Abstract:
Provided is a robot including a main body provided with a traveling wheel, a seat disposed above the main body, a foot supporter protruding forward from the main body, a lower plate disposed below the foot supporter, and a moving mechanism disposed between the lower plate and the foot supporter, the moving mechanism allowing the foot supporter to move forward and backward between a first position and a second position that is disposed in front of the first position.
Abstract:
Provided is a robot including a seating body provided with a seat and an armrest body and a steering, the steering housing has an opening in an upper portion thereof and an inner space therein is disposed on the armrest body. The steering includes a handle and a lower portion passing through the opening, the lower portion being accommodated in the inner space and an elevator accommodated in the inner space, the elevator being connected to the lower portion of the steering body to elevate the steering body.
Abstract:
Disclosed is a charging station including a case, a rear hole elongated vertically on a rear surface of the case, a plug protruding to a rear side of the case for vertically sliding along the rear hole, a terminal provided at the case and allowing a moving robot to be docked thereto, and a moving mechanism for moving the terminal between a hidden position at which the terminal is located in the case and a docking position at which the terminal is protruding to a front side of the case.
Abstract:
The present disclosure relates to a riding system of a robot which supports a PUI through user authentication to provide convenience to users, and including a server for exchanging authentication information with the robot; a mobile terminal including an application interlocking with the server and for arranging use information of the user through the application and for calling the robot through the application; and a robot storing the authentication information, to authenticate the user through the authentication information when there is a call from the mobile terminal, and deforming according to a body size of the user included in the use information and to allow the user to ride thereon and to move the user to the destination, and a control method thereof.
Abstract:
There are provided a mobile terminal including light emitting devices and a method for controlling the same. A mobile terminal includes a camera, a light emitting unit including a plurality of light emitting devices, the light emitting unit emitting light toward a space corresponding to an image received through the camera, and a controller for controlling light emitting devices, which emit light toward a space corresponding to a portion of the image among the plurality of light emitting devices, to be used in extracting depth information of the portion.
Abstract:
There are provided a mobile terminal including light emitting devices and a method for controlling the same. A mobile terminal includes a camera, a light emitting unit including a plurality of light emitting devices, the light emitting unit emitting light toward a space corresponding to an image received through the camera, and a controller for controlling light emitting devices, which emit light toward a space corresponding to a portion of the image among the plurality of light emitting devices, to be used in extracting depth information of the portion.
Abstract:
The present invention relates to a digital device capable of obtaining both a color image and a depth image and a method of processing a three dimensional image using the same. The method can include the steps of switching a resolution of a light-receiving unit from a first resolution to a second resolution which is lower than the first resolution, sensing a visible light and an infrared light from a prescribed subject, extracting color image information from the visible light sensed by a first sensing unit of the light-receiving unit during a first time, extracting depth image information from the infrared light sensed by a second sensing unit of the light-receiving unit during a second time, determining whether extraction of both the color image information and the depth image information for the subject is completed and if the extraction of the color image information and the extraction of the depth image information for the subject are completed, implementing a 3D image of the subject based on the extracted color image information and the depth image information.
Abstract:
There are provided a mobile terminal including light emitting devices and a method for controlling the same. A mobile terminal includes a camera, a light emitting unit including a plurality of light emitting devices, the light emitting unit emitting light toward a space corresponding to an image received through the camera, and a controller for controlling light emitting devices, which emit light toward a space corresponding to a portion of the image among the plurality of light emitting devices, to be used in extracting depth information of the portion.
Abstract:
Provided is a robot including a main body provided with a traveling wheel and at least one accessory separably mounted on the main body. The accessory includes a supporter on which an article is supported and a supporter locker disposed on the supporter, the supporter locker being provided with a locking portion hooked with the main body.
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.