Abstract:
An electronic device may include a housing with an internal space and a hole comprising an opening through the housing; an actuator extending in a direction from a first end to a second end, and coupled to the hole to be movable in the direction, the first end exposed to the outside of the housing and the second end disposed to the internal space; at least one electronic component disposed the internal space, the electronic component generating an electric signal when the actuator is moved in the direction in response to application of an external force applied at the first end; and a stopper being configured to regulate a movement of the actuator in the direction in a specific state of the electronic device. Various other embodiments are possible.
Abstract:
A wearable device that is mounted with a fingerprint recognition sensor is provided. The wearable device includes a housing including a first, a second face facing, and a third face facing, a support structure disposed between the first and second faces, a display disposed on the first face to be exposed, and including a window having a first flange and a second flange disposed to be opposite the first face, and a display module coupled to the window to face the second direction, the display being disposed on one face of the support structure, a printed circuit board disposed on another face of the support structure, at least one light emitter mounted adjacent to the first flange to emit light to a first region of the window, and at least one light receptor mounted adjacent to the second flange to receive light reflected from the first region.
Abstract:
An electronic device having a heat radiator and a method for controlling the electronic device are provided. The electronic device includes a frame including at least one optical assembly and a structure configured to receive a portable electronic device including a display, wherein an image is on the display can be seen through the at least one optical assembly when the portable electronic device is in the structure, a wearing member connected to the frame and configured to be worn together with the frame on the head of a user, and a heat radiator configured to remove heat from a space between the display and the optical assembly to outside the electronic device when the portable electronic device is received in the structure and is turned on.
Abstract:
A method of operating an electronic device is provided. The method includes making a connection to another electronic device and switching to a particular mode, transmitting information on a request for switching to the particular mode to one or more wearable devices, receiving detection information from the wearable devices, and performing a function of the electronic device corresponding to the detection information.
Abstract:
Disclosed herein is an electronic device with a curved display module. A housing has a first surface adjacent to the display module and the first surface is formed to have a curvature corresponding to the curvature of the display module. At least one electronic component is disposed in a second surface of the housing that is opposite to the first surface.
Abstract:
An unmanned aerial vehicle is provided. The unmanned aerial vehicle includes a housing with a first housing structure and a second housing structure, a wireless communication circuit coupled to the housing or located inside the housing for wireless communication with an external controller, a plurality of propulsions systems coupled to the housing, and a navigation circuit configured to control the plurality of propulsion systems. At least one of the plurality of propulsion systems includes a plurality of folding arms pivotally coupled to one of the first housing structure and the second housing structure, a motor controlled by the navigation circuit, and a propeller coupled to the motor. The housing has at least one recess to accommodate at least part of the plurality of propulsion systems in the second state.
Abstract:
An electronic device may include: at least one protective member disposed in at least one area of the electronic device; at least one sensor configured to detect the drop of the electronic device; a protective member driving module configured to activate the protective member to change the shape of the protective member according to whether the drop of the electronic device is detected; and at least one processor configured to receive a drop sensing signal detected by the sensor and to control the protective member driving module to change the shape of the protective member.
Abstract:
Provided is a telephoto lens including a first lens group, the first lens group including: a first lens element including: an object side lens surface facing an object side; and an image side lens surface facing an image side; and a prism configured to bend an optical path within the first lens element, wherein the first lens element and the prism are formed as a single body, wherein an inclined surface of the prism is provided between the object side lens surface and the image side lens surface, and wherein the following relationship is satisfied: 1.3≦L1/Li, where L1 corresponds to a length of an optical path within the first lens element along an optical axis of the first lens elements and Li corresponds to a length of an optical path between an optical element provided closest to an image plane and the image plane along the optical axis.
Abstract:
An example electronic device calibrates a center of a sensor for acquiring sensing data differently according whether the electronic device is worn on a part of a user body or not, and provides data sensed based on a result of the calibrating to the user, so that more exact and/or accurate data and a better sense of use can be provided to the user.
Abstract:
A method of operating an electronic device is provided. The method includes detecting a movement of the electronic device, and changing a scale of a displayed image based on the movement.