IP Library Granted Patent US 10,647,258
Granted Patent B2
US 10,647,258 · App. 16/186,962 · Granted May 12, 2020

Frameless interior rearview mirror assembly

Inventors: Darryl P. De Wind (West Olive, MI); Donald S. Rawlings (Caledonia, MI); John T. Uken (Jenison, MI)
Assignee: MAGNA MIRRORS OF AMERICA, INC.
B60R1/04B60R1/088B60R1/12G02B5/04G02F1/13338G02F1/157G02F1/161G02F1/163B60R2001/1223
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Quick Facts
Patent No.
US 10,647,258
App. No.
16/186,962
Granted
May 12, 2020
Kind
B2
Abstract

An interior rearview mirror assembly for a vehicle includes a mirror casing and a prismatic interior reflective element. The reflective element comprises a wedge-shaped glass substrate having a perimeter edge about a periphery of the glass substrate and extending between first and second surfaces thereof. The glass substrate has a mirror reflector established at the second surface. A front surface of the perimeter edge provides a smooth curved transition at the perimeter edge between a perimeter region of the first surface and the mirror casing. The front surface of the perimeter edge is rounded with a radius of curvature of at least about 2.5 mm. No portion of the mirror casing encompasses the first surface of the glass substrate.

Claims (44)

1. An interior rearview mirror assembly for a vehicle, said interior rearview mirror assembly comprising:

a mirror casing;

a prismatic interior reflective element;

wherein said prismatic interior reflective element comprises a wedge-shaped glass substrate having a first surface and a second surface and a perimeter edge about a periphery of said wedge-shaped glass substrate and extending between the first and second surfaces thereof, said wedge-shaped glass substrate having a mirror reflector established at the second surface thereof, the first surface facing a driver of a vehicle when said interior rearview mirror assembly is normally mounted in a vehicle equipped with said interior rearview mirror assembly;

wherein a front surface of the perimeter edge provides a smooth curved transition at the perimeter edge between a perimeter region of the first surface of said wedge-shaped glass substrate and said mirror casing;

said perimeter region circumscribing said wedge-shaped glass substrate;

wherein the front surface of the perimeter edge is rounded at least by grinding to provide a rounded curved surface disposed between the first surface of said wedge-shaped glass substrate and said mirror casing; and

wherein the radius of curvature of the front surface of the perimeter edge is at least 2.5 mm.

2. The interior rearview mirror assembly of claim 1 , wherein the radius of curvature of the front surface of the perimeter edge is uniform around the perimeter of said wedge-shaped glass substrate.

3. The interior rearview mirror assembly of claim 1 , wherein said prismatic interior reflective element is adhered to said mirror casing.

4. The interior rearview mirror assembly of claim 3 , wherein said mirror casing comprises an attachment surface, and wherein said prismatic interior reflective element is attached at said attachment surface of said mirror casing to secure said prismatic interior reflective element to said mirror casing.

5. The interior rearview mirror assembly of claim 4 , wherein no portion of said mirror casing encompasses the first surface of said wedge-shaped glass substrate.

6. The interior rearview mirror assembly of claim 1 , wherein the radius of curvature of the front surface of the perimeter edge is non-uniform around the perimeter of said wedge-shaped glass substrate.

7. The interior rearview mirror assembly of claim 6 , wherein the perimeter edge of said wedge-shaped glass substrate comprises a thicker region and a thinner region, and wherein the radius of curvature along the thinner region of the perimeter edge of said wedge-shaped glass substrate is smaller than the radius of curvature along the thicker region of the perimeter edge of said wedge-shaped glass substrate.

8. The interior rearview mirror assembly of claim 1 , wherein said prismatic interior reflective element comprises a user input portion, said user input portion operable to detect presence or touch of a human finger at the first surface of said wedge-shaped glass substrate, said user input portion comprising at least one capacitive touch sensor disposed at and behind the second surface of said wedge-shaped glass substrate.

