Abstract:
An interior rearview mirror assembly for a vehicle includes a mirror head, a mounting member and an attachment member. The mirror head includes a mirror casing and a reflective element. The mounting member includes an upper portion configured to mount at an interior structure of a vehicle. The attachment member includes a connection portion and a pivot element protruding from the connection portion. The attachment member is disposed at a lower portion of the mounting member. The mirror head is configured to adjustably attach at the pivot element. The mounting member is formed of a polymeric material, and at least the connection portion of the attachment member is formed of a metallic material. The connection portion of the attachment member may be insert molded in the lower portion of the mounting member.
Abstract:
A method of sputter coating a glass substrate includes providing a glass substrate and providing a sputtering assembly for sputtering a coating onto the glass substrate in a vacuum deposition chamber. The sputtering assembly includes a backing plate and a separating element disposed on the backing plate. At least one target element is provided and disposed at and in contact with a surface of the separating element. The target element is not bonded the separating element when disposed at and in contact with the surface of the separating element. An expansion gap is provided at or adjacent to the target element to allow for expansion of the target element during the sputtering process. Material from the target element is sputtered and the target element is heated to a substantially elevated temperature during the sputtering process. The sputtering process coats a surface of the glass substrate with the target element material.
Abstract:
A slider window assembly for a vehicle includes a frame portion having an upper rail and a lower rail, with at least one fixed window panel fixed relative to the frame portion and defining an opening. A movable window panel is movable along the upper and lower rails between a closed position and an opened position. A perimeter seal is disposed at the at least one fixed window panel. The perimeter seal includes a single continuous sealing element that circumscribes the opening and that is configured to substantially seal against a surface of the movable window panel about a periphery of the movable window panel when the movable window panel is in its closed position.
Abstract:
An exterior rearview mirror assembly for a vehicle includes a principal reflective element, a wide angle auxiliary reflective element and a back plate. The principal reflective element is disposed at a principal reflective element region of the back plate and has a cutout at a corner region thereof. The wide angle auxiliary reflective element is disposed at the auxiliary reflective element region of the back plate and is adjacent to the principal reflective element at the corner region of the principal reflective element. A single heater pad is disposed between the principal reflective element and the principal reflective element region of the back plate and between the wide angle auxiliary reflective element and the auxiliary reflective element region of the back plate. When powered, the single heater pad heats the principal reflective element and the wide angle auxiliary reflective element.
Abstract:
A rearview mirror assembly for a vehicle includes an electro-optic reflective element with first and second conductive pads established at a fourth surface of the reflective element and in electrical connection to respective electrically conductive coatings of the reflective element. A back plate has first and second spring-loaded connectors disposed in passageways established through the back plate. A circuit element includes first and second conductive traces in electrical connection with the electro-optic control circuitry. With the circuit element attached at the back plate, (i) the first spring-loaded connector contacts and is biased into engagement with the first conductive pad and the first conductive trace to electrically connect the first conductive trace to the first conductive pad and (ii) the second spring-loaded connector contacts and is biased into engagement with the second conductive pad and the second conductive trace to electrically connect the second conductive trace to the second conductive pad.
Abstract:
An exterior rearview mirror assembly for a vehicle includes a mounting portion mountable at a side of a vehicle and a mirror head portion pivotally adjustable relative to the mounting portion. An actuator is operable to impart pivotal movement of the mirror head portion relative to the mounting portion to adjust the mirror head portion relative to the side of the vehicle at which the mounting portion is mounted. The actuator includes a first motor and a second motor operable in tandem to cooperatively drive a common drive gear of a gear system to adjust the mirror head portion relative to the mounting portion. Operation of the first and second motors is synchronized. Operation of the first motor drives a first gear that rotatably drives the common drive gear and operation of the second motor drives a second gear that rotatably drives the common drive gear.
Abstract:
A rear slider window assembly for a vehicle includes a fixed window panel, a frame portion and a movable window panel that is movable along the frame between a closed position and an opened position relative to an opening of the fixed window panel. A first heater grid is disposed at the first panel portion, a second heater grid is disposed at the second panel portion, and a third heater grid is disposed at the movable window panel. A first busbar is disposed at the fixed window panel and extends at least partially across an upper or lower panel portion of the fixed window panel. The rear slider window assembly includes an electrical connector for electrically conductively connecting the third heater grid to one of (i) the first heater grid, (ii) the second heater grid and (iii) the first busbar.
Abstract:
An exterior rearview mirror assembly for a vehicle includes a principal reflective element, a wide angle auxiliary reflective element and a back plate. The principal reflective element is disposed at a principal reflective element region of the back plate and has a cutout at a corner region thereof. The wide angle auxiliary reflective element is disposed at the auxiliary reflective element region of the back plate and is adjacent to the principal reflective element at the corner region of the principal reflective element. A single heater pad is disposed between the principal reflective element and the principal reflective element region of the back plate and between the wide angle auxiliary reflective element and the auxiliary reflective element region of the back plate. When powered, the single heater pad heats the principal reflective element and the wide angle auxiliary reflective element.
Abstract:
A vehicular mirror reflective element sub-assembly includes a mirror reflective element and a mirror back plate. A heater pad is disposed between the mirror reflective element and the mirror back plate. The heater pad has a light transmitting portion that is generally aligned with an aperture of the mirror back plate. The mirror reflector includes a light-transmitting portion thereof that is generally aligned with the light transmitting portion of the heater pad. An indicator module includes a housing, and a circuit board is disposed in the housing and includes at least one light emitting diode. When an equipped exterior rearview mirror assembly is mounted at the side of the vehicle and with the light emitting diode activated, emitted light passes through a light diffuser and through the light transmitting portions and exits the mirror reflective element to provide a visual icon visible to a driver of the vehicle.
Abstract:
A sun visor assembly for a vehicle includes a front transparent glass substrate having first and second surfaces and a rear transparent glass substrate having third and fourth surfaces, with an electro-optic medium sandwiched between the second surface of the front glass substrate and the third surface of the rear glass substrate. A vanity mirror including a mirror reflector is established at one of (i) the first surface of the front glass substrate and (ii) the second surface of the front glass substrate. When not electrically powered, the electro-optic medium is substantially transparent, and when electrically powered, the electro-optic medium is darkened so as to have reduced light transmission. When the electro-optic medium behind the mirror reflector is darkened, the mirror reflector is usable as a vanity mirror by a user of the sun visor.