Abstract:
A user-interactive display system for a vehicle includes a portable hand-held device capable of being carried into and out of the vehicle and a display device viewable by the driver of the vehicle. The portable hand-held device is operable to communicate with a vehicle-based receiver, and the display device is operable to display a listing of choices in response to the communication. A user input of an interior rearview mirror assembly is actuatable by a user to select an item from the displayed listing of choices. The user-interactive display system is operable to at least one of (a) display at the display device data associated with the selected item in response to the user-selection of the selected item from the listing of choices and (b) audibly play at an audio device in the vehicle data associated with the selected item in response to the user-selection of the selected item from the listing of choices.
Abstract:
A video mirror system suitable for use in a vehicle includes an interior rearview mirror assembly mountable at an interior portion of a vehicle and includes a mirror case and a reflective element. A video display device may be one of (i) fixedly disposed in the mirror case and (ii) extendable and retractable relative to the mirror case. The video display device is operable to display video images that are viewable by the driver of the vehicle when the interior rearview mirror assembly is mounted at the interior portion of the vehicle. The interior rearview mirror assembly includes an on-screen display controller operable to receive a video signal from a camera and, responsive to receipt of the video signal, the on-screen display controller is operable to generate a video feed to the video display device.
Abstract:
A user-interactive display system for a vehicle includes a portable hand-held device capable of being carried into and out of the vehicle and a display device viewable by the driver of the vehicle. The portable hand-held device is operable to communicate with a vehicle-based receiver, and the display device is operable to display a listing of choices in response to the communication. A user input of an interior rearview mirror assembly is actuatable by a user to select an item from the displayed listing of choices. The user-interactive display system is operable to at least one of (a) display at the display device data associated with the selected item in response to the user-selection of the selected item from the listing of choices and (b) audibly play at an audio device in the vehicle data associated with the selected item in response to the user-selection of the selected item from the listing of choices.
Abstract:
A video mirror system suitable for use in a vehicle includes an interior rearview mirror assembly having a reflective element and a video display screen module. The video display screen module may have a metallic enclosure and at least one of (a) a polarizer film and (b) a brightness enhancing film, and includes a liquid crystal display panel that is back lit by a plurality of white light emitting light emitting diodes. The video display screen module is fixedly disposed to the rear of the reflective element or near the reflective element or is extendable from a position at the rear of the reflective element to a position near the reflective element. The video display screen module, when activated, displays video images viewable by the driver and having a driver-viewable display luminance of at least about 700 candelas per square meter when viewable by the driver during daytime viewing.
Abstract:
A vehicle memory mirror system includes a vehicle mirror assembly and a control module. The vehicle mirror assembly includes a reflective element, a motor for positioning the reflective element about an axis, a monitor for monitoring the position of the reflective element with respect to the axis, and a mirror-based control including a position control which is operatively connected with the motor and the monitor in order to position the reflective element at a particular position. The control module is interconnected with the mirror-based control by an analog interface and includes a processor for providing analog signals on the analog interface indicative of a desired position of the reflective element with respect to the axis. The mirror-based control preferably includes a servo-amplifier circuit. The control module can control the speed of movement by formatting a series of sequential signals on the interface, each representing an incremental movement of the reflective element.
Abstract:
A vehicular mirror actuator for adjustably positioning a mirror includes at least one motor with a casing and one or more power leads for powering the motor. An electromagnetic interference suppressor is included in the mirror actuator assembly and is mounted externally to the motor casing. The interference suppressor may include either a choke or at least one ferrite bead coupled between the power lead and the motor. The interference suppressor may be positioned either internally within the actuator housing, or externally to the actuator housing. Alternatively, the interference suppressor may include a metallic lining that surrounds the vehicular mirror actuator and which includes at least one feed-through capacitor coupled to said metallic lining and a source of power.
Abstract:
A vehicle memory mirror system includes a vehicle mirror assembly and a control module. The vehicle mirror assembly includes a reflective element, a motor for positioning the reflective element about an axis, a monitor for monitoring the position of the reflective element with respect to the axis, and a mirror-based control including a position control which is operatively connected with the motor and the monitor in order to position the reflective element at a particular position. The control module is interconnected with the mirror-based control by an analog interface and includes a processor for providing analog signals on the analog interface indicative of a desired position of the reflective element with respect to the axis. The mirror-based control preferably includes a servo-amplifier circuit. The control module can control the speed of movement by formatting a series of sequential signals on the interface, each representing an incremental movement of the reflective element.
Abstract:
A video mirror system suitable for use in a vehicle includes an interior rearview mirror assembly mountable at an interior portion of a vehicle and includes a mirror case and a reflective element. A video display device may be one of (i) fixedly disposed in the mirror case and (ii) extendable and retractable relative to the mirror case. The video display device is operable to display video images that are viewable by the driver of the vehicle when the interior rearview mirror assembly is mounted at the interior portion of the vehicle. The interior rearview mirror assembly includes an on-screen display controller operable to receive a video signal from a camera and, responsive to receipt of the video signal, the on-screen display controller is operable to generate a video feed to the video display device.
Abstract:
An interior rearview mirror assembly for a vehicle includes a mirror reflective element and a video display device operable to display video information that is viewable by a driver of the vehicle through said mirror reflective element and at a display region of said mirror reflective element. The video display device may be operable to display a directional heading at a compass display portion of the display region, and means may be provided to adjust the directional heading display to limit image sticking of the displayed directional heading. The mirror assembly may have a touch zone having at least one touch pad established at a perimeter border band of the reflective element, and may have another touch sensor to detect a touch of a user away from the touch zone to determine when a detected touch at the touch zone is an unintentional touch.
Abstract:
An electrochromic interior reflective element for an interior rearview mirror assembly of a vehicle includes front and rear substrates and an electrochromic medium sandwiched between the front and rear substrates. The electrochromic medium is disposed in an interpane cavity established between a third surface of the rear substrate and a second surface of said the substrate, and the electrochromic medium is bounded by a perimeter seal. A conductive layer is disposed at a fourth surface of the rear substrate. A non-conductive layer covers a covered portion of the conductive layer and leaves an exposed portion of the conductive layer exposed. An electronic circuitry component is disposed at the fourth surface of the rear substrate. The electronic circuitry component is electrically connected to the exposed portion of the conductive layer.