehicular rearview assembly prepared by a process according to claim 1 , wherein the isolation area comprises an isolation line configured such that the electrical resistance between the plurality of non-ablated portions of the electrically conductive coating is greater than 100 ohms.

8. The vehicular rearview assembly prepared by a process according to claim 1 , wherein the electro-optic mirror element further comprises one or more of a textual feature, emblem, graphic, and artwork, and further wherein the isolation area is substantially incorporated into the one or more of the textual feature, emblem, graphic, and artwork.

9. The vehicular rearview assembly prepared by a process according to claim 1 , further comprising the step:

providing a spectral filter between the second surface and the perimeter seal, the spectral filter comprises a first and a second spectral filter portion substantially isolated from one another by the isolation area.

10. The vehicular rearview assembly prepared by a process according to claim 9 , wherein the isolation area is located over the perimeter seal.

11. The vehicular rearview assembly prepared by a process according to claim 10 , wherein the step of applying an electrically conductive coating to at least a portion of the second surface comprises applying the electrically conductive coating directly on the second surface.

12. The vehicular rearview assembly prepared by a process according to claim 10 , wherein the step of providing a spectral filter between the second surface and the perimeter seal comprises applying the spectral filter directly on the second surface.

13. The vehicular rearview assembly prepared by a process according to claim 10 , wherein the spectral filter comprises an inboard edge and the isolation area is substantially aligned in close proximity to the inboard edge such that the isolation area is substantially hidden from view with respect to the front of the vehicular rearview assembly.

14. A vehicular rearview assembly prepared by a process comprising the steps:

providing a first substrate comprising a first surface and a second surface;

providing a second substrate comprising a third surface and a fourth surface;

applying an electrically conductive coating over at least a portion of the second surface;

applying an electrically conductive coating over at least a portion of the third surface;

applying a perimeter seal to the second surface and the third surface to define a cavity;

providing a spectral filter over at least a portion of the second surface and between the second surface and the perimeter seal;

ablating by a laser a viewable portion of the spectral filter;

filling the cavity with an electro-optic medium to form an electro-optic element; and

connecting the electro-optic element to a housing structure having an aperture corresponding to a front of the assembly, wherein the housing structure is configured to support the electro-optic element.

15. The vehicular rearview assembly prepared by a process according to claim 14 , further comprising the step:

ablating by a laser a portion of the electrically conductive coating and the spectral filter over at least a portion of the second surface to form (a) an isolation area that is substantially devoid of the electrically conductive coating and the spectral filter, (b) a plurality of non-ablated portions of the electrically conductive coating, and (c) a plurality of non-ablated portions of the spectral filter.

16. The vehicular rearview assembly prepared by a process according to claim 15 , wherein the step of applying the electrically conductive coating over at least a portion of the second surface is performed before the step of providing a spectral filter.

17. The vehicular rearview assembly prepared by a process according to claim 16 , wherein the electrically conductive coating over at least a portion of the second surface comprises a transparent conductive oxide.

18. The vehicular rearview assembly prepared by a process according to claim 17 , wherein the electrically conductive coating over at least a portion of the second surface comprises indium tin oxide.

19. The vehicular rearview assembly prepared by a process according to claim 15 , wherein the step of applying the electrically conductive coating over at least a portion of the second surface is performed after the step of providing a spectral filter.

20. The vehicular rearview assembly prepared by a process according to claim 19 , wherein the electrically conductive coating over at least a portion of the second surface comprises a transparent conductive oxide.

21. The vehicular rearview assembly prepared by a process according to claim 20 , wherein the electrically conductive coating over at least a portion of the second surface comprises indium tin oxide.

22. The vehicular rearview assembly prepared by a process according to claim 14 , wherein the spectral filter comprises chrome material.

23. The vehicular rearview assembly prepared by a process according to claim 14 , wherein the spectral filter comprises a stack of materials.

24. The vehicular rearview assembly prepared by a process according to claim 14 , wherein the electro-optic medium comprises an electrochromic material.

Continuity (18)
Division 14164505 · Jan 27, 2014
Continuation 13188042 · Jul 21, 2011
Continuation 12505458 · Jul 17, 2009
Continuation In Part 12151669 · May 8, 2008
Continuation 11066903 · Feb 25, 2005
Continuation In Part 11478224 · Jun 29, 2006
Continuation In Part 11066903
Continuation In Part 12832838 · Jul 8, 2010
Continuation In Part 12750357 · Mar 30, 2010
Continuation 12154736 · May 27, 2008
Continuation 11477312 · Jun 29, 2006
Continuation 11066903
Continuation In Part 10430885 · May 6, 2003
Continuation In Part 10260741 · Sep 30, 2002
Provisional Application 60614150 · Sep 29, 2004
Provisional Application 60605111 · Aug 27, 2004
Provisional Application 60548472 · Feb 27, 2004
Related Publication 20150239399A1 · Aug 27, 2015