Abstract:
An electronic device is provided. The electronic device includes a communication circuit configured to establish a communication channel with an aerial vehicle, a sensor configured to collect location information and orientation information, a memory configured to store an application associated with controlling the aerial vehicle, a processor electrically connected with the communication circuit, the sensor, and the memory. The processor may be configured to calculate a valid range defining a space where it is possible to operate the aerial vehicle, based on location and/or orientation information of the electronic device.
Abstract:
An X-ray imaging method and an apparatus having an improved structure configured to reduce pain and discomfort during a procedure. The X-ray imaging apparatus acquires an X-ray image by compressing an object that is irradiated by an X-ray source. An X-ray detector includes an object contact material that contacts the object. X-rays that pass through the object are detected X-rays, an electrical signal is generated based on the X-rays. A paddle is disposed between the X-ray source and the X-ray detector to be vertically adjustable relative to the X-ray source and X-ray detector so as to compress the object placed on the object contact surface. The paddle includes a supporting member, a pressure member coupled to the supporting member, and at least one adjustment member arranged between the supporting member and the pressure member to regulate movement of the pressure member according to the shape of the object.
Abstract:
Provided a semiconductor device comprises, a plurality of semiconductor patterns spaced in a first direction; a plurality of mold insulating layers between the plurality of semiconductor patterns, a plurality of silicide patterns contacting the plurality of semiconductor patterns; and a plurality of first metal conductive films between the plurality of mold insulating layers and connected to each of the silicide patterns, wherein each of the silicide patterns includes a first sidewall that faces the semiconductor pattern, and a second sidewall which faces the first metal conductive film, the first sidewall of the silicide pattern and the second sidewall of the silicide pattern extends in the first direction, and the first sidewall of the silicide pattern and the second sidewall of the silicide pattern are curved surfaces.
Abstract:
Provided a semiconductor device comprises, a plurality of semiconductor patterns spaced in a first direction; a plurality of mold insulating layers between the plurality of semiconductor patterns, a plurality of silicide patterns contacting the plurality of semiconductor patterns; and a plurality of first metal conductive films between the plurality of mold insulating layers and connected to each of the silicide patterns, wherein each of the silicide patterns includes a first sidewall that faces the semiconductor pattern, and a second sidewall which faces the first metal conductive film, the first sidewall of the silicide pattern and the second sidewall of the silicide pattern extends in the first direction, and the first sidewall of the silicide pattern and the second sidewall of the silicide pattern are curved surfaces.
Abstract:
Disclosed are a body of an unmanned aerial vehicle and an unmanned aerial vehicle including the same. The body includes a housing arranged in a first direction and including at least four housing sidewalls and an opening defined by the housing sidewalls and configured to receive a battery pack, a propeller support extending a specific distance from each housing sidewall in a second direction away from the center of the housing and perpendicular to the first direction and having, on a distal end, a motor and a propeller connected to the motor, and a PCB disposed on at least one of the housing sidewalls and associated with operating the motor and the propeller.
Abstract:
A semiconductor device includes a substrate, first and second supporter patterns spaced vertically from the substrate, the second supporter pattern being spaced vertically from the first supporter pattern, a lower electrode hole extending vertically on the substrate, a lower electrode inside the lower electrode hole, contacting a sidewall of the first and second supporter patterns, the lower electrode including a first layer along a portion of a sidewall and bottom surface of the lower electrode hole, a second layer between the first layers, and a third layer on an upper surface of the first and second layers, the first and second layers including a material different from the second layer, and a sidewall of at least a portion of the third layer being concave toward the third layer, overlapping the second layer in the vertical direction, and being spaced apart from the second layer in the vertical direction.
Abstract:
An unmanned image capturing device and a method of operation thereof are provided. The unmanned image capturing device includes a movement device that moves the unmanned image capturing device; a camera; a communication circuit; a location detection circuit that detects a location of the unmanned image capturing device; a processor; and a memory that stores instructions. The processor moves the unmanned image capturing device, captures a plurality of images, detects a plurality of three-dimensional locations, at which the plurality of images are respectively captured, sends at least one of the captured images and information about the respective detected location of the at least one of the captured images, receives information about a change in the at least one of the captured images or information about an image selection, and controls the movement device to move the unmanned image capturing device to a location based on the received information.
Abstract:
A game service providing system is provided. The game service includes a cloud server configured to provide a cloud game service to an electronic apparatus, transmit game playing data, which are generated according to the cloud game service, to one of the electronic apparatus or a game management server, and transmit a game download route, through which the cloud game service is provided, to the electronic apparatus. The electronic apparatus is configured to install a game received through the game download route, receive the game playing data from one of the cloud server or the game management server, and apply the game playing data to the installed game.
Abstract:
An estimator training method and a pose estimating method using a depth image are disclosed, in which the estimator training method may train an estimator configured to estimate a pose of an object, based on an association between synthetic data and real data, and the pose estimating method may estimate the pose of the object using the trained estimator.