Abstract:
A rearview mirror assembly for a vehicle includes a mirror reflective element, a mirror casing, a mirror backplate, and a perimeter lighting device. The mirror backplate includes a generally planar attachment portion for attaching at a rear surface of the mirror reflective element. The perimeter lighting device is disposed at least partially along a periphery of the mirror reflective element and may emit light so as to generally illuminate at least one of (i) a perimeter region of the mirror casing, (ii) a perimeter region of the mirror reflective element and (iii) a perimeter region of the rearview mirror assembly between the mirror casing and the mirror reflective element.
Abstract:
A method of forming a unitary perimeter seal for attachment at a fixed window panel of a slider window assembly of a vehicle includes forming upper, lower and side sealing portions each having elongated body portions and sealing lips extending substantially therealong. The upper and lower sealing portion are arranged with first ends adjacent a respective end of a first side sealing portion and second ends adjacent a respective end of a second side sealing portion. The sealing portions are arranged so as to result in a perimeter frame that circumscribes an opening for the slider window assembly. Corner regions are molded at and partially over adjacent ends of the elongated body portions of the sealing portions, such that the corner regions include a curved sealing lip that provides a transition between the sealing lips of the adjacent ends of the sealing portions.
Abstract:
An interior rearview mirror assembly for a vehicle includes a mirror head having a mirror reflective element, and a video display device behind the mirror reflective element and viewable through the mirror reflective element when activated. The video display device includes a display screen that occupies at least 75 percent of a reflective region of the mirror reflective element. The video display device includes a backlighting array of light emitting diodes for backlighting the display screen, and the backlighting array of light emitting diodes includes a plurality of zones of light emitting diodes, with each zone having at least two light emitting diodes. The zones of light emitting diodes are independently controlled based on the video images being displayed by the video display device.
Abstract:
An exterior rearview mirror system for a vehicle includes an exterior rearview mirror assembly having a mounting portion mountable at a side of a vehicle and a mirror head portion pivotally adjustable relative to the mounting portion. The mirror assembly includes an actuator operable to impart pivotal movement of the mirror head portion relative to said mounting portion. The actuator includes a first motor and a second motor that are operable in tandem to cooperatively cause a common drive gear of a gear system to be driven to pivot the mirror head portion relative to the mounting portion. Operation of the first and second motors is synchronized and causes the common drive gear to rotate. A shutoff circuit is operable to determine a stalled condition and, responsive to such determination, is operable to deactivate driving of the common drive gear by the at least two motors.
Abstract:
A control system of a vehicle includes a receiver disposed in the vehicle and operable to wirelessly receive signals generated by a portable garage door opening module when the portable garage door opening module is actuated. The portable garage door opening module includes a separate, non-integrated portable remote control garage door opening module. A control, responsive to the receiver wirelessly receiving signals generated by the portable garage door opening module, controls an accessory of the vehicle.
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 system for a vehicle includes an exterior rearview mirror assembly configured for attachment at a side of the vehicle and having a mirror reflective element housed by a mirror shell formed of plastic. The mirror reflective element includes at least one glass substrate and a mirror reflector established at a surface of the at least one glass substrate. A turn signal display element is provided in a moldable form and integrated into the mirror shell. The turn signal display element includes a plurality of printable light emitting diodes and is operable to function as a turn signal indicator that illuminates when a driver of the vehicle activates a turn signal system of the vehicle.
Abstract:
A mirror reflective element assembly for an exterior rearview mirror assembly for a vehicle includes a reflective element and a heater pad. The heater pad includes a heater pad substrate having a plurality of electrically conductive traces established thereat. The heater pad substrate is disposed at a rear surface of the reflective element. The electrically conductive traces may include (i) a heating trace that, (ii) first and second electro-optic control traces and/or (iii) accessory control traces. The electrically conductive traces terminate at a connector region of the heater pad substrate. An electrical connector is established at the connector region and has terminals electrically conductively connected at respective terminals of the electrically conductive traces. The electrical connector is formed as part of a back plate of the mirror reflective element assembly and is configured to electrically connect to a single wiring harness of the exterior rearview mirror assembly.
Abstract:
A vehicle mirror and camera mounting system includes a windshield attachment member configured to adhesively attach at a vehicle windshield and a camera mounting bracket configured to attach at the windshield attachment member. The camera mounting bracket is an injection molded bracket that is formed by injection molding a thermoplastic reinforced polyamide polymeric molding resin. With the windshield attachment member adhesively attached at the in-cabin surface of the windshield, the camera mounting bracket, with a camera module attached thereat, is attached at the windshield attachment member. The camera mounting bracket includes a mirror attachment portion for attaching an interior rearview mirror assembly. The mirror mount includes an attaching portion that is configured to insert at least partially into a socket of the mirror attachment portion of the camera mounting bracket to attach the interior rearview mirror assembly at the camera mounting bracket.
Abstract:
A rearview mirror assembly for a vehicle includes a mirror casing and a mirror reflective element disposed at the mirror casing. The mirror reflective element includes at least a first glass substrate having a front surface and a rear surface. When the rearview mirror assembly is normally mounted in a vehicle, the front surface is closer than the rear surface to a driver that is normally operating the vehicle. The first glass substrate has a flat central region and a rounded perimeter edge, and the rounded perimeter is exposed to and is viewable by the driver of the vehicle. With the mirror reflective element disposed at the mirror casing, no portion of the mirror casing encompasses the rounded perimeter edge. The rounded perimeter edge has a glare-reducing surface finish.