Abstract:
FIG. 1 is a front perspective view of eyewear of the present disclosure; FIG. 2 is a rear perspective view of the eyewear of FIG. 1; FIG. 3 is a front elevational view of the eyewear of FIG. 1; FIG. 4 is a rear elevational view of the eyewear of FIG. 1; FIG. 5 is a first side elevational view of the eyewear of FIG. 1; FIG. 6 is a second side elevational view of the eyewear of FIG. 1; FIG. 7 is a top elevational view of the eyewear of FIG. 1; and, FIG. 8 is a bottom elevational view of the eyewear of FIG. 1. The broken lines depict portions of the article that form no part of the claimed design.
Abstract:
A communication system for a vehicle for a vehicle includes a display device having a screen disposed in a passenger compartment. The display device is in communication with a user interface. The system further includes an authentication system having at least one scanning apparatus configured to capture a biometric data. A communication circuit is configured to communicate with a remote server. A controller is configured to capture the biometric data of a first potential passenger with the at least one scanning apparatus and access a first passenger information comprising a first identification profile from the remote server via the communication circuit. The controller is further configured to authenticate the first potential passenger as at least one of a confirmed passenger and an operator of the vehicle based on the identification profile.
Abstract:
An authentication apparatus configured to identify a user comprises a scanning apparatus configured to capture identifying information of the user and a feedback apparatus configured to communicate alignment information for the scanning apparatus to a user. A controller is in communication with the scanning apparatus and the alignment apparatus. The controller is configured to activate the feedback apparatus to reveal the alignment information identifying an alignment with the scanning apparatus. The controller is further configured to capture the identifying information of the user and identify the user in response to the identifying information.
Abstract:
A vehicle rearview mirror includes a substrate having a reflective surface and an actuation mechanism having a support unit coupled with the substrate. The actuation mechanism also has a mounting plate with a first end thereof rotatably coupled with the support unit. A toggle latch is rotatably coupled with mounting plate and alternately engages with the support unit in respective first and second positions. The second position corresponds with rotation of the support unit toward a second end of the mounting plate from the first position. The toggle latch is rotatable out of the first and second positions into a release position wherein the toggle latch is disengaged with the support unit. A toggle paddle is rotatably coupled with the mounting plate and is positioned adjacent the toggle latch to move the toggle latch into the release position by rotation of the of the toggle paddle.
Abstract:
A vehicle display assembly may comprise a transparent element defining a viewing surface, a display element disposed behind the transparent element, and a printed circuit board in electrical communication with the display element. The display element is configured to generate an image visible through the transparent element. The vehicle display assembly may be in communication with at least one of a vehicle sensor and a vehicle computer. The images appearing in the display element may change orientation based on the presence or absence of a vehicle occupant.
Abstract:
An apparatus, method, and process that includes a substantially transparent substrate having a first surface, a second surface, and edge extending around at least a portion of a perimeter of the substantially transparent substrate, wherein the edge being a laser induced channel edge having enhanced edge characteristics.
Abstract:
A communication system for a vehicle for a vehicle includes a display device having a screen disposed in a passenger compartment. The display device is in communication with a user interface. The system further includes an authentication system having at least one scanning apparatus configured to capture a biometric data. A communication circuit is configured to communicate with a remote server. A controller is configured to capture the biometric data of a first potential passenger with the at least one scanning apparatus and access a first passenger information comprising a first identification profile from the remote server via the communication circuit. The controller is further configured to authenticate the first potential passenger as at least one of a confirmed passenger and an operator of the vehicle based on the identification profile.
Abstract:
A vehicle display assembly may comprise a transparent element defining a viewing surface, a display element disposed behind the transparent element, and a printed circuit board in electrical communication with the display element. The display element is configured to generate an image visible through the transparent element. The vehicle display assembly may be in communication with at least one of a vehicle sensor and a vehicle computer. The images appearing in the display element may change orientation based on the presence or absence of a vehicle occupant.