Abstract:
According to various embodiments, there is provided an electronic device including: a housing; a first conductive member that forms a portion of the housing and is at least partially disposed within the housing; a second conductive member that forms another portion of the housing and includes a portion disposed adjacent to a portion of the first conductive member; a non-conductive member disposed between the portion of the first conductive member and a portion of the second conductive member; a capacitive coupling structure coupled between the first conductive member and the second conductive member; a communication circuit electrically coupled to the first conductive member; and a sensor electrically coupled to the first conductive member. Various other embodiments may be made.
Abstract:
The present disclosure relates to a method for controlling a portable device equipped with a flexible display, and a portable device using the method, and more particularly, to a method for controlling a portable device based on whether an edge portion of a flexible display is gripped, and a portable device using the method. The method includes detecting bending of the flexible display. The method also includes determining whether an edge portion of the flexible display is gripped. The method further includes performing a control operation of the portable device corresponding to the bending when the edge portion is gripped.
Abstract:
Methods and electronic devices including a sensor are provided. An amount of external light outside the electronic device is determined through a light-receiving unit of the sensor. An intensity of light to be outputted through a light-emitting unit of the sensor is configured based on the amount of external light. The light having the configured intensity is output through the light-emitting unit of the sensor.
Abstract:
An inclined antenna assembly and an electronic device including the antenna assembly are provided. The inclined antenna assembly and an electronic device include a communication circuit and a Printed Circuit Board (PCB) including a front face, a back face on which the communication circuit is disposed, and at least one side face having an inclined manner between the front face and the back face. According to various embodiments, the PCB may include one or more antennas formed on a region corresponding to at least one side face.
Abstract:
A semiconductor memory device includes n physical banks, each of which is configured to be entirely or partially included in one of a first logic bank or a second logic bank and arranged in a row direction, wherein n is an integer that is greater than or equal to 3, and wherein a proportion of a sum of respective widths of the n physical banks in the row direction to a height of the n physical banks in a column direction is a real number multiple that is not a multiple of 2.
Abstract:
An electronic device according to various embodiments comprises: a first antenna module configured to receive a serving beam from a first base station by forming a first beam; a second antenna module configured to measure an intensity of a signal of a neighbor beam received from a second base station by forming a second beam; a first temperature sensor configured to measure a temperature corresponding to the first antenna module; a second temperature sensor configured to measure a temperature corresponding to the second antenna module; at least one processor operatively connected to the first antenna module and/or the second antenna module; and a memory operatively connected to the at least one processor, wherein the memory can store instructions which, when executed, cause the least one processor to: determine whether the first antenna module is in an overheated state based on a temperature of the first antenna module acquired from the first temperature sensor while performing communication with the first base station through the first antenna module and, based on determining that the first antenna module is in the overheated state, perform handover to the second base station based on channel measurement information regarding the second base station.
Abstract:
The present disclosure relates to a communication technique for fusing, with an IoT technology, a 5G communication system for supporting a higher data transmission rate than a 4G system, and a system therefor. The present disclosure may be applied to intelligent services, such as smart homes, smart buildings, smart cities, smart cars or connected cars, health care, digital education, retail, and security and safety related services, on the basis of 5G communication technologies and IoT-related technologies. The present disclosure discloses a communication method and apparatus between a terminal and a base station in a communication system to which beamforming is applied.
Abstract:
A semiconductor memory device includes a memory cell array, an error correction code (ECC) circuit, a fault address register, a scrubbing control circuit and a control logic circuit. The memory cell array includes memory cell rows. The scrubbing control circuit generates scrubbing addresses based on refresh operations performed on the memory cell array. The control logic circuit controls the ECC circuit such that the ECC circuit performs an error detection operation on a plurality of sub-pages in a first memory cell row to count a number of error occurrences, and determines whether to correct a codeword in which an error is detected based on the number of error occurrences. An uncorrected or corrected codeword is written back, and a row address of the first memory cell row may be stored in the fault address register as a row fault address based on the number of error occurrences.
Abstract:
An electronic device includes a Wi-Fi module configured to perform communication in a first frequency band, a communication module configured to wirelessly communicate with a given network in a second frequency band, a first processor operatively connected to the communication module, a second processor operatively connected to the Wi-Fi module and the first processor, and a memory operatively connected to the second processor. The memory may store instructions, that when executed by the second processor, cause the second processor to receive, from the first processor, a message notifying a state of the electronic device wirelessly communicating with the given network and to lower transmit power of the Wi-Fi module in response to the message.
Abstract:
A method and an apparatus for communicating with an external device using a beam in an electronic device supporting beamforming are provided. The electronic device includes a wireless communication circuitry, an antenna array including a plurality of antenna elements, and at least one processor. The processor may be configured to form and transmit a beam corresponding to a direction of the electronic device based on a start of a service, monitor reception of a response signal corresponding to the beam from an external device, and performs pairing with the external device based on at least a part of the response signal if the response signal is received.