Stationary camera in an interior rearview mirror
A mirror assembly for a vehicle includes a glass element that is at least partially reflective and a housing that is coupled to the glass element. A mounting member includes an internal portion located within the housing that defines a mounting member connector. The housing includes a housing connector operably coupled to the mounting member connector and configured to articulate the housing relative to the mounting member between different positions. A camera unit is connected to the internal portion of the mounting member such that it remains stationary as the housing is articulated relative to the mounting member.
1 . A mirror assembly for a vehicle, the mirror assembly comprising:
a glass element that is at least partially reflective;
a housing coupled to the glass element;
a mounting member including an internal portion located within the housing defining a mounting member connector;
the housing including a housing connector operably coupled to the mounting member connector and configured to articulate the housing relative to the mounting member between different positions;
a camera unit connected to the internal portion of the mounting member and remaining stationary when the housing is articulated relative to the mounting member; and
a flexible sleeve extending between the camera unit and the glass element that deforms during the articulation between the housing and the mounting member to reduce ambient light from interfering with the camera unit.
2 . The mirror assembly of claim 1 , wherein the housing is configured to articulate in pitch and yaw directions relative to the mounting member.
3 . The mirror assembly of claim 2 , wherein the housing is further configured to articulate in a roll direction relative to the mounting member.
4 . The mirror assembly of claim 1 , wherein the housing connector includes a basket and the mounting member connector includes a ball.
5 . The mirror assembly of claim 1 , further including a PCB located in the housing that defines an aperture aligned with the camera unit.
6 . The mirror assembly of claim 5 , wherein the PCB is located between the glass element and the camera unit.
7 . The mirror assembly of claim 5 , wherein the PCB is located between the camera unit and the mounting member connector and the internal portion extends through the aperture.
8 . The mirror assembly of claim 1 , further including a PCB located in the housing that is statically connected to the internal portion of the mounting member and remains stationary when the housing is articulated relative to the mounting member.
9 . The mirror assembly of claim 1 , wherein the sleeve extends around the camera unit and is formed of opaque material.
10 . The mirror assembly of claim 9 , wherein the sleeve extends from the camera unit and is coupled to one of the glass element or a display module located behind the glass element.
11 . The mirror assembly of claim 1 , wherein the glass element defines a concave surface and the camera unit is at least partially located in a space defined by the concave surface.
12 . The mirror assembly of claim 11 , wherein the concave surface has a parabolic or spherical shape.
13 . The mirror assembly of claim 12 , wherein the concave surface has a chrome layer.
14 . A mirror assembly for a vehicle, the mirror assembly comprising:
a glass element that is at least partially reflective;
a housing coupled to the glass element;
a mounting member including an internal portion located within the housing defining a mounting member connector and a camera mount extending past the mounting member towards the glass element;
the housing including a housing connector operably coupled to the mounting member connector and configured to articulate the housing relative to the mounting member between different positions along at least two axes;
a camera unit connected to the camera mount such that it remains stationary as the housing is articulated relative to the mounting member;
a printed circuit board (“PCB”) located in the housing and statically coupled to the mounting member between the mounting member connector and the camera mount; and
a flexible sleeve extending between the camera unit and the glass element that deforms during the articulation between the housing and the mounting member to reduce ambient light from interfering with the camera unit.
15 . The mirror assembly of claim 14 , wherein the glass element is partially reflective, partially transmissive and includes:
a front substrate defining a first surface and a second surface;
a rear substrate defining a third surface and a fourth surface; and
an electro-optic medium disposed between the front substrate and the rear substrate.
16 . The mirror assembly of claim 15 , further including a display module located in the housing behind the rear substrate.
17 . The mirror assembly of claim 16 , wherein the PCB is configured to control features of the camera unit, the glass element, and the display module.
18 . A mirror assembly for a vehicle, the mirror assembly comprising:
a glass element that is at least partially reflective;
a housing coupled to the glass element;
a mounting member including an internal portion located within the housing defining a mounting member connector;
the housing including a housing connector operably coupled to the mounting member connector and configured to articulate the housing relative to the mounting member between different positions along at least two axes;
a camera unit connected to the internal portion of the mounting member such that it remains stationary as the housing is articulated relative to the mounting member; and
a printed circuit board (“PCB”) located in the housing between the camera unit and the glass element and statically coupled to the housing, the PCB defining an aperture aligned with the camera unit to permit the camera unit to capture data through the aperture.
19 . The mirror assembly of claim 18 , wherein a flexible sleeve extends between the camera unit and the glass element that deforms during the articulation between the housing and the mounting member to reduce ambient light from interfering with the camera unit.
20 . The mirror assembly of claim 18 , wherein the flexible sleeve extends around the camera unit and is formed of opaque material.