Abstract:
An exterior rearview mirror assembly for a vehicle includes a mirror head and a light module disposed at a mirror casing. A blind zone indicator light emitting diode and a turn signal indicator light emitting diode are disposed at a single circuit board and are operable to emit light for a blind zone indicator and a turn signal indicator, respectively. The blind zone indicator and the turn signal indicator are disposed along a forward and sideward portion of the mirror casing, where the turn signal indicator is viewable and the blind zone indicator is not viewable along the forward and sideward portion of the mirror casing. When the blind zone indicator light emitting diode is operated and when the exterior rearview mirror assembly is attached at the side of the vehicle, the blind zone alert is viewable by the driver of the vehicle outboard of the mirror reflective element.
Abstract:
An interior rearview mirror assembly for a vehicle includes a mirror casing and a prismatic reflective element, with the mirror casing adjustably supported at a mirror mount at an interior surface of the vehicle. The mirror casing includes a principal mirror casing portion and a pivotable mirror casing portion that is pivotable relative to the principal mirror casing portion. A toggle assembly includes a toggle lever and a spring element disposed between and coupled to the toggle lever and the pivotable mirror casing portion of the mirror casing. Pivotal movement of the toggle lever flexes the spring element and adjusts the angle of the principal mirror casing portion and the prismatic reflective element relative to the pivotable mirror casing portion of the mirror casing.
Abstract:
An exterior rearview mirror assembly for a vehicle includes a mirror head and an exterior mirror reflective element fixedly attached at the mirror head. An attachment portion is configured for attachment at an exterior portion of the vehicle. The mirror assembly includes a multi-axis adjustment mechanism having at least one electrically-operable actuator. The multi-axis adjustment mechanism is operable to move the mirror head, with the exterior mirror reflective element fixedly attached thereto, about multiple axes relative to the attachment portion. The exterior mirror reflective element moves in tandem with movement of the mirror head relative to the exterior portion of the body of the vehicle to adjust the rearward field of view of a driver of the vehicle who views the exterior mirror reflective element when operating the vehicle.
Abstract:
An exterior rearview mirror assembly configured for mounting at an exterior side portion of a vehicle includes a mounting portion, a mirror head and an electrically-operated actuator. The mounting portion is configured for attachment at an exterior side portion of a vehicle. The mirror head includes a mirror casing and a mirror reflective element. The mirror head is attached at the electrically-operated actuator. With the mounting portion of the exterior rearview mirror assembly attached at the exterior side portion of the vehicle, the electrically-operated actuator is electrically operable to move the mirror reflective element and the mirror casing together in tandem to vertically and horizontally adjust a field of view of a driver of the vehicle who is viewing the mirror reflective element.
Abstract:
An exterior rearview mirror assembly configured for mounting at an exterior portion of a vehicle includes a mounting arm, a mirror head attached at the mounting arm, an attaching element attached at a mirror reflective element, a shroud and a mirror actuator. The mounting arm is configured for attachment at an exterior portion of the vehicle. The shroud extends from the attaching element and is partially received in the mirror head. The mirror actuator is operable to adjust the attaching element and the mirror reflective element relative to the mirror head. The mirror reflective element is disposed outside of the mirror head and the shroud spans a gap between the mirror reflective element and the mirror head to substantially encase the attaching element.
Abstract:
An exterior rearview mirror assembly configured for mounting at an exterior portion of a vehicle includes a mounting arm configured for attachment at the vehicle, a mirror head disposed at an outboard end of the mounting arm and movable relative to the mounting arm, and an actuator operable to move the mirror head relative to the mounting arm. The mirror head includes a mirror casing and a frameless mirror reflective element fixedly attached at the mirror casing, with no part of the mirror casing disposed over the front surface of the mirror reflective element. The actuator is operable to move the mirror head relative to the mounting arm to vertically and horizontally adjust a rearward field of view of the driver of the vehicle who is viewing the mirror reflective element with the exterior rearview mirror assembly mounted at the vehicle.
Abstract:
An interior rearview mirror assembly for a vehicle includes a mirror casing and a prismatic reflective element, with the mirror casing adjustably supported at a mirror mount at an interior surface of the vehicle. The mirror casing includes a principal mirror casing portion and a pivotable mirror casing portion that is pivotable relative to the principal mirror casing portion. A toggle assembly includes a toggle lever and a spring element disposed between and coupled to the toggle lever and the pivotable mirror casing portion of the mirror casing. Pivotal movement of the toggle lever flexes the spring element and adjusts the angle of the principal mirror casing portion and the prismatic reflective element relative to the pivotable mirror casing portion of the mirror casing.
Abstract:
An accessory system for a vehicle includes a bracket configured for adhesive attachment at an in-cabin surface of the vehicle windshield. The bracket includes an attaching portion having an aperture therethrough and includes a pair of attaching arms extending from the attaching portion. An interior rearview mirror assembly has a mounting base that is attached at the attaching portion of the bracket with the bracket adhesively attached at the windshield. With the mounting base attached at the attaching portion, a rain sensor is disposed at the in-cabin surface of the windshield and the aperture of the attaching portion circumscribes the rain sensor. With the bracket adhesively attached at the windshield, a forward camera module is attached at the attaching arms of the bracket and generally at the in-cabin surface of the windshield so that an imager of the forward camera module has a field of view through the windshield.
Abstract:
A method of making a mirror substrate for an interior rearview mirror assembly for a vehicle includes providing a glass substrate having a generally planar front surface, a generally planar rear surface and a circumferential perimeter edge about a periphery of said glass substrate and extending between the front and rear surfaces. A grinding wheel is moved around the periphery of a front perimeter portion of the glass substrate while rotating the grinding wheel to establish a ground generally rounded surface about and around the glass substrate periphery. A polishing wheel is moved around the glass substrate periphery while rotating the polishing wheel to establish a polished generally rounded surface about and around the glass substrate periphery. The polished generally rounded surface provides a smooth transition between the generally planar front surface of the glass substrate and a rear portion of the circumferential perimeter edge of the glass substrate.
Abstract:
A vehicular rearview mirror assembly includes a mirror reflective element and a touch sensor device disposed behind a portion of the reflective element and operable to sense the presence of a person's finger at a touch zone of the reflective element proximate to the touch sensor device. A backlighting device is disposed behind the touch sensor device and is operable to backlight a portion of the touch sensor device. The touch sensor device includes a touch sensor substrate having a conductive trace established at a patterned conductive zone of the touch sensor substrate. When the backlighting device is activated, light emanating from the backlighting device passes through the patterned conductive zone of the touch sensor substrate and illuminates an icon so that the icon is viewable through the reflective element by a driver of the vehicle when the rearview mirror assembly is normally mounted at the vehicle.