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 window assembly for a vehicle includes outer and inner window panels and a spacer element disposed there-between to establish an interpane cavity between the inner and outer window panels. At least one of (a) the outer window panel has a larger cross dimension relative to the inner window panel to provide overhang regions, and (b) the inner window panel has a different contour or curvature than that of the outer window panel so that the interpane cavity varies in gap distance across the window assembly. A roller shade is disposed in the cavity and is electrically deployable to coil and uncoil between a coiled light transmitting condition, where the roller shade functions to substantially allow light transmission through the window assembly, and an at least partially uncoiled light attenuating condition, where the roller shade functions to at least partially attenuate light transmission through the window assembly.
Abstract:
A mirror reflective element sub-assembly includes a mirror reflective element, a mirror back plate and a signal indicator. The mirror back plate includes (i) a generally planar portion and (ii) an indicator receiving portion. The indicator receiving portion has a wall structure extending at an angle from the generally planar portion adjacent to an aperture established through the mirror back plate. The signal indicator has a light source disposed at a circuit element and a housing substantially encases the circuit element therein. An electrical connector protrudes from the circuit element and is accessible at a connector portion of the housing for connecting to electrical wiring of the vehicle. The signal indicator includes an indicia element at a forward end thereof. When the light source is activated, light emitted by the light source emanates through the aperture and through the mirror reflective element and is transmitted through the indicia element.
Abstract:
A cover assembly for an appliance includes a glass panel and at least one metallic attachment element bonded to an inner surface of the glass panel via a layer of cured adhesive. The at least one metallic element is configured for mounting to at least one corresponding structure of the appliance to mount the cover assembly at the appliance. The layer of cured adhesive bonds the at least one metallic element to the inner surface of the glass panel without exposure of the bonded element on an outer surface of the glass panel. A perimeter frame portion may be established around a perimeter region of the glass panel.
Abstract:
An exterior mirror vision system includes a driver-side exterior rearview mirror assembly mounted at a driver side of a vehicle and a passenger-side exterior rearview mirror assembly mounted at a passenger side of the vehicle. The driver-side exterior mirror assembly includes a mounting portion configured for mounting at the driver side of the vehicle, a driver-side exterior mirror housing, and a driver-side reflective element. The driver-side exterior rearview mirror assembly includes a driver-side light module and a driver-side camera. The passenger-side exterior mirror assembly includes a mounting portion configured for mounting at the passenger side of the vehicle, a passenger-side exterior mirror housing, and a passenger-side reflective element. The passenger-side exterior rearview mirror assembly includes a passenger-side light module and a passenger-side camera. The driver-side camera and the passenger-side camera may be part of a multi-camera vision system of the vehicle.
Abstract:
A lighted exterior mirror assembly includes a housing that houses a reflectance element, and includes a turn signal indicator disposed at a portion of the housing. The turn signal indicator is fixedly disposed at the housing separate from the reflectance element whereby movement of the reflectance element is independent of the turn signal indicator. The turn signal indicator comprises a plurality of light emitting diodes arranged in a plane that is generally horizontal when the lighted exterior mirror assembly is attached to the side of the vehicle. The plurality of light emitting diodes may be disposed behind a light-transmitting cover and, when the lighted exterior mirror assembly is attached to the side of the vehicle and when the plurality of light emitting diodes is powered, the plurality of light emitting diodes emits light that is viewable at least rearward of the vehicle.
Abstract:
A window assembly for a vehicle includes a window panel comprising inner and outer surfaces terminating at a peripheral edge, An attachment member is adhesively bonded to the window panel at a mounting area of the inner surface by a layer of cured adhesive. The attachment member is a generally S-shaped metallic attachment member having a panel attachment flange, a vehicle attachment flange, and a leg disposed between the flanges and spacing the panel attachment flange from the vehicle attachment flange. The panel attachment flange is configured to conform to the inner surface of the window panel at the mounting area. A fastener at the vehicle attachment flange attaches the vehicle attachment flange to the vehicle to mount the window assembly at the vehicle. The fastener protrudes from the vehicle attachment flange and generally away from the panel attachment flange and the window panel.
Abstract:
A window assembly for a vehicle includes a window panel (14), an actuating assembly (24) and a seal (22). The frame portion (16) partially surrounds a perimeter of the window panel and leaves a free perimeter portion (14c) of the window panel (14) at least partially free. The actuating assembly (24) is positioned at or near the free perimeter portion (14c) of the window panel (14) and is operated to vibrate the window panel. The seal (22) is disposed along the free perimeter portion to substantially seal the window panel relative to the vehicle panel while allowing movement of the window panel in response to the actuating assembly.
Abstract:
A lighted exterior mirror assembly includes a housing that houses a reflectance element, and includes a turn signal indicator disposed at a portion of the housing. The turn signal indicator is fixedly disposed at the housing separate from the reflectance element whereby movement of the reflectance element is independent of the turn signal indicator. The turn signal indicator comprises a plurality of light emitting diodes arranged in a plane that is generally horizontal when the lighted exterior mirror assembly is attached to the side of the vehicle. The plurality of light emitting diodes may be disposed behind a light-transmitting cover and, when the lighted exterior mirror assembly is attached to the side of the vehicle and when the plurality of light emitting diodes is powered, the plurality of light emitting diodes emits light that is viewable at least rearward of the vehicle.