9. An interior rearview mirror assembly for a vehicle, said interior rearview mirror assembly comprising:

a mirror casing;

a prismatic interior reflective element;

wherein said prismatic interior reflective element comprises a wedge-shaped glass substrate having a first surface and a second surface and a perimeter edge about a periphery of said wedge-shaped glass substrate and extending between the first and second surfaces thereof, said wedge-shaped glass substrate having a mirror reflector established at the second surface thereof, the first surface facing a driver of a vehicle when said interior rearview mirror assembly is normally mounted in a vehicle equipped with said interior rearview mirror assembly;

wherein a front surface of the perimeter edge provides a smooth curved transition at the perimeter edge between a perimeter region of the first surface of said wedge-shaped glass substrate and said mirror casing;

said perimeter region circumscribing said wedge-shaped glass substrate;

wherein the front surface of the perimeter edge is rounded by grinding and polishing to provide a rounded curved surface disposed between the first surface of said wedge-shaped glass substrate and said mirror casing;

wherein the radius of curvature of the front surface of the perimeter edge is at least 2.5 mm;

wherein the radius of curvature of the front surface of the perimeter edge is uniform around the perimeter of said wedge-shaped glass substrate; and

wherein no portion of said mirror casing encompasses the first surface of said wedge-shaped glass substrate.

10. The interior rearview mirror assembly of claim 9 , wherein said prismatic interior reflective element is adhered to said mirror casing.

11. The interior rearview mirror assembly of claim 10 , wherein said mirror casing comprises an attachment surface, and wherein said prismatic interior reflective element is attached at said attachment surface of said mirror casing to secure said prismatic interior reflective element to said mirror casing.

12. The interior rearview mirror assembly of claim 9 , wherein an outer part of the perimeter edge of said wedge-shaped glass substrate is co-planar with an outer part of a side wall of said mirror casing.

13. The interior rearview mirror assembly of claim 9 , wherein said prismatic interior reflective element comprises a user input portion, said user input portion operable to detect presence or touch of a human finger at the first surface of said wedge-shaped glass substrate, said user input portion comprising at least one capacitive touch sensor disposed at and behind the second surface of said wedge-shaped glass substrate.

14. An interior rearview mirror assembly for a vehicle, said interior rearview mirror assembly comprising:

a mirror casing;

a mirror reflective element;

wherein said mirror reflective element comprises a glass substrate having a first surface and a second surface and a perimeter edge about a periphery of said glass substrate and extending between the first and second surfaces thereof, wherein the first surface of said glass substrate faces a driver of a vehicle when said interior rearview mirror assembly is normally mounted in a vehicle equipped with said interior rearview mirror assembly;

wherein said mirror casing comprises a terminal end region that circumscribes an open end of said mirror casing and terminates at a terminal end edge of said mirror casing;

wherein said terminal end region of said mirror casing comprises a rounded end region surface curving between said terminal end edge of said mirror casing and an outer surface of a sidewall of said mirror casing;

wherein said rounded end region surface is rounded to provide a rounded curved surface disposed between the first surface of said glass substrate and said outer surface of said sidewall of said mirror casing;

wherein the radius of curvature of said rounded end region surface is at least 2.5 mm; and

wherein said glass substrate is received at said open end of said mirror casing, and wherein no part of said mirror casing encompasses said first surface of said glass substrate.

15. The interior rearview mirror assembly of claim 14 , wherein said mirror reflective element comprises a prismatic mirror reflective element, and wherein said glass substrate comprises a wedge-shaped glass substrate having a mirror reflector established at the second surface thereof.

16. The interior rearview mirror assembly of claim 14 , wherein said mirror reflective element is partially received in a recess that is established at an inner surface of said mirror casing and that circumscribes said mirror reflective element, and wherein the recess at least in part retains said mirror reflective element at said open end of said mirror casing.

17. The interior rearview mirror assembly of claim 16 , wherein said mirror reflective element comprises an electro-optic mirror reflective element, and wherein said glass substrate comprises a front glass substrate of said electro-optic mirror reflective element, and wherein said electro-optic mirror reflective element comprises a rear glass substrate and an electro-optic medium sandwiched between said front glass substrate and said rear glass substrate.

18. The interior rearview mirror assembly of claim 17 , wherein a periphery of said rear glass substrate is partially received in said recess.

19. The interior rearview mirror assembly of claim 18 , wherein no part of said front glass substrate extends beyond any part of said rear glass substrate.

20. The interior rearview mirror assembly of claim 19 , wherein said terminal end region of said mirror casing extends over a perimeter region of said rear glass substrate.

Continuity (11)
Division 15583114 · May 1, 2017
Continuation 14809540 · Jul 27, 2015
Continuation 14572020 · Dec 16, 2014
Division 14280870 · May 19, 2014
Division 13498597
Continuation In Part 13265613
Provisional Application 61261839 · Nov 17, 2009
Provisional Application 61249300 · Oct 7, 2009
Provisional Application 61187112 · Jun 15, 2009
Provisional Application 61172022 · Apr 23, 2009
Related Publication 20190092240A1 · Mar 28, 2019
Cited By (3)
US 12,240,381 US 12,240,382 US 12,252,072