Abstract:
A reflective element assembly for a vehicular rearview mirror assembly includes front and rear substrates with an electro-optic medium disposed therebetween. An electrical connector has an attachment portion and a wire receiving portion for receiving an electrical wire therein. A flange of the attachment portion is configured to be disposed at a fourth surface of the rear substrate and a tab is configured to extend at least partially across a perimeter edge of the rear substrate. An electrically conductive material is disposed in an uncured state and uncured electrically conductive material flows at least partially through the aperture and is cured to secure the electrical connector at the rear substrate. The wire receiving portion of the electrical connector is configured to receive the electrical wire therein and includes at least one tang that engages the electrical wire when the electrical wire is inserted into the wire receiving portion.
Abstract:
An exterior mirror system for a vehicle includes driver-side and passenger-side exterior rearview mirror assemblies including respective driver-side and passenger-side light modules and driver-side and passenger-side cameras. The light modules provide a driver-side indicator and a passenger-side indicator. The driver-side light module and the passenger-side light modules are disposed at respective mirror housing portions and move therewith when the exterior mirror housing portion moves relative to the mounting portion between its normal operating position and its folded position. The driver-side camera and the passenger-side camera are part of a multi-camera vision system of the vehicle, and the multi-camera vision system has a display device that is operable to display images for viewing by a driver of the vehicle. The displayed images displayed by the display device may include an image portion derived from image data captured by at least one of the driver-side camera and the passenger-side camera.
Abstract:
A cover assembly for an appliance includes a glass panel, at least one attachment element and a perimeter frame. The glass panel has a perimeter edge extending between an inner surface and an outer surface and along a periphery of the glass panel. The attachment element is configured for engaging a corresponding structure of the appliance when the cover assembly is disposed at the appliance. The perimeter frame encompasses at least the perimeter edge of the glass panel, with no portion of the outer surface of the glass panel encompassed by the perimeter frame such that the outer surface of the glass panel is generally co-planar with an outer surface of the perimeter frame along the periphery of the glass panel. At least one of (i) the attachment element is bonded at the inner surface of the glass panel and (ii) the perimeter frame comprises the attachment element.
Abstract:
An interior rearview mirror assembly includes a mirror casing and a prismatic reflective element. The mirror casing is a unitarily molded mirror casing having at least one attachment surface. The prismatic reflective element includes a glass substrate having a front surface and a rear surface and a perimeter edge about a periphery of the glass substrate. A mirror reflector is established at the rear surface of the glass substrate. The perimeter edge of said glass substrate has a generally rounded surface disposed between the front surface and the mirror casing. The prismatic reflective element is attached at the attachment surface of the mirror casing. The perimeter edge of the glass substrate is exposed to and is viewable by the driver of the vehicle when the interior rearview mirror assembly is normally mounted in the vehicle.
Abstract:
A display system of a vehicle includes a windshield of a vehicle, an interior rearview mirror assembly, an assembly disposed at an upper region of the windshield, and a display device disposed at the assembly. The upper region of the windshield includes a display region. The display device is operable to project a mirror image of display information towards and onto the display region of the windshield for viewing by a driver of the vehicle. The display information is viewable at the display region of the windshield and is viewable and discernible by the driver of the vehicle when the driver is normally operating the vehicle.
Abstract:
A slider window assembly for a vehicle includes a frame portion having upper and lower rails, at least one fixed window panel fixed relative to the frame portion, and a movable window panel that is movable along the rails between a closed position and an opened position. The lower rail may comprise a unitarily formed rail having (i) a channel portion that extends at least partially along the fixed window panel and an opening and (ii) a cable guide formed at each end region of the channel portion. A carrier is at a lower portion of the movable window panel and is configured to move along the channel portion of the lower rail. The cable guides are configured to engage or receive a respective sheath of a cable assembly of a cable drive system, with a cable of the cable assembly being attached at the respective end of the carrier.
Abstract:
An exterior rearview mirror assembly for a vehicle includes a mounting portion mountable at a side of a vehicle, a mirror head portion adjustably mounted at the mounting portion, and a reflective element at the mirror head portion. An actuator is operable to impart pivotal movement of the mirror head portion relative to the mounting portion and about a generally vertical pivot axis to pivotally adjust the mirror head portion relative to the side of the vehicle at which the mounting portion is mounted. The actuator comprises at least two motors and the motors are operable in tandem to cooperatively rotatably drive a common gear of a gear system to pivot the mirror head portion relative to the mounting portion.
Abstract:
A rearview mirror assembly includes a mirror reflective element, a front mirror casing portion configured to receive the mirror reflective element, a rear mirror casing and a mirror backplate. The mirror backplate includes a generally planar attachment portion for attaching at a rear surface of the mirror reflective element and includes a perimeter flange circumscribing a perimeter of the generally planar attachment portion. The perimeter flange is partially received in the rear mirror casing portion and partially received in the front mirror casing portion, and the perimeter flange couples the front and rear mirror casing portions to the mirror backplate.
Abstract:
A mirror reflective element sub-assembly includes a mirror reflective element, a mirror back plate and a blind spot indicator. The mirror back plate has a generally planar portion and an indicator mounting portion. The indicator mounting portion of the mirror back plate is angled relative to the generally planar portion, and an aperture is established through the mirror back plate generally at the indicator mounting portion. A heater pad is disposed at the rear of the mirror reflective element, and a light transmitting portion of the heater pad is generally aligned with the aperture of the mirror back plate. With the light source of the blind spot indicator activated, light emitted by the light source transmits through an indicia element, the aperture and the light transmitting portion and exits the mirror reflective element at an angle relative to the generally planar portion of the mirror back plate.
Abstract:
A method for manufacturing vehicular slider window assembly includes providing at least one fixed window panel and a perimeter seal having elongated sealing portions joined at respective corner regions. Each of the elongated sealing portions includes a base portion, an elongated sealing lip and an attachment element. The perimeter seal is adhesively attached at the fixed window panel. The corner regions are sealed at the at least one fixed window panel via dispensing a sealant through a passageway formed at an end of the base portion of respective ones of the elongated sealing portions at the respective corner regions to fill a gap between adjacent end regions of the respective attachment elements at the respective corner regions at the surface of the at least one fixed window panel. A movable window panel is disposed at upper and lower rails of the at least one fixed window panel.