IP Library › Granted Patent US 7,379,224
Granted Patent B2
US 7,379,224 · App. 11/430,077 · Granted May 27, 2008

Electrochromic rearview mirror assembly incorporating a display/signal light

Assignee: Gentex Corporation
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Quick Facts
Patent No.
US 7,379,224
App. No.
11/430,077
Granted
May 27, 2008
Kind
B2
Abstract

According to one embodiment of the present invention, an electrochromic rearview mirror assembly for a vehicle includes an electrochromic mirror having a variable reflectivity, a glare sensor for sensing levels of light directed towards the front element from the rear of the vehicle, an ambient sensor for sensing levels of ambient light, a display positioned behind the partially transmissive, partially reflective portion of the reflector for displaying information therethrough.

Claims (29)

1. A rearview mirror element for use in a vehicle, comprising:

a first substantially transparent substrate and a second substrate secured in a spaced apart relationship with respect to one another to form a chamber there between, said second substrate comprising a layer of reflective material at least approximately 200 Å thick comprising silver proximate a surface of said second substrate closest to said first substantially transparent substrate and a first layer of substantially transparent conductive material less than approximately 300 Å comprising indium tin oxide positioned between said layer of reflective material and said first substantially transparent substrate, wherein the rearview mirror element exhibits at least 35% reflectivity.

2. A rearview mirror element as in claim 1 further comprising a second layer of substantially transparent conductive material positioned between said layer of reflective material and said second substrate.

3. A rearview mirror element as in claim 2 wherein said first layer of substantially transparent conductive material is indium tin oxide and said second layer of substantially transparent conductive material is indium tin oxide.

4. A rearview mirror element as in claim 1 wherein said layer of reflective material is silver.

5. A rearview mirror element as in claim 1 wherein said layer of reflective material is silver alloy.

6. A rearview mirror element as in claim 1 wherein said first layer of substantially transparent conductive material is indium tin oxide.

7. A rearview mirror element as in claim 1 configured within an assembly further comprising a light source positioned behind said second substrate to through light through the rearview mirror element.

8. A rearview mirror assembly as in claim 7 wherein a transmittance characteristic of the rearview mirror element is higher for a spectral band associated with emissions from said light source.

9. A rearview mirror element as in claim 1 further comprising at least one solution phase electrochromic medium within the chamber.

10. A rearview mirror element for use in a vehicle, comprising:

a first substantially transparent substrate and a second substrate secured in a spaced apart relationship with respect to one another to form a chamber there between, said second substrate comprising a layer of reflective material at least approximately 200 Å thick comprising silver proximate a surface of said second substrate closest to said first substantially transparent substrate and a first layer of substantially transparent conductive material less than approximately 300 Å positioned between said layer of reflective material and said first substantially transparent substrate, wherein the rearview mirror element exhibits at least 35% reflectivity.

11. A rearview mirror element as in claim 10 further comprising a second layer of substantially transparent conductive material positioned between said layer of reflective material and said second substrate.

12. A rearview mirror element as in claim 11 wherein said first layer of substantially transparent conductive material is indium tin oxide and said second layer of substantially transparent conductive material is indium tin oxide.

13. A rearview mirror element as in claim 10 wherein said layer of reflective material is silver.

14. A rearview mirror element as in claim 10 wherein said layer of reflective material is silver alloy.

15. A rearview mirror element as in claim 10 wherein said first layer of substantially transparent conductive material is indium tin oxide.

16. A rearview mirror element as in claim 10 configured within an assembly further comprising a light source positioned behind said second substrate to project light through the rearview mirror element.

17. A rearview mirror assembly as in claim 16 wherein a transmittance characteristic of the rearview mirror element is higher for a spectral band associated with emissions from said light source.

18. A rearview mirror element as in claim 10 further comprising at least one solution phase electrochromic medium within the chamber.

19. A rearview mirror element for use in a vehicle, comprising:

a first substantially transparent substrate and a second substrate secured in a spaced apart relationship with respect to one another to form a chamber there between comprising at least one solution phase electrochromic medium within the chamber, said second substrate comprising a layer of reflective material at least approximately 200 Å thick comprising silver proximate a surface of said second substrate closest to said first substantially transparent substrate and a first layer of substantially transparent conductive material less than approximately 300 Å positioned between said layer of reflective material and said first substantially transparent substrate, wherein the rearview mirror element exhibits at least 35% reflectivity.

20. A rearview mirror element as in claim 19 further comprising a second layer of substantially transparent conductive material positioned between said layer of reflective material and said second substrate.

21. A rearview mirror element as in claim 20 wherein said first layer of substantially transparent conductive material is indium tin oxide and said second layer of substantially transparent conductive material is indium tin oxide.

22. A rearview mirror element as in claim 19 wherein said layer of reflective material is silver.

23. A rearview mirror element as in claim 19 wherein said layer of reflective material is sliver alloy.

24. A rearview mirror element as in claim 19 wherein said first layer of substantially transparent conductive material is indium tin oxide.

25. A rearview mirror element as in claim 19 configured within an assembly further comprising a light source positioned behind said second substrate to project light through the rearview mirror element.

26. A rearview mirror assembly as in claim 25 wherein a transmittance characteristic of the rearview mirror element is higher for a spectral band associated with emissions from said light source.

Continuity (18)
Continuation 1077784600 · Feb 12, 2004
Continuation 1011586000 · Apr 3, 2002
Continuation In Part 0999421800 · Nov 26, 2001
Continuation 0931195500 · May 14, 1999
Continuation In Part 0920678800 · Dec 7, 1998
Continuation In Part 0919740000 · Nov 20, 1998
Continuation In Part 0911438600 · Jul 13, 1998
Continuation 0883258700 · Apr 2, 1997
Continuation In Part 0917598400 · Oct 20, 1998
Continuation In Part 0883180800 · Apr 2, 1997
Continuation In Part 0942579200 · Oct 22, 1999
Continuation In Part 0931195500 · May 14, 1999
Continuation In Part 0991821300 · Jul 30, 2001
Continuation 0956084900 · Apr 28, 2000
Continuation 0937513600 · Aug 16, 1999
Continuation 0883478300 · Apr 2, 1997
Provisional Application 6012449300 · Mar 15, 1999
Related Publication 20060203323A1 · Sep 14, 2006