Abstract:
An adjustment assembly for adjusting the reflecting surface of a glass assembly in an external rearview vehicle mirror, where two linear adjusting motors act on two points of the glass assembly, where the adjusting motors are positioned between the glass assembly and a mirror carrier in the mirror head. The adjusting motors are connected to the glass assembly and/or the mirror carrier via at least one elastomeric connecting piece.
Abstract:
Systems and methods are provided for generating a rear view image display for a motor vehicle. A rear view system includes an optical sensor disposed at the motor vehicle and configured to capture image data, a computational unit coupled to the optical sensor by a cable connection and configured to execute program instructions stored on a computer-readable medium to modify the image data for presentation, and a display device coupled to the computational unit and configured to receive the modified image data from the computational unit and display the modified image data to a driver of the motor vehicle. The computational unit is further configured to receive software calibration to optimize modification of the image data.
Abstract:
A housing for a rear view element of a rear view device for a vehicle includes a scalp portion having a first joint section at a first circumferential edge extending at least partially around an opening of the scalp portion, and a bezel portion including a second joint section at a second circumferential edge extending at least partially around the bezel section, where the first joint section of the scalp portion and the second joint section of the bezel portion are connectable to each other at a separation edge. The first joint section and the second joint section may be connectable, with the first joint section having at least one clamp and the second joint section having at least one protrusion.
Abstract:
A rear-view side mirror assembly includes a base for attachment to a vehicle, one or more support arms extending from the base, and a mirror head attached to the support arm and configured for telescoping movement along the support arm. A camera is fixedly attached to the support arm so as to remain stationary relative to the mirror base and vehicle as the mirror head telescopes inward and outward. An elongated aperture in the mirror head housing ensures that the camera lens is not occluded as the mirror head telescopes between a retracted position and an extended position. A flexible track covers portions of the elongated aperture on alternate sides of the lens as the housing telescopes relative to the lens.
Abstract:
A rear-view side mirror assembly includes a base for attachment to a vehicle, one or more support arms extending from the base, and a mirror head attached to the support arm and configured for telescoping movement along the support arm. A camera is fixedly attached to the support arm so as to remain stationary relative to the mirror base and vehicle as the mirror head telescopes inward and outward. An elongated aperture in the mirror head housing ensures that the camera lens is not occluded as the mirror head telescopes between a retracted position and an extended position. A lens cleaning system is adapted to wipe the lens clean each time the housing telescopes between inboard and outboard positions.
Abstract:
A sliding clutch for an adjustment device of a rearview device of a motor vehicle comprises two plastic parts. A first part is formed as an external gear wheel having a first multiplicity of first coupling elements and a second part is formed as an internal shaft having a second multiplicity of second coupling elements. The two plastic parts rotate with one another up to a predefined maximum torque namely because a positive fit exists between the first and second coupling elements up to the predefined maximum torque. The invention furthermore relates to a side-view mirror for a motor vehicle having an adjustment device which comprises a sliding clutch according to the invention.
Abstract:
Disclosed herein is a capacitive touch panel comprising a transparent panel substrate, a front surface of the substrate comprising a conductive translucent layer which, in use, is visible to a user; at least one light source associated with the back surface, wherein said light source is switchable between an ‘on’ state in which an illuminated icon is visible on the front surface of the cover panel and an ‘off’ state in which the illuminated icon is not visible on the front surface of the cover panel, wherein the light source is switchable from the off state to the on state by a change in capacitance of the conductive translucent layer; at least one switch associated with the back surface, wherein the switch is activable by a user pressing the touch panel in the vicinity of the illuminated icon to provide an output signal capable of performing a function.
Abstract:
Motor vehicle rear view device includes a common circuit board secured within a motor vehicle. An image evaluation circuit board is secured to the common circuit board. The image evaluation circuit board includes a programmable processor. A display receiver circuit board is secured to the common circuit board and electrically connected to the image evaluation circuit board to form a receiver module. A display electrically operatively connected to the image evaluation circuit board through the display receiver circuit board. An optical sensor is connected to the image evaluation circuit board through said receiver circuit board. The optical sensor receives light and produces optical output signals based thereon to be displayed. Data cables formed within the common circuit board are less than 100 mm long to evaluate image data without delay.
Abstract:
A chromium-based reflective coating for a polymeric substrate, wherein the coating has a thickness of 200 nm or less and is an alloy of chromium and a dopant material, the dopant material being selected from the hexagonally close-packed transition metals, the alloy having a crystal structure of a primary body-centered cubic phase in coexistence with a secondary omega hexagonally close-packed phase.
Abstract:
A rear-view side mirror assembly includes a base for attachment to a vehicle, one or more support arms extending from the base, and a mirror head attached to the support arm and configured for telescoping movement along the support arm. A camera is fixedly attached to the support arm so as to remain stationary relative to the mirror base and vehicle as the mirror head telescopes inward and outward. An elongated aperture in the mirror head housing ensures that the camera lens is not occluded as the mirror head telescopes between a retracted position and an extended position. A flexible track covers portions of the elongated aperture on alternate sides of the lens as the housing telescopes relative to the lens.