Abstract:
A lighting device includes a printed circuit board (PCB), a submount mounted on the PCB, a die mounted on the submount and including a plurality of light emitting devices, and a pad inserted into a hole formed in the submount such that the die and the PCB are electrically connected through the submount, connected to the die by a wire bonding, and electrically connected to the PCB.
Abstract:
Provided in the present invention is a camera module comprising: an imaging lens on which incident light from an external environment is reflected; and an image sensor for obtaining image data related to the external environment by means of the light, and further comprising a filter portion, which is arranged on the image sensor to cut light having a predetermined wavelength, is sectioned into a center zone in which the incidence angle of the light is a first incidence angle, and a peripheral zone surrounding the center zone in which the incidence angle of the light is a second incidence angle that is bigger than the first incidence angle, wherein the filter portion having the center zone and the peripheral zone is formed so that light having wavelengths that differ from the incident light having the first and second incidence angle is cut.
Abstract:
The present invention relates to an RGB-IR sensor, and a method and an apparatus for obtaining a 3D image by using the same. The RGB-IR sensor according to the present invention comprises: a first pixel basic unit including one of each of R, G, B and IR pixels; and a second pixel basic unit in which the R, G, B and IR pixels are arranged in a different order from those in the first pixel basic unit, wherein the RGB-IR sensor is comprised by alternately arranging the first pixel basic unit and the second pixel basic unit in a horizontal direction, and wherein R, G, B and IR pixel arrangements in the first pixel basic unit and the second pixel basic unit are determined so that the position of IR-pixels in the RGB-IR sensor are not equidistance apart from each other.
Abstract:
The present invention relates to a mobile terminal including a lighting unit, and a control method therefor. The mobile terminal according to one embodiment of the present invention comprises: a lighting unit having a plurality of light sources; a sensor unit for receiving light outputted from the lighting unit and reflected off a subject; and a control unit for synchronizing, through the sensor unit, areas at which lights outputted from the plurality of light sources are emitted, and controlling, on the basis of preset conditions, the lighting unit so that at least one of the plurality of light sources emits light.
Abstract:
An optical device includes: a first light emitting device that emits a plurality of line pattern lights spaced apart from each other to a target area; at least one sensor device that detects a received light, which is the emitted line pattern light, that is reflected from the target area; and a controller that calculates a parallax distance from a pattern of the detected received light, and acquires depth information of the target area by using the calculated parallax distance, wherein the first light emitting device includes: at least one light emitting unit including at least one light emitting element and emitting light of a specific wavelength; and a first optical member that generates light emitted from the at least one light emitting unit into at least one line pattern light.
Abstract:
A three-dimensional (3D) camera and a method for controlling the same are provided. In sensing RGB light and infrared (IR) light, the RGB light and the IR light are prevented from acting as optical noise to each other.
Abstract:
Provided in the present invention is a 3D depth camera module comprising: a light transmitting portion including a laser which emits light, and a diffractive optical element through which the light penetrates and arrives at an object as emitted light having a predetermined pattern; a light receiving portion for receiving light reflected from the object; and analyzing portion for analyzing a 3D shape of the object based on the amount of shifting of the reflected light; and an operating portion for operating a portion of the light transmitting portion to change the position of one portion of the object where the light arrives.
Abstract:
Provided is a 3D camera module, comprising: a first camera lens group for forming a light path of a first light bundle so as to be one of a left-eye lens group and a right-eye lens group in the 3D camera module; a second camera lens group, disposed apart from the first camera lens group, for forming a light path of a second light bundle so as to be the other of the left-eye lens group and the right-eye lens group in the 3D camera module; an image sensor disposed on the movement path of the first and second light bundles so as to sense a first image by the first light bundle and a second image by the second light bundle; and a movement control unit configured to move the first camera lens group and the second camera lens group in at least one direction of a forward and backward direction and a left and right direction so as to control the first and second images.