Patent classifications
G03B2215/0592
Close-in illumination module
The present disclosure relates to optical systems, vehicles, and methods that are configured to illuminate and image a wide field of view of an environment. An example optical system includes a camera having an optical axis and an outer lens element disposed along the optical axis. The optical system also includes a plurality of illumination modules, each of which includes at least one light-emitter device configured to emit light along a respective emission axis and a secondary optical element optically coupled to the at least one light-emitter device. The secondary optical element is configured to provide a light emission pattern having an azimuthal angle extent of at least 170 degrees so as to illuminate a portion of an environment of the optical system.
Light-emitting device including movement mechanism
A light-emitting device includes: a light-emitting unit having a light-emitting surface; a light guide member configured to guide incident light from the light-emitting unit, the light guide member including: a total reflection portion configured to reflect the incident light from the light-emitting unit, and a Fresnel lens portion where light reflected by the total reflection portion is incident; and a movement mechanism configured to move the light guide member relative to the light-emitting unit in a direction that intersects a center axis of the light-emitting surface.
POLARIZED IMAGING APPARATUS FOR USE WITH A MOBILE DEVICE
Apparatus for obtaining polarized imagery using a portable device, comprising a light source, a first polarizing filter configured to cover the light source, a second polarizing filter configured to cover the lens of a mobile device's built-in camera, one or more housing to contain the light source and filters, and couplers attached to the housings for coupling the housings to the mobile device. When the housing is coupled to the mobile device and the camera is operated, light from the light source passes through the first polarizing filter, then passes as polarized light through an illuminating path to illuminate an object being imaged. Then light from the illuminated object passes through an optical path, through the second polarizing filter to the camera lens. In embodiments, the axis of polarization of at least one of the polarizing filters can be modified to allow for cross, parallel and variable polarized imaging.
CAMERA AND LIGHT ADJUSTMENT MODULE
A light adjustment module for a camera includes a light source unit and a light adjustment unit. The light source unit includes light emitting elements disposed around a lens of the camera, and the light direction of each of the light emitting elements is parallel to the image capturing direction of the lens. The light adjustment unit is disposed above the light source unit and includes secondary optical elements, and the secondary optical elements respectively correspond to the light emitting elements. The light emitted by each of light emitting elements is deflected through the corresponding secondary optical element. Each of the secondary optical elements includes a first ring-shaped prism and a second ring-shaped prism, the width of the second ring-shaped prism is greater than the width of the first ring-shaped prism, and the second ring-shaped prism surrounds the outer circumference of the first ring-shaped prism.
Close-In Illumination Module
The present disclosure relates to optical systems, vehicles, and methods that are configured to illuminate and image a wide field of view of an environment. An example optical system includes a camera having an optical axis and an outer lens element disposed along the optical axis. The optical system also includes a plurality of illumination modules, each of which includes at least one light-emitter device configured to emit light along a respective emission axis and a secondary optical element optically coupled to the at least one light-emitter device. The secondary optical element is configured to provide a light emission pattern having an azimuthal angle extent of at least 170 degrees so as to illuminate a portion of an environment of the optical system.
A TIME-OF-FLIGHT SENSOR SYSTEM
A time-of-flight sensor system 10 comprising: an illumination source 11 for illuminating a subject 19 to which a time-of-flight is to be measured; an optical system configured to, using an at least one actuator, transition the illumination source 11 between providing spot illumination and flood illumination; and a sensor 12 comprising a sensor surface. The sensor surface is configured to sense light scattered by the subject 19 from the illumination source 12 and to provide data dependent on sensed light. The spot illumination has a spatially non-uniform intensity over the sensor surface, and the optical system is configured to move the spot illumination across at least part of the sensor surface to generate an output frame, wherein the at least one actuator comprises at least one shape memory alloy (SMA) component.
FLASH HOUSING FOR PHOTOGRAPHIC PURPOSES, A SET COMPRISING A FLASH HOUSING FOR PHOTOGRAPHIC PURPOSES AND AT LEAST ONE FLASH LIGHT SHAPING TOOL, AND A FLASH LIGHT SHAPING TOOL
A flash housing for photographic purposes. The flash housing comprises can include a flash forming element arranged to generate a flash light, a lens element arranged to let at least part of the generated flash out of the flash housing so as to obtain a flash light, and a fastening element for attachment of a flash light shaping tool on top of the lens element. The fastening element can be arranged at least partly along a border of the lens element for magnetic engagement with a corresponding fastening element at the flash light shaping tool.
Rugged All Purpose Lighting Cube
The disclosure generally relates to generating lighting in an efficient way while in the outdoors. The designs are meant to maximize the amount of light generated, by the smallest assembly that is rugged to use in general outdoor activities and water sports. Further designs are related to hands-free mounting capabilities on outdoor equipment such as bikes, surfboards, snowboards and other similar equipment. Additional features include various filters, waterproofing, recharging or lighting differences which provide greater visual or photographic advantages to the user.
LIGHT SOURCE DEVICE AND LIGHT GUIDE ARRAY UNIT
A light source device includes: a plurality of light source parts configured to emit light. Each of the light source parts comprises a light-emitting element and a light guiding member. the plurality of light-emitting elements are configured to emit light passing through the light guiding members from the light source parts in an array in an irradiated region. One or more of the plurality of light source parts are arranged in a placement region in a different arrangement from an arrangement of the light in the irradiated region.
COMPACT IMAGING SYSTEM USING A CO-LINEAR, HIGH-INTENSITY LED ILLUMINATION UNIT TO MINIMIZE WINDOW REFLECTIONS FOR BACKGROUND-ORIENTED SCHLIEREN, SHADOWGRAPH, PHOTOGRAMMETRY AND MACHINE VISION MEASUREMENTS
One aspect of the present disclosure is an imaging system including an optical sensor defining an optical axis. The system further includes a light source. The system may include an optical beam splitter, and may also include an optional diffusing lens that may be configured to diffuse and/or collimate light from the light source and direct light exiting the diffusing lens to the optical beam splitter. The optical beam splitter is configured to direct light from the light source along the optical axis of the optical sensor.