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 camera module for use in a vehicle includes a camera for capturing a surrounding of the vehicle, and which is configured to move from a retracted position to a deployed position, a camera lens forming a housing or part of the housing around the camera, a camera holder which carries the camera and the surrounding camera lens, and a drive system including a motor for moving the camera from the retracted position to the deployed position or from the deployed position to the retracted position
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 rearview housing attached to the support arm and configured for telescoping movement along the support arm. A camera is attached within the housing. In some cases, the camera is attached to the support arms 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.
Abstract:
An object detection and classification system includes at least one image sensor mounted on a vehicle and configured to capture an image of a portion of the environment surrounding the vehicle. The image may be stored and analyzed to detect and classify objects visible in the captured image. Keypoints are extracted from the image and evaluated according to a feature function. A new descriptor function depending on the distance in complex space between a query point and the keypoints in the image and on the feature value of the keypoints may be sampled to produce a sample value. The sample value may trigger a signal to the operator of the vehicle to respond to the object if the sample value classifies the object as satisfying a potential hazard condition.
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 lens cleaning system is adapted to wipe the lens clean each time the housing telescopes between inboard and outboard positions.
Abstract:
The invention is related to a rear view mirror assembly that includes at least one electrical device as a light source with adapted connectors to be assembled in an easy way. The invention is related to an electrical device as a lighting mean in a rear view mirror that has a connector adapted to be self centric connected to the counterpart during assembling.
Abstract:
The invention is related to a rear view mirror assembly that includes at least one electrical device as a light source with adapted connectors to be assembled in an easy way. The invention is related to an electrical device as a lighting mean in a rear view mirror that has a connector adapted to be self centric connected to the counterpart during assembling.
Abstract:
An exterior rear view mirror assembly for a motor vehicle includes a mirror bracket secured to the motor vehicle. A mirror housing is secured to the mirror bracket and defines a primary opening facing rearward. A substrate is movably secured therewithin. A mirror is secured to the substrate and is movable therewith. A heating device having a heatable element is disposed between the substrate and the mirror. The heating device has a contact that is electrically connected to electrical contacts of the power supply of the motor vehicle. The heating device is divided into first and second regions, which are subjected to different heating output or different heat release over time.
Abstract:
The invention relates to a method for manufacturing a printed circuit board (10) having a substrate (2) and an electric circuit (8), in particular for a rear view device of a motor vehicle, the method comprising the following steps: manufacturing a plurality of substrate parts (2a, 2b); and selecting at least two of the substrate parts (2a, 2b), and connecting the selected substrate parts (2a, 2b) and providing the connected substrate parts (2a, 2b) with the circuit (8).