Abstract:
A method according to various embodiments of the present invention can comprise: detection of content; detection of the progressing direction of an image comprised in the content with respect to the detection of the content; detection of a reference area comprising the detected progressing direction of the image; determination of a reference object in the detected reference area; and generation of motion information, for controlling the operation of an external electronic device, on the basis of the determined reference object.
Abstract:
An electronic device and method are disclosed. The electronic device includes a housing comprising at least one electronic component disposed within the electronic device, a first separation member configured to separate a first cavity at least partially exposed to an exterior of the electronic device through the housing from a second cavity in which the at least one electronic component is disposed; and a driver disposed in a third cavity spatially coupled with the second cavity in an interior of the housing, the driver configured to generate an air pressure differential between the second cavity and the first cavity. The method operates the device responsive to detecting a water immersion condition by outputting a sound by a speaker device, detecting the outputted sound through a microphone device, determining whether the detected sound matches a predetermined reference value and if so, operating a driver device to discharge the residual water.
Abstract:
An electronic device for widening an active area of a display is provided. The electronic device includes a housing including a first plate and a second plate facing away from the first plate, a touch screen display including a first glass plate, a second glass plate, and an organic light-emitting diode (OLED) layer interposed between the first plate and the second plate, a flexible layer including a first portion connected to the first surface of the second glass plate and bent around an edge of the second glass plate toward the second plate of the housing, and a second portion extending from the first portion and interposed between the second glass plate and the second plate of the housing, a display driver integrated circuit (DDIC) mounted on a first surface of the second portion of the flexible layer, and a printed circuit board (PCB) including a portion mounted on a second surface of the second portion of the flexible layer.
Abstract:
An unmanned aerial vehicle according to various embodiments includes: a housing; a communication circuit, wherein the communication circuit establishes wireless communication with an external controller; and a plurality of propulsion systems connected to the housing, wherein the propulsion systems include: a motor; a rotation shaft having an axis extending in a first direction, wherein a first end is connected to the motor, and wherein the rotation shaft is rotates in a first direction by the motor; a cap structure fixed to the second end of the rotation shaft, a propeller including: a hub including a through-hole formed in the first direction, such that the rotation shaft rotatably passes through the through-hole, wherein the propeller is detachably connected to the cap structure, such that, when an external force is exerted on the blade, the propeller is released from the cap structure to be freely movable along the axis toward the motor.
Abstract:
An electronic device includes a housing including a first plate, a second plate, and a side member a first band detachably mounted to the side member, and shaped to wrap around a wrist of a user; a display exposed through the first plate; a processor a memory and a mounting structure configured to connect the first band to the side member. The mounting structure includes a recessed structure formed in the side member, the recessed structure having a first surface, a second surface, a first hole formed in the first surface, and a second hole formed in the second surface, and facing the first hole, in which an imaginary line extending from the first hole to the second hole defines a first axis; a rotating member positioned to rotate around the first axis, the rotating member having a through-hole that has an inner screw surface centered around the first axis; a first rod extending along the first axis through a first portion of the first band, in which the first rod has a first end inserted into the first hole, and a second end held by the rotating member such that the first rod does not move along the first axis while the rotating member rotates; and a second rod extending along the first axis through a second portion of the first band. The second rod has: a third end rotatably inserted into the second hole; and an external screw surface engaged with the inner screw surface of the rotating member such that the second rod moves along the first axis while the rotating member rotates.
Abstract:
An electronic device, a protection device, and a method for protecting the electronic device with the protection device is provided. The electronic device includes a sensor module configured to detect a motion state of the electronic device when a cover is connected to the electronic device, and a processor configured to control an actuator of the cover based on the detected motion state of the electronic device.
Abstract:
An electronic device includes a first main body part at least one second main body part connected to the first main body part so as to be rotatable, or such that the first and second main body parts pivot relative to each other, and a connecting part that connects the second main body part to the first main body part or another second main body part adjacent thereto, wherein the connecting part includes a connecting member that rotatably connects the first and at least one second main body parts, a flexible printed circuit board (FPCB) that is surrounded by the connecting member and electrically connects at least one second main body part to the first main body part and a reinforcing member that is interposed between the connecting member and the FPCB and at least partially overlaps the FPCB.
Abstract:
A fiber-reinforced plastic material is provided. The fiber-reinforced plastic material is woven with a plurality of yarns and a material property of at least a portion of the fiber-reinforced plastic material is different from another portion of the fiber-reinforced plastic material according to an arrangement direction or a weave pattern of the yarns or a material of the yarns.
Abstract:
An electronic device is provided including a plurality of electronic parts; one or more housing components forming a space for receiving the plurality of electronic parts; and a cover detachable from the one or more housing components, the cover including a first member having a plurality of metal elements suspended in a non-metal base and a second member coupled to the first member.
Abstract:
An electronic device may comprise a housing including two opposite open ends and at least a portion comprising a light-transmitting material, a bracket disposed inside the housing and having a shape corresponding to the housing, a flexible display device disposed between the housing and the bracket and configured to display information to an outside through the light-transmitting portion of the housing, and a plurality of covers closing the open ends of the housing and supporting two opposite ends of the bracket, wherein the bracket may include an inner space for mounting electronic parts, and the bracket is length-adjustable in at least one direction. The housing may be formed of a glass tube. Thus, the housing may be formed into a desired shape by processing the glass tube. A stretchable bracket structure may be implemented inside the housing to come in tight contact with the housing.