IP Library Granted Patent US 12,679,271
Granted Patent B2
US 12,679,271 · App. 18/360,875 · Granted Jul 14, 2026

Vehicular interior rearview mirror assembly

Inventor: John T. Uken (Jenison, MI)
Assignee: Magna Mirrors of America, Inc.
B60R1/04
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Quick Facts
Patent No.
US 12,679,271
App. No.
18/360,875
Granted
Jul 14, 2026
Kind
B2
Abstract

A vehicular interior rearview mirror assembly includes a mirror head adjustable about a mounting base configured to attach at an interior portion of a vehicle. The mirror head includes a mirror reflective element. The mounting base is configured to attach at the interior portion of the vehicle via a threaded fastener. The threaded fastener includes a head end and a threaded end that threadedly engages the interior portion of the vehicle. A compressible component is disposed between the head end of the threaded fastener and the mounting base. With the mounting base attached at the interior portion of the vehicle, and responsive to movement of the mounting base relative to the threaded fastener and the interior portion of the vehicle, the compressible component at least partially compresses to accommodate movement of the mounting base.

Claims (45)

1 . A vehicular interior rearview mirror assembly, the vehicular interior rearview mirror assembly comprising:

a mirror head adjustable about a mounting base, wherein the mounting base is configured to attach at an interior portion of a vehicle equipped with the vehicular interior rearview mirror assembly;

wherein the mirror head comprises a mirror reflective element;

wherein the mounting base is configured to attach at the interior portion of the vehicle via a threaded fastener;

wherein the threaded fastener includes a head end and a threaded end opposite the head end;

wherein a compressible component is disposed between the head end of the threaded fastener and the mounting base;

wherein the threaded end threadedly engages the interior portion of the vehicle when the mounting base is attached at the interior portion of the vehicle; and

wherein, with the mounting base attached at the interior portion of the vehicle via the threaded fastener, and responsive to movement of the mounting base relative to the threaded fastener and the interior portion of the vehicle, (i) the compressible component at least partially compresses between the threaded fastener and the mounting base to accommodate movement of the mounting base and (ii) the threaded end of the threaded fastener remains threadedly engaged with the interior portion of the vehicle as the mounting base moves relative to the threaded fastener and the interior portion of the vehicle.

2 . The vehicular interior rearview mirror assembly of claim 1 , wherein the compressible component is disposed between a flange at the head end of the threaded fastener and an inner surface of the mounting base.

3 . The vehicular interior rearview mirror assembly of claim 2 , wherein the flange comprises a washer disposed at the threaded fastener.

4 . The vehicular interior rearview mirror assembly of claim 1 , wherein the compressible component is disposed at least partially within a recess at an inner portion of the mounting base.

5 . The vehicular interior rearview mirror assembly of claim 4 , wherein the compressible component comprises a conical shape, and wherein the recess comprises a conical shape corresponding to the conical shape of the compressible component.

6 . The vehicular interior rearview mirror assembly of claim 1 , wherein the threaded fastener extends through the compressible component.

7 . The vehicular interior rearview mirror assembly of claim 1 , wherein the mounting base comprises (i) an attachment portion that attaches at the interior portion of the vehicle and (ii) a mounting arm that attaches at the mirror head.

8 . The vehicular interior rearview mirror assembly of claim 7 , wherein the attachment portion and the mounting arm are integrally formed with one another.

9 . The vehicular interior rearview mirror assembly of claim 7 , wherein the mounting arm comprises a ball member that is pivotally received at a socket of the mirror head.

10 . The vehicular interior rearview mirror assembly of claim 1 , wherein, with the mounting base attached at the interior portion of the vehicle via the threaded fastener, and responsive to a force greater than a threshold force being applied at the vehicular interior rearview mirror assembly, the mounting base moves relative to the threaded fastener and the interior portion of the vehicle.

11 . The vehicular interior rearview mirror assembly of claim 10 , wherein the threshold force is less than or equal to 400 Newtons.

12 . The vehicular interior rearview mirror assembly of claim 1 , wherein the compressible component comprises a rubber material.

13 . The vehicular interior rearview mirror assembly of claim 1 , wherein the compressible component comprises one selected from the group consisting of (i) a coil spring, (ii) a wave spring and (iii) a conical spring.

