Abstract:
According to certain embodiments, an electronic device may include a camera, a display, a processor operatively coupled with the camera and the display, and a memory operatively coupled with the processor, wherein the memory may store instructions, when executed, causing the processor to store information of a purchased item in relation to the electronic device, in the memory, after storing the item information, display an image acquired using the camera, as a preview image on the display, identify that at least one object in the image corresponds to the item, based on identifying that the at least one object in the image corresponds to the item, obtain information of at least one visual object, and display the at least one visual object superimposed on the image associating the at least one object with the at least one visual object, on the display.
Abstract:
An electronic device may include a housing including a first surface facing a first direction and a second surface facing a second direction, the first direction being opposite that of the second direction, the first surface including a first opening and a second opening; a touch screen display being disposed and visible through the first opening; a mechanical button located at least in part of the second opening and movable in response to a pressure applied thereto; a processor located inside the housing and electrically coupled to the display and the mechanical button; and a memory located inside the housing and electrically coupled to the processor, wherein the memory stores a plurality of instructions that cause, upon execution, the processor to: display a screen on at least a portion of the touch screen display; display a virtual button comprising a graphical user interface (GUI) on a specific region of the screen adjacent to the mechanical button such that the GUI visually extends the mechanical button.
Abstract:
An electronic device and sound output method thereof are provided. The electronic device may include: an input unit comprising input circuitry configured to sense an input from outside of the electronic device; a plurality of piezo drivers including a first piezo driver and a second piezo driver; and a processor functionally connected with the input unit. The processor may be configured to detect an input through the input unit, to use a first piezo driver set including the first piezo driver to output sounds when the detected input corresponds to a first input, and to use a second piezo driver set including the second piezo driver to output sounds when the detected input corresponds to a second input.
Abstract:
An electronic device is provided, including a housing, a side member, a display, a printed circuit board (PCB), and a communication device. The housing includes a first plate facing a first direction and a second plate facing a second direction opposite to the first direction, forming a space between the first and second plates. The side member surrounds at least part of the space. The communication device is disposed in the housing and connected with the PCB. The side member includes a first antenna unit disposed on one side of the electronic device, electrically connected with a radio frequency (RF) module, and having a first metal frame. The housing further includes a board-type antenna which includes a second antenna unit electrically connected with a WiFi module, an antenna connector configured to electrically connect the first and second antenna units, and a third antenna unit electrically connected with the antenna connector.
Abstract:
A method of providing pressure and an electronic device adapted thereto is provided. The electronic device includes a display, a touch panel with a number of electrodes, placed on the display, a processor electrically connected to the display and the touch panel, and a memory electrically connected to the processor. The memory stores instructions which enable the processor to receive a user input applied to at least part of the touch panel, add changes in capacitance formed among at least part of the electrodes, in response to the user input, and determine a level of pressure of the user input against the touch panel, based on a sum of capacitance changes. Various embodiments are provided.
Abstract:
A digital pen includes a housing, a pen tip exposed through an end of the housing, a rod extending from the pen tip into the housing, a resonance circuit and a control bar. The resonant circuit includes a coil to generate an electric current by a first signal, a resonance capacitor for discharging the accumulated electric charge to the coil such that the coil generates a second signal, and a variable capacitor for changing the resonance frequency of the second signal depending on pressure transferred from the pen tip through the rod. The control bar is movable from a first position, in which the control bar does not surround the coil, to a second position, in which the control bar surrounds a part of the coil, and has a metallic part to change the resonance frequency of the second signal.
Abstract:
An electronic device includes a first printed circuit board (PCB) including an opening, and a plurality of first connecting terminals disposed to be spaced apart from each other along a circumference of the opening, a camera module including a second PCB, and a connecting interface including an interface body connected to a lower end of the camera module. A plurality of second connecting terminals formed of an elastic material and are disposed to be spaced apart from each other along a circumference of the interface body to be electrically connected to the second PCB. The connecting interface is inserted into the opening so that the first connecting terminals are electrically connected to one respective second connecting terminal of the plurality of second connecting terminals, and a relative position of the connecting interface with respect to the opening is fixed by an elastic force of the plurality of second connecting terminals.
Abstract:
Various embodiments disclosed in the present document relate to an electronic device capable of wirelessly charging a pen input device. According to various embodiments disclosed in the present document, provided is an electronic device comprising: a housing that accommodates an electronic component in the inner space thereof; a wireless charging coil disposed on the inner surface of the housing forming the inner space; a first magnetic body group disposed on the inner surface of the housing and aligned with the wireless charging coil in a first direction; and a magnetic field sensor, disposed to be spaced apart from the first magnetic body group by a predetermined distance, for recognizing reverse attachment of a pen input device attachable to the electronic device. Various other embodiments may be provided.
Abstract:
An electronic device according to various embodiments of the disclosure may include a first housing on which a first printed circuit board including a processor is disposed, a second housing on which a second printed circuit board including a display driver for a display is disposed, a hinge structure configured to physically connect the first housing and the second housing such that the first housing and the second housing are foldable/unfoldable, and a cable structure configured to electrically connect the first printed circuit board and the second printed circuit board via the hinge structure. The cable structure may include a first cable configured to transfer display signals and a second cable branched off from the first cable to be grounded to the hinge structure.
Abstract:
An electronic device according to various embodiments may comprise: a sensor circuit; a memory storing handler activation information; and a first processor and a second processor operatively connected to the sensor circuit and the memory. The sensor circuit may be configured to transmit an interrupt signal using an interrupt transmission unit comprising circuitry electrically connected to the first processor and the second processor, and configured to transmit sensor data using a sensor data transceiver electrically connected to the first processor and the second processor. The memory may store instructions which, when executed, cause the first processor to: amend or update interrupt handler activation information in the memory in response to a system state of the electronic device, and receive the sensor data from the sensor circuit in response to an interrupt signal transmitted from the sensor circuit based on identifying, using the interrupt handler activation information, that the first processor processes the interrupt of the sensor circuit; wherein the instructions, when executed, cause the second processor to: receive the sensor data from the sensor circuit in response to the interrupt signal transmitted from the sensor circuit based on identifying, using the interrupt handler activation information, that the second processor processes the interrupt of the sensor circuit.