Abstract:
An optical assembly is provided wherein the optical assembly includes a first optical element and a second optical element. The first optical element is configured to receive light and alter a transmission path of the light through the first optical element in a first direction and a second direction. The second optical element is configured to receive the light from the first optical element, and alter a transmission path of the light through the second optical element in the first and second directions. The light is passed through the second optical element, such that a sensor receives light from a field of view that is approximately 30 degrees to 60 degrees offset from a field of view of the sensor.
Abstract:
A vehicular rearview assembly with a mirror element having a curved or rounded edge on the first surface that is fully observable from the front of the assembly, a complex peripheral ring, and a user interface with switches and sensors that activate and configure pre-defined function(s) or device(s) of the assembly in response to the user input applied to the user interface. The mirror element is supported by a hybrid carrier co-molded of at least two materials, a portion of which is compressible between the housing shell and an edge of the mirror element. The peripheral ring may include multiple bands. Electrical communications between the electronic circuitry, the mirror element, and the user interface utilize connectors configured to exert a low contact force, onto the mirror element, limited in part by the strength of adhesive affixing the EC element to an element of the housing of the assembly.
Abstract:
An outside mirror lighting assembly (100) and method includes a housing (108) and a first glass panel (101) where one or more light emitting devices (107) are positioned at an edge of the first glass panel (101). Light rays from the at least one light emitting device (107) propagate within the glass panel for illumining its outer periphery. Words, logos, or other indicia (125) may be also be illuminated by direct or indirect light emitted into an etched area of the glass. The mirror assembly supplies a soft illuminated glow around the outer periphery and/or the indicia for proving a unique and pleasing appearance to the user.
Abstract:
A detection device and detection device system are provided, wherein the detection device includes a housing, a first detector device and a second detector device. The first detector device is configured to detect at least one smoke particle. A second detector device configured to detect at least one gas particle, wherein the first detector device and the second detector device are substantially enclosed in the housing. The detection device further includes an audible enunciator configured to emit an audible noise when at least one of the first and second detector devices detect at least one smoke and gas particle, and a test button, wherein the audible enunciator emits an audible sound when the detection device is operating improperly and the test button is activated.
Abstract:
An outside mirror lighting assembly (100) and method includes a housing (108) and a first glass panel (101) where one or more light-emitting devices (107) are positioned at an edge of the first glass panel (101). Light rays from the at least one light-emitting device (107) propagate within the glass panel for illuminating its outer periphery. Words, logos, or other indicia (125) may be also be illuminated by direct or indirect light emitted into an etched area of the glass. The mirror assembly supplies a soft illuminated glow around the outer periphery and/or the indicia for providing a unique and pleasing appearance to the user.
Abstract:
An optical assembly is provided wherein the optical assembly includes a first optical element configured to receive light and alter a transmission path of the light through the first optical element in a first direction and a second direction, and a second optical element in optical communication with the first optical element, the second optical element configured to receive the light from the first optical element, and alter a transmission path of the light through the second optical element in the first and second directions, wherein the light is passed through the second optical element, such that a sensor receives light from a field of view that is approximately 30 degrees to 60 degrees offset from a field of view of the sensor.
Abstract:
An imager module for a vehicle includes a support having a first side and a second side. A shroud is operably coupled with the first side. The support and the shroud define a cavity. A viewing aperture is disposed in one of the support and the shroud. An imager system is disposed in the cavity. An electrical connector is configured to provide communication with the imager system. The electrical connector is disposed outside the cavity in abutting contact with the second side of the support.
Abstract:
An outside mirror lighting assembly (100) and method inlcludes a housing (108) and a first glass panel (101) where one or more light emitting devices (107) are positioned at an edge of the first glass panel (101). Light rays from the at least one light emitting device (107) propagate within the glass panel for illumining its outer periphery. Words, logos, or other indicia (125) may be also be illuminated by direct or indirect light emitted into an etched area of the glass. The mirror assembly supplies a soft illuminated glow around the outer periphery and/or the indicia for proving a unique and pleasing appearance to the user.
Abstract:
An imager module for a vehicle includes a support having a first side and a second side. A shroud is operably coupled with the first side. The support and the shroud define a cavity. A viewing aperture is disposed in one of the support and the shroud. An imager system is disposed in the cavity. An electrical connector is configured to provide communication with the imager system. The electrical connector is disposed outside the cavity in abutting contact with the second side of the support.
Abstract:
A vehicular rearview assembly with a mirror element having a curved or rounded edge on the first surface that is fully observable from the front of the assembly, a complex peripheral ring, and a user interface with switches and sensors that activate and configure pre-defined function(s) or device(s) of the assembly in response to the user input applied to the user interface. The mirror element is supported by a hybrid carrier co-molded of at least two materials, a portion of which is compressible between the housing shell and an edge of the mirror element. The peripheral ring may include multiple bands. Electrical communications between the electronic circuitry, the mirror element, and the user interface utilize connectors configured to exert a low contact force, onto the mirror element, limited in part by the strength of adhesive affixing the EC element to an element of the housing of the assembly.