Abstract:
Disclosed are various embodiments relating to a circuit board included in an electronic device and, according to one embodiment, the circuit board can comprise: at least one wire included on the circuit board, at least one conductive structure arranged on the circuit board in order to reinforce the circuit board, and arranged in order to electrically connect the at least one wire; and at least one conductive member included on the circuit board, and electrically connecting the at least one wire with the at least one conductive structure, and additional other various embodiments are possible.
Abstract:
Disclosed is an electronic device which includes an antenna array including a plurality of antenna elements and a wireless communication circuit configured to transmit and/or receive a signal having a frequency in a range of 3 GHz to 300 GHz. The wireless communication circuit includes a plurality of pairs of transmit and receive paths. The wireless communication circuit is configured to allow a first pair of the plurality of pairs to use the transmit path of the first pair and a second pair of the plurality of pairs to use the receive path of the second pair, to transmit a first signal using the transmit path of the first pair, to monitor the receive path of the second pair, and to determine whether the first signal is at least partially blocked, based at least in part on a result of monitoring the receive path.
Abstract:
An electronic device for detecting pressure is provided. The electronic device includes a printed circuit board (PCB) including at least one element or circuit pattern for driving the electronic device, at least one electrode pattern formed to detect a pressure in the wiring layer included in the PCB, an elastic member arranged to be at least partially overlapped with the electrode pattern, and a pressure sensor circuit electrically connected to the electrode pattern included in the PCB. The pressure sensor circuit is configured to apply a voltage to the electrode pattern and measure intensity of the pressure based on a change in the voltage applied to the electrode pattern.
Abstract:
Provided is a head-mounted display (HMD) apparatus and a method of controlling information output for the HMD apparatus. The HMD apparatus includes a frame in which one or more devices are installable, an interface unit to functionally connect to at least one of one or more devices installed in the frame and an external device, a detection unit to detect a user input, and a processor to perform a process of determining the one or more devices installed in the frame, controlling the interface unit according to the determination result, and controlling the one or more devices installed in the frame and the external device on the basis of user input detected through the detection unit.
Abstract:
A method and an apparatus for detecting an accessory in an electronic device. A connection of accessory with an interface unit is detected. An analog signal in a predetermined frequency is generated. The generated analog signal is applied to an identification terminal of the interface unit. The applied analog signal is converted to a digital signal and the type of the accessory is identified based on the converted digital signal.
Abstract:
A connector of an electronic device and an electronic device having the same are provided. The connector of an electronic device may includes a mold fixed on a main board of the electronic device; a first connection pin having a first connecting portion protruded to one surface of the mold; and a second connecting portion separated from the mold and an extension that connects the second connecting portion and the mold.
Abstract:
A wearable device performing a call using a virtual object and a method for controlling the same are disclosed. A wearable device according to an embodiment of the disclosure may comprise: a display, memory, and a processor comprising processing circuitry. The memory may store instructions that may be executed by the processor, and at least one processor, individually and/or collectively, is configured to cause the wearable device to: obtain a first input for sending a call, based on the first input, control the display to display a first virtual object corresponding to a counterpart of the call to a user wearing the wearable device, obtain a second input for moving the first virtual object to a designated position in a real world or virtual reality, and perform the call with the counterpart based on the second input.
Abstract:
A wearable device and a power distribution method in a wearable device are provided. The wearable device includes a battery, load circuitry configured to operate by using power supplied from the battery, step-down circuitry connected to a power input terminal of the load circuitry, step-up circuitry connected to a power output terminal of the load circuitry, and a processor configured to obtain a first power loss value while distributing the power from the battery to an electrical component through an operation of the step-down circuitry and the step-up circuitry, obtain a second power loss value during power distribution while distributing the power from the battery to the electrical component, and control the power from the battery to be distributed to the electrical component through the step-up circuitry and the step-down circuitry or control the power from the battery to be distributed to the electrical component.
Abstract:
A wearable electronic device is provided. The wearable electronic device includes a display and at least one processor. The at least one processor may be configured to perform a virtual reality (VR) application. The at least one processor may be configured to detect movement of an avatar corresponding to a user in a virtual space of VR content displayed while the VR application is being executed. The at least one processor may be configured to display a screen of the VR content to which a changeable vignetting effect is applied through the display, based on the detection of the movement of the avatar.
Abstract:
Disclosed is an electronic device including a first circuit board including a first surface facing a first direction and a second surface facing a second direction opposite to the first direction; a second circuit board including a third surface facing the first direction and a fourth surface facing the second direction; an interposer disposed between the first circuit board and the second circuit board; an antenna disposed at the first surface of the first circuit board; a first electronic component disposed on the second surface of the first circuit board and electrically connected with the antenna; and a thermal interface material (TIM) disposed between the second surface of the first circuit board and the third surface of the second circuit board and contacting a surface of the first electronic component.