Patent classifications
H04N5/225
Imaging apparatuses and enclosures
An enclosure having: a base face that is opaque or translucent to human eyes viewing from outside of the enclosure and transparent to infrared radiation; and at least two flat, orthogonal mounting faces configured to be overlaid respectively on at least two surfaces of walls and ceiling of a room. A thermal imaging apparatus configured to image based on infrared radiation and mounted within the enclosure with a predetermined orientation relative to the base face to have a designed imaging direction with respect to the room when the enclosure is mounted in the room to have the at least two orthogonal mounting faces overlaid respectively on the at least two surfaces.
Folded camera structure with an extended light-folding-element scanning range
Voice coil motor (VCM) actuators for rotating an optical path folding element (OPFE) over an extended scanning range relative to a scanning/rotation range needed for optical image stabilization (OIS).
Multi-group lens, camera module, and electronic device thereof
A multi-group lens assembly (10), a camera module (100), and an electronic device (200) therefore are provided. The multi-group lens assembly (10) includes at least two group units (11 and 12). At least a first gap (15) is provided between the at least two adjacent group units (11 and 12) to compensate a difference between the multi-group lens assembly (10) and an optical design system, thus allowing an optical system of the multi-group lens assembly conform to the optical design system of the present invention.
Information processing apparatus with a light that illuminates more actively while capturing a printed image when embedded additional information is to be processed, information processing system, information processing method, and storage medium
An image capturing unit captures an image including an embedded image that is printed on the basis of image data in which at least a color component has been modulated according to additional information. An adjustment unit adjusts a white balance of the image captured by the image capturing unit on the basis of an adjustment value associated with the embedded image. A processing unit processes image data of the image captured by the image capturing unit whose white balance has been adjusted by the adjustment unit to read the additional information in the image captured by the image capturing unit.
Imaging apparatus and image generating method that detects an orientation of an imaging section and generates an image corresponding to a polarization direction corresponding to the orientation the imaging section
A polarization filter effect is prevented from being changed due to a change in orientation of an imaging apparatus. An imaging apparatus according to the present technique includes an imaging section including a first pixel capable of receiving light in a first polarization direction and a second pixel capable of receiving light in a second polarization direction different from the first polarization direction, a detection section detecting an orientation of the imaging section, and an image generating section generating, on the basis of signals for the first and second pixels, an image corresponding to a polarization direction corresponding to a detection result from the detection section. Thus, as an image corresponding to a particular polarization direction, that is, an image corresponding to application of a polarization filter effect, an image can be generated that corresponds to a polarization direction corresponding to a change in the orientation of the imaging section.
Imaging module, camera assembly, and electronic device
Disclosed are an imaging module, a camera assembly and an electronic apparatus. The imaging module includes: a housing; a reflective element, an image sensor, a lens assembly, a moving element, and a drive mechanism all disposed in the housing. The housing has a light inlet; the reflective element is configured to redirect incident light from the light inlet to pass through the lens assembly and reach the image sensor; the moving element is disposed between the reflective element and the image sensor; the lens assembly is fixed to the moving element; the drive mechanism is configured to drive the moving element to move along an optical axis of the lens assembly; the imaging module further comprises a module circuit board fixed to the housing; wherein the module circuit board comprises a reinforcement plate communicating with a ground pin of the module circuit board such that the housing is grounded.
Light receiving element array, light detection apparatus, driving support system, and automated driving system
A light receiving element array includes one or more unit element blocks. Each of the unit element blocks includes different light receiving elements with different element structures.
Optical assembly having support portion and fixing portion for SMA line, camera module having optical assembly, and smart device having camera module
An optical assembly, a camera module having the optical assembly, and a smart device having the camera module. The optical assembly comprises: a lens module (10) having an outer frame (12), wherein the outer frame (12) comprises four side surfaces divided according to an angle range, the lens module (10) comprises a first support portion (13) and a second support portion (14) on each side surface of the outer frame (12), and both the first support portion (13) and the second support portion (14) on each side surface are located at a group of diagonal regions (12A) of the outer frame (12); and a fixing means (30) disposed at another group of diagonal regions (12B) of the outer frame (12) of the lens module (10), wherein the fixing means (30) has a first power supply fixing portion (311) and a first groundwire fixing portion (321) corresponding to the first support portion (13), and a second power supply fixing portion (331) and a second groundwire fixing portion (322) corresponding to the second support portion (14), on a respective fixing surface corresponding to each side surface of the outer frame (12).
Imaging apparatus, image sensor unit, camera unit, and control method for determining and updating correction data
An imaging apparatus including: an image sensor unit; and a camera unit from which the image sensor unit is detachable, in which the image sensor unit includes at least an image sensor and a first storage unit in which first correction data are stored, the camera unit includes at least a control unit, and the control unit performs an update determination process for determining whether or not the first correction data stored in the first storage unit have been updated.
Technologies for computing
A mirror unit may output a content and may communicate with a user's mobile phone, tablet, personal activity tracker, wearable computer, and/or health monitor. For example, the mirror unit may include a housing, a reflective mirror, a processor, an electronic display, a speaker, and a network interface. For example, the mirror unit may be capable of monitoring, in real-time, a health factor (e.g., a heart rate) during various activities.