14 . A vehicular interior rearview mirror assembly, the vehicular interior rearview mirror assembly comprising:

a mirror head adjustable about a mounting base, wherein the mounting base is configured to attach at an interior portion of a vehicle equipped with the vehicular interior rearview mirror assembly;

wherein the mirror head comprises a mirror reflective element;

wherein the mounting base is configured to attach at the interior portion of the vehicle via a threaded fastener;

wherein the threaded fastener includes a head end and a threaded end opposite the head end;

wherein a compressible component is disposed between a flange at the head end of the threaded fastener and an inner surface of the mounting base, and wherein the threaded fastener extends through the compressible component;

wherein the compressible component comprises a rubber material, and wherein the compressible component is disposed at least partially within a recess at the inner surface of the mounting base;

wherein the threaded end threadedly engages the interior portion of the vehicle when the mounting base is attached at the interior portion of the vehicle; and

wherein, with the mounting base attached at the interior portion of the vehicle via the threaded fastener, and responsive to movement of the mounting base relative to the threaded fastener and the interior portion of the vehicle, (i) the compressible component at least partially compresses between the threaded fastener and the mounting base to accommodate movement of the mounting base and (ii) the threaded end of the threaded fastener remains threadedly engaged with the interior portion of the vehicle as the mounting base moves relative to the threaded fastener and the interior portion of the vehicle.

15 . The vehicular interior rearview mirror assembly of claim 14 , wherein the compressible component comprises a conical shape, and wherein the recess comprises a conical shape corresponding to the conical shape of the compressible component.

16 . The vehicular interior rearview mirror assembly of claim 14 , wherein the mounting base comprises (i) an attachment portion that attaches at the interior portion of the vehicle and (ii) a mounting arm that attaches at the mirror head.

17 . The vehicular interior rearview mirror assembly of claim 14 , wherein, with the mounting base attached at the interior portion of the vehicle via the threaded fastener, and responsive to a force greater than a threshold force being applied at the vehicular interior rearview mirror assembly, the mounting base moves relative to the threaded fastener and the interior portion of the vehicle.

18 . A vehicular interior rearview mirror assembly, the vehicular interior rearview mirror assembly comprising:

a mirror head adjustable about a mounting base, wherein the mounting base is configured to attach at an interior portion of a vehicle equipped with the vehicular interior rearview mirror assembly;

wherein the mounting base comprises (i) an attachment portion that attaches at the interior portion of the vehicle and (ii) a mounting arm that attaches at the mirror head;

wherein the mounting arm comprises a ball member that is pivotally received at a socket of the mirror head;

wherein the mirror head comprises a mirror reflective element;

wherein the mounting base is configured to attach at the interior portion of the vehicle via a threaded fastener;

wherein the threaded fastener includes a head end and a threaded end opposite the head end;

wherein a compressible component is disposed between the head end of the threaded fastener and the mounting base;

wherein the threaded end threadedly engages the interior portion of the vehicle when the mounting base is attached at the interior portion of the vehicle;

wherein, with the mounting base attached at the interior portion of the vehicle via the threaded fastener, and responsive to a force greater than a threshold force being applied at the vehicular interior rearview mirror assembly, the mounting base moves relative to the threaded fastener and the interior portion of the vehicle; and

wherein, responsive to movement of the mounting base relative to the threaded fastener and the interior portion of the vehicle, (i) the compressible component at least partially compresses between the threaded fastener and the mounting base to accommodate movement of the mounting base and (ii) the threaded end of the threaded fastener remains threadedly engaged with the interior portion of the vehicle as the mounting base moves relative to the threaded fastener and the interior portion of the vehicle.

19 . The vehicular interior rearview mirror assembly of claim 18 , wherein the threshold force is less than or equal to 400 Newtons.

20 . The vehicular interior rearview mirror assembly of claim 18 , wherein the compressible component comprises one selected from the group consisting of (i) a coil spring, (ii) a wave spring and (iii) a conical spring.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 28, 2023
From: UKEN, JOHN T.
To: MAGNA MIRRORS OF AMERICA, INC.
Reel/Frame 064414/0559 →
Continuity (2)
Provisional Application 63370126 · Aug 2, 2022
Related Publication 20240042931A1 · Feb 8, 2024
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