Abstract:
A driver assist system for a vehicle includes at least one non-visual sensor and a color video rear backup camera having a field of view rearward of the vehicle, with the field of view of the camera encompassing a ground area to the rear of the vehicle. An image processor processes image data captured by the camera. A video display screen is viewable by a driver of the vehicle. During a reversing or parking maneuver of the vehicle, images derived, at least in part, from image data captured by the camera are displayed by the video display screen to assist the driver in operating the vehicle. At least one indication is provided to a driver of the vehicle, at least in part, responsive to detection by the non-visual sensor of at least one object external of the vehicle.
Abstract:
An accessory system for a vehicle includes an attachment element bonded to an in-cabin windshield surface at a first windshield location and an attachment member attached at the in-cabin windshield surface at a second windshield location. An interior rearview mirror assembly has a mirror support that has a mirror mount configured to mount the mirror assembly to the attachment element. A module is configured to be received by and be supported by the attachment member attached at the windshield. With the module received by and supported by the attachment member at the windshield, a camera of the module views through the windshield and is part of a driver assistance system of the vehicle. With the module received by and supported by the attachment member at the windshield, the mirror mount can be mounted to and demounted from the attachment element without demounting the module from the attachment member.
Abstract:
An accessory mounting system for a vehicle includes a bracket attached at a windshield of a vehicle. The bracket has a windshield-facing side and a cabin-facing side. The cabin-facing side of the bracket has first structure. An accessory module has a housing, with an electronic device and circuitry housed in the housing. The electronic device includes a camera that has a CMOS imaging array. The circuitry is in communication with a vehicle bus system of the vehicle. The housing has second structure that is configured to engage the first structure of the bracket when the housing is being attached to the bracket.
Abstract:
An accessory system for a vehicle includes a mounting element attached at an inner surface of a windshield and configured for mounting of an accessory module thereto and demounting of the accessory module therefrom. The accessory module is configured for mounting to the mounting element via snap attachment. The accessory module accommodates a camera comprising a CMOS photosensor array and a lens. The accessory module is configured so that, when mounted to the mounting element at the windshield, the lens has a field of view through the windshield. The camera is operable to capture image data for use by a driver assistance system of the vehicle. The accessory module includes an electrical connector for electrically connecting with circuitry disposed in the accessory module. The electrical connector is configured for electrical connection to at least a power source of the vehicle and a communication bus of the vehicle.
Abstract:
An accessory mounting system includes a plurality of individual fixing elements configured to be adhesively attached at a surface of a vehicle windshield. With the fixing elements adhesively attached at the windshield, the fixing elements are spaced apart from one another. Each of the fixing elements includes a base portion that is configured to be directly adhesively attached at the windshield and an elongated portion that extends from the base portion in a direction away from the windshield when the base portion is attached at the windshield. A frame has a plurality of individual receiving portions. The elongated portions of the fixing elements are at least partially received in respective and corresponding ones of the receiving portions of the frame to attach the frame at the windshield when the fixing elements are attached at the surface of the windshield. The frame comprises structure for receiving an accessory thereat.
Abstract:
A vehicular vision system includes first, second, third and fourth cameras having respective forward, rearward, sideward and sideward fields of view. A video processor is operable to process second image data captured by the second or rearward viewing camera. A video display screen displays video images derived, at least in part, from captured second image data. The video processor includes an image processor operable for machine vision analysis of first image data captured by the first or forward viewing camera. During a reversing maneuver of the vehicle, the video display screen displays video images derived, at least in part, from captured second image data. During forward travel of the vehicle and responsive to the image processor processing captured first image data to detect a road sign ahead of the vehicle, an image or iconistic representation of the detected road sign is displayed by the video display screen.
Abstract:
An accessory mounting system for mounting an electronic device at a windshield of a vehicle includes a bracket. The bracket is configured to mount at an interior surface of the vehicle windshield. The bracket includes an attaching structure configured to attach the bracket at the interior surface of the vehicle windshield. The bracket may include a support frame coupled to an attaching structure and to an adjustable support of an interior rearview mirror assembly. The support frame may have a set off portion set off from the interior surface of the windshield to accommodate an electronic device between the windshield and the set off portion.
Abstract:
A camera vision system for a vehicle includes a rear backup video camera operable to capture video images rearward of the vehicle during a rear backup maneuver of the vehicle. A display device is operable to display video images captured by the rear backup video camera when the vehicle is shifted into reverse gear and the display continues during short term forward movement of the vehicle. An overlay is displayed with the video images to assist the driver during the rear backup maneuver. The display device is operable to display video images with a display intensity greater than 200 candelas/sq. meter. A control includes an image processor that image processes video images to detect objects that are within the rearward field of view of the rear backup video camera. The image processing by the image processor of captured video images includes use of an edge detection algorithm.
Abstract:
A camera vision system for a vehicle includes a rear backup video camera operable to capture video images rearward of the vehicle during a rear backup maneuver of the vehicle. A display device is operable to display video images captured by the rear backup video camera when the vehicle is shifted into reverse gear and the display continues during short term forward movement of the vehicle. An overlay is displayed with the video images to assist the driver during the rear backup maneuver. The display device is operable to display video images with a display intensity greater than 200 candelas/sq. meter. A control includes an image processor that image processes video images to detect objects that are within the rearward field of view of the rear backup video camera. The image processing by the image processor of captured video images includes use of an edge detection algorithm.
Abstract:
A vehicular driver assistance system includes an attachment element attached at an in-cabin surface of a windshield of the vehicle. The attachment element includes a mirror mounting element and an interior rearview mirror assembly includes a mirror head and a mirror support. The mirror support includes a mirror mount that is configured to mount the interior rearview mirror assembly to the mirror mounting element. A structure is attached at the vehicle windshield local to the attachment element and the structure accommodates a forward facing camera and, with the structure attached at the vehicle windshield, the forward facing camera views through the vehicle windshield. The forward facing camera may include a component of at least one of (i) an automatic headlamp control system, (ii) a collision avoidance system, (iii) a windshield fogging detection system and (iv) a rain sensing system.